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熱處理對激光立體成形TC4殘余應(yīng)力的影響
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國家杰出青年科學(xué)基金(NCET-06-0879);國家自然科學(xué)基金重點項目(50331010);“863”計劃(2006AA03Z0449);“973”計劃(2007CB613800);高等學(xué)校學(xué)科創(chuàng)新引智計劃(08040)資助


Influence of Heat Treatment on Residual Stress of Ti-6Al-4V Alloy by Laser Solid Forming
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    摘要:

    采用小孔釋放法對激光立體成形TC4鈦合金沉積態(tài)和熱處理后的殘余應(yīng)力進行了測試。結(jié)果表明,激光立體成形TC4合金的殘余應(yīng)力屬于低應(yīng)力水平,沿激光掃描方向的殘余應(yīng)力σY和垂直于激光掃描方向的殘余應(yīng)力σZ具有類似地分布規(guī)律。激光掃描起始位置的殘余應(yīng)力值較小,到中間位置達(dá)到最大的壓應(yīng)力,而到熔覆結(jié)束位置轉(zhuǎn)變?yōu)樽畲蟮睦瓚?yīng)力;靠近基材處熔覆層的殘余應(yīng)力為較大的壓應(yīng)力,隨著熔覆高度的增加,到頂部轉(zhuǎn)變?yōu)檩^小的拉應(yīng)力。相比沉積態(tài)試樣,去應(yīng)力退火后σY和σZ分別平均降低59.8%和72.3%,固溶時效處理后分別平均降低64.

    Abstract:

    The residual stress of Ti-6Al-4V alloys by laser solid forming was measured adopting the standard strain gauge technique involving hole drilling method. Sample treatments were divided into three conditions, that is as deposited, annealing and solution aging treatment. The results indicate that the residual stress exhibits the similar distribution along the laser scanning direction (σY) and normal to the scanning direction (σZ). At the location of laser starting scanning, the stress is lower. The largest stress is the compressive stress at the center position and transformed to the highest tensile stress at the location of ending of laser scanning. It can also be found that the residual stress exhibits bigger compressive stress near the substrate, and with increasing of the cladding layer, it develops to lower tensile stress at the top of sample. After annealing treatment, the stress decreases averagely σY for 59.8% and σZ for 72.3%, respectively. After treating by solution aging, the stress decreases averagely σY for 64.7% and σZ for 67.8%, respectively. Heat treatment was found to relieve and adjust the residual stresses of laser solid forming Ti-6Al-4V alloy effectively

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張霜銀,林 鑫,陳 靜,黃衛(wèi)東.熱處理對激光立體成形TC4殘余應(yīng)力的影響[J].稀有金屬材料與工程,2009,38(5):774~778.[Zhang Shuangyin, Lin Xin, Chen Jing, Huang Weidong. Influence of Heat Treatment on Residual Stress of Ti-6Al-4V Alloy by Laser Solid Forming[J]. Rare Metal Materials and Engineering,2009,38(5):774~778.]
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  • 收稿日期:2008-07-12
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