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Design of packing cup interference fit value of hypercompressors for low density polyethylene production
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作者 Da LEI Xuehong LI +1 位作者 Yun LI Xiwen REN 《Frontiers in Energy》 SCIE CSCD 2019年第1期107-113,共7页
The hypercompressor is one of the core facilities in low density polyethylene production,with a discharge pressure of approximately 300 MPa.A packing cup is the basic unit of cylinder packing,assembled by the interfer... The hypercompressor is one of the core facilities in low density polyethylene production,with a discharge pressure of approximately 300 MPa.A packing cup is the basic unit of cylinder packing,assembled by the interference fit between an inner cup and an outer cup.Because the shrink-fitting prestresses the packing cup,serious design is needed to gain a favorable stress state,for example,a tri-axial compressive stress state.The traditional method of designing the interference fit value for packing cups depends on the shrink-fit theory for thickwalled cylinder subject to internal and external pressure.According to the traditional method,critical points are at the inner radii of the inner and external cup.In this study,the finite element method(FEM)has been implementcd to determine a more accurate stress level of packing cups.Different critical points have been found at the edge of lapped sealing surfaces between two adjacent packing cups.The maximum Von Mises equivalent stress in a packing cup increases after a decline with the rise of the interference fit value.The maximum equivalent stress initially occurs at the bore of the inner cup,then at the edge of lapped mating surfaces,and finally at the bore of the outer cup,as the interference radius increases.The traditional method neglects the influence of axial preloading on the interference mating pressure.As a result,it predicts a lower equivalent stress at the bore of the external cup.A higher interference fit value accepted by the traditional method may not be feasible as it might already make packing cups yield at the edge of mating surfaces or the bore of the external cup.Along with fatigue analysis,the feasible range of interference fit value has been modified by utilizing FEM.The modified range tends to be narrower and safer than the one derived from the traditional method,after getting rid of shrink-fit values that could result in yielding in a real packing cup. 展开更多
关键词 INTERFERENCE FIT VALUE PACKING CUP hypercompressor FINITE element method(FEM)
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超高压压缩机填料盘过盈配合过盈量设计方法 被引量:2
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作者 雷达 李雪红 +1 位作者 李云 任希文 《机械工程学报》 EI CAS CSCD 北大核心 2016年第20期178-184,共7页
超高压压缩机是生产低密度聚乙烯的核心装置,其设计和制造还有待研究和完善。填料盘是其关键部件之一,填料盘过盈配合的过盈量是一个重要设计参数,国内还未见成熟的设计方法。为了研究如何确定过盈量,使内盘三向应力始终压缩和填料盘整... 超高压压缩机是生产低密度聚乙烯的核心装置,其设计和制造还有待研究和完善。填料盘是其关键部件之一,填料盘过盈配合的过盈量是一个重要设计参数,国内还未见成熟的设计方法。为了研究如何确定过盈量,使内盘三向应力始终压缩和填料盘整体等效应力最小,建立填料盘理论模型,对填料盘的过盈量进行优化分析。理论分析可知填料盘内盘最大周向应力在排气压力下为压缩应力时,内盘即获得三向压缩应力状态;随着过盈量的增大,内盘的最大周向应力逐渐变小并由拉伸应力转变为压缩应力,而整体最大等效应力先减小再增大。对填料盘实际结构的有限元分析也得到相同的结论。理论分析推导得到排气压力下最大周向应力为零时的过盈量δ_(min)以及整体最大等效应力最小时的过盈量δ_1。分析认为过盈量的设计应当取δ_(min)和δ_1中较大的值就能满足内盘三向压缩应力状态以及整体最大等效应力最小的要求,填料盘的设计可以参考该结论。 展开更多
关键词 超高压压缩机 填料盘 过盈量 有限元分析
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