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首页> 外文期刊>Annals of the American Thoracic Society >An economic and environment friendly way of recycling boron carbide waste to prepare B4C/Al composite ceramic
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An economic and environment friendly way of recycling boron carbide waste to prepare B4C/Al composite ceramic

机译:回收碳化硼废料的经济和环保方式,制备B4C / Al复合陶瓷

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摘要

Recently, with the rapid growth of sapphire wafer applications, boron carbide as abrasive, has shown an increasing demand. Great amounts of boron carbide waste (low purity and small grain size with D-50 approximate to 1 mu m) are therefore produced during the production of boron carbide abrasives and barely recovered and utilized. This paper is aimed at developing an economic and environment friendly process to recycle the boron carbide waste through adding a certain amount of Al powder to prepare B4C/Al composite ceramic. Prior to the sintering process, samples were firstly mixed with different Al powder and then pelleted and dehydrated. The effects of the pelletizing factors on performances of the pellets and the ceramics were optimized as binder hydroxypropyl methylcellulose addition 0.4%, pelleting pressure 30 MPa, Al addition 9 wt%, sintering time 90 minutes. Under these conditions, the apparent porosity, bulk density, compressive strength and flexural strength of the sintered B4C/Al are 19.08%, 1.84 g/cm(3), 246.88 MPa and 71.10 MPa respectively. Al addition can not only attribute to the low-temperature liquid sintering and densification of the product, but also generation of some stable phases including AlB12, AlB12C2 and Al3BC, which in turn increase the performance of the ceramic composite.
机译:最近,随着蓝宝石晶圆应用的快速增长,碳化硼作为磨蚀,已经提出了不断增长的需求。因此,在生产碳化硼磨料的生产过程中产生大量的碳化硼废料(低纯度和D-50近似的小晶粒尺寸),并几乎没有回收和使用。本文旨在开发经济和环境友好的过程,通过添加一定量的Al粉末来制备B4C / Al复合陶瓷,通过添加一定量的碳化硼废物来回收碳化硼废物。在烧结过程之前,首先用不同的Al粉末混合样品,然后造粒和脱水。颗粒化因子对粒料和陶瓷性能的影响优化为粘合剂羟丙基甲基纤维素加成0.4%,粒料压力30MPa,Al加入9wt%,烧结时间90分钟。在这些条件下,烧结B4C / Al的表观孔隙率,堆积密度,抗压强度和抗弯强度分别为19.08%,1.84g / cm(3),246.88MPa和71.10MPa。 Al加法不仅可以归因于低温液体烧结和产品致密化,还可以产生一些稳定的阶段,包括ALB12,ALB12C2和AL3BC,这反过来增加了陶瓷复合材料的性能。

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