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鋼的熱膨脹特性研究

Study on thermal expansion properties of steels

  • 摘要: 采用NETZSCH DIL 402C高溫熱膨脹儀對三種不同化學成分的鋼種在30-1150℃溫度范圍內的熱膨脹特性進行了測量,得到線性熱膨脹和瞬時線膨脹系數隨溫度的變化曲線。對實測的熱膨脹值進行定量計算和對比分析后發現,鋼在加熱過程中的線性熱膨脹及瞬時線膨脹系數隨溫度的變化過程可分為室溫至相變區、固態相變區和高溫奧氏體區三個階段,每個階段碳含量對熱膨脹的影響程度不同。在整個升溫過程中,物理熱效應引起的熱膨脹占主導作用,不同鋼種的物理熱膨脹總量基本相同,而相變引起的收縮量大約占整個膨脹絕對變化量的16%,且收縮總量隨碳含量的增加而減少,導致最終不同鋼種試樣的膨脹量不同。

     

    Abstract: The thermal expansion properties of steels with different chemical compositions were precisely measured at temperatures from 30 to 1150℃ with a NETZSCH DIL 402C dilatometer. The curves of thermal linear expansion and instant linear expansion coefficient versus temperature were plotted from measured data. Quantitative analysis and comparison results show that carbon content has different influences on the thermal linear expansion and instant linear expansion coefficient of steels in the three temperature ranges of low temperature, solid phase transformation and austenite phase. Thermal expansion caused by the heat effect, which is basically the same for different steels, is dominant in the whole temperature range. The shrinkage of samples caused by phase transformation, which decreases with increasing carbon content, accounts for about 16% of the total absolute amount of thermal expansion, leading to the different expansions for the three steels.

     

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