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基于RAMSIS的拖拉機駕駛室人機工程布置設(shè)計與測試
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國家重點研發(fā)計劃項目(2017YFD0700104)和拖拉機動力系統(tǒng)國家重點實驗室開放項目(SKT2022002)


Design and Test of Ergonomic Layout for Tractor Cab Based on RAMSIS
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    摘要:

    針對目前拖拉機駕駛室設(shè)計中人機工程操縱性和舒適性存在的不足,,根據(jù)GB/T 21935—2008標準對人體各個關(guān)節(jié)部位角度及長度的定義,,結(jié)合GB/T 6235—2004對座椅標志點位置的推薦,通過理論計算建立人體各關(guān)節(jié)的數(shù)學模型,?;赗AMSIS軟件對人體操縱進行仿真分析,提出針對GB/T 21935—2008標準中規(guī)定的人機操縱舒適區(qū)和可及區(qū)優(yōu)化后的范圍,,構(gòu)建駕駛座椅兩側(cè)人體操作舒適區(qū)三維模型,,結(jié)合RAMSIS軟件對現(xiàn)有的拖拉機駕駛室內(nèi)部操縱部件進行了校核優(yōu)化,。腳油門踏板面由最初與地板面夾角45°調(diào)整為35°,并將腳油門位置整體向外移25mm,,制動踏板面寬度減短40mm,,同時將主變速桿距離地面265mm處結(jié)構(gòu)向外調(diào)整20mm,手制動初始位置抬高45mm,。對優(yōu)化后樣機內(nèi)各部件操縱力和行程進行實際測量及場地試驗,,驗證了提出的人體操作舒適區(qū)三維模型的正確性。本研究為拖拉機駕駛室人機工程設(shè)計提供了一個操縱部件布置位置舒適區(qū)的數(shù)學模型,,為后續(xù)拖拉機駕駛室設(shè)計提供參考,,拓展了人機工程學在拖拉機設(shè)計領(lǐng)域內(nèi)的應(yīng)用,并提高拖拉機駕駛的舒適性,。

    Abstract:

    Due to the shortcomings of ergonomics and comfort in the design of tractor cabs, the mathematical model of each joint of the human body was established by theoretical calculation. The model was based on a definition of the angle and length of each joint of the human body in GB/T 21935—2008 standard, and the recommendation of GB/T 6235—2004 on the seat marking points position. Based on the simulation analysis of human manipulation based on RAMSIS software, a three-dimensional model of human manipulation comfort zone on both sides of the driver's seat was constructed based on the optimized range of human manipulation comfort zone and accessibility zone specified in GB/T 21935—2008 standard. Combined with RAMSIS software, the existing tractor cab internal control components were optimized. The included angle between the foot accelerator pedal surface and the floor surface was adjusted from 45°to 35°. The overall position of the foot accelerator was shifted outward by 25mm, and the width of the brake pedal surface was reduced by 40mm. At the same time, the structure at the 265mm distance from the ground of the main gear lever was adjusted outward by 20mm, and the initial position of the hand brake was raised by 45mm. Experiments were carried out on the optimized prototype, and the control force and stroke of each component were measured to verify the correctness of the proposed three-dimensional model of the human operation comfort zone. During the present study, a mathematical model of the comfort zone and the arrangement position of the control components was provided for the ergonomic design of the tractor cab. The research result could provide a reference for the tractor cab design. Also, it would expand the application of ergonomics in the field of tractor design and improve the driving comfort of tractors.

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任德良,徐書雷,王興偉,陳廷坤,郭暉.基于RAMSIS的拖拉機駕駛室人機工程布置設(shè)計與測試[J].農(nóng)業(yè)機械學報,2022,53(s2):303-309. REN Deliang, XU Shulei, WANG Xingwei, CHEN Tingkun, GUO Hui. Design and Test of Ergonomic Layout for Tractor Cab Based on RAMSIS[J]. Transactions of the Chinese Society for Agricultural Machinery,2022,53(s2):303-309.

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  • 收稿日期:2022-06-18
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  • 在線發(fā)布日期: 2022-07-25
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