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Internally architectured materials with directionally asymmetric friction

机译:内部构造的材料具有方向不对称的摩擦

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摘要

Internally Architectured Materials (IAMs) that exhibit different friction forces for sliding in the opposite directions are proposed. This is achieved by translating deformation normal to the sliding plane into a tangential force in a manner that is akin to a toothbrush with inclined bristles. Friction asymmetry is attained by employing a layered material or a structure with parallel ‘ribs’ inclined to the direction of sliding. A theory of directionally asymmetric friction is presented, along with prototype IAMs designed, fabricated and tested. The friction anisotropy (the ξ-coefficient) is characterised by the ratio of the friction forces for two opposite directions of sliding. It is further demonstrated that IAM can possess very high levels of friction anisotropy, with ξ of the order of 10. Further increase in ξ is attained by modifying the shape of the ribs to provide them with directionally dependent bending stiffness. Prototype IAMs produced by 3D printing exhibit truly giant friction asymmetry, with ξ in excess of 20. A novel mechanical rectifier, which can convert oscillatory movement into unidirectional movement by virtue of directionally asymmetric friction, is proposed. Possible applications include locomotion in a constrained environment and energy harvesting from oscillatory noise and vibrations.
机译:提出了内部建筑材料(IAM),它们在向相反方向滑动时会表现出不同的摩擦力。这是通过将垂直于滑动平面的变形转换为切向力来实现的,该方式类似于具有倾斜刷毛的牙刷。摩擦不对称是通过采用分层材料或具有平行于“滑动”方向的平行“肋”的结构来实现的。提出了方向非对称摩擦的理论,以及设计,制造和测试的原型IAM。摩擦各向异性(ξ系数)的特征是两个相反滑动方向的摩擦力之比。进一步证明,IAM可以具有非常高的摩擦各向异性,其ξ为10的数量级。通过修改肋的形状,使它们具有方向相关的弯曲刚度,可以进一步提高ξ。通过3D打印生产的原型IAM表现出真正的巨大的摩擦不对称性,ξ超过20。提出了一种新型机械整流器,该整流器可以通过方向性非对称摩擦将振荡运动转换为单向运动。可能的应用包括在受限环境中的运动以及从振荡噪声和振动中收集能量。

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