电镀锌圆柱头螺钉断裂

F. Naumann, F. Spies
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引用次数: 0

摘要

发动机运行时间不长,8颗气缸盖螺钉断裂。它们由Fe-0.45C-1Cr钢制成,螺纹轧制,热处理至110 kg/sq mm抗拉强度,并进行电解镀锌。都是从线的根部断裂的。断口表面晶粒细小,未因摩擦而扩散。由于螺钉是电解镀锌的,因此导致“延迟断裂”。经验表明,这种类型的断裂出现在由高强度钢制成的生产部件上,这些部件在酸洗或电表面处理过程中吸收了氢。这类部件在连续受力过程中会在弹性极限以下发生断裂。这通常只发生在某一特定时间段届满之后,并且最好发生在应力集中的位置,例如截面或螺纹的变化。通常,氢不能用分析方法验证,因为在室温下长时间储存或在100至200℃下短时间加热后,大部分氢会再次逸出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fractures of Electro-Galvanized Cylinderhead Screws
Eight cylinderhead screws cracked after a short running time in motors. They were made of Fe-0.45C-1Cr steel, had rolled threads, were heat treated to 110 kg/sq mm tensile strength, and were electrolytically galvanized. All fractured at the root of the thread. The surfaces of fracture were fine-grained and had not spread by rubbing. Because the screws were electrolytically galvanized, failure resulted from “delayed fracture.” Experience has shown that this type of fracture is seen on production parts made of high-strength steels, which absorbed hydrogen during pickling or during a galvanic surface treatment. Such parts will rupture below the elastic limit during continuous stressing. This often occurs only after the expiration of a certain time period, and preferably at locations of stress concentrations such as changes in cross section or threads. As a rule, the hydrogen cannot be verified analytically because most of it escapes again after prolonged storage at room temperature or short heating at 100 to 200 deg C.
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