固体火箭技术
固體火箭技術
고체화전기술
JOURNAL OF SOLID ROCKET TECHNOLOGY
2015年
4期
549-553,561
,共6页
曹然%周光明%钱元%蔡登安%黄翔
曹然%週光明%錢元%蔡登安%黃翔
조연%주광명%전원%채등안%황상
复合材料易碎盖%薄弱区结构%数值模拟%结构参数%强度包络线%参数化设计
複閤材料易碎蓋%薄弱區結構%數值模擬%結構參數%彊度包絡線%參數化設計
복합재료역쇄개%박약구결구%수치모의%결구삼수%강도포락선%삼수화설계
composite fragile cover%weak area structure%numerical simulation%structure parameters%strength envelopes%para-metric design
针对复合材料易碎盖薄弱区结构进行力学性能分析,提出了薄弱区结构参数化设计方法。对发射箱盖整体进行数值模拟,确定了薄弱区局部模型分析的边界条件和载荷。计算薄弱区结构模型在11种拉弯耦合载荷作用下的承载能力,绘制强度包络线,分析了薄弱区内外侧搭接布条的长度与厚度对其性能的影响。根据最大主应力强度准则,计算得到薄弱区结构在不同拉弯比例下的强度随结构参数变化的曲线,进而对薄弱区结构进行参数化设计。根据参数化设计方法,设计了2种易碎盖进行冲破实验。结果表明,搭接长度主要影响薄弱区结构的剪切强度,而搭接厚度主要影响薄弱区结构的拉伸强度;设计结果与实验结果差距在10%左右,验证了设计方法的可行性。
針對複閤材料易碎蓋薄弱區結構進行力學性能分析,提齣瞭薄弱區結構參數化設計方法。對髮射箱蓋整體進行數值模擬,確定瞭薄弱區跼部模型分析的邊界條件和載荷。計算薄弱區結構模型在11種拉彎耦閤載荷作用下的承載能力,繪製彊度包絡線,分析瞭薄弱區內外側搭接佈條的長度與厚度對其性能的影響。根據最大主應力彊度準則,計算得到薄弱區結構在不同拉彎比例下的彊度隨結構參數變化的麯線,進而對薄弱區結構進行參數化設計。根據參數化設計方法,設計瞭2種易碎蓋進行遲破實驗。結果錶明,搭接長度主要影響薄弱區結構的剪切彊度,而搭接厚度主要影響薄弱區結構的拉伸彊度;設計結果與實驗結果差距在10%左右,驗證瞭設計方法的可行性。
침대복합재료역쇄개박약구결구진행역학성능분석,제출료박약구결구삼수화설계방법。대발사상개정체진행수치모의,학정료박약구국부모형분석적변계조건화재하。계산박약구결구모형재11충랍만우합재하작용하적승재능력,회제강도포락선,분석료박약구내외측탑접포조적장도여후도대기성능적영향。근거최대주응력강도준칙,계산득도박약구결구재불동랍만비례하적강도수결구삼수변화적곡선,진이대박약구결구진행삼수화설계。근거삼수화설계방법,설계료2충역쇄개진행충파실험。결과표명,탑접장도주요영향박약구결구적전절강도,이탑접후도주요영향박약구결구적랍신강도;설계결과여실험결과차거재10%좌우,험증료설계방법적가행성。
Parametric design methods were proposed by the analysis of mechanical properties in the weak area of the composite fragile cover. Firstly, boundary conditions and load of the weak area were determined by numerical simulation for the whole cover. Secondly, the strength of weak area model was determined by numerical simulation under eleven different ratios of bending?stretc?hing coupling load. The effect of thickness and length of lapped glass cloth on the strength of weak structure was discussed, and the strength envelopes were developed subsequently. Then based on the maximum principle stress rule, the curves of strength and struc?ture parameters versus different bending?stretching coupling load were presented and parametric design method of the weak structure was proposed. According to the parametric design methods, two types of composite fragile covers were manufactured to rush experi?ments. The results show that shear strength is mainly affected by the length of glass cloth, while tensile strength is influenced by the thickness chiefly. The theoretical results are in close agreement with the experimental data and the mean error is about 10%, which proves the feasibility of the proposed parametric design method.