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钢丝缠绕增强塑料复合管外压失稳研究-化工过程机械专业论文.docxVIP

钢丝缠绕增强塑料复合管外压失稳研究-化工过程机械专业论文.docx

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钢丝缠绕增强塑料复合管外压失稳研究-化工过程机械专业论文

浙江大学硕士学位论文 Abstract Plastic pipe reinforced by winding steel wires(PSP)is a new type of thermoplastic matrix steel composite pipe,which combines thermoplastic polytheue (HDPE)on the inside and outside of the pipe wall 1Ⅳitll steel wire mesh skeleton sandwichcd in the middle.The mesh skeleton is formed by crossly winding high strength steel wire and tightly integrated with HDPE by high performance cohesive resin.Owing to the unique structure,PSP integrates the advantages ofhigh intensity, corrosion resistance and low production cost.With the excellent performance,there is a good foreground of using PSP in petroleum,chemistry engineer,construction project,pharmacy and SO 011. PSP dcforms under external pressure,such as buried,subsca or v∽uum condition,and is des心oyed by buckling when loading is over critical pressure.Then it is necessary to research buckling of PSP after strength analysis completed. Supported by Wenzhou science and technology project,石tled‘structure mechanical model research and optimization design for composite pipe reinforced by winding steel wires’((}2004034),this paper researched on buckling ofPSP under external pressure systematically in theory,FEA and experimentation.The main works were as follows: Firstly,calculation method of buckling critical pressure was established.PSP WaS simplified as orthotropic laminated cylinder shell,and elastic parameters of monolayer were estimated based on rectangle model.Short-term buckling critical pressure was deduced from composite shell theory.Influence factors of critical pre鹤ure were analyzed to get design method of PSP structure stability.Creep buckling was discussed and estimated method oflong-term pressure Was given at the same time.Theory calculation results show good agreement with experimental data and the calculation method c缸be sed for predicting short-term buckling critical pressure well. Secondly,shell model was built in FEA software,and short-term buckling ii 浙江大学硕士学位论文 critical pressure was ca

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