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用于翻车保护结构(ROPS)安装的工程塑料评估。

Evaluation of engineering plastic for rollover protective structure (ROPS) mounting.

作者信息

Comer R S, Ayers P D, Liu J

机构信息

Department of Biosystems Engineering and Soil Science, The University of Tennessee, Knoxville, Tennessee, USA.

出版信息

J Agric Saf Health. 2007 Apr;13(2):137-45. doi: 10.13031/2013.22615.

Abstract

Agriculture has one of the highest fatality rates of any industry in America. Tractor rollovers are a significant contributor to the high death rate. Rollover protective structures (ROPS) have helped lower these high fatality rates on full-size tractors. However, a large number of older tractors still do not use ROPS due to the difficulty of designing and creating a mounting structure. To help reduce this difficulty, engineering plastics were evaluated for use in a ROPS mounting structure on older tractors. The use of engineering plastics around axle housings could provide a uniform mounting configuration as well as lower costs for aftermarket ROPS. Various plastics were examined through shear testing, scale model testing, and compressive strength testing. Once a material was chosen based upon strength and cost, full-scale testing of the plastic's strength on axle housings was conducted. Finally, a mounting structure was tested in static ROPS tests, and field upset tests were performed in accordance with SAE Standard J2194. Initial tests revealed that the ROPS mounting structure and axle housing combination had higher torsional strength with less twisting than the axle housing alone. An engineering plastic ROPS mounting structure was easily successful in withstanding the forces applied during the static longitudinal and lateral ROPS tests. Field upset testing revealed that the mounting structure could withstand the impact loads seen during actual upsets without a failure. During both static testing and field upset testing, no permanent twisting of the mounting structure was found. Engineering plastic could therefore be a viable option for a universal ROPS mounting structure for older tractors.

摘要

在美国,农业是所有行业中死亡率最高的行业之一。拖拉机翻车是导致高死亡率的一个重要因素。翻车保护结构(ROPS)有助于降低全尺寸拖拉机的高死亡率。然而,由于设计和制造安装结构存在困难,大量旧拖拉机仍未使用ROPS。为了帮助降低这一难度,对工程塑料在旧拖拉机ROPS安装结构中的应用进行了评估。在轴壳周围使用工程塑料可以提供统一的安装配置,并降低售后ROPS的成本。通过剪切测试、比例模型测试和抗压强度测试对各种塑料进行了检查。一旦根据强度和成本选择了一种材料,就对该塑料在轴壳上的强度进行了全尺寸测试。最后,在静态ROPS测试中对一种安装结构进行了测试,并按照SAE标准J2194进行了现场翻车测试。初步测试表明,ROPS安装结构与轴壳的组合比单独的轴壳具有更高的抗扭强度,扭转更小。一种工程塑料ROPS安装结构在静态纵向和横向ROPS测试中轻松成功地承受了施加的力。现场翻车测试表明,该安装结构能够承受实际翻车过程中出现的冲击载荷而不会失效。在静态测试和现场翻车测试中,均未发现安装结构有永久性扭曲。因此,工程塑料可能是旧拖拉机通用ROPS安装结构的一个可行选择。

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