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心中心法初探
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作者 师玉红 《天府新论》 2006年第B06期9-10,共2页
心中心法是近代居士中兴起的一种佛教修行法门,以法而论属于密部,在修习过程中又通于禅宗和净土宗。心中心的修法是定慧双修之法,该法作用明显,见效奇快,被人们称之为融万法于一炉之法。
关键词 心中心法 大愚 王骧陆 元音老人
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如何修习心中心大法
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作者 释悟空 《气功》 1997年第8期365-365,共1页
心中心大法的修持于20年代曾一度传于京、沪等地,从学者不少,其说融会禅、密二宗。'心中心咒'原出唐译《佛心经品亦通大随求陀罗尼》等经,咒名'一切佛心中心大陀罗尼',又名'大随求陀罗尼'。咒文为:'唵,跋... 心中心大法的修持于20年代曾一度传于京、沪等地,从学者不少,其说融会禅、密二宗。'心中心咒'原出唐译《佛心经品亦通大随求陀罗尼》等经,咒名'一切佛心中心大陀罗尼',又名'大随求陀罗尼'。咒文为:'唵,跋嘚跋嘚,糁跋嘚糁跋嘚,印地(口栗)耶,微输达你,哈哈噜噜,遮隶迦噜遮隶,莎嚩诃。'持诵时有六种手印。经称:持诵此咒,'能令所持诵者等佛力故,等佛智故,等佛威故,能令持者心所为作无不办故',名大随求咒。 展开更多
关键词 气功 中心 密宗
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Correlation between welding and hardening parameters of friction stir welded joints of 2017 aluminum alloy 被引量:1
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作者 Hassen BOUZAIENE Mohamed-Ali REZGUI +1 位作者 Mahfoudh AYADI Ali ZGHAL 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第5期1064-1072,共9页
An experimental study was undertaken to express the hardening Swift law according to friction stir welding (FSW) aluminum alloy 2017. Tensile tests of welded joints were run in accordance with face centered composit... An experimental study was undertaken to express the hardening Swift law according to friction stir welding (FSW) aluminum alloy 2017. Tensile tests of welded joints were run in accordance with face centered composite design. Two types of identified models based on least square method and response surface method were used to assess the contribution of FSW independent factors on the hardening parameters. These models were introduced into finite-element code "Abaqus" to simulate tensile tests of welded joints. The relative average deviation criterion, between the experimental data and the numerical simulations of tension-elongation of tensile tests, shows good agreement between the experimental results and the predicted hardening models. These results can be used to perform multi-criteria optimization for carrying out specific welds or conducting numerical simulation of plastic deformation of forming process of FSW parts such as hydroforming, bending and forging. 展开更多
关键词 friction stir welding response surface methodology face centered central composite design HARDENING simulation relative average deviation criterion
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