岩土力学
巖土力學
암토역학
ROCK AND SOIL MECHANICS
2014年
2期
359-364,422
,共7页
李丽华%肖衡林%唐辉明%胡其志%孙淼军%孙龙
李麗華%肖衡林%唐輝明%鬍其誌%孫淼軍%孫龍
리려화%초형림%당휘명%호기지%손묘군%손룡
混合土%轮胎碎片%动强度%动弹性模量%等效阻尼比
混閤土%輪胎碎片%動彊度%動彈性模量%等效阻尼比
혼합토%륜태쇄편%동강도%동탄성모량%등효조니비
mixture soil%tire shreds%dynamic strength%dynamic elastic modulus%equivalent damping ratio
废旧轮胎碎片颗粒与砂土混合用作路基或挡墙填料、建筑物基础隔震体系等具有质轻、土压力小、减震隔振效果好、耐久性优良、费用低廉的特点。通过室内数字化动三轴试验,重点对比研究了废旧轮胎颗粒含量及围压对混合土及纯砂土动强度、动弹性模量和等效阻尼比等主要动力特性参数的影响规律。结果表明,在相同围压和动剪应力比条件下,混合土动强度相对纯砂土略有降低(最大降低量约20 kPa,即约8%);所有配比混合土动弹性模量均小于纯砂,且减小效果显著,最大减小量约22 MPa(即约60%);混合土等效阻尼比先随轮胎颗粒含量的增大而增加,之后又随之减小,临界含量值介于30%~40%之间,混合土等效阻尼比相对纯砂土最大增加量约91%。结果证实,混合土剪切刚度有效降低,可以发挥减震隔振的优势。
廢舊輪胎碎片顆粒與砂土混閤用作路基或擋牆填料、建築物基礎隔震體繫等具有質輕、土壓力小、減震隔振效果好、耐久性優良、費用低廉的特點。通過室內數字化動三軸試驗,重點對比研究瞭廢舊輪胎顆粒含量及圍壓對混閤土及純砂土動彊度、動彈性模量和等效阻尼比等主要動力特性參數的影響規律。結果錶明,在相同圍壓和動剪應力比條件下,混閤土動彊度相對純砂土略有降低(最大降低量約20 kPa,即約8%);所有配比混閤土動彈性模量均小于純砂,且減小效果顯著,最大減小量約22 MPa(即約60%);混閤土等效阻尼比先隨輪胎顆粒含量的增大而增加,之後又隨之減小,臨界含量值介于30%~40%之間,混閤土等效阻尼比相對純砂土最大增加量約91%。結果證實,混閤土剪切剛度有效降低,可以髮揮減震隔振的優勢。
폐구륜태쇄편과립여사토혼합용작로기혹당장전료、건축물기출격진체계등구유질경、토압력소、감진격진효과호、내구성우량、비용저렴적특점。통과실내수자화동삼축시험,중점대비연구료폐구륜태과립함량급위압대혼합토급순사토동강도、동탄성모량화등효조니비등주요동력특성삼수적영향규률。결과표명,재상동위압화동전응력비조건하,혼합토동강도상대순사토략유강저(최대강저량약20 kPa,즉약8%);소유배비혼합토동탄성모량균소우순사,차감소효과현저,최대감소량약22 MPa(즉약60%);혼합토등효조니비선수륜태과립함량적증대이증가,지후우수지감소,림계함량치개우30%~40%지간,혼합토등효조니비상대순사토최대증가량약91%。결과증실,혼합토전절강도유효강저,가이발휘감진격진적우세。
Sand soil mixed with waste tire shreds can be used as filling of subgrade, retaining wall or shock isolation system of base etc., which has many advantages, such as small earth pressure, good absorption of vibration, excellent durability and low cost. There are comparison between the mixture and the sand soil through digital dynamic triaxial tests, which mainly include the influence of the tire shred content and the confining pressure on the dynamic strength, dynamic elastic modulus and equivalent damping ratio. The results show that when the confining pressure and the dynamic shear stress ratio are equal, the dynamic strength of the mixture is slightly lower than that of the sand soil which is reduced by 20 kPa, 8%. The dynamic elastic modulus of the mixture obviously decreases with 22 MPa, 60%of the maximum reduction. The equivalent damping ratio of the mixture firstly increases, then decreases with the increasing of the tire shred content;the critical tire shred content is about 30%-40%. The mixture’s maximum increment of equivalent damping ratio is about 91%. Test results confirm that the shearing rigidity of the mixture can effectively reduce, which can exploit the advantage of the absorption of vibration to the full.