When it comes to industrial and construction materials, the 20-liter bucket handles from Anping Shengsen Metal Wire Mesh Products Co., Ltd stand out as a versatile and reliable solution. Designed to meet the demands of modern manufacturing and infrastructure projects, these handles combine advanced material science with robust engineering to deliver exceptional performance in diverse environments. This article explores the technical specifications, applications, and benefits of these handles, supported by insights from the National Institute of Standards and Technology (NIST) on material standards and corrosion resistance.
The 20-liter bucket handles are engineered for durability and functionality, making them ideal for use in wire handle applications, construction material binding, and the production of galvanized wire mesh products. These handles are constructed from high-quality low carbon steel wire and galvanized steel wire, ensuring a balance of strength and flexibility. The product’s design emphasizes corrosion resistance, a critical factor in environments where exposure to moisture and chemicals is common.
The 20-liter bucket handles are engineered with precise technical parameters to ensure optimal performance. Below is a detailed breakdown of the product’s specifications:
Product Name | Bucket Handle |
---|---|
Material | Low carbon steel wire, galvanized steel wire, Q195 |
Wire Gauge Size | 2.5mm - 5.0mm |
Elongation | >15% |
Zinc Coating | 20g |
Usage | 31-20L bucket |
Sample | Free |
The versatility of the 20-liter bucket handles makes them suitable for a wide range of applications. Some of the key use cases include:
These handles are commonly used to bind construction materials, such as steel bars and pipes, ensuring secure and stable transportation. The high zinc coating prevents rust, which is crucial in outdoor construction environments where exposure to the elements is inevitable.
The handles are ideal for use as cable wire and in the production of galvanized wire mesh products. Their high tensile strength and corrosion resistance make them suitable for applications requiring long-term durability, such as fencing and industrial equipment.
The handles are also used in the creation of chain link fences and express way fences. Their ability to withstand harsh weather conditions and mechanical stress ensures the longevity of the structures they support.
Founded in Anping Shengsen Metal Wire Mesh Products Co., Ltd, this company has established itself as a leading manufacturer of metal wire mesh products. With a focus on innovation and quality, the company caters to industries such as construction, agriculture, and manufacturing. Their commitment to producing durable, corrosion-resistant products aligns with the demands of modern industrial applications.
As highlighted by NIST in its research on material standards, the importance of corrosion resistance in industrial materials cannot be overstated. According to NIST, "Corrosion can lead to significant economic losses and safety hazards if not properly managed. The use of high-quality coatings and materials is essential to mitigate these risks" (NIST, 2025).
There are several advantages to selecting the 20-liter bucket handles from Anping Shengsen:
The 20-liter bucket handles from Anping Shengsen Metal Wire Mesh Products Co., Ltd are a testament to the company’s commitment to quality and innovation. With their advanced corrosion resistance, robust construction, and wide range of applications, these handles are an excellent choice for industries that demand reliability and performance. Whether you're working on construction projects, manufacturing processes, or infrastructure development, these handles provide a durable and cost-effective solution that meets the highest standards of quality.
For more information about the 20-liter bucket handles or to explore other products from Anping Shengsen Metal Wire Mesh Products Co., Ltd, visit their official website.
National Institute of Standards and Technology (NIST). "Corrosion Resistance in Industrial Materials." NIST Research Reports, 2025.