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Investigation of the compressibility and sinterabilty of AZ91 powder production and particle production by gas atomisation method 被引量:1
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作者 Mehmet Akkas Mustafa Boz 《Journal of Magnesium and Alloys》 SCIE 2019年第3期400-413,共14页
This study intends to determine the pressability and sinterability of AZ91 powder production by gas atomisation method and that of the produced powder for partial production.Therefore,first,a gas atomisation unit has ... This study intends to determine the pressability and sinterability of AZ91 powder production by gas atomisation method and that of the produced powder for partial production.Therefore,first,a gas atomisation unit has been designed and manufactured in the laboratories of the Karabiik University,Department of Manufacturing Engineering.Atomised powder production has been achieved at a temperature of 795℃,with nozzle diameters of 2 and 4 mm and four different gas pressures(5,15,25,35 bars).Argon gas has been used for atomisation and as a protective gas atmosphere.Scanning electron microscope(SEM)is used to determine the shape of the produced AZ91 powder,and a laser particle size analyzer is used to analyze the powder size.Additionally,a microhardness(HV0.025)measurement has been conducted to determine the hardness of the produced powders.To achieve a homogeneous distribution,the produced powders are mixed in a three-dimensional moving turbulator for 30 min.Mixed powders have been pressed at 300,400,500 and 600 MPa and have been sintered at 500℃,550℃and 600℃.Additionally,the density values have been determined before and after sintering of the materials.SEM images have been obtained from the fractured surfaces of the samples before and after sintering.XRD and EDX analyses have been performed to determine the chemical composition.Further,microhardness(HV0.5)is obtained from the pressure surfaces of the samples to determine the effects of the pressing pressure and the sintering temperature on the hardness.As a result of the experimental studies,it has been observed that the powder size decreases with the increase in gas pressure and that the powder shape generally changes from ligament and complex shape to droplet and spherical shape.From the XRD,XRF and EDX results,it has been determined that the structure comprises an a phase(Mg main matrix)and Mg17Al12 interphase,which isβphase,and very small amounts of MgO have been observed.The hardness of the produced powders increased based on the increase in gas pressure.The densities of the samples increased with both increasing pressing pressure and sintering temperature.It has been observed from the fractured surface SEM images that the number of pores formed in the samples decrease with an increase in the pressing pressure.It has been determined that the post-sintering structure exhibitsαtypical dendritic structure.In addition to theα-Mg matrix phase,β(Mg17Al12)intermetallic andα+βeutectic were formed in the structure.The microhardness values of the samples decreased depending on the sintering temperature;the highest hardness value was measured as 64,02 HV0.5 at a pressing pressure of 300 MPa and a sintering temperature of 500℃,whereas the lowest hardness value was measured as 54,86 HV0.5 at a pressing pressure of 600 MPa and a sintering temperature of 600℃. 展开更多
关键词 gas atomisation AZ91 alloy powder gas pressure Nozzle diameter PRESSING sintering
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高比强多孔Si3N4陶瓷透波材料的研究 被引量:3
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作者 张伟儒 《中国陶瓷工业》 CAS 2020年第2期11-14,共4页
通过采用Y2O3,Al2O3作为烧结助剂,气氛压力烧结工艺,成功地制备出了高强度多孔Si3N4陶瓷透波材料。通过SEM对材料微观结构进行了研究。实验结果表明:在适当的工艺下可以制得弯曲强度大于160 MPa,气孔率>50%的多孔氮化硅陶瓷。并讨论... 通过采用Y2O3,Al2O3作为烧结助剂,气氛压力烧结工艺,成功地制备出了高强度多孔Si3N4陶瓷透波材料。通过SEM对材料微观结构进行了研究。实验结果表明:在适当的工艺下可以制得弯曲强度大于160 MPa,气孔率>50%的多孔氮化硅陶瓷。并讨论了多孔氮化硅形成的机制和高强度的主要原因。 展开更多
关键词 气氛压力烧结(gps) 多孔氮化硅 力学性能 透波材料
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Al_2O_3-TiCN的制备和性能 被引量:1
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作者 李华平 杜大明 +2 位作者 赵世坤 杨海涛 高玲 《江苏陶瓷》 CAS 2003年第2期26-28,共3页
用气压烧结的方法制备了Al2O3-TiCN复相陶瓷。测量了其物理性能,用扫描电镜观察了其断口形貌,并分析了烧结温度对力学性能的影响,确定了最佳烧结温度。
关键词 Al2O3-TiCN 制备 性能 气压烧结 复相陶瓷 氧化铝 碳氮化钛
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