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考虑钢筋掺量混凝土强度对FGCC功能梯度板界面应力的影响
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作者 程梁 张振亚 《科技创新导报》 2022年第17期35-39,43,共6页
本文利用不考虑界面法和内聚力单元法,研究FGCC功能梯度板间的界面应力。考虑混凝土强度等级、钢筋掺量对界面应力的影响,结果表明:随着掺量的增加,正应力总体呈减小趋势;随着混凝土强度的增加,正应力也增加;考虑界面相对于不考虑界面... 本文利用不考虑界面法和内聚力单元法,研究FGCC功能梯度板间的界面应力。考虑混凝土强度等级、钢筋掺量对界面应力的影响,结果表明:随着掺量的增加,正应力总体呈减小趋势;随着混凝土强度的增加,正应力也增加;考虑界面相对于不考虑界面的影响对正应力的影响较大,有界面的正应力峰值分散,而无界面的正应力峰值几乎是一个定值,钢筋掺量为2%~4%,正应力分别是7.7MPa、7.2MPa和6.8MPa。 展开更多
关键词 FGCC 内聚力单元 界面应力 混凝土
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Novel design and composition optimization of self-lubricating functionally graded cemented tungsten carbide cutting tool material for dry machining 被引量:2
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作者 Rityuj Singh Parihar Raj Kumar Sahu Srinivasu Gangi Setti 《Advances in Manufacturing》 SCIE EI CAS CSCD 2021年第1期34-46,共13页
The functionally graded cemented tungsten carbide (FGCC) is a suitable material choice for cutting tool applications due to balanced hardness and fracture toughness.The presence of cobalt and CaF2 composition gradient... The functionally graded cemented tungsten carbide (FGCC) is a suitable material choice for cutting tool applications due to balanced hardness and fracture toughness.The presence of cobalt and CaF2 composition gradient in FGCC may enhance mechanical as well as antifriction properties.Therefore,structural design of selflubricating FGCC was proposed using Power law composition gradient model and thermal residual stresses (TRSs) as a key parameter.Wherein,S.Suresh and A.Mortensen model was adopted for estimation of TRS,and optimum composition gradient was identified at Power law exponent n =2.The designed material displayed compressive and tensile TRS at surface and core respectively;subsequently fabricated by spark plasma sintering and characterized via scanning electron microscope (SEM),indentation method.The agreement between experimental and analytical values of TRS demonstrated the effectiveness of intended design model in the composition optimization of self-lubricating FGCC.This work will be helpful in implementation of dry machining for clean and green manufacturing. 展开更多
关键词 Functionally graded cemented tungsten carbide(FGCC) Thermal residual stress(TRS) Solid lubricant Power law
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