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VHCF strength of helical compression springs - Influence of heat treatment temperature before shot peening

机译:螺旋压缩弹簧的VHCF强度 - 热处理温度的影响喷丸前

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Previous fatigue tests show that the heat treatment temperature has a significant influence on high cycle fatigue behaviour of helical compression springs. In order to investigate the effect of the heat treatment temperature on the fracture behaviour and the cyclic life, fatigue tests in the very high cycle regime (VHCF) were conducted.The tested springs were manufactured from oil hardened and tempered SiCr-alloyed valve spring steel wire with a diameter of d= 1.6 mm. After winding and grinding of the spring endings, the springs were heat treated at either 360°C or 400°C for 30 minutes. In order to generate compressive residual stresses in the surface area, the springs were shot peened. After shot peening, the springs were again annealed at 240°C for 30 minutes.Fatigue tests were conducted at 40 Hz using a special spring fatigue device. Up to 900 springs were tested simultaneously at various stress levels to 5-10~8 or 10~9 cycles. Fractured springs were investigated by means of a stereomicroscope as well as a scanning electron microscope to analyse the fracture behaviour and failure mechanisms. The vast majority of the springs show crack initiation at the surface at the inner side of the coil. Less frequently, crack initiation occurs at subsurface locations. Our results show that heat treatment at a temperature of 360°C leads to four times more subsurface cracks than at a temperature of 400°C and reduces the overall fatigue life time.
机译:以前的疲劳试验表明,热处理温度对螺旋压缩弹簧的高循环疲劳行为具有显着影响。为了研究热处理温度对骨折行为的影响和循环寿命,进行了非常高循环状态(VHCF)的疲劳试验。测试的弹簧由油硬化和钢化SiCr合金阀弹簧钢制成直径为d = 1.6毫米的电线。在绕组和研磨弹簧结束之后,将弹簧在360℃或400℃下进行热处理30分钟。为了在表面积中产生压缩残余应力,弹簧被喷丸射击。在喷丸后,弹簧再次在240℃下退火30分钟。使用特殊的弹簧疲劳装置在40赫兹进行速度试验。在各种应力​​水平上同时测试高达900个弹簧至5-10〜8或10〜9次循环。通过立体显微镜以及扫描电子显微镜来研究裂缝弹簧,以分析裂缝行为和失效机制。绝大多数弹簧在线圈内侧的表面上显示出裂缝启动。较少,在地下位置发生裂缝启动。我们的结果表明,360°C温度的热处理导致地下裂缝的4倍,比400°C的温度更高,并降低了整体疲劳寿命。

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