机械工程材料
機械工程材料
궤계공정재료
Materials for Mechanical Engineering
2015年
10期
29-31,36
,共4页
张建%吴青松%郑江鹏%黄治军
張建%吳青鬆%鄭江鵬%黃治軍
장건%오청송%정강붕%황치군
电阻点焊%双相钢%焊接电流%剪切力%熔核直径
電阻點銲%雙相鋼%銲接電流%剪切力%鎔覈直徑
전조점한%쌍상강%한접전류%전절력%용핵직경
resistance spot welding%dual-phase steel%welding current%shear force%nugget diameter
通过电阻点焊对2.0 mm 厚 DP780双相钢板进行焊接,通过接头的焊接质量检验得到了较佳的焊接参数,并研究了接头的显微组织、剪切力和显微硬度.结果表明:较佳的点焊工艺参数为焊接压力5 kN,焊接电流9~10.5 kA,焊接时间320~400 ms;在较佳的焊接工艺下,点焊接头的熔合区主要为马氏体,热影响区主要由尺寸较小的马氏体、铁素体和贝氏体组成;当焊接电流为9.5 kA、焊接时间为400 ms、焊接压力为5 kN 时,点焊接头的剪切力和熔核直径均达到最大,分别为32.58 kN 和7.9 mm;在相同的点焊时间和压力下,随着焊接电流增大,熔核区的显微硬度降低.
通過電阻點銲對2.0 mm 厚 DP780雙相鋼闆進行銲接,通過接頭的銲接質量檢驗得到瞭較佳的銲接參數,併研究瞭接頭的顯微組織、剪切力和顯微硬度.結果錶明:較佳的點銲工藝參數為銲接壓力5 kN,銲接電流9~10.5 kA,銲接時間320~400 ms;在較佳的銲接工藝下,點銲接頭的鎔閤區主要為馬氏體,熱影響區主要由呎吋較小的馬氏體、鐵素體和貝氏體組成;噹銲接電流為9.5 kA、銲接時間為400 ms、銲接壓力為5 kN 時,點銲接頭的剪切力和鎔覈直徑均達到最大,分彆為32.58 kN 和7.9 mm;在相同的點銲時間和壓力下,隨著銲接電流增大,鎔覈區的顯微硬度降低.
통과전조점한대2.0 mm 후 DP780쌍상강판진행한접,통과접두적한접질량검험득도료교가적한접삼수,병연구료접두적현미조직、전절력화현미경도.결과표명:교가적점한공예삼수위한접압력5 kN,한접전류9~10.5 kA,한접시간320~400 ms;재교가적한접공예하,점한접두적용합구주요위마씨체,열영향구주요유척촌교소적마씨체、철소체화패씨체조성;당한접전류위9.5 kA、한접시간위400 ms、한접압력위5 kN 시,점한접두적전절력화용핵직경균체도최대,분별위32.58 kN 화7.9 mm;재상동적점한시간화압력하,수착한접전류증대,용핵구적현미경도강저.
DP780 duplex stainless steel with thickness of 2.0 mm was welded by resistance spot welding, relatively good welding parameters were obtained by the welding quality testing,and the microstructure,shear force and microhardness of the spot welded joints were studied.The results show that the relatively good process parameters were the welding pressure of 5 kN,welding current of 9 - 10.5 kA,welding time of 320 - 400 ms. Under the relatively good welding process conditions,the fusion zone of the joint was mainly martensite and the heat affected zone was composed of martensite,ferrite and bainite.When the welding current was 9.5 kA,welding time was 400 ms,welding pressure was 5 kN,the shear force and the nugget diameter were the biggest,and they were 32.58 kN and 7.9 mm,respectively.At the same spot welding time and pressure,the microhardness of the fusion zone decreased with the increase of welding current.