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   循环压制 的翻译结果: 查询用时:0.234秒
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循环压制
相关语句
  cyclic pressing
     The Research on Cyclic Pressing of Large Dimension 7075/SiCp Composite
     大尺寸7075/SiCp复合材料循环压制工艺的研究
短句来源
     The large dimension as-deposited 7075/SiCp composite was cyclic pressing four passes.
     对大尺寸7075/SiCp复合材料沉积坯进行四道次的循环压制,可以使大尺寸沉积坯料的相对密度达到96%以上。
短句来源
     Effects of Cyclic Pressing on Densification of Spray Formed 7075/SiCp Composite
     循环压制对喷射沉积7075/SiCp致密化的影响
短句来源
     Spray formed large dimension 7075/SiCp composite was densified by cyclic pressing.
     采用循环压制工艺对多层喷射沉积大尺寸7075/SiCp复合材料(高度H>140mm)进行了致密化加工.
短句来源
     (2) The deformation of the pores and the distribution behavior of SiC particles at the cyclic pressing of spray co-deposited 7075/SiCp composite were investigated.
     (2)研究喷射共沉积7075/SiCp复合材料,在循环压制过程中的孔洞变形与SiC颗粒分布规律。
短句来源
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  “循环压制”译为未确定词的双语例句
     (3) The workability and the properties of the large dimension spray co-deposited 7075/SiCp composite were investigated.
     (3)研究大尺寸喷射共沉积7075/SiCp复合材料的循环压制工艺及性能。
短句来源
     (1) The deformation and densification behaviors of spray co-deposited 7075/SiCp composite billet were investigated.
     (1)研究喷射共沉积7075/SiCp复合材料,在循环压制过程中的变形规律与致密化规律。
短句来源
     The deformation behaviour of the spray co-deposited 7075/SiCp composite billet was investigated by grid method.
     用网格法研究了7075/SiCp复合材料坯料在循环压制过程中的变形规律。
短句来源
     420 ℃ is the suitable for the densification of the 7075/SiCp composite because the closed pores can get to excellent metallurgical binding at this temperature.
     420℃循环压制后,闭合的孔洞能够形成良好的结合,是适宜的压制温度。
短句来源
  相似匹配句对
     The Doming cycle
     “Deming”循环
短句来源
     RECYCLE
     循环再利用
短句来源
     The cyclic pressing with transverse deformation can improve the densification effect of the billet.
     带有间隙的循环压制,可以提高坯料的致密化效果。
短句来源
     Effects of Cyclic Pressing on Densification of Spray Formed 7075/SiCp Composite
     循环压制对喷射沉积7075/SiCp致密化的影响
短句来源
     The Plastic Pressing Forming Process
     塑性压制成形工艺
短句来源
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  cyclic pressing
Both monotonic and cyclic pressing regimes were used to compact the materials, with pressures sufficiently large to control the bulk mechanical properties of the samples produced (Hardness typically 1.6 GPa).
      


Spray formed large dimension 7075/SiCp composite was densified by cyclic pressing.Density and microstructure of the composite at different cyclic pressing pass were investigated.The tensile properties of the composite on the condition of T6 treatment were tested.The results show that most pores in the composite are elongated and closed through cyclic pressing at the joined effect of huge hydrostatic pressure and shearing stress.After cyclic pressing,SiC particles parallel to the flowing direction of the matrix...

Spray formed large dimension 7075/SiCp composite was densified by cyclic pressing.Density and microstructure of the composite at different cyclic pressing pass were investigated.The tensile properties of the composite on the condition of T6 treatment were tested.The results show that most pores in the composite are elongated and closed through cyclic pressing at the joined effect of huge hydrostatic pressure and shearing stress.After cyclic pressing,SiC particles parallel to the flowing direction of the matrix in the as-deposited billet.SiC particles in extruded 7075/SiCp composite are broken and redistributed after cyclic pressing.And the tensile properties of as-pressed extruded 7075/SiCp composite are improved above 600 MPa.

采用循环压制工艺对多层喷射沉积大尺寸7075/SiCp复合材料(高度H>140mm)进行了致密化加工.研究了循环压制工艺对复合材料沉积坯和挤压坯密度及显微组织的影响规律,测试了复合材料的力学性能.结果表明,循环压制过程中在大的静水压力和剪切应力的共同作用下,复合材料中大部分孔洞逐渐被拉长闭合,致密化效果良好.沉积坯多次循环压制后,SiC颗粒取向平行于基体金属流动方向.挤压坯二道次压制后SiC颗粒破碎明显,分布得到改善,强度可以达到600 MPa以上.

 
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