北京工业大学学报
北京工業大學學報
북경공업대학학보
JOURNAL OF BEIJING POLYTECHNIC UNIVERSITY
2015年
7期
1035-1042
,共8页
邱林波%薛素铎%侯兆新%刘毅%舒赣平
邱林波%薛素鐸%侯兆新%劉毅%舒贛平
구림파%설소탁%후조신%류의%서공평
高强钢%焊接H型截面%残余应力
高彊鋼%銲接H型截麵%殘餘應力
고강강%한접H형절면%잔여응력
High-strength steel%welded H-type section%residual stress
为了推动高强结构钢Q550GJ在我国钢结构工程中的应用,研究了Q550GJ高强钢焊接H型截面试件的残余应力分布规律.首先试验研究了Q550GJ钢材的力学性能,其屈服强度、抗拉强度和伸长率符合国家现行规范,屈强比小于0.85.然后设计和加工了7个Q550GJ高强结构钢焊接H型截面构件,采用分割法对其进行残余应力试验.研究了Q550GJ高强结构钢焊接H型截面构件的残余应力分布规律,分析了不同参数的影响.研究结果表明:翼缘中部和腹板两端近焊缝区域出现较大的残余拉应力,但没有达到钢材的屈服强度,且随着宽厚比的变化呈不规律变化;翼缘外伸部分中部和腹板中部都呈现基本恒定的残余压应力;残余压应力随着板件宽厚比的提高而相应减小;其余部位是从残余拉应力到残余压应力转变的过渡区域.
為瞭推動高彊結構鋼Q550GJ在我國鋼結構工程中的應用,研究瞭Q550GJ高彊鋼銲接H型截麵試件的殘餘應力分佈規律.首先試驗研究瞭Q550GJ鋼材的力學性能,其屈服彊度、抗拉彊度和伸長率符閤國傢現行規範,屈彊比小于0.85.然後設計和加工瞭7箇Q550GJ高彊結構鋼銲接H型截麵構件,採用分割法對其進行殘餘應力試驗.研究瞭Q550GJ高彊結構鋼銲接H型截麵構件的殘餘應力分佈規律,分析瞭不同參數的影響.研究結果錶明:翼緣中部和腹闆兩耑近銲縫區域齣現較大的殘餘拉應力,但沒有達到鋼材的屈服彊度,且隨著寬厚比的變化呈不規律變化;翼緣外伸部分中部和腹闆中部都呈現基本恆定的殘餘壓應力;殘餘壓應力隨著闆件寬厚比的提高而相應減小;其餘部位是從殘餘拉應力到殘餘壓應力轉變的過渡區域.
위료추동고강결구강Q550GJ재아국강결구공정중적응용,연구료Q550GJ고강강한접H형절면시건적잔여응력분포규률.수선시험연구료Q550GJ강재적역학성능,기굴복강도、항랍강도화신장솔부합국가현행규범,굴강비소우0.85.연후설계화가공료7개Q550GJ고강결구강한접H형절면구건,채용분할법대기진행잔여응력시험.연구료Q550GJ고강결구강한접H형절면구건적잔여응력분포규률,분석료불동삼수적영향.연구결과표명:익연중부화복판량단근한봉구역출현교대적잔여랍응력,단몰유체도강재적굴복강도,차수착관후비적변화정불규률변화;익연외신부분중부화복판중부도정현기본항정적잔여압응력;잔여압응력수착판건관후비적제고이상응감소;기여부위시종잔여랍응력도잔여압응력전변적과도구역.
For promoting the application of high strength steel in steel structure, the distribution of Q550GJ high-strength steel welded H-type sections was studied. The mechanical properties of Q550GJ steel were researched firstly. The result shows that the yield strength, tensile strength and elongation of the steel are consistent with the present specification. And its yield ratio is lower than 0. 85. Secondly 7 columns of 550GJ high-strength steel with welding H-type sections were designed and manufactured. The distributions of the residual stresses in these columns were researched experimentally by the partition method, and the effects of the different parameters were analyzed. The analysis results show that there are bigger residual tensile stresses in the middle of the flanges and near the welded regions of the web, the biggest stress is lower than the yield stress of the steel, and the changes of the residual tensile stresses are irregular. There are constant residual compression stress in the middle of the overhanging regions of the flanges and the web, the residual compression stress become smaller as the increasing of the width-thickness ratio. And the residual stresses of other regions of the column are transferred from the tensile stresses to the compression stresses.