球面腕部三连杆机器人(开链)的动力学建模

Salim A. Kako
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摘要

本研究描述了加入纳米级陶瓷颗粒对铝基复合材料的力学和疲劳性能的影响,这些复合材料分别含有0.5、1.0、1.5和2% wt的纳米级B4C和Al2O3颗粒,通过搅拌铸造工艺分散在铝液中。利用维氏、拉伸和疲劳装置来评估复合材料在制造过程中的力学行为。结果表明:随着纳米陶瓷颗粒质量分数的增加,基体合金的硬度、最大拉伸应力和疲劳强度均有所提高;此外,B4C颗粒增强的碳纤维的上述性能均优于Al2O3颗粒增强的碳纤维。
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Dynamic Modeling of Three Links Robot Manipulator (Open Chain) with Spherical Wrist
The study here under describes the impact of adding a nano-scaled ceramic particles on the mechanical and fatigue behaviors of aluminum matrix composites AMCs containing 0.5 ,1.0 ,1.5, and 2 % wt. of nano-scaled B4C and Al2O3 particles were dispersed in molten aluminum by the stir-casting process. Vickers, tensile, and fatigue devices were utilized to evaluate the mechanical behavior of composites in the fabrication process. The results show that increasing the weight percentage of nano-ceramic particles increased the hardness, maximum tensile stress, and fatigue strengths of the base alloy. Furthermore, all of the above behaviors of AMCs reinforced with B4C particles are better than those of AMCs reinforced with Al2O3 particles.
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