模具参数对楔横轧铝合金轧件内部空洞的影响

来源 :2012 Postdoctoral Symposium of China on Materials Science & | 被引量 : 0次 | 上传用户:zhy724458069
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  通过分析楔横轧内部空洞(疏松)缺陷的物理性质和形成特征,将内部空洞视为多孔材料,利用多孔材料的刚塑性有限元方法,建立7075铝合金坯料内部空洞缺陷的数值模型。采用相对密度研究成形角、展宽角、断面收缩率对内部空洞缺陷的影响规律。结果显示:内部空洞的扩展主要发生在展宽段,楔入段对它的影响很小。展宽角是影响内部空洞产生的主要因素,而断面收缩率的影响较小。成形角、展宽角、断面收缩率越大,越不易发生内部空洞缺陷。在模具设计时,为了防止铝合金坯料轧制后产生内部空洞缺陷,断面收缩率应选择在55%~65%之间,展宽角在8°~10°之间,成形角在29°~32°之间。
其他文献
The microstructure, tensile properties and fractography of A356 aluminum alloy with As-cast and T6 conditions obtained using expendable pattern shell casting process were investigated.The results show
The influences of aging time and aging temperature on the microstructure and mechanical properties are investigated on the 6005A aluminum alloy extrusions.Artificial aging is performed on the alloy ex
In hot stamping operations the influence of process parameters on the properties of final part is fundamental in the design and optimisation of the forming process.Hot stamping process parameters were
In order to further enhance the TiO2 photocatalyst activeness, this research uses the non-metallic ion doping to modify TiO2.In this study, selected nonmetal B has prepared the doping modification TiO
Barium strontium titanate niobate (BST/SBN) composite ceramics system following the general formula 0.7BaO·0.3SrO·(1-y)TiO2·yNb2O5 were firstly prepared by the modified Powder-Sol method.By controllin
The precise design and fabrication of biomaterial scaffolds is necessary to provide a systematic study for bone tissue engineering.Biomaterial scaffolds should have sufficient stiffness and large poro
The microstructure, composition and elemental depth profile of micro-arc oxidation film was analyzed by means of Scanning Electron Microscope (SEM), X-ray diffraction (XRD) and Energy Disperse Spectro
We have successfully prepared Cu-Al-O thin films on silicon (100) and quartz substrates by RF magnetron sputtering method.The as-deposited Cu-Al-O film is amorphous in nature and post-annealing treatm
Glass material has many fine chemical properties and is widely used in hi-tech fields such as aerospace and biomedical.But its also a typical hard processing material since its brittle and very hard.M
A novel headstand pyrocarbon cones (HPCs) with hollow structure was developed at 650-750 ℃ by the electromagnetic-field-assisted chemical vapor deposition.It is observed that the HPCs can form on the