Challenges of enhancing productivity by amplifying efficiency and man-machine compatibility of equipment can be achieved by adopting advanced technologies. This study aims to present and exemplify methodology for incorporating ergonomics pro-actively into the design using computer-aided design and digital human modeling-based analysis. The cleaning equipment is parametrized to detect the critical variables. The relations are then constrained through the 3DSSPP software-based biomechanical and experimental analysis using a prototype. MATLAB and Minitab software is used for optimizing efficiency while satisfying the established constraints. The experiment showed nearly 67%, 120%, and 241% successive improvement in the mechanical advantage in comparison to their immediate predecessors. A significant (6 point) reduction in rapid entire body assessment score has been observed in the final posture while working with the manipulator. 3DSSPP suggested that the joint forces during the actuation of the manipulator were acceptable to 99% of the working population. The study demonstrated the potential of the methodology in revamping the equipment for improved ergonomic design.
翻译:通过采用先进技术,可以实现提高生产力的挑战,即通过提高设备的效率和人机兼容性,提高生产率;本研究的目的是利用计算机辅助设计和数字人造模型分析,提出和示范将人类工程学主动纳入设计的方法;清洁设备是用来检测关键变量的配对设备;然后通过3DSSPP基于软件的生物机能和实验分析,利用原型来限制关系;MATLAB和Minitab软件用于提高效率,同时满足既定的制约因素;试验显示,与前身相比,机械优势近67%、120%和241%连续提高;在与操纵者合作时,在最后状态中观察到快速整体身体评估得分显著下降(6个百分点);3DSSPPP建议,操纵器启动过程中的联合力量可被99%的工作人口所接受;研究显示,改进用于改进人造型设计设备的方法具有潜力。