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缺席与召唤——对海德格尔现代技术之问的一种解读 被引量:1
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作者 戴月华 《福建论坛(文史哲版)》 2000年第4期57-62,共6页
本文试图通过海德格尔对现代技术本质的分析 ,昭示海氏对现代技术问题思考的深刻性 :揭示现代技术是思之缺席的结果 ,又是思之缺席的典型 ;指出海氏召唤缺席之思的尝试 ;最后从海氏整个运思过程为其技术之问定位 ,以显现其追问的意义与... 本文试图通过海德格尔对现代技术本质的分析 ,昭示海氏对现代技术问题思考的深刻性 :揭示现代技术是思之缺席的结果 ,又是思之缺席的典型 ;指出海氏召唤缺席之思的尝试 ;最后从海氏整个运思过程为其技术之问定位 ,以显现其追问的意义与缺失。 展开更多
关键词 海德格尔 现代技术 本质 '座架' 运思方式
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Optimal Seat Suspension Design Using Genetic Algorithms 被引量:3
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作者 Wael Abbas Ossama B. Abouelatta +2 位作者 Magdy El-Azab Mamdouh El-Saidy Adel A. Megahed 《Journal of Mechanics Engineering and Automation》 2011年第1期44-52,共9页
The linear seat suspension is considered due to the low cost consideration therefore, the optimal linear seat suspension design method can be used for this purpose. In this paper, the design of a passive vehicle seat ... The linear seat suspension is considered due to the low cost consideration therefore, the optimal linear seat suspension design method can be used for this purpose. In this paper, the design of a passive vehicle seat suspension system was handled in the framework of linear optimization. The variance of the dynamic load resulting from the vibrating vehicle operating at a constant speed was used as the performance measure of a suspension system. Using 4-DOF human body model developed by Abbas et al., with linear seat suspension and coupled with half car model. A genetic algorithm is applied to solve the linear optimization problem. The optimal design parameters of the seat suspension systems obtained are kse = 3 012.5 N/m and cse = 1 210.4 N.s/m, respectively. 展开更多
关键词 Biodynamic response seated human models SIMULATION genetic algorithms.
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Comparison of the vibration isolation performance of a seat suspension with various design modes
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作者 Zha Jili Zhang Jianrun Nguyen Van Liem 《Journal of Southeast University(English Edition)》 EI CAS 2022年第4期363-372,共10页
Three design modes of seat suspension,i.e.,negative stiffness elements(NSEs),damping elements(DEs),and negative stiffness-damping elements(NSDEs),are proposed to evaluate the ride performance of a vehicle.Based on a d... Three design modes of seat suspension,i.e.,negative stiffness elements(NSEs),damping elements(DEs),and negative stiffness-damping elements(NSDEs),are proposed to evaluate the ride performance of a vehicle.Based on a dynamic model of a seat suspension and indexes of the root mean square deformation and acceleration of the seat suspension(x RMS)and driver s seat(a RMS),the influence of the design parameters of the NSEs,DEs,and NSDEs on the driver s ride comfort is evaluated.A genetic algorithm is then applied to optimize the parameters of the NSEs,DEs,and NSDEs.The study results indicate that the design parameters of the NSEs and NSDEs remarkably influence x RMS and a RMS,whereas those of the DEs insignificantly influence x RMS and a RMS.Based on the optimal results of the NSEs,DEs,and NSDEs,the damping force of the DEs is 98.3%lower than the restoring force of the NSEs.Therefore,the DEs are ineffective in decreasing x RMS and a RMS.Conversely,the NSEs combined with the damping coefficient of the seat suspension strongly reduce x RMS and a RMS.Consequently,the NSEs can be added to the seat suspension,and the damping coefficient of the seat suspension can also be optimized or controlled to further enhance the vehicle s ride performance. 展开更多
关键词 seat suspension negative stiffness elements damping elements ride performance genetic algorithm
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Design and evaluation of cab seat suspension system based on negative stiffness structure
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作者 Liao Xin Zhang Ning +1 位作者 Xing Haijun Zhang Wanjie 《Journal of Southeast University(English Edition)》 EI CAS 2021年第2期153-163,共11页
To improve the vibration-isolation performance of cab seats,the optimization model of the seat suspension system of construction machinery cabs is proposed based on the negative stiffness structure.The negative stiffn... To improve the vibration-isolation performance of cab seats,the optimization model of the seat suspension system of construction machinery cabs is proposed based on the negative stiffness structure.The negative stiffness nonlinear kinetic equation is established by designing the seat negative stiffness suspension structure(NSS).Using MATLAB,the different parameters of the suspension system and their influences on the dynamic stiffness are analyzed.The ideal configuration parameter range of the suspension system is obtained.Meanwhile,the optimization model of NSS is proposed,and the vibration transmissibility characteristics are simulated and analyzed by different methods.The results show that the displacement and acceleration amplitudes of the optimized seat suspension system are evidently reduced,and the four-time power vibration dose value and root mean square calculation values in the vertical vibration direction of the seat decrease by 86%and 87%,respectively.Seat effective amplitude transmissibility(SEAT)and the vibration transmissibility ratio values also decrease.Moreover,the peak frequencies of the vibration transmitted to the driver deviate from the key frequency values,which easily cause human discomfort.Thus,the design of the seat suspension system has no effect on the health condition of the driver after being vibrated.The findings also illustrate that the NSS suspension system has good vibration-isolation performance,and the driver's ride comfort is improved. 展开更多
关键词 construction machinery negative stiffness structure seat suspension system dynamic properties ride comfort
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