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1)  milling energy
球磨能量
2)  high energy ball milling
高能球磨
1.
Influence of process control agent in preparation of SiC/Al composite powder by high energy ball milling;
过程控制剂在高能球磨法制备SiC/Al复合粉末中的作用研究
2.
Influences of high energy ball milling on microstructure and properties of a new steel bonded titanium carbide;
高能球磨对新型TiC钢结硬质合金组织和性能影响的研究
3.
Effects of low temperature heat treatment and high energy ball milling on the preparation of ultrafine alumina;
低温热处理以及高能球磨对制备超细氧化铝的影响
3)  High energy milling
高能球磨
1.
Cu-Al alloy powder was produced by high energy milling of Cu and Al, then mixed them together with Cu2O powder,Al2O3/Cu composite was prepared through oxidation and sintering synchronously under the protecting of N2.
采用高能球磨制备出亚稳态的Cu-1%Al(质量分数)合金粉,再将Cu2O粉与其一起进行高能球磨,然后将复合粉末压坯在N2保护炉中同时进行氧化和烧结,制备出Al2O3/Cu复合材料。
2.
A 15%SiC_p/2009Al composite was fabricated by high energy milling powder metallurgy (PM) technique.
 采用高能球磨粉末冶金法制备了15%SiCp/2009Al复合材料,研究了球磨转速、球磨时间、加热抽真空工艺、热压成型以及热挤压比对复合材料力学性能的影响。
3.
The aluminum matrix composites reinforced with SiC particulates were fabricated by the high energy milling in conjunction with powder metallurgy.
采用高能球磨粉末冶金技术制备了SiCp/Al复合材料 ,研究分析了该材料界面结构特点。
4)  high-energy milling
高能球磨
1.
Influence of high-energy milling on the structure and magnetic properties of atomized magnetic powder;
高能球磨对雾化磁粉结构与磁性能的影响
2.
Micro-nanometer ferric oxide powders were prepared by high-energy milling and then reduction with hydrogen at different temperature for different holding time.
采用高能球磨,制得不同粒度的超细氧化铁粉末,然后,分别在不同还原温度和还原时间下,进行氢气还原。
3.
This paper studed the process and kinetics of solid -state reduction by high-energy milling at room temperature.
采用机械还原的方法以 Si/V_2O_5为原料直接制备 VO_2/SiO_2复合陶瓷粉,主要探讨了高能球磨实现固相反应的动力学条件。
5)  high-energy ball milling
高能球磨
1.
Research on preparation of nitrogen-contained stainless steels by high-energy ball milling and sintering;
高能球磨及烧结制备含氮不锈钢的研究
2.
Preparation,microstructure and properties of Cu-15wt%Cr alloy by high-energy ball milling;
高能球磨制备Cu-15wt%Cr合金及其微观组织与性能的研究
3.
Investigation on Al_2O_3-Y_2O_3 mixtures prepared by high-energy ball milling;
高能球磨Al_2O_3-Y_2O_3粉体混合物的研究
6)  high energy ball-milling
高能球磨
1.
In addition,the influence of the high energy ball-milling on the PIM and the performance of the alloy was studied.
本次实验以羰基铁粉和羰基镍粉为原料粉末,采用注射成形方法制取Fe-50%Ni软磁合金,研究了高能球磨制备粉末对注射成形工艺以及材料性能的影响。
2.
36 ~23 μm, whose relative density is above 95%, were prepared by a conventional ceramic process using the sol-coating and high energy ball-milling method.
利用溶胶包覆和高能球磨的方法,经传统的陶瓷工艺,得到相对密度在95%以上,晶粒尺寸在0。
3.
TiC,TiN and WC ultrafine powders were respectively prepared from micrograded TiC,TiN and WC raw powders by high energy ball-milling under different ball/powder weight ratio and ball-milling time.
对Ti(C,N)基金属陶瓷硬质相TiC、TiN、WC原料粉在不同球料比、不同球磨时间试验条件下进行高能球磨,探讨了TiC、TiN、WC粉体的高能球磨超细化机理和球磨行为特征。
补充资料:普通免疫球蛋白 ,人血丙种球蛋白,丙种球蛋白
药物名称:丙种球蛋白

英文名:γ-Globulin

别名: 免疫血清球蛋白;普通免疫球蛋白 ,人血丙种球蛋白,丙种球蛋白
外文名:γ-Globulin
适应症: 含有健康人群血清所具有的各种抗体,因而有增强机体抵抗力以预防感染的作用。主要用于免疫缺陷病以及传染性肝炎、麻疹、水痘、腮腺炎、带状皰疹等病毒感染和细菌感染的防治,也可用于哮喘、过敏性鼻炎、湿疹等内源性过敏性疾病。
用量用法:
肌注:每次2~5ml,3周1次,用于内源性过敏性疾病,每次10ml(含量10%者),3周内注射2次。胎盘球蛋白每次6~9ml。
注意事项:
1.按球蛋白来源可分为两种,一为健康人静脉血来源的丙种球蛋白制剂,按蛋白质含量有10%、16%、16.5%等数种(国内制品浓度在10%以上),其中丙种球蛋白占95%以上。另一种为胎盘血来源的丙种球蛋白(人胎盘血丙种球蛋白),即胎盘球蛋白,含蛋白质5%,其中丙种球蛋白占90%以上。胎盘球蛋白因丙种球蛋白含量以及纯度均较低,其用量应相应增大。 2.除专供静注用的制剂外,一般制剂不可静注。 3.注射大量时,可见局部疼痛和暂时性体温升高。
注:参见:“丙种球蛋白注射液”.



类别:免疫增强剂(免疫反应调节剂)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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