风机技术
風機技術
풍궤기술
COMPRESSOR,BLOWER & FAN TECHNOLOGY
2013年
3期
59-61,66
,共4页
三元流叶轮%焊接裂纹%分析及改进
三元流葉輪%銲接裂紋%分析及改進
삼원류협륜%한접렬문%분석급개진
the 3-D flow impeller%welding crack%analysis and improvement
对某三元流叶轮焊接后出现裂纹的原因进行了分析,认为其主要是因为结构刚度相对较大产生的冷裂纹。对此,从改善叶轮焊接前的材料组织状态、降低叶轮的拘束应力和优化叶轮焊接生产的工艺流程入手,提出了对应的改进措施,确保了叶轮的焊接质量,特别是改造后的焊接叶轮经过整体调质热处理后,母材和焊接的组织更为均匀。
對某三元流葉輪銲接後齣現裂紋的原因進行瞭分析,認為其主要是因為結構剛度相對較大產生的冷裂紋。對此,從改善葉輪銲接前的材料組織狀態、降低葉輪的拘束應力和優化葉輪銲接生產的工藝流程入手,提齣瞭對應的改進措施,確保瞭葉輪的銲接質量,特彆是改造後的銲接葉輪經過整體調質熱處理後,母材和銲接的組織更為均勻。
대모삼원류협륜한접후출현렬문적원인진행료분석,인위기주요시인위결구강도상대교대산생적랭렬문。대차,종개선협륜한접전적재료조직상태、강저협륜적구속응력화우화협륜한접생산적공예류정입수,제출료대응적개진조시,학보료협륜적한접질량,특별시개조후적한접협륜경과정체조질열처리후,모재화한접적조직경위균균。
The reasons of welding cracks of the 3-D flow impeller were analyzed in this paper, it was considered that welding cold cracks was mainly caused by the relatively large structure stiffness of the impeller. Then the improvement should be from the aspects of improving materials organization before the impeller welding, reducing confining stress of impeller, and optimizing welding production technological process of impeller. The corresponding improvement measures were proposed and the welding quality of impeller was assured. Especially through the heat treatment process for the impeller after transformation, the organization of base metal and weld were more evenly.