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粉末冶金的的英文

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"粉末冶金的"怎么读用"粉末冶金的"造句

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  • ceramimetallurgical

例句与用法

  • To have outer cooling system though forced convection . exercisable processes : compressive sintering of cemented carbide and ceramic , moulding sintering in powder metallurgy
    实例:适合于硬质合金陶瓷件的加压烧结,粉末冶金的成型烧结等。
  • Enjoying a history of more than 40 years specializing in manufacturing various powder metallurgy parts , nbtm has turned into a leading enterprise in the industry of powder metallurgy in china
    宁波东睦粉末冶金有限公司拥有40多年生产粉末冶金的历史,目前已成为中国同行中的领头企业。
  • In this paper , the mechanical alloy technology ( ma ) was adopted . through the designing and optimizing of the ma technology and liquid phase sinter technology , the new electrician alloy - mo - cu was made
    本文采用粉末冶金的非平衡制备高新技术?机械合金化法,通过机械合金化工艺、粉末生坯压制工艺和液相烧结工艺的设计与优化,制备出了mo - cu高比重合金。
  • In this paper , micro - porous metals with 2 - 23 u m - pore diameter and 19 . 3 - 62 . 4 % porosity were produced by the powder metallurgy . through the experiments and sem analysis , the effect of processing parameters on porous structure was studied
    实验应用粉末冶金的压坯加熟发泡方法,制得了微孔泡沫金属材料,其平均孔径在2 - 23um之间,平均孔隙率在19 . 3 - 62 . 4之间。
  • In this paper , micrometer and nanometer sic powder were respectively sintered as employed in powder metallurgy , nanometer porous sic was successfully prepared with its microstructure analyzed and its photoluminescence tested
    本文分别以微米和纳米碳化硅粉末为原料,采用粉末冶金的烧结工艺,成功的制备了纳米多孔碳化硅,并分析了多孔碳化硅的结构,同时测试了其光致发光谱。
  • Powder metallurgy method was used to produce bn / cnts contained al - based alloys . bn / cnts and al powder were mixed by ball milling , and then pressed at 1gpa to disks . the pellets were heated at 700 , 800 , 900 respectively for 1 hour in inert gases
    采用粉末冶金的方法,将铝粉与bn粉和(或)碳纳米管在惰性气体保护下球磨,然后将粉末在1gpa下压片,在惰性气体保护下分别在600 , 700 , 800 , 900烧结1小时,产物经xrd , dta ( differentialthermalanalysis ) ,并测量显微维氏硬度。
  • The test result of the rene95 sample showed that the maximum ultimate tensile strength can be as high as 1400mpa and has reached 97 . 9 % of that of the sample fabricated by powder metallurgy ( pm ) . the plastic elongation of the test sample can even exceed that of pm . the ultimate tensile strength of the test sample grown from single crystal substrate has surpassed 6 % of that of grown from the stainless steel substrate , at the same time the plastic elongation surpassed 40 %
    对成形试样的力学性能测试结果表明,强度方面_ b最大为1400mpa ,已经达到了粉末冶金的97 . 9 ,塑性方面甚至超过了粉末冶金的水平;以单晶为基材的成形试样其最大拉伸强度要比不锈钢为基材的试样高6 ,延伸率要高40 。
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