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Fiber deformation behavior of discontinuous CFRTP in gear forging

机译:齿轮锻造中非连续CFRTP的纤维变形行为

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摘要

The purpose of the study is to elucidate fiber deformation behavior during the forging of a spur gear by using a carbon fiber reinforced thermoplastic billet. The billet was composed of PA6/UD chips with a fiber length of 30 mm and fiber volume fraction of 50. A gear forging mold was developed to deform the billet into a gear shape without cutting the fibers. Three types of billets were prepared: a horizontal billet with fibers orientated in the X and the Y directions, a vertical billet with fibers orientated in the Z and the X directions, and a random billet with fibers randomly orientated in the X-Y plane. The fibers along the tooth profile were formed using the horizontal and vertical billets. The adjacent teeth were connected by the fibers. A maximum tooth bending strength was 500 MPa. The delamination occurred under the tooth valley. The orientation of fibers in the teeth using the random billet was also random. The fracture occurred in the middle of the tooth. The results indicated that the fiber orientation in the billet is strongly correlated to the fiber orientation in the gear teeth and the tooth strength. The fiber orientation in the billet proposed in the study can form a tooth with fibers along its profile and with high strength.
机译:该研究的目的是阐明使用碳纤维增强热塑性坯料锻造正齿轮过程中的纤维变形行为。坯料由PA6/UD芯片组成,纤维长度为30 mm,纤维体积分数为50%。开发了一种齿轮锻造模具,可在不切割纤维的情况下将钢坯变形为齿轮形状。制备了三种类型的坯料:纤维在X和Y方向上取向的水平坯料,纤维在Z和X方向取向的垂直坯料,以及纤维在X-Y平面上随机取向的随机坯料。沿齿形的纤维是使用水平和垂直坯料形成的。相邻的牙齿通过纤维连接。最大齿弯强度为500 MPa。分层发生在牙谷下。使用随机坯料的牙齿中纤维的取向也是随机的。骨折发生在牙齿中间。结果表明:坯料中的纤维取向与齿轮齿中的纤维取向和齿强度密切相关。研究中提出的坯料中的纤维取向可以形成具有纤维的齿,并且具有高强度。

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