Aluminum trim is crafted from aluminum through the extrusion process. This method produces extended, refined, and flexible aluminum pieces that are ideal for architectural embellishments, interior and exterior lighting solutions, and engineering design tasks. Aluminum trim is favored for its notable properties, such as its innate resistance to rust and corrosion coupled with a remarkably low density.
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Extrusion stands out as an efficient and cost-effective approach for producing aluminum trim, offering affordability and speed. The various profiles of aluminum trim boast accurate tolerances, superior dimensions, and adhere strictly to product design requirements.
Extrusion is a widely adopted manufacturing technique for crafting aluminum trim, valued across industries for its reliability in delivering precision-engineered, high-quality aluminum products with exceptional durability and visual appeal. The aluminum extrusion process involves pushing a malleable aluminum alloy through a die or profile that matches the desired cross-sectional shape—an essential step in producing architectural trim, automotive components, window frames, and decorative moldings. Depending on the application, aluminum extrusion can be performed using either hot or cold methods, offering flexibility for custom design specifications.
Among the many extruded aluminum profiles, aluminum trim stands out due to its versatility, lightweight nature, and ease of shaping. Once extruded into long, uniform sections with precise dimensions, the trim profiles are cut to specific sizes as requested by manufacturers or end users, then inspected, finished, and packaged for shipment. For applications that demand a polished appearance or enhanced corrosion resistance, additional surface treatments such as anodizing or powder coating may be applied to the extruded trim.
The hot extrusion process for aluminum trim profiles starts with a billet—an intermediate casting produced from aluminum alloy ingots, engineered for further processing. Billets used for aluminum trim fabrication are created from a range of high-performance aluminum alloys, with and (sometimes listed with a typo as ) being the most commonly selected due to their strength, machinability, and surface finish qualities. These alloys are favored in both structural and decorative aluminum trim applications, providing an ideal blend of form and function.
A critical element in aluminum trim manufacturing is the die or profile shape, engineered from precision-machined, high-strength steel to achieve accurate and consistent results. While standard die shapes for aluminum extrusions—including J channel, angle, edge, and Z molding profiles—are stocked by most aluminum trim suppliers, custom die profiles can also be commissioned for specialized commercial, industrial, or construction projects. Whether ordering from catalog or custom configurations, specifying the right die is key to meeting project requirements for surface area, thickness, strength, and aesthetics.
Before extrusion, aluminum billets are preheated in industrial furnaces to temperatures of 800°F (426°C) or higher. This controlled heating process increases the billet's pliability, ensuring optimal material flow through the extrusion die while preserving the alloy's integrity. The preheated billet is soft enough to enable uniform shaping but remains well below aluminum's melting point, making the metal malleable without compromising its microstructure. Temperature management at this stage is crucial for maintaining consistency in mechanical and surface properties in the finished trim.
Once brought to the ideal temperature for extrusion, the billet is positioned in a cradle, which keeps it securely aligned within the extrusion press. The cradle sustains the billet during the initial stages of pressing. A dummy block attached to the ram ensures no heated aluminum is lost backward in the process, preserving the required pressure and guaranteeing even flow through the die—factors vital for producing uniform aluminum trim and profiles for a range of architectural and industrial uses.
During extrusion, a powerful hydraulic ram exerts intense pressure on the billet, forcing the softened aluminum through the steel die. The cross-sectional shape of the die determines the final profile of the aluminum trim. For quality assurance and tool longevity, liquid nitrogen or specialized cooling systems are often applied to the extrusion die and billet, reducing the risk of oxidation or thermal deformation that can impact the structural and cosmetic quality of the finished extrusion. The extruded trim, whether for interior finishing or exterior cladding, exhibits the clean lines and dimensional accuracy industrial buyers and fabricators demand.
As the extruded aluminum trim exits the die, its temperature is closely monitored to ensure process control and material consistency. Each aluminum alloy—such as , , A, , A, and —exhibits distinct exit temperature requirements, impacting product quality and post-extrusion processing. Maintaining precise temperatures is critical for optimizing the mechanical strength and surface quality of the final aluminum trim, suitable for both decorative and protective trim applications in building construction, automotive manufacturing, and consumer goods.
Newly extruded aluminum trim profiles are guided onto a runout table equipped with automated pullers, supporting and stabilizing the long, hot extrusion as it travels along the production line. Industrial-grade fans are strategically placed along the table to accelerate cooling—a vital step for ensuring the extrusion retains its straightness and structural stability. Once the extrusion reaches its specified length, it is cut or sheared to size and sent to further cooling and inspection stages. Accurate sizing and cooling guarantee that the finished aluminum trim meets customer requirements for precision and quality.
After adequate cooling, each extrusion is transferred to a stretcher, where skilled technicians apply controlled tension to perfectly straighten the aluminum trim and relieve internal stresses. This post-extrusion step enhances mechanical hardness and ensures tight tolerance, critical properties for products such as window trim, corner guards, and edge molding. By minimizing internal stresses and correcting any bends or twists, stretching improves both the structural performance and visual uniformity of extruded aluminum products.
Once stretched and inspected, aluminum trim extrusions are precision cut to specified lengths using industrial saws for consistency and efficient packaging. Many aluminum alloys, especially and series, benefit from an aging or artificial heat treatment process to further enhance their hardness, strength, and corrosion resistance. Trim destined for architectural projects may then undergo surface finishing options—such as anodizing for improved weather resistance, powder coating for custom color, or brushing for an aesthetically pleasing matte finish. These finishing steps add value for suppliers, contractors, and end users seeking high-performance, low-maintenance aluminum trim solutions for a wide range of applications.
Impact extrusion is a specialized cold forming process where aluminum is shaped by applying high velocity force through a die, rather than by gradually pressing it as in traditional hot extrusion. This process—often done using a hydraulic press—is performed vertically, producing seamless, strong aluminum parts in a single, rapid stroke. Impact-extruded aluminum trim and components are used extensively in industries where high strength-to-weight ratio, precision tolerances, and intricate shapes are required, such as in packaging (aluminum cans and tubes), automotive, and industrial applications.
The tooling used in impact extrusion is meticulously engineered for impact and fatigue resistance, enabling it to withstand the intense forces involved in rapid cold working. Three main methods are used—forward, reverse, and combination extrusion—to generate desired part geometries:
Many aluminum alloys, especially those in the and series, are suitable for impact extrusion due to their excellent malleability and strength when cold formed. One significant advantage of this process is its elimination of the preheating stage, reducing both production time and manufacturing cost compared to hot extrusion. As a result, impact extrusion is a cost-effective choice for producing lightweight, high-precision, seamless aluminum parts, including specialty trim, automotive components, and consumer packaging containers.
However, impact extrusion does present some limitations. The process best suits the creation of symmetrical shapes with uniform cross-sections, typically resulting in thicker bases and thinner side walls. Wall thickness may vary between the product's interior and exterior diameters, limiting the types of geometries that can be efficiently manufactured. For applications requiring complex custom profiles, traditional aluminum extrusion processes may be preferable.
When selecting aluminum trim for your project, understanding the manufacturing process is just the beginning. End users, project managers, and OEMs should also evaluate several critical factors to ensure product satisfaction and performance:
By working closely with an experienced aluminum extrusion company, you can ensure that your aluminum trim meets all specifications for strength, durability, and finish quality. Many suppliers also provide technical support, engineering consultation, and material certificates for enhanced transparency and peace of mind during purchasing and installation. For more details on available trims, custom die design, finishing options, and order fulfillment, visit a trusted aluminum trim manufacturer or browse online catalogs to compare aluminum trim profiles, pricing, and performance data.
The manufacturing of aluminum trim is a highly specialized process that requires precision, efficiency, and advanced technology. Over the years, equipment manufacturers have streamlined aluminum trim production through innovative design and automation, enabling builders, contractors, and fabricators to meet demanding standards in the construction, remodeling, and architectural sectors. Today, choosing the right aluminum trim machine is essential for companies aiming to deliver high-quality, custom profiles on time and on budget. Below, we showcase five prominent brands producing industry-leading machines for aluminum trim fabrication in the United States and Canada, including their flagship models and unique advantages.
Description: The Mitten TrimFormer, manufactured by Mitten Inc., is a leading-edge machine engineered to streamline the creation of aluminum trim for both residential and commercial applications. Featuring precision bending, shaping, and cutting capabilities, this equipment supports the fabrication of custom aluminum profiles with remarkable accuracy and repeatable quality. With adjustable tooling, ergonomic operator controls, fast throughput, and support for bulk production, the TrimFormer offers scalability for contractors, window and door manufacturers, and exterior finishing professionals seeking to optimize their aluminum trim bending and forming processes.
Description: Gentek Building Products' TrimMaster is purpose-built for aluminum trim production and sheet metal processing. Renowned for its high-speed, precision cutting, notching, and bending, this machine allows fabricators to efficiently craft custom aluminum window trim, door trim, fascia, soffit, and siding accessories. Features include adjustable cut and bend options, intuitive touch controls, rapid setup for multiple trim profiles, and minimal downtime, making it a favored aluminum trim brake for high-volume and custom fabrication shops.
Description: Rollex Corporation's TrimFormer utilizes advanced roll-forming technology to produce consistent and durable aluminum trim profiles for exterior building applications. The machine provides customizable tooling for residential, industrial, and commercial trim projects, along with digital measurement and integrated material handling for optimal scrap reduction. Its precision engineering ensures high-definition profile edges and smooth finishes, helping contractors and metal fabrication facilities deliver superior trim solutions for complex architectural requirements.
Description: Spectra Metal Sales, a leader in the metal trim and coil coating industry, offers the TrimRollformer for aluminum trim manufacturing. This state-of-the-art roll forming machine is capable of producing a variety of aluminum trim profiles—including drip edges, flashing, coil stock, and fascia—while maintaining excellent speed and dimensional accuracy. Equipped with automated feeding, adjustable roll sets, and efficient part handling, the TrimRollformer helps streamline workflow for large-scale building envelope projects.
Description: Quality Aluminum Products’ QAP TrimMaster stands out for its robust construction and advanced metalworking features. Designed for manufacturers and contractors specializing in exterior trim, this machine supports cutting, notching, and forming of custom aluminum trims with ease. Enhanced safety features, heavy-duty build, versatile tooling, and easy-operate controls ensure consistent, top-quality output for a range of siding, soffit, and gutter applications. The QAP TrimMaster is ideal for enhancing production quality while reducing manual labor and material waste.
When considering the purchase of an aluminum trim machine, factors such as machine capacity, automation options, profile compatibility, and after-sales support are critical. Many buyers also evaluate energy efficiency, tooling versatility, and integration with existing fabrication lines. For the most up-to-date information on models, specifications, and pricing, it is recommended to contact the manufacturers directly or browse their comprehensive product catalogs.
Common features found in top aluminum trim machines:
Whether you are a building products manufacturer, metal fabricator, or contractor, selecting the right aluminum trim forming equipment can dramatically improve your production quality, efficiency, and profitability. Be sure to assess your application requirements and long-term business goals before making a decision.
Aluminum production is a highly intricate and time-consuming process, but the applications of this versatile metal are vast. Aluminum is ubiquitous, present in homes, offices, stores, and buildings. Its strength, aesthetics, and durability make it an excellent choice for a wide range of structures and applications.
These desirable properties are preserved in aluminum trim, which can be customized, shaped, and adapted for various uses. Aluminum trim is commonly employed as a sealing component and decorative feature in boats, motor homes, appliances, shelving, and more.
J trim is applied along the edges of aluminum siding around windows and doors, as well as at the top of the siding to secure it. Proper installation of J trim is essential for sealing the project, safeguarding it from leaks and preventing moisture buildup.
U channel trim has been used for many years as a method for finishing edges and protection against the roughness of unfinished edges. It is used as a method of adding an aesthetic appeal to a project and reducing fabrication costs. The versatility of U trim is found in its ability to adapt to any type of material such as woven wire mesh and glass and wood panels.
Similar to J channels, Z channels are utilized in metal roofing systems to receive panels, ridge caps, and headwall flashing. The primary advantage of Z channel aluminum trim is its design, which effectively prevents leaks. Z channel trim can be customized to various profiles, angles, sizes, and widths to meet specific needs.
H channel aluminum trim is comparable to C channel trim but features the same inside radius corners. It is well-suited for applications that demand strength and stability. H channel aluminum trim is commonly used for railings, decorative accents, and as framing for doors and windows.
Aluminum angles are available in a wide range of sizes to suit various applications. Despite being lightweight, aluminum trim angles offer remarkable strength, durability, and resilience. They are commonly used for constructing frames, braces, and for edging tables and countertops.
Aluminum angle trims come in various configurations, including different wall thicknesses, which range from 1/16 inch to 1/4 inch (0.36 cm to 0.64 cm). Additionally, the lengths of the legs can be either equal or unequal, depending on the specific requirements.
T aluminum trim is valuable in architectural design and millwork. It finds application in store fixtures, displays, chairs, elevators, and as a finishing touch for woodworking projects. Its strength and durability make it particularly effective as tile edging, preventing chipping and serving as a transition for tile floors. T aluminum trim is available in various styles, including grooved, smooth, or fluted, to suit renovation and retrofitting needs.
Lightweight and thin F channel aluminum trim is commonly used to secure a soffit by slotting it into the groove of the F channel.
Resembling the shape of a top hat, hat channel aluminum trim is widely utilized for various applications. Its unique shape makes it an excellent choice as a decorative divider between wall panels, sheetrock, and tile. Hat channel aluminum trim serves as a substitute for wood and steel, offering comparable strength and durability while providing enhanced versatility and an attractive finish. It also acts as a base for water diversion and contributes to thermal efficiency in heating and cooling systems, as well as to the overall structural appearance.
Round aluminum channel trim, similar in appearance to C channel but with thicker walls, resembles an aluminum rod. While it has a range of applications, its primary use is as a housing for LED light strips.
Aluminum trim coil is a thin sheet of aluminum coated with polyester, providing protection against heat and moisture damage. Made from 0.019 gauge aluminum, it offers the right balance of rigidity and flexibility, making it easy to shape and install.
Aluminum trim coil is versatile and widely used for finishing soffits, fascia, siding, and windows. Available in a range of colors, it resists corrosion and helps protect wood from damage. This material is designed to cover and safeguard hard-to-maintain and hard-to-reach areas.
Aluminum trim serves as the finishing element of a project, adding a polished touch, decorative flair, protective layer, and visual interest. While aluminum possesses all the essential qualities to enhance a construction project, it also functions as a stylish enhancement or a functional component of a design.
The multiple functionalities of aluminum and its versatility have made it the number one metal for a wide range of products, projects, and applications. Aluminum trim can be shaped and formed to be edging for a kitchen counter, a measure for protecting the edges of work benches, and an addition to provide a chrome like finish to RVs and campers. These qualities of aluminum have made it useful and popular.
Aluminum kick plates are commonly installed in commercial buildings to preserve the appearance of interior doors. Positioned at the bottom of a door, these plates shield against damage caused by frequent foot traffic.
Doors subjected to constant use face various types of wear and tear. A robust, durable aluminum kick plate offers essential protection, helping to maintain the door's aesthetic appeal and integrity by absorbing and withstanding potential damage.
Corner guards are commonly used in kitchens, offices, workbenches, and other high-traffic areas to enhance both protection and appearance. Strategically installed, these guards shield corners of benches, walls, and tables from damage and wear. Aluminum corner guards are effective on various surfaces, including drywall, wood, brick, painted surfaces, and wallpaper, helping to prevent fraying and peeling of the wallpaper.
Countertop trim provides the finishing touch to a project, enhancing both the look and safety of the countertop. It not only improves the appearance but also prevents injuries from sharp countertop edges. Aluminum countertop trim defines the edges of the countertop and delivers a smooth, aesthetically pleasing finish.
When installed next to appliances like stoves, dishwashers, or refrigerators, countertop trim helps prevent food and debris from falling between the appliance and the cabinet. One of the major advantages of countertop trim is its ease of installation. Available at most hardware or home improvement stores, aluminum countertop trim can be easily shaped and fitted to any countertop size with minimal effort.
Display manufacturers rely on aluminum trim for designing and constructing their displays. Essential features for display boards and materials include flexibility, durability, versatility, and adaptability to various projects. Portable display booths, which may be stored for extended periods, are quickly ready for use when needed.
Aluminum's numerous advantages make it an ideal choice for portable displays. As edge material, aluminum ensures that grooves for display boards remain sturdy and resilient, allowing for immediate deployment. Additionally, the sleek appearance of aluminum enhances the overall look of displays, projecting a strong, professional image for companies and their products.
Staircases require nosing as a crucial safety feature, providing a secure area for people to step on while ascending or descending. In residential settings, nosing is typically made of wood, as these stairs are generally less exposed to heavy use and are often carpeted.
In industrial environments such as factories, offices, and manufacturing facilities, where workers frequently navigate stairs while carrying materials or delivering messages, a more robust and durable material is necessary. Aluminum trim is commonly used for this purpose, offering enhanced strength and protection for stair edges and surfaces. In addition to its durability, aluminum nosing also contributes to a polished and visually appealing finish.
Aluminum handrails leverage the many advantages of aluminum, including its strength and durability, which make them a popular choice among architectural firms. Beyond these notable qualities, aluminum handrails are also maintenance-free, eliminating the need for painting, additional finishing, or other protective treatments.
Once installed, a robust aluminum handrail is designed to last for many years without requiring replacement. Like other aluminum features, aluminum handrails contribute to a building's, home's, or factory's appearance of stability and sophistication.
While aluminum naturally oxidizes when exposed to the atmosphere, manufacturers often enhance this inherent property with various paints, coatings, and metallic finishes. These additional treatments offer extra protection and extend the lifespan of the trim.
Enhancing aluminum with finishes is crucial for improving its corrosion resistance. Although aluminum's natural oxidation provides some level of protection, certain environments demand more robust treatments to ensure the metal's durability and suitability for specific applications.
Mechanical finishes are applied to enhance the appearance of aluminum. In some cases, aluminum may undergo anodizing after mechanical finishing. Common mechanical finishes include abrasive blasting, grinding, polishing, and buffing, each contributing to the aluminum's aesthetic quality and surface texture.
Pretreatment is essential when aluminum is to be coated or painted. This process involves etching and cleaning the aluminum surface using acidic or alkaline solutions. After pretreatment, a coating or paint is applied. This step ensures that the paint or coating adheres properly to the aluminum trim's surface.
Bright dipping is an electro-brightening process that imparts a glossy luster to aluminum. This technique involves anodizing the aluminum trim, which enhances its protection against scratching, fading, and corrosion.
During bright dipping, phosphoric and nitric acids are used to smooth the surface of the aluminum and alter its texture. Additives in the process boost the metal's brightness and minimize fumes. The result is a highly reflective finish with an exceptional sheen.
Anodizing is an electrochemical technique used to enhance aluminum trim surfaces, making them decorative, smooth, durable, and resistant to corrosion. Aluminum is particularly well-suited for anodizing because the anodic oxide layer forms directly on the substrate and consists of aluminum oxide.
This anodized layer becomes part of the aluminum trim itself, preventing issues like chipping or peeling that can occur with paint or other coatings. Despite its robust durability, anodizing does not preclude the application of additional finishes, such as paint or sealants.
One advantage of painting aluminum trim is the extensive range of colors available. Painting offers a thick, uniform, and durable finish. Proper surface preparation is crucial to ensure the paint adheres well. Pretreatment involves etching and cleaning the aluminum surface, facilitating easier and more effective paint application.
The final stage in painting aluminum trim is curing or baking, which helps to remove volatile compounds and solidify the paint finish.
Powder coating is a popular method for finishing aluminum trim, offering enhanced protection against corrosion, wear, and weather damage. This process involves applying a powder with an electrostatic charge that bonds tightly to the aluminum surface.
While aluminum is naturally durable, powder coating significantly extends its lifespan, potentially adding up to twenty years of usefulness. This method is ideal for outdoor applications such as signs, partitions, frames, lighting, and aluminum-trimmed electrical housings.
Similar to painting, powder coating requires pretreatment of the aluminum trim to remove dust, dirt, and other contaminants. The coated trim then needs to be cured and baked, which evenly melts the powder and ensures a solid finish. Powder coatings are available in a wide range of colors, providing a robust and visually appealing layer of protection.
Sublimation is a unique printing process in which special inks are turned into gas before being applied to aluminum trim. The ink is heated to achieve this gaseous state and then forms a permanent bond with the metal. Unlike traditional surface treatments, sublimation creates a union with the aluminum trim itself.
This technique allows for various effects, including wood grain appearances, photo applications, and other surface designs. Sublimation has gained popularity as a fast and versatile finishing method, becoming widely used in various industries.
Tile trim aluminum profiles are useful metal trim to protect the edges of your tiles and also support and protect them.
Tile trim aluminum profiles product safeguard the tiles from chipping or cracking at the edges due to pressure.
Also, tile trim aluminum profiles products are used to prevent intense pressure from breaking the tile, especially at the dividers between ceramic tiles and the walls.
The tile trim also helps to provide an aesthetic look to the tiled floor bottom. They could be straight or round and are made of high-quality materials.
You may wonder what process make tile trim aluminum profiles in production.
Die process, tile trim aluminum profiles production
Here is the details information for the die process:
Die design:
Tile trim aluminum profiles are the final product of aluminum billets that are extruded through a die after heating, and the extrusion die is a device with high-precision specifications designed according to demand to extrude aluminum profiles with the required specifications and cross-sections;
The design of the die and maintenance should pay attention to the followings:
1. The structure involved in the die must first meet the production requirements and also meet the common knowledge of physical mechanics to ensure that tile trim aluminum profiles produced can reach the performance used.
2. The material selection and hardness of the die should be appropriate to avoid deformation, scratches and other hard injuries during the extrusion process, which will affect the quality of tile trim aluminum profiles
3. The extrusion die should be cleaned and inspected frequently.
If there are any problems, they should be repaired in time to avoid scratches, burrs and other hard injuries during the extrusion process of the profile, which will seriously affect the quality of tile trim aluminum profiles.
Extrusion die processing process flow chart
Solid die (structural profile without a closed cavity, not the porthole die)
Lathing → Scribing → Milling → Drilling → Grinding → Hardening → Tempering → Grinding of the surface → Fine milling of the guide channel → Wire cutting → EDM → Polishing → Clamping repairing → Acceptance → Test mold → Nitriding → Warehouse
Since the extrusion die is the basic for tile trim aluminum profiles and we have the possibility for the tile trim shape we required through the extrusion process.
Aluminum billets, tile trim aluminum profiles production raw materials
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1. Alloys and their application
and are common alloys for tile trim aluminum profiles production.
In general, alloy is main for mill finish, matt silver, matt gold, matt bronze, matt black and powder coated color tile trim aluminum profiles production.
aluminum alloy is an alloy in the wrought aluminum-magnesium-silicon family ( or 6xxx series).
It is related to aluminum alloy (Aluminum Association designations that only differ in the second digit are variations on the same alloy), but unlike it is generally not formed using any processes other than extrusion.
It cannot be work-hardened but is commonly heat-treated to produce tempers with a higher strength but lower ductility.
Like , it is often used in architectural applications.
alloy is for shiny colors, like bright silver, bright gold, bright bronze, bright black and brushed stainless steel color tile trim aluminum profiles production.
Mechanical polishing plus chemical polishing (Bright dipping and anodizing) with alloy, can get a mirror-like effect on tile trim aluminum products.
Chemical composition
ITEM
Si
Fe
Cu
Mn
Mg
Cr
Zn
Ti
Al
0.20~0.60
≤0.35
≤0.10
≤0.10
0.45~0.90
≤0.10
≤0.15
≤0.10
Remainder
0.20~0.60
≤0.15
≤0.20
≤0.05
0.45~0.90
≤0.05
≤0.05
Remainder
2. Melting processing flow chart
Materials→charging→melting→stirring→alloying→holding→degassing→refining→log casting→homogenizing→cutting
Now we get the aluminum billets for the extrusion, tile trim aluminum profiles mold and aluminum billets are ready and we will get tile trim aluminum profiles through the extrusion process.
Tile trim aluminum profiles production extrusion process
Extrusion process
Aluminum extrusion is one process by which aluminum is forced into a custom-made die and results in a constant cross-section that utilizes all the properties of the metal.
As tile trim molds were designed and aluminum billets are available in the first step and second steps.
All is ready for tile trim extrusion.
Tile trim aluminum profiles will be carried out on an automatic production line consisting of billets heating, extrusion, cooling, tension straightening, sawing and other processes.
Equipment on the production line, including multi billets heating furnace, extrusion press, run-out table, stacker, profile conveyor, cooling bed, tension straightening machine, storage platform, puller, profile sawing machine, etc.
The billet heating temperature is generally controlled at 400 ° C ~ 520 ° C, too high or too low a temperature will directly affect the aluminum tile trim shape.
The working temperature of the extrusion tool is 360 ° C ~ 460 ° C, and the extrusion speed is 20 m / min ~ 80 m / min.
After tile trim aluminum extrusion is done, will be sawed in the extrusion line.
As it is soft and we need to make them aging for the hardness in the aging furnace.
Now tile trim aluminum profiles will be got and it is only mill finished tile trim aluminum profiles.
It is only the start, we need to make them punched, mechanical process and chemical process to get different finishes to match the project.
We will see what happens in the next process.
Surface treatment: Mechanical treatment plus chemical treatment
Surface treatment
Tile trim aluminum profiles were got in the extrusion process.
As it is a mill finish profile, without any surface treatment, only bare aluminum.
We need to make it surface treated for different finishes to meet the different materials and project demands.
There are 2 kinds of popular surface treatment in this process
1. Mechanical finish
Mechanical finish methods can give tile trim aluminum profiles several different types of surface texture – from rough or patterned to a mirror finish.
Polishing, brushing, sandblasting or shot blasting, grinding, and hammer pinned, all belong to mechanical finishes and that will make tile trim aluminum profiles more pattern and texture.
Tile trim aluminum profiles need to be anodized or bright dipping and anodized after mechanical finishes.
2. Chemical finish
The chemical finish method can give tile trim aluminum profiles corrosion-resistant, wear-resistant and weather resistance ability with the anodizing film or powder-coated layer.
Anodizing process, powder coating process, woodgrain effect or marble effect plus powder coating, bright dipping anodizing, and ED coating belong to chemical finishes and that will make tile trim aluminum profiles colorful and elegant.
Through chemical finishes, Matt silver, Matt bronze, Matt gold, Matt black, Matt champagne, RAL powder coated colors, brushing shiny color, Shiny silver, Shiny gold, Shiny bronze, shiny black, woodgrain effect, marble effect, hammer pinned, brass color, etc tile trim aluminum products can be got.
Now tile trim aluminum profiles are done and we need to cut the jig mark, QC will inspect the quality one by one prior to the packaging.
The production is not finished and the next process is the important part for our customers.
We will see the next process to make the packaging for different shapes and surfaces.
In Honstar Aluminum Products, we knew the story behind the production and we also know your request well for tile trim aluminum profiles.
From tile trim aluminum profiles to packaging and delivery, all processes will be handled carefully to ensure the products you received are in perfect condition after you open the package.
Tile trim aluminum profiles packaging process
The packaging process for tile trim aluminum profiles
Now finished tile trim aluminum profiles are done in the surface treatment process and the jig mark needs to be cut for precise length.
Then we will move to the next process for tile trim aluminum profiles packaging.
Tile trim aluminum profiles packaging function is to protect tile trim product in the transportation, ensure the customers receive the product in perfect condition.
The flexibility of custom packaging styles to meet different demands is what we are doing and looking for.
Good and proper packaging can protect tile trim aluminum profiles to avoid damage and scratch in transportation.
The packaging way for tile trim aluminum profiles will be varied according to the local market or overseas market sales, tile trim shape and size and surface, what kind of packaging materials, what kind of packaging machine application, and loading and unloading way.
All packaging work is to make sure each piece of tile trim aluminum profile you received is a high-quality product ready for use after you open the packages of aluminum tile trim products from us.
No matter what shape or size, tile trim aluminum profile has a package design that will meet your needs, and get to your place in good condition.
For tile trim aluminum profiles packaging, the basic idea is to provide optimum protection while minimizing packaging materials and waste.
Now the packaging work is done and we can deliver tile trim aluminum profiles to our customers.
The whole process is done and now it is time to see how the tile trim aluminum products turn the tile into an incredible interior design world!
Contact us to discuss your requirements of Aluminum Trim Profiles Supplier. Our experienced sales team can help you identify the options that best suit your needs.