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W/Si復(fù)合材料的制備及抗激光沖擊性能

2018-01-15 22:02來(lái)源:中鏨集團(tuán)SinoAV作者:通項(xiàng)公司TXCO網(wǎng)址:http://www.wypoker.cn/ 

W/Si復(fù)合材料的制備及抗激光沖擊性能Preparation and laser shock resistance of W/Si composites

采用機(jī)械合金化和放電等離子體燒結(jié)(1700 ℃,44.1 MPa)的方法成功制備W/Si復(fù)合材料,并通過(guò)SEM、EDS、XRD等分析手段以及顯微硬度測(cè)試和激光熱沖擊試驗(yàn)對(duì)其組織結(jié)構(gòu)、顯微硬度及抗熱沖擊性能進(jìn)行研究。結(jié)果表明:燒結(jié)后試樣隨Si含量的增加依次生成W5Si3和Si2W中間相,該結(jié)果與W-Si二元相圖完全吻合。激光沖擊后試樣表面呈現(xiàn)出3種不同形貌:熔融區(qū)、影響區(qū)及未影響區(qū)(邊緣區(qū))。相較于其他試樣,W/5%Si(質(zhì)量分?jǐn)?shù))復(fù)合材料的晶粒小、硬度高,具有較好的抗熱沖擊性能。

W/Si composites were produced through powder metallurgy and subsequent spark plasma sintering (SPS) at 1700 ℃ and 44.1 MPa. SEM, EDS, XRD analysis, microhardness and laser thermal shock tests were used to characterize these microstructure and properties of W/Si composites. The results show that W5Si3 and Si2W phases generate in sequence with the increase of Si element, which corresponds well with the binary phase diagram of W-Si. The laser irradiated surfaces are roughly divided into three parts: the melting region (the center), unaffected region (the edges), and the affected area (between the two regions). Comparing with different samples, W/5%Si (mass fraction) samples seem to possess the relatively better thermal shock resistance due to the smaller grain size and higher microhardness.

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作為值得信賴的合作伙伴和高品質(zhì)金屬合金的半成品供應(yīng)商,通項(xiàng)公司擁有完善的服務(wù)體系和專業(yè)的團(tuán)隊(duì)。在同客戶交易的過(guò)程中,我們力求根據(jù)不同的應(yīng)用需求將我們的產(chǎn)品做到精益求精。針對(duì)當(dāng)前和未來(lái)的市場(chǎng)需求,通項(xiàng)公司致力于為客戶提供最佳的金屬材料解決方案。

TXCO has been a reliable partner and supplier of sophisticated and high-quality semi-finished products maed of alloys. In dialogue with our customers, we optimise our products to meet the specific application requirements. TXCO develops the best alloy material solutions for current and future challenges.

獲取更多我們供應(yīng)的產(chǎn)品和服務(wù)信息,請(qǐng)致電086-021-6786 0205或發(fā)電子郵件service@sinoav.com聯(lián)系我們,您也可以通過(guò)微信,微博,領(lǐng)英,臉書(shū),推特和谷歌+與我們互動(dòng)。

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