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Static friction of stainless steel wire rope-rubber contacts

机译:不锈钢钢丝绳-橡胶触点的静摩擦

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摘要

Little is known about static friction of stainless-steel wire ropes ('cables') in contact with soft rubbers, an interface of potential importance for rigidifiable medical instruments. Although friction theories imply that the size and profile of the cables affect static friction, there are no confirmative data for stainless-steel cable-rubber contacts. Static friction was measured between five cable types (0.18, 0.27 and 0.45 mm diameter, twisted in 1 × 7,1 × 19, or 7 × 7 strands) and latex, nitrile, and silicone rubber. Mean static friction coefficients of the cables ranged over 0.27-0.31, 0.25-0.27, and 0.44-0.53 for nitrile, silicone, and latex, respectively. Overall, the cable type had little effect on static friction. For all cables, friction was twice as high for latex as for nitrile rubber, which had slightly higher friction than silicone rubber. The higher static friction for nitrile compared to silicone rubber despite silicone rubber being significantly softer could be caused by the high polar surface free energy of nitrile rubber. Common friction theories were valuable in predicting the effect of cable profiles and rubber properties on static friction but should not be applied without considering interaction effects. Static friction seems to be a minor factor when selecting cables for practical applications involving cable-rubber contacts.
机译:对于与软橡胶接触的不锈钢钢丝绳(“电缆”)的静摩擦,人们所知甚少。尽管摩擦理论暗示电缆的尺寸和外形会影响静摩擦,但尚无关于不锈钢电缆-橡胶触点的确定性数据。测量了五种电缆类型(直径为0.18、0.27和0.45 mm,以1×7,1×19或7×7股绞合)与乳胶,丁腈和硅橡胶之间的静摩擦。对于腈,硅树脂和乳胶,电缆的平均静摩擦系数分别在0.27-0.31、0.25-0.27和0.44-0.53范围内。总体而言,电缆类型对静摩擦的影响很小。对于所有电缆,乳胶的摩擦力是丁腈橡胶的两倍,丁腈橡胶的摩擦力比硅橡胶略高。尽管硅橡胶显着柔软,但丁腈橡胶相比硅橡胶具有更高的静摩擦力,这可能是由于丁腈橡胶的高极性表面自由能所致。常见的摩擦理论在预测电缆轮廓和橡胶性能对静摩擦的影响方面很有价值,但在不考虑相互作用影响的情况下不应应用。在涉及电缆橡胶接触的实际应用中选择电缆时,静摩擦似乎是次要因素。

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