红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2014年
5期
1401-1405
,共5页
王衍行%祖成奎%陈江%韩滨%赵慧峰
王衍行%祖成奎%陳江%韓濱%趙慧峰
왕연행%조성규%진강%한빈%조혜봉
钡镓锗玻璃%微晶玻璃%微观结构%红外性能%力学性能
鋇鎵鍺玻璃%微晶玻璃%微觀結構%紅外性能%力學性能
패가타파리%미정파리%미관결구%홍외성능%역학성능
barium gallogermanate glass%glass ceramics%microstructure%infrared property%mechanical property
文中通过微晶化工艺制备出钡镓锗透明微晶玻璃,并研究了其透红外性能和力学性能。结果表明,810~910℃热处理0.5 h时,钡镓锗微晶玻璃析出单一ZrO2晶体。处理温度为830℃时,钡镓锗微晶玻璃中开始析出少量ZrO2晶粒,尺寸约几个纳米;处理温度升到870℃时,平均晶粒尺寸为250 nm;晶化温度高于870℃时,晶粒数量显著增多,晶粒粗大,而且发生团聚现象。晶化温度为810~850℃时,可以获得透红外性能和力学性能兼顾的钡镓锗透明微晶玻璃;处理温度为870℃时,钡镓锗微晶玻璃的力学性能出现极值,但透红外性能降低;若继续升高处理温度,钡镓锗微晶玻璃的透红外性能和力学性能均下降。
文中通過微晶化工藝製備齣鋇鎵鍺透明微晶玻璃,併研究瞭其透紅外性能和力學性能。結果錶明,810~910℃熱處理0.5 h時,鋇鎵鍺微晶玻璃析齣單一ZrO2晶體。處理溫度為830℃時,鋇鎵鍺微晶玻璃中開始析齣少量ZrO2晶粒,呎吋約幾箇納米;處理溫度升到870℃時,平均晶粒呎吋為250 nm;晶化溫度高于870℃時,晶粒數量顯著增多,晶粒粗大,而且髮生糰聚現象。晶化溫度為810~850℃時,可以穫得透紅外性能和力學性能兼顧的鋇鎵鍺透明微晶玻璃;處理溫度為870℃時,鋇鎵鍺微晶玻璃的力學性能齣現極值,但透紅外性能降低;若繼續升高處理溫度,鋇鎵鍺微晶玻璃的透紅外性能和力學性能均下降。
문중통과미정화공예제비출패가타투명미정파리,병연구료기투홍외성능화역학성능。결과표명,810~910℃열처리0.5 h시,패가타미정파리석출단일ZrO2정체。처리온도위830℃시,패가타미정파리중개시석출소량ZrO2정립,척촌약궤개납미;처리온도승도870℃시,평균정립척촌위250 nm;정화온도고우870℃시,정립수량현저증다,정립조대,이차발생단취현상。정화온도위810~850℃시,가이획득투홍외성능화역학성능겸고적패가타투명미정파리;처리온도위870℃시,패가타미정파리적역학성능출현겁치,단투홍외성능강저;약계속승고처리온도,패가타미정파리적투홍외성능화역학성능균하강。
Barium gallogermanate transparent glass ceramics were fabricated by crystallization processes, and their infrared and mechanical properties were studied in this paper. It was found that only ZrO2 crystal formed when barium gallogermanate mother glass was treated at 810- 910 ℃ for 0.5 h. A few ZrO2 crystals with size of less than 10 nm appeared if mother glass was treated at 830℃. The average size of ZrO2 crystals separated was 250 nm when treatment temperature was up to 870℃. However, ZrO2 crystals would be large and congregated if treatment temperature was higher than 870 ℃. Barium gallogermanate transparent glass ceramics possessed excellent infrared and mechanical properties when mother glasses were treated at 810-850℃. When treatment temperature was up to 870℃, the mechanical properties of barium gallogermanate glass ceramics was better, but it was regretful that their infrared properties decrease. If treatment temperature increaseed, both infrared properties and mechanical properties of barium gallogermanate glass ceramics would decrease.