无中微子双贝塔衰变实验是为了找寻超出标准模型的新物理(new physics beyond the standard model)而在地下实验室开展的最具潜力的低本底前沿物理实验之一。符合无中微子双贝塔衰变实验要求的核素有^(76)Ge、^(96)Zr、^(100)Mo、^(130...无中微子双贝塔衰变实验是为了找寻超出标准模型的新物理(new physics beyond the standard model)而在地下实验室开展的最具潜力的低本底前沿物理实验之一。符合无中微子双贝塔衰变实验要求的核素有^(76)Ge、^(96)Zr、^(100)Mo、^(130)Te、^(136)Xe等,其中^(96)Zr具有独特的理论优势,但相关实验较少。该文从理论上分析^(96)Zr无中微子双贝塔衰变的高事例发生率、强中微子质量限制能力和潜在发生无中微子四贝塔衰变的特点及实验本底要求,阐述地下实验室^(96)Zr无中微子双贝塔衰变实验研究现状,展望未来在中国锦屏地下实验室开展^(96)Zr无中微子双贝塔衰变实验的愿景。展开更多
In this article,a grinding force model,which is on the basis of cutting process of single abrasive grains combined with the method of theoretical derivation and empirical formula by analyzing the formation mechanism o...In this article,a grinding force model,which is on the basis of cutting process of single abrasive grains combined with the method of theoretical derivation and empirical formula by analyzing the formation mechanism of grinding force,was established.Three key factors have been taken into accounts in this model,such as the contact friction force between abrasive grains and materials,the plastic deformation of material in the process of abrasive plowing,and the shear strain effect of material during the process of cutting chips formation.The model was finally validated by the orthogonal grinding experiment of powder metallurgy nickel-based superalloy FGH96 by using the electroplated CBN abrasive wheel.Grinding force values of prediction and experiment were in good consistency.The errors of tangential grinding force and normal grinding force were 9.8%and 13.6%,respectively.The contributions of sliding force,plowing force and chip formation force were also analyzed.In addition,the tangential forces of sliding,plowing and chip formation are 14%,19%and 11%of the normal forces on average,respectively.The pro-posed grinding forcemodel is not only in favor of optimizing the grinding parameters and improving grinding efficiency,but also contributes to study some other grinding subjects(e.g.abrasive wheel wear,grinding heat,residual stress).展开更多
文摘无中微子双贝塔衰变实验是为了找寻超出标准模型的新物理(new physics beyond the standard model)而在地下实验室开展的最具潜力的低本底前沿物理实验之一。符合无中微子双贝塔衰变实验要求的核素有^(76)Ge、^(96)Zr、^(100)Mo、^(130)Te、^(136)Xe等,其中^(96)Zr具有独特的理论优势,但相关实验较少。该文从理论上分析^(96)Zr无中微子双贝塔衰变的高事例发生率、强中微子质量限制能力和潜在发生无中微子四贝塔衰变的特点及实验本底要求,阐述地下实验室^(96)Zr无中微子双贝塔衰变实验研究现状,展望未来在中国锦屏地下实验室开展^(96)Zr无中微子双贝塔衰变实验的愿景。
基金financial support for this work by the National Natural Science Foundation of China(Nos.51775275,51921003 and 51905363)the Funding for Outstanding Doctoral Dissertation in NUAA of China(No.BCXJ19-06)+1 种基金the Natural Science Foundation of Jiangsu Province of China(No.BK20190940)the Natural Science Foundation of the Jiangsu Higher Education Institutions of China(No.19KJB460008)。
文摘In this article,a grinding force model,which is on the basis of cutting process of single abrasive grains combined with the method of theoretical derivation and empirical formula by analyzing the formation mechanism of grinding force,was established.Three key factors have been taken into accounts in this model,such as the contact friction force between abrasive grains and materials,the plastic deformation of material in the process of abrasive plowing,and the shear strain effect of material during the process of cutting chips formation.The model was finally validated by the orthogonal grinding experiment of powder metallurgy nickel-based superalloy FGH96 by using the electroplated CBN abrasive wheel.Grinding force values of prediction and experiment were in good consistency.The errors of tangential grinding force and normal grinding force were 9.8%and 13.6%,respectively.The contributions of sliding force,plowing force and chip formation force were also analyzed.In addition,the tangential forces of sliding,plowing and chip formation are 14%,19%and 11%of the normal forces on average,respectively.The pro-posed grinding forcemodel is not only in favor of optimizing the grinding parameters and improving grinding efficiency,but also contributes to study some other grinding subjects(e.g.abrasive wheel wear,grinding heat,residual stress).