金属热处理
金屬熱處理
금속열처리
HEAT TREATMENT OF METALS
2015年
4期
153-157
,共5页
李刚%许新颖%葛少成%金红梅
李剛%許新穎%葛少成%金紅梅
리강%허신영%갈소성%금홍매
激光扫描%65Mn钢%ANSYS%温度场%应变场
激光掃描%65Mn鋼%ANSYS%溫度場%應變場
격광소묘%65Mn강%ANSYS%온도장%응변장
laser scanning%65Mn steel%ANSYS%temperature field%strain field
利用ANSYS软件,建立了三维瞬态激光扫描过程的温度场有限元模型,利用APDL语言实现热源的移动,对65Mn钢板激光扫描过程进行数值模拟,研究不同工艺参数扫描后钢板温度场的变化规律,并对比了不同功率和不同扫描速度对温度场和变形量的影响。结果表明,随着热源的移动,温度场呈现狭长椭圆形分布,且激光光斑前缘温度梯度大,后部温度梯度小;在相同激光功率700 W下,扫描越慢,65Mn钢板表面温度最大值越大,扫描速度为6 mm/s时,表面温度最高值为495.434 K;在相同扫描速度6 mm/s下,扫描功率越大,65Mn钢板表面温度最大值越大,当扫描功率为1100 W时,该最大值为611.024 K。为验证模拟计算结果,对65Mn钢板进行实际激光扫描试验,试验值与模拟值吻合良好。
利用ANSYS軟件,建立瞭三維瞬態激光掃描過程的溫度場有限元模型,利用APDL語言實現熱源的移動,對65Mn鋼闆激光掃描過程進行數值模擬,研究不同工藝參數掃描後鋼闆溫度場的變化規律,併對比瞭不同功率和不同掃描速度對溫度場和變形量的影響。結果錶明,隨著熱源的移動,溫度場呈現狹長橢圓形分佈,且激光光斑前緣溫度梯度大,後部溫度梯度小;在相同激光功率700 W下,掃描越慢,65Mn鋼闆錶麵溫度最大值越大,掃描速度為6 mm/s時,錶麵溫度最高值為495.434 K;在相同掃描速度6 mm/s下,掃描功率越大,65Mn鋼闆錶麵溫度最大值越大,噹掃描功率為1100 W時,該最大值為611.024 K。為驗證模擬計算結果,對65Mn鋼闆進行實際激光掃描試驗,試驗值與模擬值吻閤良好。
이용ANSYS연건,건립료삼유순태격광소묘과정적온도장유한원모형,이용APDL어언실현열원적이동,대65Mn강판격광소묘과정진행수치모의,연구불동공예삼수소묘후강판온도장적변화규률,병대비료불동공솔화불동소묘속도대온도장화변형량적영향。결과표명,수착열원적이동,온도장정현협장타원형분포,차격광광반전연온도제도대,후부온도제도소;재상동격광공솔700 W하,소묘월만,65Mn강판표면온도최대치월대,소묘속도위6 mm/s시,표면온도최고치위495.434 K;재상동소묘속도6 mm/s하,소묘공솔월대,65Mn강판표면온도최대치월대,당소묘공솔위1100 W시,해최대치위611.024 K。위험증모의계산결과,대65Mn강판진행실제격광소묘시험,시험치여모의치문합량호。
Based on the software of ANSYS, a finite element model of three-dimensioal transient laser scanning temperature field of 65Mn steel plate was built, and heat source moving was realized by using APDL parameter design language. The 65Mn steel laser scanning process was simulated, the influence of different process parameters on the temperature field of 65Mn steel plate was calculated, and the influence of laser power and scanning speed on temperature field and deformation was compared. Simulation results show that the temperature field shows oval-like map during the heat source moving, and there is large temperature gradient in the front of laser spot and small temperature gradient at the back of it, the maximum surface temperature increases with the decrease of laser scanning speed, and it reaches 495. 434 K, when scanning speed is 6 mm/s and laser power is 700 W. The maximum surface temperature increases with the increase of laser power, and it reaches 611. 024 K, when laser power is 1100 W and scanning speed is 6 mm/s. In order to verify the simulation results, laser scanning experiment was done to the 65Mn steel. The experiment value is good agreed with the simulation results.