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The combined influence of helix angle and total contact ratio on the p-FEM calculated tooth root stress in cylindrical gears

机译:螺旋角度和总接触比对圆柱齿轮P-FEM计算齿根应力的综合影响

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Many parametrical studies about the effect of the helix angle on the maximum tooth root stress on cylindrical gears were conducted by means of a p-FEM (polynomial Finite Element Method) analysis, using models that comprehend all the contacting teeth and the adjacent ones. The studies were conducted in a way that the helix angle was varied from 0 to 35 degrees, keeping the transverse section constant (i.e. twisting the gears). Many non-HCR existing spur and helical gearsets, with different transverse contact ratio ε{sub}αtransmission ratio, pressure angle, correction factor, and facewidth to module ratio were examined. Neither profile modification, nor crowning were considered. For each gearset the maximum p-FEM-calculated tooth root stress in both pinion and gear drops considerably when the total contact ratio ε{sub}γreaches the value of 2. with a minimum noticed around ε{sub}γ=2.1÷2.4; then the stress rises monotonically except for a non-remarkable drop when ε{sub}γ reaches the value of 3. The p-FEM results were also compared with those based on ISO 6336-3 method B and AGMA 2001, showing noticeable differences.
机译:关于螺旋角对圆柱形齿轮最大齿根应力的许多参数研究通过P-FEM(多项式有限元方法)分析进行,使用理解所有接触齿和相邻的模型进行。以螺旋角度从0到35度变化,保持横截面恒定(即扭转齿轮)的方式进行研究。研究了许多非HCR现有的旋转齿轮和螺旋齿轮,具有不同的横向接触比ε{亚}ααααααααα{校正因子和面向模块比率。既不考虑剖面修改,也不考虑加冕。对于每个齿轮,当总接触比ε{sub}γγγγγ= 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.1 = 2.4 = 2.1±2.4时,齿轮和齿轮中的最大P-FEM计算的齿根应力显着降低。然后,当ε{sub}γ达到3.时,除了不显着的下降之外,压力会单调上升。与基于ISO 6336-3方法B和AGMA 2001的那些,也将P-FEM结果进行比较,显示出明显的差异。

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