说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 句库 -> 陶瓷复合钢管
1.
Effects of altering magnetic field on structure and properties of ceramic lined compound pipes fabricated by SHS
交变磁场对SHS陶瓷复合钢管陶瓷层结构和性能的影响
2.
The ceramic layer does not crack or flake off when heated to800℃ and then quenched.
将陶瓷内衬复合钢管加热至800℃温,然后水淬,陶瓷层不炸不裂。
3.
Studies of Alloyed SHS Technology to Produce Ceramic Lined Compound Pipes;
合金化自蔓延法制备陶瓷内衬复合钢管的研究
4.
Study of the Ceramic-lined Compound Pipe Based on Centrifugal-SHS Technique
基于离心SHS技术制备陶瓷内衬复合钢管的研究
5.
Centrifugal-SHS based preparation of composite steel pipe design for the ceramic-lined
离心-SHS法在陶瓷内衬复合钢管制备中的研究
6.
The ceramic-lined steel composite pipe can be joined by welding the steel pipe layer.
陶瓷内衬复合钢管可以通过焊接外层钢管达到连接的目的。
7.
The ceramic layer does not crack or flake off when the composite pipe receives a mechanical shock.
陶瓷内衬复合钢管具有良好的耐机械冲击性能。在受到一般性的机械冲击时,陶瓷层不碎、裂。
8.
Research on Properties of Steel Fiber Reinforced Ceramic Matrix Composites
钢纤维增韧陶瓷基复合材料性能研究
9.
The ceramic-lined steel composite pipes are lighter than alloy pipes, cast iron pipes, and cast stone pipes, which reduces the expense of transportation and makes the pipes easier to install.
陶瓷内衬复合钢管与钢管、磨合金铸管、铁管和铸石管比较,相对重量轻,便于运输和安装。
10.
The producing technics, properties and application situation of complex steel pipe lined with porcelain are introduced.
介绍了陶瓷钢铁复合管的制造工艺和性能及应用情况。
11.
Effects of Alternative Magnetic Field on Phase Structure in Ceramic Layer of Ceramic Lined Compound Steel Pipes Fabricated by SHS
交变磁场对SHS制备复合钢管陶瓷层相结构的影响
12.
The ceramic-lined steel composite pipe has exceptional resistance to abrasion. Its service life in materials transportation with hard abrasives is more than20 times longer than in common steel pipe.
陶瓷内衬复合钢管具有优异的耐磨损性,其使用寿命是普通钢管的20倍以上。
13.
Composite Ceramic Aluminum Zirconium Carbon Outlet Used in Low-Alloy Steel Production
陶瓷复合铝锆碳水口在低合金钢中的使用
14.
The Investigation of ZrO_2 Ceramic Molding and Composite Ceramic
ZrO_2陶瓷成型工艺和复合陶瓷的研究
15.
The Mechanism of Tribopolymerization to Reduce Wear on the Surfaces of Iron or Alumina;
钢/钢界面和陶瓷/陶瓷界面的摩擦聚合机理研究
16.
Research Progress in Ceramic-lined Pipe Prepared by Self-propagating High Temperature Synthesis
自蔓延高温合成陶瓷内衬复合管的研究进展
17.
complex perouskite type piezoelectric ceramics
复合钙钛矿型压电陶瓷
18.
asbestos-ceramic fiber composite
石棉—陶瓷纤维复合材料