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TPU films - a new alternative to revolutionize traditional materials
​In modern material science, TPU (thermoplastic polyurethane) film is gradually becoming a strong competitor to traditional materials due to its unique properties and wide application prospects. This article will discuss the basic characteristics of TPU film, application areas and future development trends.
2024-05-28
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TPU films - a new alternative to revolutionize traditional materials

    In modern material science, TPU (thermoplastic polyurethane) film is gradually becoming a strong competitor to traditional materials due to its unique properties and wide application prospects. This article will discuss the basic characteristics of TPU film, application areas and future development trends.

    First, the basic characteristics of TPU films

    TPU film is a thermoplastic polyurethane material made of film-like material. It has good elasticity and abrasion resistance, as well as excellent weather resistance and chemical resistance. In addition, TPU film has excellent transparency and gloss, and can maintain long-term appearance stability. These characteristics make TPU film has a wide range of potential applications in many areas.

    Second, the application areas of TPU films

    Packaging: TPU film's excellent elasticity and abrasion resistance make it an ideal choice for packaging materials. It can be used for the packaging of food, medicine, cosmetics and other products to ensure that the products are not damaged during transportation and storage.

    Construction: The weather and chemical resistance of TPU film makes it widely used in the construction field. It can be used to make waterproof materials, heat insulation materials, sound insulation materials, etc., to improve the waterproof, heat insulation and sound insulation performance of buildings.

    Electronic field: The transparency and gloss of TPU film make it an ideal material for electronic products. It can be used to make touch screens, displays and other electronic products such as protective films and panels, to improve the aesthetics and durability of the product.

    Third, the future development trend of TPU film

    With the continuous development of science and technology and the improvement of people's living standards, the performance of the material requirements are also higher and higher, TPU film as a new material with excellent performance and prospects for a wide range of applications, its market demand will continue to grow. In the future, with the continuous innovation of technology and product upgrading, the performance of TPU film will be more excellent, and the application areas will be more extensive. At the same time, with the increasing awareness of environmental protection, TPU film as an environmentally friendly material, its market prospects will be broader.

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TPU hot melt adhesive film vs anaerobic adhesive: "Scene flexibility" difference in automotive interior bonding
2025-09-11
​From the perspective of curing conditions, TPU hot melt adhesive film does not need to rely on special environments, while anaerobic adhesives are severely restricted by "auerobicity". The curing principle of anaerobic glue is to undergo polymerization under conditions of lack of oxygen and catalyzed by metal ions (such as iron and copper). If it is in an environment where air circulation or metal substrates are not available, the curing speed will be greatly slowed down or even unable to cure. In automotive interiors, most bonding scenarios are "open" (such as bonding the door panel skin to PP substrate, and the ceiling fabric to the sponge), the air can freely contact the bonding surface, and the substrate is mostly non-metallic (PP, ABS, fabric, etc.), lacking metal ion catalysis, and additional catalyst is required when using anaerobic glue, and the curing time is as long as several hours, which is difficult to meet the needs of industrial production. The TPU hot melt adhesive film only needs to be melted by heating (120-160℃) and can be cured after pressurization and cooling. It does not need to rely on the ambient oxygen concentration or the base material. It can be cured stably in open or closed bonding scenarios, and the curing time only takes a few dozen seconds to a few minutes, adapting to the fast-paced needs of the interior production line.
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