功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2014年
10期
10049-10054
,共6页
磁流变液%微结构%体积分数%磁感应强度%剪切
磁流變液%微結構%體積分數%磁感應彊度%剪切
자류변액%미결구%체적분수%자감응강도%전절
magnetorheological fluid%micro-structures%volume fraction%magnetic induction%shearing
磁流变液(MRF)的力学性能与其微结构密切相关,而其微结构的形成与演化受多种因素的影响。研究了静磁场和剪切作用下磁流变液微结构的形成与演化。在静磁场作用下,分析了颗粒体积分数和磁感应强度对其微结构的影响;在剪切作用下,观测了微结构的动态演化过程。实验结果表明,在相同磁感应强度下,随着颗粒体积分数的增加,通链数目逐渐增多,孤立链减少,且由相互独立的单链转变为相互聚集的束链,在相同颗粒体积分数下,随着磁感应强度的增加,颗粒链的间距增大,链的聚合度明显提高;在剪切过程中,成功地捕捉到了磁流变液颗粒链从形成→拉伸→断裂→重组的动态演化过程,当该过程达到动态平衡时,为磁流变液提供了稳定的抵抗宏观剪切的能力。
磁流變液(MRF)的力學性能與其微結構密切相關,而其微結構的形成與縯化受多種因素的影響。研究瞭靜磁場和剪切作用下磁流變液微結構的形成與縯化。在靜磁場作用下,分析瞭顆粒體積分數和磁感應彊度對其微結構的影響;在剪切作用下,觀測瞭微結構的動態縯化過程。實驗結果錶明,在相同磁感應彊度下,隨著顆粒體積分數的增加,通鏈數目逐漸增多,孤立鏈減少,且由相互獨立的單鏈轉變為相互聚集的束鏈,在相同顆粒體積分數下,隨著磁感應彊度的增加,顆粒鏈的間距增大,鏈的聚閤度明顯提高;在剪切過程中,成功地捕捉到瞭磁流變液顆粒鏈從形成→拉伸→斷裂→重組的動態縯化過程,噹該過程達到動態平衡時,為磁流變液提供瞭穩定的牴抗宏觀剪切的能力。
자류변액(MRF)적역학성능여기미결구밀절상관,이기미결구적형성여연화수다충인소적영향。연구료정자장화전절작용하자류변액미결구적형성여연화。재정자장작용하,분석료과립체적분수화자감응강도대기미결구적영향;재전절작용하,관측료미결구적동태연화과정。실험결과표명,재상동자감응강도하,수착과립체적분수적증가,통련수목축점증다,고립련감소,차유상호독립적단련전변위상호취집적속련,재상동과립체적분수하,수착자감응강도적증가,과립련적간거증대,련적취합도명현제고;재전절과정중,성공지포착도료자류변액과립련종형성→랍신→단렬→중조적동태연화과정,당해과정체도동태평형시,위자류변액제공료은정적저항굉관전절적능력。
The controllable mechanical properties of magnetorheological fluids (MRF)mainly depend on the mi-cro-structure inside the material.Many factors affect the micro-structure.The formation and evolution of the micro-structure was studied experimentally when the MRF was in a static magnetic field and suffering a shear. The effects of particle volume fraction and magnetic induction were considered.The results show that the num-ber of the chains increases with the increase of the particle volume fraction,but the distance between two chains decreases with the increase of the particle volume fraction when at the same magnetic induction,the micro-structure transformed from continuous chains to get together form a glomeroplasmatic structure;at the same volume fraction,the distance between two chains increase with the increase of the magnetic induction and the polymerization degree of the chain was improved remarkably.During a shear,the dynamic evolution process of the micro-structure was observed.