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钢丝绳与摩擦衬垫不同配副界面下的黏滑特性
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作者 郑强国 郭永波 +1 位作者 任露 赵淑琳 《起重运输机械》 2022年第7期32-36,共5页
摩擦衬垫为摩擦式提升机提供摩擦力,作为黏弹性聚合物,其与钢丝绳的黏滑摩擦行为关系到摩擦力的稳定性。文中研究了K25、G30、GM-3摩擦衬垫在不同接触载荷、滑移速度、润滑条件以及煤粉规格下的黏滑摩擦行为,结果表明:摩擦系数在干摩擦... 摩擦衬垫为摩擦式提升机提供摩擦力,作为黏弹性聚合物,其与钢丝绳的黏滑摩擦行为关系到摩擦力的稳定性。文中研究了K25、G30、GM-3摩擦衬垫在不同接触载荷、滑移速度、润滑条件以及煤粉规格下的黏滑摩擦行为,结果表明:摩擦系数在干摩擦、煤粉、淋水、涂脂等润滑条件依次降低。G30黏着滑移比随着接触载荷的增大而增大,GM-3、K25的黏着滑移比随着接触载荷的增大先减小后增大。G30、GM-3的黏着滑移比随着滑移速度增大先减小后增大,在7.50 mm/s下黏着滑移比最小。K25摩擦衬垫在不同滑移速度下黏着滑移比数值稳定,均在0.25上下波动。3种材料的黏着滑移比在干摩擦、淋水、水油混合和涂脂状态下均依次减小。在干摩擦状态下GM-3的黏着滑移比最大,K25次之,G30最小。 展开更多
关键词 钢丝绳 摩擦衬垫 摩擦系数 黏着滑移比
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Analysis of torque transmitting behavior and wheel slip prevention control during regenerative braking for high speed EMU trains 被引量:4
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作者 Kun Xu Guo-Qing Xu Chun-Hua Zheng 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2016年第2期244-251,共8页
The wheel-rail adhesion control for regenerative braking systems of high speed electric multiple unit trains is crucial to maintaining the stability,improving the adhesion utilization,and achieving deep energy recover... The wheel-rail adhesion control for regenerative braking systems of high speed electric multiple unit trains is crucial to maintaining the stability,improving the adhesion utilization,and achieving deep energy recovery.There remain technical challenges mainly because of the nonlinear,uncertain,and varying features of wheel-rail contact conditions.This research analyzes the torque transmitting behavior during regenerative braking,and proposes a novel methodology to detect the wheel-rail adhesion stability.Then,applications to the wheel slip prevention during braking are investigated,and the optimal slip ratio control scheme is proposed,which is based on a novel optimal reference generation of the slip ratio and a robust sliding mode control.The proposed methodology achieves the optimal braking performancewithoutthewheel-railcontactinformation.Numerical simulation results for uncertain slippery rails verify the effectiveness of the proposed methodology. 展开更多
关键词 High speed electric multiple unit(EMU) train Regenerative braking Wheel-rail adhesion Optimal slip ratio
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