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Wear Resistance of Thick Diamond Like Carbon Coatings Against Polymeric Materials Used in Single Screw Plasticizing Technology

机译:厚金刚石如碳涂层对单螺杆塑化技术中使用的聚合物材料耐碳涂层的耐磨性

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Wear on the screw and barrel surface accompany polymer single screw plasticizing technology from the beginning. In general, wear on screws can be reduced by using nitrided steel surfaces, fused armour alloys on the screw flights and coatings. However, DLC-coatings (Diamond Like Carbon) comprise a number of interesting properties such as a high hardness, a low coefficient of friction and an excellent corrosion resistance due to their amorphous structure. The wear resistance of about 50 μm thick DLC-coatings against polyamide 6.6, polybutylene terephthalate and polypropylene is investigated in this paper. The tribology in the solids conveying zone of a single screw extruder until the beginning of melting is evaluated using a pin on disc tribometer and a so called screw tribometer. The polymeric pins are pressed against coated metal samples using the pin on disc tribometer and the tests are carried out at a defined normal force and sliding velocity. The screw tribometer is used to perform tribological experiments between polymer pellets and rotating coated metal shafts simulating the extruder screw. Long term experiments were performed to evaluate the wear resistance of the DLC-coating. A reduction of the coefficient of friction can be observed after a frictional distance of about 20 kilometers using glass fibre reinforced polymeric materials. This reduction is independent on the polymer and accompanied by a black layer on the wear surface of the polymeric pins. The DLC-coated metal samples show an up to 16 μm deep wear track after the 100 kilometer test period against the glass fiber filled materials only.
机译:螺杆和筒表面上的磨损伴随着聚合物单螺杆从一开始就塑化技术。通常,通过使用氮化钢表面,螺杆飞行和涂层上的熔体铠装合金可以减少螺钉上的磨损。然而,DLC涂层(金刚石如碳)包括许多有趣的性质,例如高硬度,低摩擦系数和由于它们的无定形结构引起的优异耐腐蚀性。本文研究了对聚酰胺6.6,聚丁二醇酯和聚丙烯的约50μm厚的DLC涂层的耐磨性。单螺杆挤出机的固体输送区中的摩擦学学用圆盘摩擦计的销和所谓的螺杆摩擦计评估熔点的开始。使用销钉上的涂覆金属样品按压聚合物销,在盘状摩擦计上,测试以限定的正常力和滑动速度进行。螺杆摩擦计用于在聚合物粒料和旋转涂层金属轴之间进行摩擦学实验,模拟挤出机螺钉。进行长期实验以评价DLC涂层的耐磨性。在使用玻璃纤维增​​强聚合物材料约20千米的摩擦距离之后,可以观察到摩擦系数的减少。这种还原在聚合物上独立并伴随着聚合物销的磨损表面上的黑色层。 DLC涂覆的金属样品仅在玻璃纤维填充材料的100公里的测试期后显示出高达16μm的深磨损轨道。

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