1) biocomposite
复相生物陶瓷
2) complex phase
复相
1.
The results show that the phase of Al-doped samples is a complex phase,such as spinel LiMn_2O_4 and monoclinic Li_2MnO_3.
研究结果表明:掺铝样品是一种复相,物相组成为尖晶石LiMn2O4和单斜型Li2MnO3;掺铝后材料颗粒粒度变小,晶体形状为类球形;该材料性能介于层状LiMnO2和尖晶石LiMn2O4性能之间,当掺铝量为0。
3) composite ceramics
复相陶瓷
1.
Preparation of cordierite-mullite composite ceramics;
堇青石-莫来石复相陶瓷制备
2.
The raw batch of cordierite and ferrites were prepared and mixed together,and the composite ceramics was got under a practical process.
使用铁氧体生料和堇青石生料,在合适的工艺制度下,制备了堇青石红外辐射复相陶瓷。
3.
The all raw meal ingredient and all grog ingredient of cordierite and ferrites were prepared,and the composite ceramics was prepared.
用铁氧体生料和堇青石生料的复合及铁氧体熟料和堇青石熟料的复合,制备了堇青石红外辐射复相陶瓷。
4) Dual phase steel
复相钢
5) composite ceramic
复相陶瓷
1.
Effect of BN content on the properties and microstructure of AlN-BN composite ceramics by injection molding;
BN含量对注射成形AlN-BN复相陶瓷性能和组织的影响
2.
Preparation of Al_2O_3-based composite ceramics by combining hydrothermal processing with co-precipitation;
Al_2O_3基复相陶瓷共沉淀—水热法制备研究
3.
3SrO·(1-y)TiO2·yNb2O5)composite ceramics were prepared by sol-gel method in which BST slabby sol solution were fabricated firstly to suspend Nb2O5 fine powders.
yNb2O5)复相陶瓷。
6) multiphase ceramic
复相陶瓷
1.
Nano multiphase ceramic helix muzzle was made of nano-ZrO2 and micron Al2O3, experiment results proved that nano-ZrO2 help to preparation thin crystal ZTA multiphase ceramic.
以纳米ZrO2、微米Al2O3为原料制备纳米复相陶瓷喷嘴。
2.
Friction and wear behaviors were studied for Ti_3SiC_2/SiC multiphase ceramics/45 steel pairs under unlubricated and lubricated.
研究了由热等静压原位合成的Ti3SiC2/SiC复相陶瓷与45#钢在干摩擦和边界油润滑条件下的摩擦磨损特性。
3.
A method of producing mullite/ZrO 2/Al 2TiO 5 multiphase ceramics with fused mullite、Al 2O 3 and TiO 2 as raw materials was introduced.
研究了以电融Mulite、ZrO2、Al2O3、TiO2为原料制取Mulite-Al2TiO5-ZrO2复相陶瓷过程中烧成温度及热应力对材料的结构性能的影响。
参考词条
补充资料:A-W生物活性玻璃陶瓷
分子式:
CAS号:
性质:含有磷灰石和硅灰石两种结晶相的特定组成的玻璃陶瓷。在A-W微晶下班中,磷灰石和硅灰石结晶尺寸约为0.1~0.5μm,呈弥散分布。由于针状的硅灰石微晶阻止了微裂纹传播,使其弯曲强度和断裂韧性大大提高;而磷灰石微晶赋予其生物活性使能与自然骨形成骨键合,其界面结合强度达13MPa。已被应用于骨缺损修复,以及人工关节、人工齿根、颅骨、颌骨等修复体。
CAS号:
性质:含有磷灰石和硅灰石两种结晶相的特定组成的玻璃陶瓷。在A-W微晶下班中,磷灰石和硅灰石结晶尺寸约为0.1~0.5μm,呈弥散分布。由于针状的硅灰石微晶阻止了微裂纹传播,使其弯曲强度和断裂韧性大大提高;而磷灰石微晶赋予其生物活性使能与自然骨形成骨键合,其界面结合强度达13MPa。已被应用于骨缺损修复,以及人工关节、人工齿根、颅骨、颌骨等修复体。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。