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Optimization of Resin Infusion Processing for Composite Pipe Key-Part and K/T Type Joints Using Vacuum-Assisted Resin Transfer Molding
Authors:Changchun Wang  Guanghui Bai  Guangquan Yue  Zhuxi Wang  Jin Li  Boming Zhang
Affiliation:1.School of Materials Science and Engineering,Beihang University,Beijing,China;2.Beijing Aeronautical Science & Technology Research Institute,Commercial Aircraft Corporation of China Ltd,Beijing,China;3.Science and Technology on Space Physics Laboratory,Beijing Institute Nearspace Vehicle’s System Engineering,Beijing,China;4.Key Laboratory of Ningxia for Photovoltaic Materials,Ningxia University,Yinchuan,China
Abstract:In present study, the optimization injection processes for manufacturing the composite pipe key-part and K/T type joints in vacuum-assisted resin transfer molding (VARTM) were determined by estimating the filling time and flow front shape of four kinds of injection methods. Validity of the determined process was proved with the results of a scaling-down composite pipe key-part containing of the carbon fiber four axial fabrics and a steel core with a complex surface. In addition, an expanded-size composite pipe part was also produced to further estimate the effective of the determined injection process. Moreover, the resin injection method for producing the K/T type joints via VARTM was also optimized with the simulation method, and then manufactured on a special integrated mould by the determined injection process. The flow front pattern and filling time of the experiments show good agreement with that from simulation. Cross-section images of the cured composite pipe and K/T type joints parts prove the validity of the optimized injection process, which verify the efficiency of simulation method in obtaining a suitable injection process of VARTM.
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