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The Effect of Handhold Orientation, Size, and Wearing Gloves on Hand-Handhold Breakaway Strength

机译:手柄方向,大小和佩戴手套对手柄分离强度的影响

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Objective: The aim of this study was to quantify the effect of handhold orientation, size (diameter), and wearing a glove on the maximum breakaway strength between a hand and handhold. Background: Manual breakaway strength is known to be greatly reduced for vertical compared with horizontal handholds, but oblique orientations have yet to be studied. Method: For this study, 12 young adults (6 female) attempted to hold on to fixed overhead cylindrical handholds with one hand in low-speed simulated falls as forces on the handhold were recorded in two experimental designs. Breakaway strength was measured for (a) three different-sized cylinders in four orientations while the participants were using the dominant hand and (b) a single-sized cylinder in four orientations while the participants were bare-handed or wearing a glove on the nondominant hand. Results: Handhold orientation (p < .001),handhold diameter (p < .001), and wearing gloves (p < .001) significantly affected breakaway strength. Breakaway strength increased 75% to 94% as the orientation of the handhold was moved from vertical to horizontal. Breakaway strength decreased 8% to 13% for large-diameter (51-mm) handholds as compared with smaller diameters (22 mm to 32 mm), depending on orientation. Gloves may increase or decrease the ability to hang on depending on interface friction; greater friction increased breakaway force. Conclusion: Handles oriented perpendicular to the pull direction and high-friction gloves provide the greatest breakaway strength. Smaller handhold diameters than predicted by grip strength afford greater capability in these orientations. Application: These insights can be used to design handholds that increase the ability to support one's body weight and reduce the effort needed to pull or lift heavy items.
机译:目的:本研究的目的是量化手柄方向,大小(直径)以及戴手套对手与手柄之间最大分离强度的影响。背景:与水平握把相比,垂直握把的手动分离强度已知会大大降低,但是倾斜方向尚待研究。方法:在本研究中,有12名年轻人(6名女性)试图用一只手在低速模拟跌落中抓住固定的头顶圆柱形手柄,因为在两个实验设计中记录了手柄上的力。测量了以下情况的分离强度:(a)参与者使用惯用手时在四个方向上的三个不同大小的圆柱体,(b)参与者裸手或在非主体上戴着手套时在四个方向上的单个大小的圆柱体手。结果:手柄方向(p <.001),手柄直径(p <.001)和戴手套(p <.001)会显着影响分离强度。随着手柄的方向从垂直移动到水平,分离强度增加了75%至94%。与较小直径(22mm至32mm)相比,大直径(51mm)手柄的抗折强度降低了8%至13%。取决于界面摩擦,手套可能会增加或减少悬垂的能力;更大的摩擦力增加了分离力。结论:与拉力方向垂直的手柄和高摩擦手套可提供最大的脱离强度。比握力预测的更小的手柄直径在这些方向上具有更大的功能。应用:这些见解可用于设计可提高支撑体重的能力并减少拉或举重物的工作量的把手。

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