冶金方法的英文
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"冶金方法"怎么读用"冶金方法"造句
英文翻译手机版
- metallurgical process
- "冶金"英文翻译 metallurgy
- "方法"英文翻译 method; means; way; techniqu ...
- "气化冶金方法" 英文翻译 : vapometallurgicalprocess
- "盖勒金方法" 英文翻译 : galerkin's method
- "布巴诺夫-伽辽金方法" 英文翻译 : bubnov-galerkin method
- "金方" 英文翻译 : johnnie walker golden lable
- "金方庆" 英文翻译 : jin fangqing
- "冶金" 英文翻译 : metallurgy◇冶金粉尘 metallurgical dust; 冶金工业 metallurgical industry; 冶金炉 metallurgical furnace; furnace
- "冶金物理化学研究方法" 英文翻译 : research methods in metallurgical physical
- "酬金方案" 英文翻译 : compensation plan
- "加勒金方程" 英文翻译 : galerkin equations
- "现金方式" 英文翻译 : cash base
- "恤养金方案" 英文翻译 : pension plan
- "研究金方案" 英文翻译 : fellowshiprogramme
- "养老金方案" 英文翻译 : a pension scheme
- "冶金焦炭坏强度的测定方法" 英文翻译 : coke for metallurgy-determination of mechanical strength
- "冶金设施的维修和现代化方法" 英文翻译 : methods and means of maintenance and modernization of matellurgical installations
- "冶金学,冶金术" 英文翻译 : metallurgy
- "查普雷金方程" 英文翻译 : chaplygin equation
- "个人奖金方案" 英文翻译 : individual incentive plan
- "基金方案活动" 英文翻译 : fund programme activities
- "恰普雷金方程" 英文翻译 : chaplygin equation
- "特列勒金方台" 英文翻译 : tereldzhin-dervelzhin
- "信托基金方案" 英文翻译 : trust fund program
- "冶金焦炭的焦末含量及筛分组成的测定方法" 英文翻译 : coke for metallurgy-determination of coke breeze content and size consist
例句与用法
- This product is manufactured by powder metallurgy through compacting and pressure working
本产品系采用粉末冶金方法经压坯和压力加工而制成。 - In this dissertation , the magnets were prepared by powder metallurgy . powders of ag were added during ball milling , and powders of al and ti were added separately and jointly during ball milling , while al and ti were jointly added during melting . the samples were sintered for 0 . 5h at 1090
本文采用粉末冶金方法制备烧结磁体,在制粉阶段添加ag元素,并单独和复合添加ti 、 al元素,在熔炼阶段复合添加ti 、 al元素,坯体在1090烧结0 . 5h 。 - In the study , powder metallurgy was adopted to fabricate discontinuous cf / cu composite . the surface treatment of carbon fibers and fabricating technology of the composite were two keys of the study . and microstructure and properties of the material were also researched more systemically
本课题尝试采用粉末冶金方法制备非连续c _ f / cu复合材料,对碳纤维的表面处理、复合材料的制备工艺进行了重点研究,并对复合材料的组织及性能进行了较为系统的研究。 - 6013 aluminum alloys containing different main alloying elements minor alloying elements were designed and prepared by ingot - metallurgy processing . the tesile mechanical and aging properties of the studied alloys were tested ; the microstructure of those alloys were observed and analyzed using optical microscope ; the influence of main alloying element mg , si , minor alloying elements mn , cu and homogenization process on the structure and property of studied alloys were studied
采用铸锭冶金方法,设计并制备了不同合金元素含量的6013铝合金,将铸锭热加工以后,测试了合金的拉伸力学性能和时效性能,采用金相显微镜观察分析了合金的显微组织结构,研究了合金中主合金元素mg 、 si ,微量元素mn 、 cu添加量、均匀化温度和时间对合金组织和性能的影响。 - In the present dissertation , the densification mechanisms and the structure controlling of various transient layers of w - mo - ti flier - plates with graded wave impedance were mainly investigated . wholly dense w - mo - ti flier - plates were then prepared by powder stacking and hot - pressing . in order to achieve a required wave impedance profile and a quasi - continuous change along the thickness direction , the ratios of components in transient layers were well adjusted
论文采用粉末冶金方法,详细研究了w - mo - ti体系梯度飞片材料中各组元的烧结致密化机理与控制方法,以精细控制不同配比的混合粉末的铺填方式与铺填结构来减小梯度飞片材料内部波阻抗值的跃变幅度,成功制备出波阻抗按指定分布特征沿厚度方向准连续变化的、波阻抗面平行度高并且整体致密的w - mo - ti体系梯度飞片。 - The results indicate that arc melting is a good method to produce nb - si system intermetallics due to its simpler technics , lower cost and compact products . however , powder metallurgy is found to be not suitable to produce the nb - si system intermetallics due to its coarse and loose products resulting from the poor molding property of nb and si mixed powders . optical floating zone technology , which is used to fabricate nb - si intermetallic composites for the first time , is also found to be a good way to produce nb - si system intermetallics because of its compact products and good property despite of its relatively high cost
结果表明,电弧熔炼方法制备得到的nb - si系金属间化合物比较致密,且制备工艺简单,经济实用,是一种合适的nb - si系金属间化合物制备方法;由于nb 、 si元素粉末的成型性很差,用粉末冶金方法(热压烧结和冷等静压)制备的nb - si系金属间化合物表面粗糙、致密度低,且成本较高,不宜用于制备nb - si系金属间化合物;首次用光学悬浮单晶生长技术制备的nb - si系金属间化合物复合材料致密度很高,尽管成本稍高,但由于性能最佳,也是一种合适的nb - si系金属间化合物制备方法。
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