铁道标准设计
鐵道標準設計
철도표준설계
RAILWAY STANDARD DESIGN
2015年
9期
9-12,13
,共5页
金兰%程佳%朱兆荣%唐彩梅
金蘭%程佳%硃兆榮%唐綵梅
금란%정가%주조영%당채매
高速铁路%级配碎石%改良填料%冻胀
高速鐵路%級配碎石%改良填料%凍脹
고속철로%급배쇄석%개량전료%동창
High speed railway%Graded gravel%Improved filling material%Frost heaving
高速铁路路基填料选用传统意义上平均冻胀率η≤1%且级配良好的非冻胀填料,目前高速铁路路基在寒季产生的实际冻胀量已超过规范规定15 mm的要求。针对寒区高速铁路路基冻胀问题,从填料改良方面开展研究,针对路基产生冻胀的主要位置,选取级配碎石为对象,以水泥、石灰、粉煤灰作为掺和料进行改良。通过室内试验,分析加入无机材料后填料渗透性和冻胀性的变化,对比加入3种掺和料的填料冻胀率,选取一种改良效果最为理想的材料,作为寒区高速铁路路基改良材料。研究结果表明:水泥、石灰以及粉煤灰的加入大幅度减少了水分从路基表面向基床内部的渗透,其中粉煤灰吸水能力较强,因此产生了较大的冻胀量,不适宜作为改良材料;水泥改良填料冻结时水分迁移量减少,冻胀量最小,说明相对石灰和粉煤灰,水泥最适合加入到级配碎石中,减小路基冻胀量。
高速鐵路路基填料選用傳統意義上平均凍脹率η≤1%且級配良好的非凍脹填料,目前高速鐵路路基在寒季產生的實際凍脹量已超過規範規定15 mm的要求。針對寒區高速鐵路路基凍脹問題,從填料改良方麵開展研究,針對路基產生凍脹的主要位置,選取級配碎石為對象,以水泥、石灰、粉煤灰作為摻和料進行改良。通過室內試驗,分析加入無機材料後填料滲透性和凍脹性的變化,對比加入3種摻和料的填料凍脹率,選取一種改良效果最為理想的材料,作為寒區高速鐵路路基改良材料。研究結果錶明:水泥、石灰以及粉煤灰的加入大幅度減少瞭水分從路基錶麵嚮基床內部的滲透,其中粉煤灰吸水能力較彊,因此產生瞭較大的凍脹量,不適宜作為改良材料;水泥改良填料凍結時水分遷移量減少,凍脹量最小,說明相對石灰和粉煤灰,水泥最適閤加入到級配碎石中,減小路基凍脹量。
고속철로로기전료선용전통의의상평균동창솔η≤1%차급배량호적비동창전료,목전고속철로로기재한계산생적실제동창량이초과규범규정15 mm적요구。침대한구고속철로로기동창문제,종전료개량방면개전연구,침대로기산생동창적주요위치,선취급배쇄석위대상,이수니、석회、분매회작위참화료진행개량。통과실내시험,분석가입무궤재료후전료삼투성화동창성적변화,대비가입3충참화료적전료동창솔,선취일충개량효과최위이상적재료,작위한구고속철로로기개량재료。연구결과표명:수니、석회이급분매회적가입대폭도감소료수분종로기표면향기상내부적삼투,기중분매회흡수능력교강,인차산생료교대적동창량,불괄의작위개량재료;수니개량전료동결시수분천이량감소,동창량최소,설명상대석회화분매회,수니최괄합가입도급배쇄석중,감소로기동창량。
The traditional well graded filling material with average frost heaving ratio η≤1% is used in the high speed railway subgrade, and the actual frost heaving value has exceeds the requirements for high speed railway subgrade of less than 15 mm. The paper aims focuses on the frost heaving of high speed railway subgrade in cold regions and the improved subgrade filling materials. The graded gravel mixed with cement, lime and fly ash is selected based on the main frost heaving location of subgrade. Through indoor experiments, the change of permeability and frost heaving properties after adding inorganic materials are analyzed and the frost heaving ratios with three admixtures are compared. Thus, the material with best improved effect is selected as the improved material for high speed railway subgrade in cold regions. The research results show that cement, lime and fly ash can greatly reduce the seepage of water from the surface of subgrade to the interior. The fly ash shows great capacity in absorbing water, and results in large amount of frost heaving, being not suitable as the improved material. The moisture migration and amount of frost heaving reduced in the graded gravel mixed with cement. Compared with lime and fly ash, cement is the most suitable material to be mixed with graded gravel to reduce frost heaving.