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Mechanism of Hydrojoining and Approach to Increase Torsion Strength of Assembled Camshafts

机译:液压连接的机理及提高装配凸轮轴抗扭强度的方法

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摘要

Assembled hollow camshaft can be manufactured through hydrojoining process which has the advantages including joining multiple elements onto a tube in once loading, high joining strength, efficiency, and precision. The method of improving joining strength by using cams with noncircular hole was presented. Through numerical simulation and experiment, plastic deformation law of hydrojoining process was studied. The displacement of cam and tube, and the profile dimension change of cam during hydrojoining were obtained. The effect of hole shape of cams on joining strength was analyzed. The assembled hollow camshafts with casting iron cams used for a car engine and those with quenched steel cams for a truck engine were successfully manufactured using hydrojoining technology.
机译:组装后的空心凸轮轴可以通过液压连接工艺制造,其优点是一次加载即可将多个元件连接到管上,连接强度高,效率高,精度高。提出了采用带非圆孔的凸轮提高连接强度的方法。通过数值模拟和实验研究了水力连接过程的塑性变形规律。获得了凸轮和管的位移以及液压连接过程中凸轮的轮廓尺寸变化。分析了凸轮孔形状对连接强度的影响。使用液压连接技术成功地制造出用于汽车发动机的带有铸铁凸轮的空心凸轮轴和用于卡车发动机的带有淬火钢凸轮的空心凸轮轴。

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