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1)  direct melt reaction
熔体反应法
1.
A novel in-situ particulate reinforced aluminum matrix composite has been successfully developed by direct melt reaction(DMR) technique in the Al-K2ZrF6 system.
开发了Al-K2ZrF6体系熔体反应法合成原位铝基复合材料,采用XRD,SEM和TEM分析了复合材料中相组成、微观组织和界面结构。
2.
On the basis of analyzing various in-situ synthesized processes, a new in-situ reactive technique, called direct melt reaction method, has been adopted.
利用Al Zr及Al Zr O体系,应用熔体反应法,成功制备了内生ZrAl3和Al2O3颗粒增强铝基复合材料。
3.
Novel in-situ(Al_3Zr+Al_2O_3)_p/Al composites was developed by direct melt reaction in the system Al-(Zr(CO_3)_2).
开发了Al-Zr(CO3)2体系熔体反应法合成新型(Al3Zr+Al2O3)p/Al复合材料,研究了Al-Zr(CO3)2体系的反应热力学、反应动力学及反应机制。
2)  reactive melt infiltration
反应熔体浸渗法
1.
The subsequent reactive melt infiltration(RMI) method was adopted to densify it further and C/SiC composites were successively prepared.
以T700炭纤维准三维编织针刺整体毡为预制体,在炭纤维表面CVI预沉积热解炭涂层,利用化学气相渗透-反应熔体浸渗法(CVI-RMI)制备C/SiC复合材料,观察材料的微观形貌,并探讨界面对弯曲性能的影响。
2.
Continuous carbon fiber reinforced silicon carbide composites with two d imension are fabricated by reactive melt infiltration.
采用反应熔体浸渗法制备了二维碳/碳化硅陶瓷基复合材料,并对材料的结构和力学性能进行了研究。
3)  in-situ melt reaction method
原位熔体反应法
4)  direct reaction method
熔体直接反应法
1.
The TiB2/Al composites were fabricated by direct reaction method at different initial reaction temperatures,and the remelting process was carried on.
用熔体直接反应法在不同起始反应温度下制备了TiB2/Al复合材料,并进行了重熔处理,用光学显微镜、扫描电镜、透射电镜等对复合材料的组织和力学性能进行了测试分析,并探讨了熔体中的反应机制。
5)  reaction in melt
熔体反应
1.
The microstructures of Al 3Zr (p) , Al 2O 3(p) /Al composites formed by reaction in melt from ZrOCl 2 Al system were examined by X ray diffraction (XRD) and scanning electron microscope (SEM).
利用X射线衍射仪 (XRD)和扫描电子显微镜 (SEM ) ,对ZrOCl2 Al体系熔体反应生成的复合材料组织进行了分析 ,结果表明 :ZrOCl2 Al体系反应生成相为Al3 Zr和α Al2 O3 ,颗粒尺寸为 0 。
2.
Al 3Zr (p) ,Al 2O 3(p) /A356 composites have been fabricated by reaction in melt from Al ZrOCl 2 system.
对Al ZrOCl2 体系采用熔体反应法制备了Al3Zr( p) 、Al2 O3( p) /A35 6复合材料。
6)  high temperature reaction of melt
高温熔体反应
补充资料:法性属法为法性土
【法性属法为法性土】
  谓真如法性之理,譬如虚空,遍一切处,乃是法身所证之体,即为所依之土,故名法性属法,为法性土。
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