เลขที่ 355 ถนน Youyi เขต Qiaoxi ฉือเจียจวง เหอเป่ย ประเทศจีน
Hot Air Gun Technology and Its Applications
พ.ค. . 15, 2025 11:44
Hot air welding gun, As an important welding method, it has been widely used in multiple industries due to its high efficiency and flexibility. It uses hot air as a heat source to heat and melt the welding material, thereby achieving the connection between materials. This article will explore the basic principles, main advantages, and wide application areas of hot air gun.
Hot air guns are usually equipped with controllers that can adjust temperature and air volume, allowing users to flexibly adjust the parameters of the hot air according to the characteristics of the material and welding requirements. When the temperature of the hot air reaches or exceeds the melting point of the welding material, the surface of the material begins to melt. By applying a certain pressure, the melted materials can be fused together to form a strong connection. According to the type of welding material and application scenario, เครื่องเชื่อมพลาสติกแบบลมร้อน can use different welding methods, such as spot welding, wire welding, and surface welding.
Firstly, it has a high degree of flexibility. Due to its compact size and easy operation, the hot air gun can be applied to various complex welding situations, especially in areas with limited space or difficult access. Secondly, the cost of plastic hot air guns is relatively low. The simple equipment and low maintenance costs make it an ideal choice for small businesses and individual users. In addition, the hot air welder has strong process controllability. By precisely controlling the temperature and volume of hot air, it is possible to effectively avoid excessive melting or burning of materials and ensure welding quality. More importantly, welding guns typically do not require additional filler materials, reducing the complexity of the welding process and lowering material costs.
In the plastic processing industry, it is widely used for welding plastic sheets, pipes, and films, such as in the production of plastic water tanks, drainage pipes, and packaging materials. In the automotive industry, heat gun for tpo are used to repair connections between plastic bumpers, interior panels, and electronic components. In the medical device industry, hot air welders are used to manufacture medical equipment and consumables due to their pollution-free and highly controllable characteristics. In addition, in the textile industry, hot air welders are also used to sew waterproof fabrics, tents, and inflatable products.
It is usually suitable for welding thermoplastic materials and has relatively poor welding performance for metal materials. In addition, the welding strength and pressure resistance of plastic heat guns are relatively low, making them unsuitable for welding applications that require high strength.
In summary, hot air welders play an important role in multiple industry sectors due to their unique advantages. With the continuous development and improvement of technology, the application scope of hot air welders will be further expanded, providing more efficient, economical, and flexible welding solutions for various industries. In the future, we can expect hot air welder technology to make greater breakthroughs in intelligence and automation, thus better meeting the growing industrial demand.
The hot air welding gun generates a high-temperature airflow (usually adjustable from 100~600 ° C) through an electric heating element, which directly acts on the plastic welding site or welding rod, causing it to melt and then press and bond. Suitable for welding thermoplastic materials such as PVC, PE, PP, etc.
Common materials: PVC waterproofing membrane, PE geomembrane, PP sheet, ABS plastic, etc.
Not applicable materials: thermosetting plastics (such as epoxy resin), metals, or materials sensitive to high temperatures (such as TPU, caution should be exercised).
Adjust according to material thickness and type:
Temperature: PVC about 300-400 ° C, HDPE about 350-450 ° C.
Wind speed: Use high air volume for thick materials and low air volume for thin materials to avoid wrinkling.
Welding speed: usually 0.1~0.3m/s, too fast can lead to insufficient fusion.
Weld seam bubbles → If the material is damp or the temperature is too high, it needs to be pre dried or cooled.
Virtual welding/cracking → Insufficient pressure or excessive speed, pressure or deceleration is required.
Material deformation → If the hot air stays for too long, it is necessary to shorten the heating time or use auxiliary cooling.
Clean the nozzle after use to prevent plastic residue from clogging.
Regularly check the heating wire and temperature control system to ensure temperature accuracy.
Avoid prolonged full load operation to prevent overheating and damage.
Disconnect the power supply during storage and keep it dry and dust-proof.
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