首页> 外文学位 >Improving the temperature resistance of aluminum-matrix composites by using an acid phosphate binder.
【24h】

Improving the temperature resistance of aluminum-matrix composites by using an acid phosphate binder.

机译:通过使用酸性磷酸盐粘合剂提高铝基复合材料的耐热性。

获取原文
获取原文并翻译 | 示例

摘要

The fabrication of metal-matrix composites by vacuum infiltration of a liquid metal (close to the liquidus temperature) into a SiC whisker preform under an inert gas pressure was shown to produce SiC whisker reinforced aluminum (12-37 vol.%) which was comparable in quality to those produced by powder metallurgy or squeeze casting.; The {dollar}alpha{dollar}-SiC whisker preform (22 vol.%) was made by wet forming using water and a binder. The use of phosphate binders (with Al(OH){dollar}sb3{dollar} and H{dollar}sb3{dollar}PO{dollar}sb4{dollar} as precursors) instead of the widely used silica (SiO{dollar}sb2{dollar}) binder resulted in increased tensile strength and temperature resistance of the SiC whisker composites. The excess H{dollar}sb3{dollar}PO{dollar}sb4{dollar} from the acid phosphate binder reacted with SiC to form SiP{dollar}sb2{dollar}O{dollar}sb7{dollar}, which strengthened the preform by acting as an in-situ binder. The excess H{dollar}sb3{dollar}PO{dollar}sb4{dollar} also reacted with Al to form AlP, which strengthened the Al/binder interface. The combination of SiP{dollar}sb2{dollar}O{dollar}sb7{dollar} and AlP caused the tensile strength of the SiC whisker composite to increase. The phases Al(PO{dollar}sb3)sb3{dollar}, SiP{dollar}sb2{dollar}O{dollar}sb7{dollar} and AlP all contributed to the strengthening of the composites.; Upon heating the SiC whisker composites (not the preforms) at 400 or 600{dollar}spcirc{dollar}C for 240 h, the tensile strength decreased for composites made with the silica binders, but increased for composites made with the phosphate binders. The latter effect increased with increasing P/Al ration in the phosphate binder. This is attributed mainly to the increased amount of SiP{dollar}sb2{dollar}O{dollar}sb7{dollar}, which was present in greater quantity than Al(PO{dollar}sb3)sb3{dollar} or AlP.; Al-matrix composites containing short (0.1 mm) pitch-based carbon fibers (55 vol.%) were similarly prepared, except that the carbon fiber preforms were heated at 200{dollar}spcirc{dollar}C prior to metal infiltration. Upon heating the composites (not the preforms) at 600{dollar}spcirc{dollar}C for 2-240 h, the tensile strength decreased for composites made with phosphate or silica binders. This is attributed to the absence of a binder/carbon reaction for both binders. The improvement of the fiber/matrix bonding due to the binder/Al reaction for the case of the phosphate binder was insufficient to overshadow the negative effect related to the absence of a binder/carbon reaction. Nevertheless, the strength decrease after heating at 600{dollar}spcirc{dollar}C for 14 h was less for composites made with the phosphate binder than those made with the silica binder. Moreover, the strength decreased less as the phosphate binder amount was increased.
机译:通过在惰性气体压力下将液态金属(接近液相线温度)真空渗入SiC晶须预成型件来制造金属基复合材料,可生产出可比的SiC晶须增强铝(12-37%(体积))。在质量上与粉末冶金或挤压铸造生产的产品相同;通过使用水和粘合剂的湿法成型来制造{dollar}α{dollar} -SiC晶须预成型体(22体积%)。代替广泛使用的二氧化硅(SiO {dollar} sb2),使用磷酸盐粘合剂(以Al(OH){dollar} sb3 {dollar}和H {dollar} sb3 {dollar} PO {dollar} sb4 {dollar}为前体)粘结剂导致SiC晶须复合材料的拉伸强度和耐热性提高。酸性磷酸盐粘合剂中过量的H {sb3sb3 {dollar} PO {dollar} sb4 {dollar}与SiC反应形成SiP {sdol2 sb2 {Oldollarssb7 {dollar}},从而通过充当原位粘合剂。过量的H {sb3 {dollar} PO {dollar} sb4 {dollar}也与Al反应形成AlP,从而增强了Al /粘合剂界面。 SiP {dollar} sb2 {dollar} O {dollar} sb7 {dollar}和AlP的组合导致SiC晶须复合材料的拉伸强度提高。 Al(PO {dollar} sb3)sb3 {dollar},SiP {dollar} sb2 {dollar} O {dollar} sb7 {dollar}和AlP的相均有助于增强复合材料。在SiC晶须复合材料(不是预成型坯)在400或600℃加热240小时后,由二氧化硅粘合剂制成的复合材料的拉伸强度降低,而由磷酸盐粘合剂制成的复合材料的拉伸强度提高。后者的效果随着磷酸盐粘合剂中P / Al比例的增加而增加。这主要归因于SiP {dollar} sb2 {dollar} O {dollar} sb7 {dollar}的增加,该AlPPO的存在量大于Al(PO)或AlP。类似地制备了含有短(0.1mm)沥青基碳纤维(55%(体积))的Al基复合材料,只是在金属渗透之前将碳纤维预成型坯在200spC下加热。将复合材料(不是预成型坯)在600℃加热2至240小时后,由磷酸盐或二氧化硅粘合剂制成的复合材料的拉伸强度降低。这归因于两种粘合剂都没有粘合剂/碳反应。对于磷酸盐粘合剂的情况,由于粘合剂/ Al反应引起的纤维/基质粘合的改善不足以掩盖与不存在粘合剂/碳反应有关的负面影响。但是,用磷酸盐粘合剂制成的复合材料在600℃加热14小时后的强度下降小于用二氧化硅粘合剂制成的复合材料。此外,强度随着磷酸盐粘合剂量的增加而降低得更少。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号