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首页> 外文期刊>Journal of Mechanical Science and Technology >Establishment of erosion model of gun steel material and study on its erosion performance
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Establishment of erosion model of gun steel material and study on its erosion performance

机译:建立枪钢材侵蚀模型及其侵蚀性能研究

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摘要

During the firing of the artillery, the high temperature and high pressure gas generated by the combustion of the gunpowder directly acts on the inner surface of the barrel. The oxidizing gas contained in the combustion products is thermochemically reacted with the gun steel material, causing the loss of surface material inside the bore. Thermochemical erosion of bore is one of the main factors affecting the life of the barrel. In order to be able to predict the amount of erosion produced by thermochemical erosion and to study the effects of thermophysical properties of gun steel materials on erosion. Based on Fourier heat conduction theory, a theoretical model of thermochemical erosion of gun steel materials was established. The semi-closed vessel test was designed to verify the theoretical model. The calculation results are in good agreement with the test results. At the same time, this paper also researched the influence of density, thermal conductivity and specific heat capacity of a gun steel material on material erosion based on the theoretical model. The research shows that with the increase of the density and specific heat capacity of the gun steel material, the erosion amount of the material increases correspondingly; as the thermal conductivity of the gun steel material increases, the erosion amount decreases accordingly. The research of this paper provides a certain theoretical basis for predicting the life of the barrel, and provides a certain guiding significance for the research of gun steel materials.
机译:在火炮烧制过程中,由火药燃烧产生的高温和高压气体直接作用在枪管的内表面上。燃烧产物中含有的氧化气体与枪钢材料热化学反应,导致孔内的表面材料损失。孔的热化学侵蚀是影响枪管寿命的主要因素之一。为了能够预测热化学侵蚀产生的侵蚀量,并研究枪钢材热物理性质对腐蚀的影响。基于傅里叶热传导理论,建立了枪钢材热化学侵蚀的理论模型。设计半封闭式血管测试以验证理论模型。计算结果与测试结果吻合良好。与此同时,本文还研究了枪钢材密度,导热性和比热容量对基于理论模型的材料腐蚀的影响。该研究表明,随着枪钢材料的密度和比热容量的增加,材料的腐蚀量相应地增加;随着枪钢材料的导热率增加,侵蚀量相应地减小。本文的研究为预测​​枪管的寿命提供了某种理论依据,并为枪钢材的研究提供了一定的指导意义。

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