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42篇 您的检索式:作者名="Dhindaw"
    题名 作者 年代 出处 被引量
1Prediction of Compressive Strength of Biodegradable Mg–Zn/HA Composite via Response Surface Methodology and Its Biodegradation显示文摘This work aimed to fabricate magnesium zinc/hydroxyapatite(Mg–Zn/HA) composite via powder metallurgy method and to develop a mathematical model to predict the compressive strength of the composite using response surface methodology method. The effect of various mechanical milling parameters, milling speed(200–300 r/min), ball-to-powder weight ratio(5–12.5)and HA content(2.6–10 wt%) on the compressive strength of Mg–Zn/HA composite was investigated. The model shows that high compressive strength of Mg–Zn/HA composite was achieved when the powders were prepared with high milling speed and ball-topowder weight ratio and low HA content. The mathematical model was adequate with error percentage lower than 3.4%. The microstructure of Mg–Zn/HA composite with different process parameters revealed that fine microstructure was observed at high milling speed and ball-to-powder weight ratio while agglomeration of HA was found in composite with 10 wt% HA. The agglomeration of HA led to degradation of interfacial bonding strength between matrix and reinforcement phases and hence decreased the overall compressive strength of Mg–Zn/HA composite. Biodegradation test revealed that sample with higher HA content had more weight gain and there was more formation of hydroxyapatite. Mg–Zn/HA composite with 8 wt% HA was found to be the best candidate for implant application because it had considerable compressive strength and good biodegradation properties.Loy Liang Soon Hussain Zuhailawati Ismail Suhaina Brij Kumar Dhindaw 2016Acta Metallurgica Sinica(English Letters)2016,29,5:3
2Numericalsimulation of temperature distribution using finitedifference equations and estimation of the grain sizeduring friction stir processing显示文摘ARORA H S SINGH H DHINDAW B K 2012Materials Science &Engineering A2012,543,:1
3Improvement in silicon morphology and mechanical properties of AI-17Si alloy by melt conditioning shear technology显示文摘BAREKAR N S DHINDAW B K FAN Z 2010International Journal of Cast Metals Research2010,23,4:1
4Processing of advanced AI/SiC particulate metal matrix composites under intensive shearing-A novel Rheo-process 显示文摘TZAMTZIS S BAREKAR N S HARI BABU N PATEL J DHINDAW B K FAN Z 2009Composites Part A: Applied Science and Manufacturing2009,40,2:1
5Materials Science Forum显示文摘Thakur S K Dhindaw B K Hort N 2003419~422: 8372003,419,422:1
6The influence of interracial characteristics between SiCp and Mg/AI metal matrix on wear, coefficient of friction and microhardness显示文摘THAKUR S K DHINDAW B K 2001Wear2001,247,2:1
7Characterization of the Peritectic Reaction in Medium - alloy Steel Through Microsegregation and Heat - of - transformation Studies显示文摘Dhindaw Brij K 2004Metallurgical and Materials Transactions A2004,35,9:1
8Processing of aluminum-graphite particulate metal matrix composites by advanced shear technology 显示文摘BAREKAR N TZAMTZIS S DHINDAW B K PATEL J BABU N H FAN Z 2009Journal of Materials Engineering and Performance2009,18,9:1
9The influence of interfacial characteristics between SiC and Mg/Al metal matrix on wear, coefficient of friction and microhardness 显示文摘SANJAY KUMAR THAKUR BRJIJ KUMAR DHINDAW 2001Wear2001,247,:1
10The Influence of interracial characteristics between SiCp and Mg/A1 metal matrix on wear coefficient of friction and microhardness 显示文摘Thakur S K Dhindaw B K 2001Wear2001,247,:1
11Low-convection-cool- ing slope cast AISi7Mg alloy: A rheological perspective显示文摘Ritwik R Prasada Rao A K Dhindaw B K 2013Journal of Materials Engineering and Performance2013,22,9:1
12On the infiltration behavior of AI, AI-Li, and Mg melts through SiCp bed显示文摘MURTY B S THAKUR S K DHINDAW W B K 2000Metall Mater Trans A2000,,31:1
13Particle engulfment and pushing by solidifying interfaces: Part 1. Ground experiments显示文摘Frank R. Juretzko Doru M. Stefanescu Brij K. Dhindaw Subhayu Sen Peter A. Curreri 1998Metallurgical and Materials Transactions A1998,,6:1
14Particle engulfment and pushing by solidifying interfaces: Part II. Microgravity experiments and theoretical analysis显示文摘D. M. Stefanescu F. R. Juretzko A. Catalina B. K. Dhindaw S. Sen P. A. Curreri 1998Metallurgical and Materials Transactions A1998,,6:1
15Melt-Conditioned, High-Pressure Die Casting of Mg–Zn–Y Alloy显示文摘Mingxu Xia Subhajit Mitra Brij Dhindaw Guojun Liu Zhongyun Fan 2010Metallurgical and Materials Transactions B2010,,1:1
16Creep behavior of AE42 based hybrid composites显示文摘A. Arunachaleswaran I.M. Pereira H. Dieringa Y. Huang N. Hort B.K. Dhindaw K.U. Kainer 2007Materials Science & Engineering A2007,,:1
17Parametric study of friction stir processing of magnesium-based AE42 alloy显示文摘Arora H S Singh H Dhindaw B K 2012J Mater Eng Perform2012,21,11:1
18Behavior of Ceramic Particle at the Solid-Liquid Metal Interface in Metal Matrix Composites 显示文摘Stefanescu D M Dhindaw B K 1988Metallurgical Transaction1988,19,:1
19Processing of Advanced Al/SiC particulate metal matrix composites显示文摘ZAMTZIS T S BAREKAR N S HARI BABU N PATEL J DHINDAW B K FAN Z 2009Composites A2009,40,:1
20Behavior of ceramic particles at the solid-liquid metal interface in metal matrix composites显示文摘STEFANESU D M DHINDAW B K KACAR S A 1988Metal Trana1988,,:1
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