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Design systems for gear elements made of cotton fiber-reinforced plastics

机译:棉纤维增强塑料齿轮元件的设计系统

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摘要

We look on the cotton fiber reinforced plastics as industrial gear materials, and have been developing design systems for industrial gears made of cotton fiber-reinforced plastics. In this report, we deal with a method estimating for tooth root stresses caused by bending movements under running conditions. The gear material used was cotton fiber plain woven cloth reinforced phenolic resin laminates. Paper-reinforced phenolic resin laminates, a commonly used material, was used as a control for comparison. The main dimensions of the gears were module 3-5 mm and tooth width 25 mm. First, accelerations of gears were measured under running conditions to estimate dynamic performance. Second, fracture tests of gear teeth were carried out under bending loads. Different fracture modes at tooth roots for cotton fiber-reinforced plastics and phenolic resin gears were observed. The fractures occurred at a high position from the tooth root in the case of the cotton fiber-reinforced plastics gear because the cotton fiber-reinforced plastics had excellent cleavage and shear strength. This gear also had higher strength for tooth bending loads. Third, the mechanical properties of the gears were researched by tensile, bending, and shearing tests. It was clear that the cotton fiber-reinforced plastics had excellent properties in cleavage fracture between laminates and shear strength. Finally, we proposed a design method for this gear, which considers the cleavage and shear strength.
机译:我们将棉纤维增强塑料视为工业齿轮材料,并一直在开发由棉纤维增强塑料制成的工业齿轮的设计系统。在此报告中,我们处理了一种估算在运行条件下由弯曲运动引起的齿根应力的方法。使用的齿轮材料是棉纤维平织布增强的酚醛树脂层压板。纸增强酚醛树脂层压板(一种常用材料)被用作对照进行比较。齿轮的主要尺寸是3-5毫米模数和25毫米齿宽。首先,在运行条件下测量齿轮的加速度以估算动态性能。其次,在弯曲载荷下进行了轮齿的断裂试验。观察到棉纤维增强塑料和酚醛树脂齿轮在齿根处的断裂方式不同。在棉纤维增强塑料齿轮的情况下,断裂发生在齿根的较高位置,因为棉纤维增强塑料具有优异的解理和剪切强度。该齿轮还具有较高的强度,可承受弯曲牙齿的载荷。第三,通过拉伸,弯曲和剪切试验研究了齿轮的机械性能。显然,棉纤维增强塑料在层压材料之间的断裂断裂和剪切强度方面具有优异的性能。最后,我们提出了该齿轮的设计方法,该方法考虑了劈裂和剪切强度。

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