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Influence of manufacturing process on fatigue resistance of high strength steel bolts for connecting rods

机译:制造过程对连杆高强度钢螺栓疲劳电阻的影响

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摘要

The connecting rod (or conrod) is an important component of an internal combustion engine. An eventual failure of the bolts clamping the big end of conrods can cause failure of the engine; for this reason, they are addressed as "critical fasteners". Bolts manufacturers must guarantee steel purity and avoid any surface defects, thread forming laps, surface decarburization, surface phosphate diffusion or hydrogen embrittlement risk in order to increase their reliability. This paper is focused on coating treatments of bolts and on their effect on fatigue life. An experimental testing campaign has been performed to investigate the effect of Mn-phosphate coating and micro Zn- phosphate coating on fatigue performances of the bolts, compared with the not coated ones. Particular attention is paid to the surface preparation of the bolt (i.e. by acid pickling or sand-blasting) before the final phosphate coating operation. Diffusible and total hydrogen has been measured on all the bolts to verify the possible influence of hydrogen embrittlement.
机译:连杆(或CONROD)是内燃机的重要组成部分。夹紧螺栓的最终失败夹紧圆锥体的大端可能导致发动机失败;出于这个原因,它们被称为“关键紧固件”。螺栓制造商必须保证钢纯度,避免任何表面缺陷,螺纹形成圈,表面脱碳,表面磷酸盐扩散或氢气脆化风险,以提高其可靠性。本文的重点是涂层螺栓处理和对疲劳寿命的影响。已经进行了实验测试,以研究Mn-磷酸盐涂层和微Zn-磷酸涂层对螺栓疲劳性能的影响,与未涂覆的相比。在最终磷酸涂层操作之前,特别注意螺栓的表面制备(即通过酸酸洗或喷砂)。在所有螺栓上测量扩散和总氢以验证氢脆的可能影响。

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