稀有金属材料与工程
稀有金屬材料與工程
희유금속재료여공정
RARE METAL MATERIALS AND ENGINEERNG
2009年
z2期
168-171
,共4页
李翠伟%王文娟%王建%翟洪祥%周洋%李世波
李翠偉%王文娟%王建%翟洪祥%週洋%李世波
리취위%왕문연%왕건%적홍상%주양%리세파
Ti_3SiC_2%固溶体%原位热压烧结%性能
Ti_3SiC_2%固溶體%原位熱壓燒結%性能
Ti_3SiC_2%고용체%원위열압소결%성능
Ti_3SiC_2%solid solution%in-situ hot-pressing sintering%properties
采用原位热压工艺制备了高纯Ti_3Si_0.6Al_0.6C_1.98陶瓷,并测试了性能.以单质的Ti、Si、Al和石墨粉为原料,摩尔比Ti:Si:Al:C=3:0.6:0.6:1.98,在1500 ℃,30 MPa压力下保温1 h,高纯Ar气保护,制备试样的主要物相为Ti_3Si_0.6Al_0.6C_1.98.制备的Ti_3Si_0.6Al_0.6C_1.98陶瓷的密度为(4.43±0.23) g/cm~3,电阻率为(0.31±0.01)μΩ·m,抗弯强度为(245.46±22.04) MPa,维氏硬度为(2.91±0.32) GPa, 断裂韧性为(5.63±0.39) MPa·m~(1/2).Ti_3Si_0.6Al_0.6C_1.98陶瓷中晶粒以板状晶为主,晶粒层状结构明显,断口形貌显示主要为穿晶断裂,晶粒的分层断裂、微裂纹的偏转桥接及滑移使材料具有独特的压痕特征.
採用原位熱壓工藝製備瞭高純Ti_3Si_0.6Al_0.6C_1.98陶瓷,併測試瞭性能.以單質的Ti、Si、Al和石墨粉為原料,摩爾比Ti:Si:Al:C=3:0.6:0.6:1.98,在1500 ℃,30 MPa壓力下保溫1 h,高純Ar氣保護,製備試樣的主要物相為Ti_3Si_0.6Al_0.6C_1.98.製備的Ti_3Si_0.6Al_0.6C_1.98陶瓷的密度為(4.43±0.23) g/cm~3,電阻率為(0.31±0.01)μΩ·m,抗彎彊度為(245.46±22.04) MPa,維氏硬度為(2.91±0.32) GPa, 斷裂韌性為(5.63±0.39) MPa·m~(1/2).Ti_3Si_0.6Al_0.6C_1.98陶瓷中晶粒以闆狀晶為主,晶粒層狀結構明顯,斷口形貌顯示主要為穿晶斷裂,晶粒的分層斷裂、微裂紋的偏轉橋接及滑移使材料具有獨特的壓痕特徵.
채용원위열압공예제비료고순Ti_3Si_0.6Al_0.6C_1.98도자,병측시료성능.이단질적Ti、Si、Al화석묵분위원료,마이비Ti:Si:Al:C=3:0.6:0.6:1.98,재1500 ℃,30 MPa압력하보온1 h,고순Ar기보호,제비시양적주요물상위Ti_3Si_0.6Al_0.6C_1.98.제비적Ti_3Si_0.6Al_0.6C_1.98도자적밀도위(4.43±0.23) g/cm~3,전조솔위(0.31±0.01)μΩ·m,항만강도위(245.46±22.04) MPa,유씨경도위(2.91±0.32) GPa, 단렬인성위(5.63±0.39) MPa·m~(1/2).Ti_3Si_0.6Al_0.6C_1.98도자중정립이판상정위주,정립층상결구명현,단구형모현시주요위천정단렬,정립적분층단렬、미렬문적편전교접급활이사재료구유독특적압흔특정.
Ti_3Si_0.6Al_0.6C_1.98 solid solution ceramics were prepared and their properties were tested. High purity Ti_3Si_0.6Al_0.6C_1.98 solid solution ceramics have been fabricated by in-situ hot pressing a mixture of elementary titanium, silicon, aluminun and graphite powders at a pressure of 30 MPa and temperature of 1500℃ for 1 h. The density of the sintered Ti_3Si_0.6Al_0.6C_1.98 solid solution ceramics was (4.43±0.23) g/cm~3. The electrical resistance was (0.31±0.01) μΩ·m. The bending strength was (245.46±22.04) MPa. The Vickers hardness was (2.91±0.32) GPa. And fracture toughness was (5.63±0.39) MPa·m~(1/2). The grains of the Ti_3Si_0.6Al_0.6C_1.98 solid solution ceramics were planary with the nano laminate structure. And cross grain fracture was the main fracture model. The unique characteristics of the indentation surfaces are attributed to a multiple mechanism: delamination on the basal planes, microcrack deflection and bridging, debonding, etc.