首页> 外文会议>SAE Brake Colloquium Exhibition >Disc Brake Squeal vs. Disc Pad Compressibility-Caliper Stiffness Interactions: Low-Frequency Squeal and High-Frequency Squeal vs. Differential Pad Wear
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Disc Brake Squeal vs. Disc Pad Compressibility-Caliper Stiffness Interactions: Low-Frequency Squeal and High-Frequency Squeal vs. Differential Pad Wear

机译:圆盘制动尖叫力VS.盘焊盘压缩性 - 卡尺刚度相互作用:低频尖叫和高频尖叫与差分垫磨损

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It is widely believed or speculated that higher pad compressibility leads to reduced brake squeal and that caliper design can affect brake squeal. After encountering anecdotal contradictory cases, this investigation was undertaken to systematically generate basic data and clarify the beliefs or speculations. In order to adjust pad compressibility, it is common to modify pad molding temperatures, pressures and times, which in addition to changing the compressibility, changes friction coefficient and physical properties of the pad at the same time. In order to separate these two effects, NAO disc pads were prepared under the same molding conditions while using different thicknesses of the underlayer to achieve different compressibilities, thus changing the compressibility only without changing the friction coefficient and physical properties of the pad. Test results show brake squeal occurrences increasing with increasing compressibility and increasing damping, contrary to the common belief. A combination of higher compressibility pads and higher caliper stiffness leads to increased brake squeal occurrences. The inner pad and outer pad wear rate difference affects disc squeal or caliper-knuckle assembly squeal generation. As the differential becomes smaller and smaller, more disc squeals occur and as the differential pad wear becomes larger, more caliper-knuckle squeals occur. There are indications that when the inner pad high pressure point is well matched against the outer pad high pressure point, in-plane disc squeals occur and when not matched, out-of-plane disc squeals occur.
机译:广泛认为或推测较高的垫压缩性导致较低的制动尖叫力降低,并且卡钳设计可以影响制动尖叫声。在遇到轶事矛盾案件后,对该调查进行了系统地生成了基本数据并澄清了信仰或投机。为了调节焊盘可压缩性,通常可以修改垫成型温度,压力和时间,除了改变压缩性之外,还可以同时改变垫的摩擦系数和物理性质。为了分离这两种效果,在相同的模制条件下制备Nao盘焊盘,同时使用不同厚度的底层来实现不同的压缩性,从而改变压缩性而不改变垫的摩擦系数和物理性质。试验结果表明,随着压缩性和增加阻尼的增加,制动尖叫率增加,与常见的信念相反。更高压缩焊盘和更高的卡钳刚度的组合导致增加的制动尖叫力发生。内垫和外垫磨损率差异影响圆盘尖叫或卡钳 - 关节组装尖叫声。随着差异变得较小并且更小,发生更多的盘尖叫并且随着差动垫磨损变大,发生更多的卡钳尖叫声。存在存在的迹象,当内焊盘高压点与外焊盘高压点充分匹配时,发生在面内盘尖叫并且当不匹配时,发生外平面的圆盘尖叫声。

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