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    • 7. 发明申请
    • Air Disk Brake Caliper Pre-Stressing Method and Pre-Stressed Caliper Apparatus
    • 空气盘式制动钳预应力法和预应力卡钳装置
    • US20100236875A1
    • 2010-09-23
    • US12408321
    • 2009-03-20
    • Ronald S. PlantanRichard L. Lantz, JR.
    • Ronald S. PlantanRichard L. Lantz, JR.
    • F16D55/00B23P15/00G01L5/28
    • B23P9/04B23P15/18F16D55/22F16D2055/0016F16D2200/0013F16D2250/00F16D2250/0092
    • A cast iron brake caliper with improved fatigue life, and a process and process equipment for pre-stressing a cast iron brake caliper to provide improved fatigue life, is provided. In the process, a load is applied to a cast iron caliper, where the load is high enough to locally yield and plastically deform the cast iron material, but not high enough to cause material failure, such as cracking. Upon load removal, residual compressive stresses in the cast iron caliper lower the mid-point of the stress range the plastically-deformed region of the caliper sees during in-service use, and thereby lowers the peak stress seen in this region, increasing fatigue life. The process permits a cast iron brake caliper to be designed to use less material and thus fit within constrained wheel rim envelopes, without the need to resort to high cost materials or other alternative design strategies.
    • 提供了具有改善疲劳寿命的铸铁制动钳,以及用于预应力铸铁制动钳以提供改善的疲劳寿命的工艺和工艺设备。 在此过程中,负载被施加到铸铁卡尺上,其中负载高到足以局部屈服并使铸铁材料塑性变形,但不足够高以引起材料破坏,例如开裂。 在卸载时,铸铁钳中的残余压应力降低了在使用过程中卡尺的塑性变形区域的应力范围的中点,从而降低了在该区域中看到的峰值应力,从而增加了疲劳寿命 。 该工艺允许铸铁制动钳被设计成使用较少的材料并因此适合于限制的轮辋包围内,而不需要采用高成本材料或其他替代设计策略。