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Comparison of equipment used to measure shear properties in equine arena surfaces

机译:用于测量马竞技场表面剪​​切特性的设备比较

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摘要

The design of a novel apparatus, the Glen Withy torque tester (GWTT), for measuring horizontal shear properties in equine sport surfaces is described. Previous research has considered the effect of vertical loading on equine performance and injury but only limited discussion has concerned the grip or horizontal motion of the hoof. The horizontal support of the hoof by the surface must be sufficient to avoid excess slip without overloading the limb. The GWTT measures the torque necessary to twist an artificial hoof that is being pushed into the surface under a consistently applied vertical load. Its output was validated using a steel surface, then was used to test two sand and fibre surfaces (waxed and non-waxed) through rotations of 40–140°, and vertical loads of 157–1138 N. An Orono biomechanical surface tester (OBST) measured longitudinal shear and vertical force, whilst a traction tester measured rotational shear after being dropped onto the surfaces. A weak, but significant, linear relationship was found between rotational shear measured using the GWTT and longitudinal shear quantified using the OBST. However, only the GWTT was able to detect significant differences in shear resistance between the surfaces. Future work should continue to investigate the strain rate and non-linear load response of surfaces used in equestrian sports. Measurements should be closely tied to horse biomechanics and should include information on the maintenance condition and surface composition. Both the GWTT and the OBST are necessary to adequately characterise all the important functional properties of equine sport surfaces.
机译:描述了一种用于测量马运动表面水平剪切特性的新型设备Glen Gleny扭矩测试仪(GWTT)的设计。先前的研究已经考虑了垂直负载对马的性能和伤害的影响,但是只有很少的讨论涉及蹄的抓地力或水平运动。蹄在表面上的水平支撑必须足够避免过度滑移而不会使肢体过载。 GWTT测量在不断施加垂直载荷的情况下扭转被推入地面的人造蹄所需的扭矩。其输出使用钢表面进行了验证,然后用于通过旋转40–140°和垂直载荷157–1138 N来测试两个砂和纤维表面(打蜡和非打蜡)。Orono生物力学表面测试仪(OBST) )测量纵向剪切力和垂直力,而牵引力测试仪则放在掉落到表面上后测量旋转剪切力。发现使用GWTT测量的旋转剪切力和使用OBST量化的纵向剪切力之间存在微弱但重要的线性关系。但是,只有GWTT能够检测到表面之间的抗剪强度存在明显差异。未来的工作应继续研究马术运动表面的应变率和非线性载荷响应。测量应与马的生物力学紧密相关,并应包括有关维护条件和表面成分的信息。 GWTT和OBST都是充分表征马运动表面的所有重要功能特性所必需的。

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