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Experimental and finite element analysis on the performance of polyacetal/ carbon black nanocomposite gears

机译:多缩醛/炭黑纳米复合齿轮性能实验和有限元分析

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Gear specimens based on polyacetal (POM) containing nano-sized carbon black (CB) particles were produced using injection molding process. By employing a gear test rig, the wear and heat behavior of gears against meshing cycles and for different torques were investigated. Finite element method was employed to determine the gear tooth contact stress distribution against the meshing steps for pure POM and POM/CB nanocomposite gears. The morphology of worn gear tooth was studied by scanning electron microscopy. Differential scanning calorimetry (DSC) and dynamic mechanical thermal analysis (DMTA) assessments were performed to evaluate the crystallinity and viscoelastic responses. Different types of gear tooth wear, severe material flowing and cracking at the tooth surface were observed for neat POM gears. Carbon black reinforced POM gears exhibited improved wear and heat resistance as compared to the unreinforced gears. The presence of CB switched the wear mechanism from material flowing to abrasion particularly in the flank region of driven gear. A number of strengthening mechanisms including crack pinning and crack deflection were detected for nanocomposite gear samples. The DMTA results revealed that the POM/CB has higher storage modulus and lower loss factor as compared to pure POM. A correlation between DMTA result and gear performance was observed.
机译:采用注射成型工艺制备了含有纳米炭黑(CB)颗粒的聚甲醛(POM)齿轮试样。通过齿轮试验台,研究了齿轮在不同啮合周期和不同扭矩下的磨损和热行为。采用有限元方法对纯POM和POM/CB纳米复合材料齿轮的轮齿接触应力分布进行了研究。用扫描电镜研究了磨损齿轮的形貌。通过差示扫描量热法(DSC)和动态机械热分析(DMTA)评估结晶度和粘弹性响应。对于纯POM齿轮,观察到不同类型的轮齿磨损、严重的材料流动和齿面开裂。与未增强齿轮相比,炭黑增强POM齿轮具有更好的耐磨性和耐热性。CB的存在将磨损机制从材料流动转变为磨损,尤其是在从动齿轮的侧面区域。对纳米复合材料齿轮样品进行了多种强化机制的检测,包括裂纹钉扎和裂纹偏转。DMTA结果表明,与纯POM相比,POM/CB具有更高的储能模量和更低的损耗因子。DMTA结果与齿轮性能之间存在相关性。

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