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齿轮渗碳淬火变形及其改进措施 被引量:7
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作者 李爱花 《科技创新导报》 2008年第29期171-171,共1页
针对当前齿轮热处理变形对齿轮精度的影响:寻找出渗碳淬火齿轮热处理变形的某些规律,采取相应的改进措施;并且对齿向、齿形的变形可采取热前预修正方法,使热处理后变形减少对精度的影响;同时根据试验数据,改进热处理渗碳淬火工艺,减少... 针对当前齿轮热处理变形对齿轮精度的影响:寻找出渗碳淬火齿轮热处理变形的某些规律,采取相应的改进措施;并且对齿向、齿形的变形可采取热前预修正方法,使热处理后变形减少对精度的影响;同时根据试验数据,改进热处理渗碳淬火工艺,减少齿轮的变形。 展开更多
关键词 齿向变形 齿形变形 加工工艺
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AutoCAD技术在实验教学中的应用 被引量:1
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作者 兰琼 《实验科学与技术》 2003年第2期50-51,共2页
就齿轮范成法的标准齿形、正变位齿形、负变位齿形的传统实验方法与AutoCAD实验方法的两个方面进行实验教学探讨,进而探讨AutoCAD技术在机械原理实验教学中的应用问题。
关键词 齿轮范成法实验 计算机AutoCAD 三种齿形变形 实践教学
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某产品齿轮“蹋齿”问题分析 被引量:1
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作者 陈希友 《精密成形工程》 2010年第3期74-75,共2页
通过分析齿轮热处理和表面强化处理工艺后,得出了齿轮出现齿形严重变形(俗称"蹋齿")的原因是由于采用了表面渗氮工艺,破坏了之前调质的力学性能,导致硬度下降。提出了采用表面高频淬火的表面强化工艺,有效解决了齿轮蹋齿问题。
关键词 齿轮 表面渗氮 齿形变形 分析
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Deformation behaviour and microstructure evolution of AlMg6Mn alloy during shear spinning 被引量:5
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作者 Lj.RADOVIC M.NIKACEVIC B.JORDOVIC 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第5期991-1000,共10页
Deformation behavior and microstructure of AlMg6Mn alloy subjected to shear spinning were studied by means of mechanical characterization, optical and SEM+EDS microscopy. Specimens were shear spun on an industrial sp... Deformation behavior and microstructure of AlMg6Mn alloy subjected to shear spinning were studied by means of mechanical characterization, optical and SEM+EDS microscopy. Specimens were shear spun on an industrial spinning machine using different mandrels, providing reductions of wall thickness of 30%, 50% and 68%. The grain structure developed during shear spinning refines gradually. The grains elongate in axial direction with increase of reduction, and also stretches along circumferencial direction. Optimal combination of strength and elongation is observed. This is attributed to grain refinement and dislocation reactions with particles and atoms of Mg and Mn in solid solution. 展开更多
关键词 AlMg6Mn alloy shear spinning microstructure evolution deformation behaviour serrated yielding
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Effect of key factors on cold orbital forging of a spur bevel gear 被引量:1
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作者 庄武豪 董丽颖 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期277-285,共9页
Cold orbital forging is an advanced spur bevel gear forming technology. Generally, the spur bevel gear in the cold orbital forging process is formed by two steps: the preforming step and the final step. Due to the gre... Cold orbital forging is an advanced spur bevel gear forming technology. Generally, the spur bevel gear in the cold orbital forging process is formed by two steps: the preforming step and the final step. Due to the great importance of the final step to gear forming and its complication with interactive factors, this work aims at examining the influence of key factors on the final step in cold orbital forging of a spur bevel gear. Using the finite element(FE) method and control variate method, the influence rules of four key factors, rotation velocity of the upper tool, n, feeding velocity of the lower tool, v, tilted angle of the upper tool, γ, friction factor between the tools and the billet, m, on the geometry and the deformation inhomogeneity of the cold orbital forged gear are thoroughly clarified. The research results show that the flash becomes more homogeneous with increasing v, increasing m, decreasing n or decreasing γ. And the deformation of the gear becomes more homogeneous with increasing v, decreasing n or decreasing γ. Finally, a corresponding experiment is conducted, which verifies the accuracy of FE simulation conclusions. 展开更多
关键词 cold orbital forging FE modeling key factors spur bevel gears
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