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1)  dynamic dent resistance
动态抗凹性
1.
In this thesis,the affecting rule of the different parameters on the dome specimen s dynamic dent resistance is obtained and the effective way of quantitative evaluating the auto body panel s dynamic dent resistance by numerical simulation is explored.
运用有限元数值模拟方法对汽车板材胀形试件的胀形过程及其动态抗凹变形过程进行了模拟 ,研究了胀形试件的动态凹痕变形机理 ,得到了不同参数对胀形试件动态抗凹性能的影响规律 ,为从模拟途径对汽车覆盖件抗凹性的定量评估探索了有效的方
2)  Static dent resistance
静态抗凹性
3)  static-dynamic dent resistance
静动态局部凹痕抗力
4)  dent resistance
抗凹陷性
1.
The mechanical property, forming ability,baked-hardening and dent resistance properties of high strength steel B180H1 were studied by experi- ments compared with those of steel DC04,and theoretical research on predicting the forming limit of steel B180H1 by the NADDRG model was made.
本文通过试验对汽车用高强度钢板B180H1的力学性能、成形性能、烘烤硬化性能和抗凹陷性能进行了全面的研究,并与DC04钢板的各项性能进行了比较。
2.
The effects of baking temperature,baking time and prestrain on the bake hardenability and dent resistance of isotropic sheet steel and BH sheet steel produced by batch annealing were studied.
抗凹陷性测试结果表明,各向同性钢的抗凹陷性低于烘烤硬化钢。
3.
In this paper,mechanical property,forming ability,baked-hardening and dent resistance properties of high strength steel B180H1 are studied by experiments,and compared with those of steel DC04.
本文通过试验对汽车用高强度钢板 B180H1 的力学性能、成形性能、烘烤硬化性能和抗凹陷性能进行了全面的研究,并与 DC04钢板的各项性能进行了比较。
5)  dent resistance
抗凹性
1.
The dent resistance theory and evaluation system were studied.
对抗凹性的理论及试验评价体系进行了研究,基于ABAQUS软件对某车用背门进行抗凹性数值模拟分析,得到了背门的加载、卸载位移曲线、载荷参与凹痕曲线,通过局部抗凹力和抗凹稳定性等参数对背门的抗凹性做出评价,对背门设计有理论指导意义。
6)  dent resistance
抗凹性能
1.
Investigation on the numerical simulation of panel dent resistance by using finite element;
外覆盖件抗凹性能的模拟仿真研究(英文)
2.
In order to investigate the influence of stamping process on the structural performance of auto parts,it was simulated by taking the local dent resistance of auto parts as an example.
为了研究冲压工艺对汽车零部件结构性能的影响,以某汽车零件的局部抗凹性能为例,利用数值模拟技术研究了冲压工艺对汽车零部件结构性能的影响。
补充资料:凹模壁厚及凹模垫板尺寸

型腔壁部投影面积            壁            厚,        毫          米
F, 厘米2              h1           h2         h3          h4         h5 
<5                   15~20        30~40      <=10        15~20      30~40
>5~10                20~25        40~50      10~15       20~25      40~55
>10~50               20~30        50~60      15~20       20~30      55~65
>50~100              30~35        60~75      20~25       30~40      65~70
>100~200             35~40        75~85      25~30       40~50      70~75
>200                  >40          >85       30~35       50~60       >80


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