Aluminum extrusion is a common processing technology that produces aluminum profiles of various shapes and sizes by pressing aluminum alloy into a mol...
Read MoreZinc Alloy Electroplated Fixed Bracket is a professional fixed bracket device with the characteristics of high strength, corrosion resistance and beautiful appearance. The bracket is made of zinc alloy material and is electroplated to enhance its durability and appearance. This fixed bracket is suitable for a variety of application scenarios, including construction, furniture and electronic equipment. It can firmly fix various objects such as pipes, wires and cables to ensure that they are in the desired position.
One of the main advantages of Zinc Alloy Electroplated Fixed Bracket is its high strength. Due to the use of zinc alloy material, the bracket has excellent compressive and tensile strength and can withstand large weight and external forces. Therefore, it becomes a reliable fixed bracket that can be used for a long time without deformation or damage. In addition, the bracket also has excellent corrosion resistance. After electroplating, a strong protective layer is formed on its surface, which can effectively prevent oxidation and corrosion. Therefore, the bracket can be used for a long time in both indoor and outdoor environments, even in humid or corrosive climate conditions.
1. Drawings or Samples | We get the drawings or samples from customers. |
2. Drawings Confirmation | We will draw the 3D drawings according to the customers' 2D drawings or samples, and send the 3D drawings to customers for confirmation. |
3. Quotation | We will quote after getting the customers' confirmation, or quote directly according to customers' 3D drawings. |
4. Making Moulds/Patterns | We will make molds or pattens after getting the mold orders from the customers. |
5. Making Samples | We will make real samples using the molds and send them to customers for confirmation. |
6. Mass Producing | We will produce the products after getting the customers' confirmation and orders. |
7. Inspection | We will inspect the products by our inspectors or ask the customers to inspect together with us when finished. |
8. Shipment | We will ship the goods to the customers after getting the inspection result and the customers' confirmation. |
Process: | 1) Die Casting / Profile Extrusion |
2) Machining: CNC turning, Milling, Drilling, Grinding, Reaming and Threading | |
3) Surface Treating | |
4) Inspection and Packaging | |
Material Available: | 1) Aluminum Alloys Die Casting: ADDC10, ADC12, A360, A380, ZL110, ZL101, etc. |
2) Aluminum Alloys Profile Extrusion: 6061, 6063 | |
3) Zine Alloys Die Casting: ZDC1, ZD2, ZAMAK 3, ZAMAK 5, ZA8, ZL4-1, etc. | |
Surface Treatment: | Polishing |
Shot Blasting | |
Sandblasting | |
Powder Coating | |
Anodizing | |
Chrome Plating | |
Passivation | |
E-coating | |
T-coating | |
etc. | |
Tolerance: | +/-0.01mm |
Weight Per Unit: | 0.01-5KG |
Order Lead Time: | 20-45 Days (According to the Quantity and Complexity of the Product 1 |
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Read MoreAs a common metal material, zinc alloy has many advantages in the production of fixed brackets, so it is widely used. First of all, zinc alloy has excellent corrosion resistance, which can effectively resist oxidation, corrosion and chemical erosion, so that the fixed bracket can still maintain stable performance in a humid or corrosive environment.
Secondly, zinc alloy has the characteristics of light weight and high strength. It has a relatively light density but high strength. Therefore, the fixed bracket made is not only light in weight, easy to install and carry, but also provides sufficient support and stability.
In addition, zinc alloy has good machinability and is easy to form, cast and process into fixed brackets of various shapes and sizes to meet different needs.
In addition, zinc alloy also has good thermal conductivity, which can effectively conduct heat, so that the fixed bracket can quickly dissipate heat and avoid damage to the equipment due to high temperature.
In addition, zinc alloy also has excellent surface treatment performance, and can achieve different surface effects through electroplating and other processes, such as chrome plating, nickel plating, etc., to improve the appearance texture and durability of the fixed bracket.
Finally, zinc alloy is an environmentally friendly material, pollution-free, and meets the requirements of green manufacturing. Using zinc alloy to make fixed brackets is conducive to the sustainable development and environmental image of enterprises.
When manufacturing fixed brackets, the thickness of zinc alloy coating is a crucial factor, which directly affects the performance of fixed brackets. Specifically, by precisely controlling the thickness of the coating, the performance of fixed brackets in terms of corrosion resistance, wear resistance, conductivity, appearance texture, and thermal conductivity can be adjusted.
First, in terms of corrosion resistance, the thickness of zinc alloy coating has a direct impact on the corrosion resistance of fixed brackets. Generally speaking, the thicker the coating, the stronger the corrosion resistance of the fixed bracket, and it can more effectively resist oxidation, corrosion and other erosion, thereby extending its service life.
Secondly, in terms of wear resistance, appropriately increasing the thickness of zinc alloy coating can improve the wear resistance of fixed brackets, making them less susceptible to wear and scratches during use, maintaining beautiful appearance and complete functions.
In addition, conductivity is also an important factor to consider. The thickness of the coating will directly affect the conductivity of the fixed bracket. A thinner coating helps maintain the conductivity of the metal substrate, while a thicker coating may affect the conductivity, so when controlling the coating thickness, it is necessary to precisely control it according to specific requirements.
At the same time, the appearance and texture cannot be ignored. The thickness of the coating directly affects the appearance of the fixed bracket. Generally speaking, a thicker coating can provide a smoother and more uniform surface effect, increasing the visual appeal of the fixed bracket.
Finally, thermal conductivity is also one of the factors that need to be considered. The thickness of the coating affects the thermal conductivity of the fixed bracket. Properly controlling the thickness of the coating can maintain the thermal conductivity of the fixed bracket and avoid the situation where heat conduction is blocked due to an overly thick coating.
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