Amid the growing demand for clean and dust-free environments, reusable sticky mats are becoming a popular product in the international trade market due to their environmental and economical features. Material selection, a key factor influencing their performance and lifespan, is attracting increasing attention from both buyers and manufacturers.
Currently, the mainstream materials for reusable sticky mats on the market fall into three categories: PVC (polyvinyl chloride), TPU (thermoplastic polyurethane), and rubber. PVC, due to its low cost and ease of processing, remains the preferred choice for many mid- and low-end products. However, PVC's relatively weak temperature resistance and environmental performance make it susceptible to deformation in high-temperature environments, and some of its additives may not meet international environmental standards, limiting its competitiveness in the international high-end market.
In contrast, TPU, with its excellent elasticity, wear resistance, and chemical resistance, is becoming a popular choice for export. TPU not only withstands a wide temperature range of -20°C to 80°C but also offers excellent UV resistance, making it suitable for long-term outdoor use. Furthermore, TPU is recyclable and complies with environmental regulations such as EU REACH, making it a popular choice in stringent markets such as Europe and the United States. Rubber is commonly used in industrial-grade sticky mats. Its excellent anti-slip properties and load-bearing capacity make it suitable for areas with heavy equipment. However, rubber has poor breathability, can easily produce odors after long-term use, and has high maintenance costs, making it more suitable for specific applications.
As global buyers increasingly demand sustainability and functionality, material innovation has become a key competitive advantage in the reusable sticky mat market. In the future, materials that combine environmental friendliness, durability, and cost-effectiveness will become mainstream, driving the industry towards high-end development.




