HANSA PTFE 棒
PTFE 棒材通常为独特的白色,并有多种横截面积和直径可供选择。此外,PTFE 棒材还可提供其他颜色,例如红色、蓝色、绿色或黄色,具体取决于客户需求。
无论您需要 2 毫米 PTFE 棒、定制尺寸棒还是定制特氟龙棒,我们都能根据您的具体应用提供多种选择。根据具体需求,我们提供不同横截面积的 PTFE 棒,包括圆形 PTFE 棒或六角形 PTFE 棒。
通常,您可以获得挤压 PTFE 棒或 PTFE 模压棒。这两种 聚四氟乙烯棒 由于其优异的物理和化学性能,具有卓越的性能特征。
PTFE 棒的可用材料等级
由于特氟龙棒用途的动态需求,存在不同的 PTFE材料等级 可用。特定杆的选择将取决于具体的应用要求。
可用的材料选项包括:
纯聚四氟乙烯棒 – 这些是由 100% 制成的 聚四氟乙烯材料.
改性聚四氟乙烯棒 –涉及改变 PTFE 的性质以获得卓越的性能要求。
机械级PTFE棒 – 这些 PTFE 棒由回收的聚四氟乙烯材料制成。
填充聚四氟乙烯棒 – 您可以在 PTFE 中添加多种填充材料,以获得更佳的性能。通常,特氟龙棒的名称取决于 PTFE 填充材料的类型.一些常见的等级包括:
- 碳填充聚四氟乙烯棒– 如果您希望PTFE棒具有更高的抗压强度和高负荷性能,请添加重量为10%至35%的碳。此外,碳还会改变其导电性,并提高其耐化学性。
- 玻璃填充聚四氟乙烯棒– 通过添加 5% 和 40% 数量的玻璃,您的 PTFE 棒将更加坚硬,抗压强度更高,表现出高刚性,并具有更好的耐化学性。
- 石墨填充聚四氟乙烯棒– 如果您想要摩擦系数极低的特氟龙棒,可以添加约 5% 至 15% 的石墨。此外,石墨还能显著降低初始磨损。
- 二硫化钼填充聚四氟乙烯棒- 如果你想提高特氟龙棒的耐磨性、硬度和刚度,同时又不损害电气和化学性能,那么 MoS2 提供完美的选择。
- 金属填充聚四氟乙烯棒– 您可以添加不锈钢或青铜。这些金属可以改善PTFE棒的变形和导热性。
- 矿物填充聚四氟乙烯棒– 强烈推荐使用云母填充PTFE棒,以满足FDA合规应用。通常,您可以添加5%到10%。
与制造商讨论您的特氟龙棒用途,将有助于他们根据您的独特规格优化产品。PTFE 棒制造商将帮助您选择最适合您应用的填充材料。
PTFE棒材的特性
近年来,PTFE 棒材因其优异的性能而广受欢迎,例如:
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- 适用温度范围广– PFTE 棒材可在 -240 至 260°C 之间的温度下发挥良好作用。
- 优异的电气和热性能——这也是PTFE棒作为常见电绝缘体的原因。然而,添加填料可能会改善其电气和热性能。
- 低摩擦系数– 它解释了不粘特性以及在摩擦敏感应用中的适用性。
- 高耐化学性– 氟碳化合物以其优异的耐化学性而闻名。这使得PTFE棒具有极强的耐化学性。


PTFE棒材应用
各种尺寸的特氟龙棒适用于许多行业。目前,特氟龙棒的一些常见用途包括生产、电气、家电和化工行业。
您可以进一步加工 PTFE 棒,以制造密封件、机器零件、盖子、仪器组件、轴承、滚轮等组件。
PTFE is a high-grade engineering plastic, and a PTFE rod is a cylindrical rod made of this plastic. PTFE has excellent chemical inertness and high-temperature resistance, and an extremely low coefficient of friction with a non-adhesive surface, making it a high-performance engineering plastic. Therefore, it is commonly used in the chemical industry to manufacture machined parts such as seals, bearings, and insulators, serving functions such as sealing, insulation, and lubrication.
Black PTFE rods are filled and modified PTFE rods. PTFE itself is white; the black color comes from the addition of other black substances, typically carbon fiber, graphite, or carbon powder. Different fillers enhance different properties. Carbon fiber increases the hardness of the PTFE rod, making it more resistant to creep and suitable for high-pressure operation; graphite enhances its lubricity, reducing friction between the PTFE rod and machinery, making it suitable for high-speed operation; and carbon powder provides conductivity and prevents static electricity.
PTFE rods have five main application areas: chemical, mechanical, electronic, semiconductor, and construction. In the chemical industry, PTFE rods primarily function as corrosion protectants and sealants. They are resistant to almost all highly corrosive liquids, including strong acids and alkalis, and are chemically stable, not easily reacting with other chemicals. In the mechanical industry, their main function is to reduce friction and protect equipment. Due to PTFE’s excellent self-lubricating properties, it can replace lubricating oil in mechanical parts such as bearings, bushings, gears, sliders, and piston rings. In the electronic industry, PTFE rods are often used to make high-frequency cables, insulated wires, printed circuit boards, transformers, and high-voltage insulation materials for motors due to their excellent electrical insulation properties. In semiconductor manufacturing, PTFE rods are widely used in wet process systems and chemical transportation, ensuring ultra-pure environments. In the construction industry, PTFE rods are commonly used to make wear-resistant sliding plates and sealing strips.
The disadvantages of PTFE rods can be broadly categorized into five points. Two of the more significant are their relatively low mechanical strength, making them prone to deformation under prolonged high loads, and their large coefficient of thermal expansion, meaning their dimensions change considerably with temperature variations. Three other points are the high cost of PTFE, the difficulty in processing it, and the fact that it cannot be directly adhered to surfaces without sodium curing. However, we offer processing and sodium curing services. If you purchase our PTFE rods, we can solve all your problems in one go.
PTFE rods cannot be directly glued. Because of PTFE’s chemical inertness, it hardly reacts with any physicochemical substances, so ordinary glues will not work. However, it can be glued using other methods. These include special surface activation treatments such as sodium treatment, plasma treatment, and chemical etching. Alternatively, specialized adhesives, such as epoxy structural adhesives, polyurethane adhesives, or special fluoroplastic adhesives, can be applied to the surface of the PTFE rod, making it bondable.
Of course! HANSA’s PTFE rods are FDA-certified and we possess the relevant safety certificates. Furthermore, they can be used in the food industry for the following reasons: PTFE has a non-stick surface, preventing it from absorbing food residue or beverage liquids; it is chemically inert, reacting almost entirely with no chemicals. PTFE rods are commonly used to make seals, bearings, rollers, cutters, and other components. When purchasing, be sure to choose food-grade PTFE rods and ensure the operating temperature does not exceed 260 degrees Celsius.
Yes, PTFE rods are also called Teflon rods. PTFE and Teflon are essentially the same thing, both referring to polytetrafluoroethylene (PTFE). The difference is that Teflon is a registered trademark, a brand name. Teflon was launched by DuPont and later transferred to Chemours. The word Teflon has brand recognition, and it’s the most familiar name to the public. However, the quality of a material depends on its performance, and material performance depends on the grade of its raw materials and processing technology, not its name.
Depending on the manufacturing process, different sizes are available. Extruded PTFE rods have diameters of 4-200mm and lengths of 1/2/3m; molded PTFE rods have diameters of 20-1000mm and lengths of 100-1000mm, with larger diameters having lengths of 300-500mm. If PTFE rods contain filler materials, such as glass fiber, carbon fiber, bronze, carbon powder, or graphite, their diameter is typically less than 300mm.
cutting,thermoplastic welding,drilling,bending,thermo forming,polishing,gluing,Injection Molding and CNC Milling。
Of course! We have complete processing equipment and mature processing technology, such as saw cutting, laser cutting, CNC cutting, thermoplastic welding, drilling, bending, thermo forming, polishing, gluing, injection molding, and CNC milling.
Industry standards mainly include ASTM (USA), ISO (international), SAE/AMS (aerospace), FDA food-grade standards, and RoHS/REACH environmental compliance standards. ASTM further includes D1710 (Extruded and Molded PTFE Rods, Dimensional Tolerances, Physical Properties, and Grading), D4894 (Raw Material Standard), and D4895 (Dispersion Resin Standard). ISO includes ISO 13000 and ISO 12086.We have all the industry standard certificates and can provide them to you.
Excellent chemical corrosion resistance, extremely low coefficient of friction of 0.04, non-adhesive surface, and extremely wide temperature range (-292℉~500℉) are all qualities that other materials cannot possess simultaneously.
In terms of color, pure PTFE is milky white or ivory white. Recycled or counterfeit materials may appear blackish, dull, or yellowish. It has no smell; if it has a plastic smell or a pungent odor when burned, it is of inferior quality. It feels like oil or wax with low resistance; if it feels rough to the touch, it may be fake PTFE. Pure PTFE will not change color or expand when placed in strong acids or alkalis.We use 100% virgin PTFE resin, no regrind or recycled material.















