物理学报
物理學報
물이학보
2013年
5期
508-514
,共7页
李兰凯%王厚生%倪志鹏%程军胜%王秋良
李蘭凱%王厚生%倪誌鵬%程軍勝%王鞦良
리란개%왕후생%예지붕%정군성%왕추량
超导线圈%机械稳定性%绕制张力%应力
超導線圈%機械穩定性%繞製張力%應力
초도선권%궤계은정성%요제장력%응력
superconducting coil%mechanical stability%winding pre-tension%stress
为了增加超导线圈中导线的占空比,提高超导磁体正常运行时的机械稳定性,通常在超导线圈绕制过程中施加一定的绕制张紧力.绕制张紧力的大小会对超导磁体的失超特性和退化性能产生重要的影响,因此有必要对绕制过程中的机械应力进行详细的分析.本文仔细地分析了绕制过程中导线的受力情况,进行了一些合理的假设和近似,提出了研究超导线圈绕制应力的理论模型,并根据轴对称结构的弹性力学方程式推导了计算超导线圈应力应变分布的理论公式.基于该模型分别研究了单一绕组的超导线圈和双绕组的超导线圈的绕制应力,分析了绕制张紧力和绕组的各向异性特性对径向应力和环向应力的影响.在该理论模型分析结果的基础上可以进一步分析多物理场作用下的超导磁体的应力应变行为,为高性能超导线圈的设计和建造提供理论指导.
為瞭增加超導線圈中導線的佔空比,提高超導磁體正常運行時的機械穩定性,通常在超導線圈繞製過程中施加一定的繞製張緊力.繞製張緊力的大小會對超導磁體的失超特性和退化性能產生重要的影響,因此有必要對繞製過程中的機械應力進行詳細的分析.本文仔細地分析瞭繞製過程中導線的受力情況,進行瞭一些閤理的假設和近似,提齣瞭研究超導線圈繞製應力的理論模型,併根據軸對稱結構的彈性力學方程式推導瞭計算超導線圈應力應變分佈的理論公式.基于該模型分彆研究瞭單一繞組的超導線圈和雙繞組的超導線圈的繞製應力,分析瞭繞製張緊力和繞組的各嚮異性特性對徑嚮應力和環嚮應力的影響.在該理論模型分析結果的基礎上可以進一步分析多物理場作用下的超導磁體的應力應變行為,為高性能超導線圈的設計和建造提供理論指導.
위료증가초도선권중도선적점공비,제고초도자체정상운행시적궤계은정성,통상재초도선권요제과정중시가일정적요제장긴력.요제장긴력적대소회대초도자체적실초특성화퇴화성능산생중요적영향,인차유필요대요제과정중적궤계응력진행상세적분석.본문자세지분석료요제과정중도선적수력정황,진행료일사합리적가설화근사,제출료연구초도선권요제응력적이론모형,병근거축대칭결구적탄성역학방정식추도료계산초도선권응력응변분포적이론공식.기우해모형분별연구료단일요조적초도선권화쌍요조적초도선권적요제응력,분석료요제장긴력화요조적각향이성특성대경향응력화배향응력적영향.재해이론모형분석결과적기출상가이진일보분석다물리장작용하적초도자체적응력응변행위,위고성능초도선권적설계화건조제공이론지도.
In order to increase the filling factor of conductor in superconducting coils and improve the mechanical stability of superconduct-ing magnet, the pre-tension is always applied to the conductor during winding the coils. Because the winding pre-tension has a great effect on the quench and degradation performance of superconducting magnet, it is necessary to analyze the mechanical stress caused by the fabrication. First, the winding physical process of conductor is analyzed. Then the theoretical model is developed to calculate the winding stress of superconducting coils based on some reasonable assumptions and approximations. And some formulas used for stress and strain are derived from the theory of elastic mechanics. Two kinds of superconducting coils (one consists of one type of wire, and the other one consists of two types of wires.) are researched according to the model. The effects of winding pre-stress and material anisotropy on radial stress and hoop stress in superconducting coils are also analyzed. On the basis of the analyzed results, one can further research the stress and strain of superconducting coils under the effect of multiphysics and give some theoretical suggestions for the design and construction of superconducting coils.