flanging
v. 作凸缘(flange的ing形式)
n. 折边;翻口;凸缘
2025-10-31 14:21 浏览次数 11
v. 作凸缘(flange的ing形式)
n. 折边;翻口;凸缘
1. a rib or rim for strength, for guiding, or for attachment to another object
a flange on a pipe a flange on a wheel
2. a projecting edge of cloth used for decoration on clothing
a jacket with flange shoulders
3. to furnish with a flange
4. an edge that sticks out from something (such as a wheel) and is used for strength, for guiding, or for attachment to another object
flanging quality可折性
flanging flangeway翻边
hole flanging孔翻边;孔凸缘加工
flanging machine折边机
flanging punch折边凸模
flanging test卷边试验
flanging process翻边
roll flanging凸缘滚形
underport flanging底孔翻边
can also be used for sheet metal bending, flanging process.
也可用于金属板件的弯曲、翻边等工艺。
the coordinates of mesh points on the trimming region before and after flanging are measured.
对零件进行翻边,测量出翻边前后在修边区域上各网格点的坐标;
based on main characteristics of punching and flanging process, this paper describes the design of rules to stamping features.
该文针对沖孔、翻孔两类板材沖压成形工艺方法的主要特点,设计了两类成形件的特征识别规则。
before flanging auto-body panels, a feasible trimming line should be obtained, otherwise the final part shape after flanging cannot meet the dimensional requirement.
车身零件翻边前一般有修边工序,需要準确的修边线,否则翻边后零件达不到零件尺寸要求。
the influence of average normal anisotropic coefficient on the flanging height can be considered in this model.
该模型考虑厚向(平均)各向异性系数对翻边高度的影响。
a graphical method, by which the pre-punching hole forstreth flanging on curved sheet can be determined, is suggested.
本文介绍了确定曲面体上孔翻边预沖孔形状的图解法——展开求域,原位定形法的求解步骤和应用效果。
sf(b)series adopt special twisted blade design and flange flanging casing, which makes the noise lower and the air volume larger.
本系列风机的叶片采用特殊扭曲孤度设计,机壳采用法兰翻边工艺,使风机噪音更低,风量更大等特点。
a graphical method, by which the pre-punching hole forstreth flanging on curved sheet can be determined, is suggested. theprogram and effect in application is discussed.
本文介绍了确定曲面体上孔翻边预沖孔形状的图解法—— 展开求域, 原位定形法的求解步骤和应用效果。
based on the integration of ameliorated bp neural network and finite element method, a model for prediction of the flanging of v shaped sheet metal parts was presented.
本文将有限元模拟与人工智能相结合,建立了基于改进的bp神经网络的「v」型件翻边成形性能与几何尺寸及材料参数关系的数学模型。
taking the front floor as an example, mainly introduced the hoisting wedge driver installed in active pressing material core and making use of reverse wedge driver to form the up flanging structure.
以某车型前地板为例,重点介绍了吊装斜楔驱动器安装在活动压料芯上的结构和利用反向斜楔完成向上翻边的结构。
numerical simulation of hole flangingbased on abaqus software, forming process of hole flanging is simulated.
圆孔翻边的数值模拟基于abaqus软件,对圆孔翻边成形过程进行了模拟分析。
with the total strain theory and membrane assumption and taking the normal anisotropy of sheet metal into consideration, initial blank size can be directly calculated from desired flanging height.
在该算法中,采用了全量塑性理论及膜应变假定,并考虑了板材的厚向各向异性,可以直接从所需的翻边高度计算出初始坯料的尺寸。
in addition, according to experimental results, slab method in plastic mechanics and material hardening theory, a new formula for hole flanging force is concluded.
另外,根据试验结果,并利用塑性力学中的主应力法和材料硬化理论,推导了一个计算圆孔翻边力的新公式。
at the same time, the variety of internal energy in course of flanging forming and springback withdifferent material were gained.
同时分析了不同材料在翻边成形和回弹变形时的内能变化情况。
in addition, using columniform punch and conical punch, different stress-strain distribution and thickness distribution at deformation region of flanging is compared.
通过采用不同凸模型式,比较了柱形凸模和锥形凸模翻边时变形区的应力应变及厚度分布的不同。
not only the influence of average normal anisotropic coefficient but also the one of r0, r45 and r90 on the flanging height can be considered in this model.
该模型不仅能考虑厚向(平均)异性系数,而且也能考虑r0、r45和r90厚向异性系数对翻边高度的影响。
there are many flangings in auto panels, the location of the trimming line directly affected the design of the trim mould and the quality of the flanging parts.
汽车覆盖件中,存在着大量的翻边特征,而翻边零件的修边线直接影响到修边模的设计和翻边后零件的质量。
「new」 matching teeth -- use the flanging strengthen structure and improving the bearing capacity of the jacks.
「新型」配合齿——采用翻边加强结构,提高千斤顶的承载能力。
the system uses associated design idea in order to realize input of flanging die model parameter and harmonious unification of structure redesign.
采用关联设计思想,实现翻边模模型参数的输入与结构再设计的和谐统一。
introduced the characteristics of the gear box case, and determinded the reasonable forming process, designed the drawing die, the trimming die, the piercing die and the flanging die.
介绍了变速箱壳体零件的工艺特点,确定了合理的工艺方案,设计了拉伸模、切边模、沖孔模、翻孔模,经生产验证,模具结构合理,生产的零件完全满足要求。
the forming technology of rear shock absorber cap is analyzed, and its drawing die, flanging die and spinning die structure are also introduced.
分析了后减震器帽的成形工艺,介绍了成形该零件的拉深模、翻边模以及旋压模具结构。
a large deformation elastic plastic fem model is employed to simulate the stretch flanging of v shaped sheet metal parts.
采用弹塑性大变形有限元方法研究了几何形状和材料参数对「v」型零件翻边的影响;
reasonable die structure dimension and optimum time of flanging and discharging were determined through theoretical analysis.
并且通过理论分析,确定了水平翻边和局部弹性退料的合理尺寸以及最佳时机。