diffusion n. 1.散布,發(fā)散。 2.傳播,普及。 3.冗長。 4.【化學】滲濾。 5.【物理學】擴散,漫射。 the diffusion of knowledge 知識的傳播。 diffusion of speech 演說的冗長。 diffusion of light 光線的漫射。
Diffusion bonding technology of mosi2 heating element 2發(fā)熱元件冷熱端擴散接合工藝的研究
Study on superplastic diffusion bonding of different steels 異種鋼材的超塑性擴散連接工藝研究
Diffusion bonding of - tial based alloys to different alloys 碳化硅顆粒增強鋁基復合材料的研究進展
The interfacial microstructure and properties for ti ni in diffusion bonding process 擴散焊接界面的組織和性能
Present situation and developments of diffusion bonding titanium alloy and nonmetals 鈦合金與非金屬材料擴散連接研究現(xiàn)狀與發(fā)展
Progress of the research in the area of numerical simulation of transient liquid phase diffusion bonding 瞬間液相擴散連接過程數(shù)值模擬的研究進展
Deformation of diffusion bonded parts was correlated with pressure application . m ethod o f controlling deformation and obtaining non - deformation bonding was proposed 針對實際構(gòu)件,深入分析了加壓方式和變形率的關(guān)系,并提出了控制變形量得到無變形接頭的方法。
The bonding technique of ceramics to metals is one of the central issues in materials engineering , and diffusion bonding is considered to be the most suitable method for bonding ceramics to metals 陶瓷與金屬的連接技術(shù)是材料工程領(lǐng)域的熱點研究課題,而擴散連接方法被認為是陶瓷與金屬連接最適宜的方法。
The research status quo of diffusion bonding of ceramics to metals is reviewed in this paper , and the emphases are placed on the interface reaction , stress analysis and bonding technology 本文綜述了陶瓷與金屬擴散連接的研究現(xiàn)狀,重點介紹了界面反應(yīng)研究、殘余應(yīng)力分析和連接工藝研究等內(nèi)容,并在此基礎(chǔ)上指出了研究中所存在的問題。
Abstract : the feasibility and appropriate processing parameters for diffusion bo nding of titanium alloy to stainless steel web were investigated , the main facto rs affecting diffusion bonding and the microstructure of joints were analyzed 文摘:探討了鈦合金/不銹鋼網(wǎng)擴散連接的可行性,確定了直接擴散連接條件下的最佳工藝參數(shù),分析了影響擴散連接的主要因素及接頭微觀形態(tài)。
Diffusion bonding is a solid-state welding technique used in metalworking, capable of joining similar and dissimilar metals. It operates on the materials science principle of solid-state diffusion, wherein the atoms of two solid, metallic surfaces intermingle over time under elevated temperature.