激光熔覆制備鈦表面涂層及其性能研究
發(fā)布時(shí)間:2019-03-06 12:05
【摘要】:本文利用溶膠-凝膠法制備生物玻璃粉、采用激光熔覆技術(shù)在鈦表面制備生物涂層,通過(guò)X射線衍射(XRD)、傅里葉紅外光譜(FTIR)、差熱分析(TGDSC)、掃描電子顯微鏡(SEM)等對(duì)生物玻璃粉和激光熔覆后涂層進(jìn)行測(cè)試研究。(1)本論文制備了兩種生物玻璃粉體,在700℃燒結(jié)后呈微晶結(jié)構(gòu),1#生物玻璃粉主晶相是Na_2CaSi_3O_8,2#生物玻璃粉呈塊狀結(jié)晶其主晶相是Ca SiO_3;綜合生物玻璃粉的收縮率和抗彎強(qiáng)度,1#生物玻璃粉燒結(jié)溫度為950℃時(shí),試樣致密性最好,2#生物玻璃粉燒結(jié)溫度為600℃時(shí),試樣的致密性最好。(2)本論文利用電泳沉積技術(shù)在鈦表面制備生物玻璃預(yù)置涂層,探究了沉積電壓、沉積時(shí)間、固相含量等對(duì)沉積涂層的形貌和性能的影響。沉積量隨沉積電壓的增大而增大,沉積電壓過(guò)低時(shí),涂層表面沉積不均勻,且沉積量很少,沉積電壓過(guò)高時(shí),沉積涂層會(huì)出現(xiàn)裂紋和脫落,沉積量隨沉積時(shí)間的增加呈先增大后減小的變化趨勢(shì),最佳的沉積電壓、沉積時(shí)間范圍分別為10-15V和15-20min;沉積速率隨懸浮液固相含量的增加而增大,生物玻璃粉與溶劑的質(zhì)量比為1/140時(shí),電泳沉積生物玻璃涂層的效果最好。(3)本論文利用激光熔覆技術(shù)在鈦表面制備生物玻璃涂層,探究了激光工藝參數(shù)、預(yù)置層生物玻璃粉成分組成及預(yù)處理對(duì)激光熔覆涂層形貌、性能的影響。對(duì)純生物玻璃粉體系,最佳工藝參數(shù)選擇:光斑直徑為0.8-1cm激光發(fā)射頭與鈦基底的間距為1.5cm左右,激光掃描路徑間隔為0.2-0.3mm,激光掃描速度為10-20mm/s,激光輸出功率為45%-50%。對(duì)于摻Ti粉的預(yù)置層激光輸出功率根據(jù)摻鈦粉的量相應(yīng)增加;鈦基底的陽(yáng)極氧化、預(yù)置粉體的預(yù)燒及預(yù)置粉體中摻入Ti粉等措施,都有利于改善涂層與鈦基底的潤(rùn)濕性,提高涂層性能,改進(jìn)涂層制備工藝。
[Abstract]:In this paper, bio-glass powder was prepared by sol-gel method. Biologic coating was prepared on titanium surface by laser cladding. X-ray diffraction (XRD), Fourier infrared spectroscopy (FTIR), differential thermal analysis was used to analyze (TGDSC),. The biological glass powder and laser cladding coating were tested by scanning electron microscope (SEM). (1) in this paper, two kinds of bioglass powders were prepared and sintered at 700 鈩,
本文編號(hào):2435508
[Abstract]:In this paper, bio-glass powder was prepared by sol-gel method. Biologic coating was prepared on titanium surface by laser cladding. X-ray diffraction (XRD), Fourier infrared spectroscopy (FTIR), differential thermal analysis was used to analyze (TGDSC),. The biological glass powder and laser cladding coating were tested by scanning electron microscope (SEM). (1) in this paper, two kinds of bioglass powders were prepared and sintered at 700 鈩,
本文編號(hào):2435508
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