哈尔滨工程大学学报
哈爾濱工程大學學報
합이빈공정대학학보
JOURNAL OF HARBIN ENGINEERING UNIVERSITY
2014年
10期
1201-1205
,共5页
在役预应力简支梁%应力释放%切槽法%现存预应力%拟合函数
在役預應力簡支樑%應力釋放%切槽法%現存預應力%擬閤函數
재역예응력간지량%응력석방%절조법%현존예응력%의합함수
in-service pre-stressed simply supported beam%stress-releasing%grooving method%extant pre-stressed force%fitting function
为了探讨在役预应力混凝土梁中现存预应力值,利用应力释放法对已经服役20年的预应力空心板梁进行切槽法试验。研究了不同的切割位置,切割缝间距对测点应力释放速度的影响;分析了切槽法释放混凝土工作应力随切槽深度、切割缝间距的变化规律,得到了梁体混凝土工作应力得以全部释放的切槽深度;利用数值分析软件建立切割深度与测点残余应力之间的拟合函数,从而推断出梁底表面的初始应力;根据推导的混凝土现存预应力的计算公式,将推导得到的初始应力代入计算公式,获得梁体现存预应力,通过这种方法实现对梁现存预应力的准确预估,以期对混凝土结构有效预应力的评估和桥梁结构评定方法提供一定的参考。
為瞭探討在役預應力混凝土樑中現存預應力值,利用應力釋放法對已經服役20年的預應力空心闆樑進行切槽法試驗。研究瞭不同的切割位置,切割縫間距對測點應力釋放速度的影響;分析瞭切槽法釋放混凝土工作應力隨切槽深度、切割縫間距的變化規律,得到瞭樑體混凝土工作應力得以全部釋放的切槽深度;利用數值分析軟件建立切割深度與測點殘餘應力之間的擬閤函數,從而推斷齣樑底錶麵的初始應力;根據推導的混凝土現存預應力的計算公式,將推導得到的初始應力代入計算公式,穫得樑體現存預應力,通過這種方法實現對樑現存預應力的準確預估,以期對混凝土結構有效預應力的評估和橋樑結構評定方法提供一定的參攷。
위료탐토재역예응력혼응토량중현존예응력치,이용응력석방법대이경복역20년적예응력공심판량진행절조법시험。연구료불동적절할위치,절할봉간거대측점응력석방속도적영향;분석료절조법석방혼응토공작응력수절조심도、절할봉간거적변화규률,득도료량체혼응토공작응력득이전부석방적절조심도;이용수치분석연건건립절할심도여측점잔여응력지간적의합함수,종이추단출량저표면적초시응력;근거추도적혼응토현존예응력적계산공식,장추도득도적초시응력대입계산공식,획득량체현존예응력,통과저충방법실현대량현존예응력적준학예고,이기대혼응토결구유효예응력적평고화교량결구평정방법제공일정적삼고。
In order to study the extant pre?stressed force in the pre?stressed concrete beam, the stress?releasing meth?od on the pre?stressed hollow slab beam which had served for 20 years was used in the grooving test. The effects of different cutting positions and cutting gap spacing on the testing stress release rate are researched. The variation law of the release concrete working stress with the changing of the notch depth and gap spacing in the grooving test was ana?lyzed, achieving the depth of notch when the working stress of beam concrete was release completely. The fitting func?tion between the cutting depth and the measured residual stress was established using numerical analysis software, so as to deduce the surface initial stress of the beam bottom. According to the derived formula of existing pre?stress of concrete, the initial stress generated from the derivation was substituted into the calculation formula, so as to get ex?tant pre?stress of the beam. By this method the extant pre?stressed force of beam was accurately estimated. This paper provided reference to a certain extent for effective pre?stress evaluation and assessment of bridge structure.