首页> 外文会议>Motorsports Engineering Conference and Exhibition >Horsepower Retention by ISF (Isotropic Superfinishing) of Automotive Racing Components
【24h】

Horsepower Retention by ISF (Isotropic Superfinishing) of Automotive Racing Components

机译:由ISF(各向同性超食)汽车赛车组件的马力保留

获取原文

摘要

Automotive power and drivetrain components typically transfer the energy from fuel combustions through a series of metal-to-metal mechanical components. Typical examples of metal-to-metal components include bearings, camshafts rotation and gear teeth in a transmission or differential. The normal manufacturing steps for bearings and camshafts typically include various machining operations that normally end with a final grinding step. For economical reasons, automotive transmission and differential gears are usually lapped to generate the final surface finish. A careful examination of the as-manufactured surface of these components reveals a polishing pattern associated with the final grinding or lapping step used to finish the component. Typically the pattern is visible as parallel rows of micro-asperity peaks and valleys. In operation these mechanical components work by engaging their complementary partners. As such, bearings roll in races, gear teeth roll and slide against other gear teeth and camshafts engage cam followers. The presence of the micro-asperity peaks and valleys on the surface of these components reduces the actual available area of metal-to-metal contact. This results in frictional heat generation and a loss of engine horsepower. This paper will examine the use of the ISF Process to improve the micro surface of automotive metal-to-metal contact surfaces. Evidence will be presented demonstrating how the improved micro surface of ISF-processed parts retains horsepower, increases component durability and reduces operating temperature.
机译:汽车动力和动力传动系统组件通常通过一系列金属到金属机械部件将能量从燃料燃烧转移。金属到金属部件的典型示例包括轴承,凸轮轴旋转和齿轮齿处的透射或差异。轴承和凸轮轴的正常制造步骤通常包括通常以最终研磨步骤结束的各种加工操作。出于经济原因,通常采用汽车变速箱和差动齿轮以产生最终表面光洁度。仔细检查这些组分的制造表面揭示了与用于完成组分的最终研磨或研磨步骤相关的抛光图案。通常,图案是可见的,作为微粗糙峰和谷的平行行。在操作这些机械部件通过与其互补的合作伙伴合作。因此,轴承卷在比赛中,齿轮齿滚动并滑动其他齿轮齿,凸轮轴啮合凸轮追随者。这些组分表面上的微粗糙峰和谷的存在减少了金属到金属接触的实际可用区域。这导致摩擦发热和发动机马力的损失。本文将研究ISF过程的使用,以改善汽车金属到金属接触表面的微面。将提出证据,证明了如何改进的ISF加工部件的微表面保留马力,增加了分量耐久性并降低了工作温度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号