装备模块化设计集成及多信息在线检测与融合技术研究

项目来源

国(略)研(略)((略)D(略)

项目主持人

袁(略)

项目受资助机构

清(略)

项目编号

2(略)Y(略)1(略)0(略)

立项年度

2(略)

立项时间

未(略)

研究期限

未(略) (略)

项目级别

国(略)

受资助金额

4(略)0(略)

学科

增(略)与(略)造(略)工(略)

学科代码

未(略)

基金类别

未(略)

关键词

增(略) (略)区(略);(略)束(略)关(略) (略)备(略)钛(略);(略)d(略)v(略)a(略)a(略)r(略) (略)e(略)t(略) (略)t(略) (略)l(略)r(略)b(略) (略)e(略)e(略)o(略)i(略);(略)c(略)e(略)T(略)n(略) (略)o(略)

参与者

郭(略)德(略)

参与机构

天(略)智(略)有(略)

项目标书摘要:电子(略)ron beam (略)elting,EB(略)艺,通过电子束扫描(略)积制造三维金属零件(略)杂零件的特点。目前(略)制造基于激光成形工(略)光选区熔化等。相比(略)转化率高、功率密度(略)高、成形温度高、材(略)括粉末供给与铺平、(略)l4V成形工艺等电(略)关键技术进行了研究(略)因,提出了检测铺满(略)建了自动调整送粉量(略)改善高真空环境下的(略)子束和粉末材料作用(略)氛闭环控制系统。针(略)形中粉床预热、轮廓(略)行了工艺优化,提出(略)分时多熔池扫描、轮(略)自动调整扫描速度和(略)Ti6Al4V材料(略)表面质量和机械性能(略)l4V成形件尺寸精(略)小成形壁厚0.6m(略)-75μm,致密度(略)为870-980M(略)-1070MPa,(略).5%。

Applicati(略): Electro(略)ctive mel(略)s an addi(略)cturing p(略)h uses an(略)eam to sc(略) metal po(略)by layer (略)three-dim(略)jects.The(略)ology can(略)e manufac(略)ess and p(略)s with co(略)s.At pres(略)itive man(略)of metals(略)y based o(略)cesses,su(略) cladding(略),selectiv(略)ting.Comp(略)er,the el(略) has high(略)onversion(略)r power d(略)er energy(略) for mate(略)er build (略) and bett(略)lity for (略)he EBSM k(略)gies incl(略)r supplyi(略)oating,va(略)here cont(略)Al4V buil(略)ere studi(略)on of inc(略)der re-co(略)nalyzed a(略)ion metho(略)ete powde(略)g was put(略)sed on th(略) method,a(略)eedback s(略)owder re-(略) establis(略)ease the (略)-point el(略)ration in(略) enhance (略)terial in(略)tability,(略)op contro(略)r vacuum (略)was estab(略)processes(略)bed prehe(略)ur meltin(略)ng-line m(略)Ti6Al4V w(略)ed.The no(略)ype prehe(略)sharing m(略)-pool sca(略)ur offset(略)tomatic a(略)r scannin(略) beam cur(略)ing to fi(略)length we(略)d to impr(略)ctron bea(略)manufactu(略)cy,surfac(略)d mechani(略)ies of Ti(略)process o(略),the addi(略)cturing a(略)Ti6Al4V w(略)han 0.3 m(略)um wall t(略)s 0.6 mm,(略) roughnes(略)75μm,the (略)nsity was(略) yield st(略)870-980MP(略)le streng(略)1070MPa,a(略)on was 13(略)

项目受资助省

北(略)

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