利用有限元分析方法对不同类型的应力对不同金属热形成的影响进行了比较研究

Md. Tariqul Islam, Samit Chowdhury, M. Islam, Md. Sakhawat Hossain
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引用次数: 1

摘要

金属在应力作用下的产热或吸热过程是由施加外力后分子间相互作用引起的。产生或吸收的热量取决于所施加的力和所产生的应力的大小。热与应力之间的关系是决定特定金属失效的基本材料特性之一。因此,在设计产品时,了解材料中的应力与热形成之间的关系是很重要的。两个基本参数,材料性能和诱导应力,决定了产生或吸收的热量。同样,诱导应力决定了热量是否会被吸收或产生。在这方面还没有发现有意义和切题的研究工作,因此本研究的目的是观察不同金属在不同类型负载条件下的热生成。分析选用的金属有铸铁、铝、AISI 4340和结构钢。选择这些金属是因为它们被广泛用作工程金属。试验的加载条件为拉伸、压缩和弯曲。采用ComsolMultiphysics 5.3中的有限元技术进行分析。在Solidworks Premium 2016中设计金属的几何形状,然后在ComsolMultiphysics的热弹性物理界面中导入。通过改变加载条件,确定应力与产生的热之间的关系,并进行比较。结果表明:AISI 4340在极限强度下的热生成速率大于其他金属;温度分布表明,铝的温度在试样中的耗散要大于其他三种金属。这些结果将有助于选择用于制造在动态负载条件下使用的设备的金属。金属在应力作用下的产热或吸热过程是由施加外力后分子间相互作用引起的。产生或吸收的热量取决于所施加的力和所产生的应力的大小。热与应力之间的关系是决定特定金属失效的基本材料特性之一。因此,在设计产品时,了解材料中的应力与热形成之间的关系是很重要的。两个基本参数,材料性能和诱导应力,决定了产生或吸收的热量。同样,诱导应力决定了热量是否会被吸收或产生。在这方面还没有发现有意义和切题的研究工作,因此本研究的目的是观察不同金属在不同类型负载条件下的热生成。分析中选用的金属为铸铁、铝、AISI 4340和结构钢. ...
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A comparative study of heat formation in various metals due to different types of stresses using finite element analysis
The process of heat generation or absorption in metals under stress is caused by intermolecular interaction taken place after applying external force. Quantity of generated or absorbed heat depends on the magnitude of the applied force and the induced stress. The relationship between the heat and stress is one of the basic material property that determines the failure of that specific metal. So, it is important to know the relationship between the stress and formation of heat in material while designing a product. Two basic parameters, material property and induced stress, determine the quantity of generated or absorbed heat. Again, induced stress determines the fact if heat would be absorbed or be generated. No significant and to the point research work has been found about this subject, hence the aim of this study is to observe the generation of heat in different metals under different types of load condition. For the analysis, the chosen metals were Cast iron, Aluminum, AISI 4340 and Structural steel. These metals were chosen because of being widely used as engineering metals. The applied load conditions for the experiment were tension, compression and bending. The analysis was conducted using finite element technique in ComsolMultiphysics 5.3. The geometry of the metal was designed in Solidworks Premium 2016 and then imported in thermoelastic physics interface of ComsolMultiphysics. The loading conditions were varied to determine the relationship between the stress and generated heat and later compared with each other. The results show that the rate of generation of heat for AISI 4340 is greater than other metals at its ultimate strength. The temperature distribution shows that, the dissipation of temperature throughout the specimen is greater in aluminum than other three metals. These results will be useful in choosing metals that are to be used for fabricating devices employed in dynamic load condition.The process of heat generation or absorption in metals under stress is caused by intermolecular interaction taken place after applying external force. Quantity of generated or absorbed heat depends on the magnitude of the applied force and the induced stress. The relationship between the heat and stress is one of the basic material property that determines the failure of that specific metal. So, it is important to know the relationship between the stress and formation of heat in material while designing a product. Two basic parameters, material property and induced stress, determine the quantity of generated or absorbed heat. Again, induced stress determines the fact if heat would be absorbed or be generated. No significant and to the point research work has been found about this subject, hence the aim of this study is to observe the generation of heat in different metals under different types of load condition. For the analysis, the chosen metals were Cast iron, Aluminum, AISI 4340 and Structural steel. ...
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