后勤工程学院学报
後勤工程學院學報
후근공정학원학보
JOURNAL OF LOGISTICAL ENGINEERING UNIVERSITY
2014年
3期
8-12
,共5页
田镇华%石少卿%汪敏%崔廉明
田鎮華%石少卿%汪敏%崔廉明
전진화%석소경%왕민%최렴명
圆形减压环%钢管壁厚%耗能
圓形減壓環%鋼管壁厚%耗能
원형감압배%강관벽후%모능
ring-brake energy dissipater%thickness of steel pipe%energy dissipation
圆形减压环主要由钢管、铝管套筒和钢丝绳组成,由于其耗能特性强,因此在被动防护系统中得到了广泛应用。在边坡防护工程中,将钢丝绳一端固定,另一端连接在防护阻挡结构上,通过钢管与铝管套筒的摩擦和钢管的大变形来散耗冲击动能。首先分析了圆形减压环的工作原理,并对其力学性能进行了拟静力试验,再利用ANSYS/LS-DYNA软件,研究了圆形减压环在荷载作用下,不同钢管壁厚对其耗能性能的影响。结果表明:随着钢管壁厚的增加,圆形减压环的启动荷载也随之增大;在低速荷载作用下,钢管壁厚对圆形减压环的耗能性能影响较弱,但是随着加载速度的提高,钢管壁厚对其耗能性能的影响明显增加,耗能总量上升明显。
圓形減壓環主要由鋼管、鋁管套筒和鋼絲繩組成,由于其耗能特性彊,因此在被動防護繫統中得到瞭廣汎應用。在邊坡防護工程中,將鋼絲繩一耑固定,另一耑連接在防護阻擋結構上,通過鋼管與鋁管套筒的摩抆和鋼管的大變形來散耗遲擊動能。首先分析瞭圓形減壓環的工作原理,併對其力學性能進行瞭擬靜力試驗,再利用ANSYS/LS-DYNA軟件,研究瞭圓形減壓環在荷載作用下,不同鋼管壁厚對其耗能性能的影響。結果錶明:隨著鋼管壁厚的增加,圓形減壓環的啟動荷載也隨之增大;在低速荷載作用下,鋼管壁厚對圓形減壓環的耗能性能影響較弱,但是隨著加載速度的提高,鋼管壁厚對其耗能性能的影響明顯增加,耗能總量上升明顯。
원형감압배주요유강관、려관투통화강사승조성,유우기모능특성강,인차재피동방호계통중득도료엄범응용。재변파방호공정중,장강사승일단고정,령일단련접재방호조당결구상,통과강관여려관투통적마찰화강관적대변형래산모충격동능。수선분석료원형감압배적공작원리,병대기역학성능진행료의정력시험,재이용ANSYS/LS-DYNA연건,연구료원형감압배재하재작용하,불동강관벽후대기모능성능적영향。결과표명:수착강관벽후적증가,원형감압배적계동하재야수지증대;재저속하재작용하,강관벽후대원형감압배적모능성능영향교약,단시수착가재속도적제고,강관벽후대기모능성능적영향명현증가,모능총량상승명현。
The ring-brake energy dissipater is mainly made up of steel pipe, aluminum tube sleeve and wire rope. For the strong energy dissipation feature, it has been widely used in the passive protection system. With one end of the wire rope is fixed and the other end is connected in the protective barrier structure,the kinetic energy is dissipated with the large deformation of the steel pipe and friction between steel pipe and tube sleeve. In this paper, the mechanism of the ring-brake energy is first analyzed and a pseudo static test of the mechanical properties is conducted and then with ANSYS/LS-DYNA finite element software, the ef-fects of thickness of the steel pipe on energy dissipation performance are explored with the ring-brake energy dissipater under im-pact load. The results show that:with the increase of the thickness of the steel pipe, the starting load pressure is increased;with the low load, pipe wall thickness has weak effect on energy dissipation performance of ring-brake energy dissipater, but as the loading velocity increases,the effects are significantly increased, and total energy dissipation is also increased much.