超高压物理实验技术虚拟仿真实验设计与实现  被引量:4

Design and Implementation of Virtual Simulation Experiment of Ultra-high Pressure Physics Experiment Technology

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作  者:张勇[1,2] 贾洪声[1,2] 刘惠莲[1,2] 鄂元龙 ZHANG Yong;JIA Hongsheng;LIU Huilian;E Yuanlong(National Demonstration Center for Experimental Physics Education,Jilin Normal University,Siping 136000,China;School of Physics,Jilin Normal University,Siping 136000,China)

机构地区:[1]吉林师范大学物理国家级实验教学示范中心,吉林四平136000 [2]吉林师范大学物理学院,吉林四平136000

出  处:《大学物理实验》2022年第5期113-117,共5页Physical Experiment of College

基  金:教育部产学协同育人项目(201902037066);吉林省本科高等教育教学改革研究课题(面向新工科的示范性工程创新训练中心建设与管理研究)。

摘  要:为解决传统高压物理实验教学中设备投入高、数量不足、实验空间受限等问题,自主开发了超高压物理实验技术虚拟仿真实验。该实验以超硬材料立方氮化硼的合成与分析过程为主线,划分为原料称量及预处理、六面顶压机高温高压合成样品及样品性能测试分析3个实验任务,实验操作允许学生在一定范围内自主设置实验参数、合成条件,通过不断仿真练习,形成对实验工艺流程、仪器设备操作的正确认识和超硬材料合成原理的深度理解,提升学生自主学习、探究问题、解决问题的能力。In order to solve the problems of high equipment investment,insufficient quantity,and limited experimental space in traditional high-pressure physics experiment teaching,the virtual simulation experiment of ultra-high pressure physics experiment technology was independently developed.The experiment is based on the synthesis and analysis process of superhard material cubic boron nitride.It is divided into three experimental tasks:raw material weighing and pretreatment,high-temperature and high-pressure synthetic sample with six-sided top hydraulic press,and sample performance test and analysis.The experimental operation allows students to independently set experimental parameters and synthesis conditions within a certain range,and through continuous simulation exercises,form a correct understanding of the experimental process,the operation of instruments and equipment,and an in-depth understanding of the principles of superhard material synthesis,so as to enhance students’ability to learn independently,explore problems,and solve problems.

关 键 词:高压物理实验 超硬材料 虚拟仿真实验 

分 类 号:O521.3[理学—高压高温物理] G642.423[理学—物理]

 

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