Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中國有色金屬學(xué)報(bào)

ZHONGGUO YOUSEJINSHU XUEBAO

第17卷    第7期    總第100期    2007年7月

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文章編號:1004-0609(2007)07-1063-09
擴(kuò)容角對初始隨機(jī)材料缺陷巖石試樣破壞過程及
力學(xué)行為的影響
王學(xué)濱

(遼寧工程技術(shù)大學(xué) 力學(xué)與工程科學(xué)系,阜新 123000)

摘 要:

在單軸平面應(yīng)變壓縮條件下,采用FLAC模擬擴(kuò)容角對具有初始隨機(jī)材料缺陷的光滑端面巖石試樣的破壞過程及對應(yīng)力—應(yīng)變曲線的影響。利用FISH函數(shù)于試樣內(nèi)部規(guī)定初始缺陷。密實(shí)的巖石服從莫爾庫侖剪破壞與拉破壞復(fù)合的破壞準(zhǔn)則,破壞之后呈現(xiàn)應(yīng)變軟化-理想塑性行為。缺陷在破壞之后經(jīng)歷理想塑性行為。擴(kuò)容角較高時(shí)試樣內(nèi)部最終發(fā)生破壞的單元數(shù)目較多。隨著擴(kuò)容角的增加,剪切帶變得粗壯和陡峭。擴(kuò)容角對應(yīng)力—軸向應(yīng)變曲線影響不大。擴(kuò)容角增加時(shí),在應(yīng)變軟化階段,應(yīng)力—側(cè)向應(yīng)變曲線變平緩,根據(jù)作者過去提出的理論公式,這是由于剪切帶寬度增加的貢獻(xiàn)超過剪切帶傾角增加的貢獻(xiàn)所致。當(dāng)擴(kuò)容角較高時(shí),應(yīng)力峰值時(shí)試樣內(nèi)部的最大剪切應(yīng)變增量較高,因而試樣破壞的前兆比較明顯。剪切帶傾角的數(shù)值結(jié)果與Arthur傾角比較接近,未能超過Coulomb傾角。擴(kuò)容角越大,剪切帶最終可以獲得越來越高的剪切應(yīng)變和體積應(yīng)變。

 

關(guān)鍵字: 非均質(zhì)性;材料缺陷;擴(kuò)容角;剪切帶;軸向應(yīng)變;側(cè)向應(yīng)變;前兆

Effects of dilation angle on failure process and mechanical
behavior for rock specimen with random material
imperfections
WANG Xue-bin

Department of Mechanics and Engineering Sciences,
Liaoning Technical University, Fuxin 123000, China

Abstract:For rock specimen with smooth ends and with initially random material imperfections, the effects of dilation angle (DA) on the failure process and stress—strain curve were numerically modeled using FLAC in uniaxial plane strain compression. Using a written FISH function, the initial imperfections within the specimen were prescribed. For intact rock exhibiting linear strain-softening behavior beyond the occurrence of failure and then ideal plastic behavior, the failure criterion is a composite Mohr-Coulomb criterion with tension cut-off. Initial imperfection undergoes ideal plastic behavior beyond the occurrence of failure. Rock specimen with higher DA is subjected to severe failure in the final deformation stage. Wider and steeper shear bands are observed at higher DA. The effects of DA on the stress—axial strain curve can be neglected. Less steep stress—lateral strain curve at post-peak is expected at higher DA since the contribution of the increase in shear band width to lateral strain exceeds the contribution of the increase in shear band inclination according to an analytical expression proposed by Wang and coworkers. Higher DA leads to higher value of maximum shear strain increment within the specimen. Therefore, more apparent precursor to failure can be observed at higher DA. Shear band inclination is closer to Arthur theory and is lower than Coulomb theory. Higher DA results in higher values of shear strain and volumetric strain in shear band.

 

Key words: heterogeneity; material imperfections; dilation angle; shear band; axial strain; lateral strain; precursor

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

主管:中國科學(xué)技術(shù)協(xié)會 主辦:中國有色金屬學(xué)會 承辦:中南大學(xué)
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