工程塑料应用
工程塑料應用
공정소료응용
Engineering Plastics Application
2015年
9期
60-65
,共6页
许家忠%李强%高良超%张思博
許傢忠%李彊%高良超%張思博
허가충%리강%고량초%장사박
复合材料管道%编织-缠绕-拉挤工艺%线型设计
複閤材料管道%編織-纏繞-拉擠工藝%線型設計
복합재료관도%편직-전요-랍제공예%선형설계
composite pipe%braiding-winding-pultrusion process%design of linear
提出一种连续编织–缠绕–拉挤工艺,通过分析拉挤前后复合材料管道的几何结构,得出编织层纱束与缠绕层纱束在经过拉挤成型模具前后线型的变化关系,给出满足制品各层纤维均匀受力的编织–缠绕–拉挤工艺的线型设计要求;考虑缠绕层、编织层进入拉挤成型模具前后的线型变化关系和管道的设计要求,分别设计缠绕线型和编织线型;按设计的线型试制多种规格的复合材料管道,通过对比分析理论纱束角度与实际测量值,发现同一直径的管道,编织角的误差小于缠绕角的误差,两者均控制在1.5o以内,角度误差率均小于3%,且误差均随管道厚度的增大而减小,管道直径越大,编织角与缠绕角越接近实际值。通过分析管道试件的超声波扫描图,管道无明显缺陷,纱束间无明显细缝,证明设计的纱束线型变化合理。
提齣一種連續編織–纏繞–拉擠工藝,通過分析拉擠前後複閤材料管道的幾何結構,得齣編織層紗束與纏繞層紗束在經過拉擠成型模具前後線型的變化關繫,給齣滿足製品各層纖維均勻受力的編織–纏繞–拉擠工藝的線型設計要求;攷慮纏繞層、編織層進入拉擠成型模具前後的線型變化關繫和管道的設計要求,分彆設計纏繞線型和編織線型;按設計的線型試製多種規格的複閤材料管道,通過對比分析理論紗束角度與實際測量值,髮現同一直徑的管道,編織角的誤差小于纏繞角的誤差,兩者均控製在1.5o以內,角度誤差率均小于3%,且誤差均隨管道厚度的增大而減小,管道直徑越大,編織角與纏繞角越接近實際值。通過分析管道試件的超聲波掃描圖,管道無明顯缺陷,紗束間無明顯細縫,證明設計的紗束線型變化閤理。
제출일충련속편직–전요–랍제공예,통과분석랍제전후복합재료관도적궤하결구,득출편직층사속여전요층사속재경과랍제성형모구전후선형적변화관계,급출만족제품각층섬유균균수력적편직–전요–랍제공예적선형설계요구;고필전요층、편직층진입랍제성형모구전후적선형변화관계화관도적설계요구,분별설계전요선형화편직선형;안설계적선형시제다충규격적복합재료관도,통과대비분석이론사속각도여실제측량치,발현동일직경적관도,편직각적오차소우전요각적오차,량자균공제재1.5o이내,각도오차솔균소우3%,차오차균수관도후도적증대이감소,관도직경월대,편직각여전요각월접근실제치。통과분석관도시건적초성파소묘도,관도무명현결함,사속간무명현세봉,증명설계적사속선형변화합리。
A continuous braiding-winding-pultrusion process was presented. By analyzing the geometrical structure of composite pipe around the pultrusion die, the yarn linear change relationships of braiding layers and winding layers before and after through pultrusion die were got. A kind of linear design which can let each fiber layer of the pipe under uniform stress was provided. The winding and braiding linear were respectively designed by taking the fiber line change relationship of winding layer and braiding layer before and after geting into pultrusion die and the pipe design requirement into consideration. The multi-standard composite pipes based on the designed linear were produced. Through comparative analysis of yarn theory angle with the actual measurement data, the braiding angle error is less than the winding angle error of the same size pipe is found. Error angles can be controlled under 1.5°,the angle error rate is less than 3% and the error decreases with increasing pipe thickness. The more larger pipe size, the theory value of the braiding angle and the winding angle will the more close to the actual angle. The analysis of pipe ultrasound scan of the specimens shows that the pipe has no obvious defects and no obvious crack between the different yarns. It proves that design of yarn linear is reasonable.