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典型含能材料单螺杆压伸过程模拟分析 被引量:4
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作者 李敏 薛平 +2 位作者 王江宁 宋秀铎 张军 《固体火箭技术》 EI CAS CSCD 北大核心 2020年第5期594-601,共8页
螺压成型工艺是含能材料成型加工的重要方式,物料在压伸过程中同时存在着剪切、混合与塑化作用,易受外界环境及工艺条件影响而带来风险。首次应用VEL软件对典型含能材料的单螺杆压伸成型过程进行模拟计算,得到了整个挤出过程的固体床曲... 螺压成型工艺是含能材料成型加工的重要方式,物料在压伸过程中同时存在着剪切、混合与塑化作用,易受外界环境及工艺条件影响而带来风险。首次应用VEL软件对典型含能材料的单螺杆压伸成型过程进行模拟计算,得到了整个挤出过程的固体床曲线、速度、压力、剪切、温度等数值结果,同时运用POLYFLOW软件进一步分析了均化段的流场分布情况,进而对VEL的模拟结果进行验证和补充。最后,使用VEL软件分析了影响压伸过程的工艺参数和螺杆结构参数,从而为实际设备和安全加工工艺的优化提供参考。根据数值模拟结果:挤出压力在23 MPa左右,物料挤出速度约为1.85 mm/s;螺杆温度、螺杆转速和螺杆压缩比均对安全压伸过程有较大影响。料温随螺杆温度升高而增大,而压力下降;螺杆转速增大会引起较大的温升,易造成危险,故不宜提高螺杆转速;而压缩比增大对建压过程有利且不易引起温升,故可在安全压力范围内适当增大压缩比。 展开更多
关键词 典型含能材料 安全压伸 单螺杆 virtual Extrusion laboratory POLYFLOW
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Effect of insoluble materials on the volumetric behavior of rock salt
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作者 Mejda Azabou Ahmed Rouabhi Laura Blanco-Martìn 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2021年第1期84-97,共14页
This paper focuses on the presence of nodules of insoluble materials within salt specimens,and their effect on the volumetric strain measurements and the dilatancy phenomenon.We analyzed experimental results of over 1... This paper focuses on the presence of nodules of insoluble materials within salt specimens,and their effect on the volumetric strain measurements and the dilatancy phenomenon.We analyzed experimental results of over 120 conventional triaxial compression tests,and found that in 20%of the cases,the volumetric strain measurements were atypical.We also noted that the natural variability of the specimens can lead to a non-negligible data scattering in the volumetric strain measurements when different specimens are subjected to the same test.This is expected given the small magnitude of those strains,but it occasionally implies that the corresponding specimens are not representative of the volumetric behavior of the studied rock.In order to understand these results,we numerically investigated salt specimens modeled as halite matrices with inclusions of impurities.Simulations of triaxial compression tests on these structures proved that such heterogeneities can induce dilatancy,and their presence can lead to the appearance of tensile zones which is physically translated into a micro-cracking activity.The modeling approach is validated as the patterns displayed in the numerical results are identical to that in the laboratory.It was then employed to explain the observed irregularities in experimental results.We studied the natural variability effect as well and proposed a methodology to overcome the issue of specimen representativity from both deviatoric and volumetric perspectives. 展开更多
关键词 Rock salt DILATANCY Material heterogeneity Natural variability Triaxial tests virtual laboratory
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