工程塑料应用
工程塑料應用
공정소료응용
ENGINEERING PLASTICS APPLICATION
2014年
3期
1-4
,共4页
宋洋%张向东%和敏%祝百茹
宋洋%張嚮東%和敏%祝百茹
송양%장향동%화민%축백여
玄武岩纤维增强塑料筋%内嵌法%混凝土梁%加固%力学性能
玄武巖纖維增彊塑料觔%內嵌法%混凝土樑%加固%力學性能
현무암섬유증강소료근%내감법%혼응토량%가고%역학성능
BFRP tendons%near surface mounted%concrete beams%strengthening%mechanical properties
针对钢筋锈蚀在工程加固领域中带来的严重安全生产问题,应用具有极强耐腐蚀性的新型玄武岩增强塑料(BFRP)筋,内嵌加固混凝土梁结构。制作7根混凝土梁进行静力加载试验,研究采用不同直径、加固数量的BFRP筋加固试件的受力性能,对其受力过程、破坏形态、承载力、变形和裂缝发展情况进行分析。结果表明,采用新型BFRP筋对混凝土结构进行加固可以有效增加结构的开裂载荷与极限载荷,开裂载荷提高73.88%~165.01%,极限载荷提高62.16%~72.90%;且有效减小加固构件的变形,延缓裂缝开展。但并不是加固筋材数量越多加固效果越好。BFRP筋可以推广应用在易受腐蚀地区代替钢筋进行结构加固工作。
針對鋼觔鏽蝕在工程加固領域中帶來的嚴重安全生產問題,應用具有極彊耐腐蝕性的新型玄武巖增彊塑料(BFRP)觔,內嵌加固混凝土樑結構。製作7根混凝土樑進行靜力加載試驗,研究採用不同直徑、加固數量的BFRP觔加固試件的受力性能,對其受力過程、破壞形態、承載力、變形和裂縫髮展情況進行分析。結果錶明,採用新型BFRP觔對混凝土結構進行加固可以有效增加結構的開裂載荷與極限載荷,開裂載荷提高73.88%~165.01%,極限載荷提高62.16%~72.90%;且有效減小加固構件的變形,延緩裂縫開展。但併不是加固觔材數量越多加固效果越好。BFRP觔可以推廣應用在易受腐蝕地區代替鋼觔進行結構加固工作。
침대강근수식재공정가고영역중대래적엄중안전생산문제,응용구유겁강내부식성적신형현무암증강소료(BFRP)근,내감가고혼응토량결구。제작7근혼응토량진행정력가재시험,연구채용불동직경、가고수량적BFRP근가고시건적수력성능,대기수력과정、파배형태、승재력、변형화렬봉발전정황진행분석。결과표명,채용신형BFRP근대혼응토결구진행가고가이유효증가결구적개렬재하여겁한재하,개렬재하제고73.88%~165.01%,겁한재하제고62.16%~72.90%;차유효감소가고구건적변형,연완렬봉개전。단병불시가고근재수량월다가고효과월호。BFRP근가이추엄응용재역수부식지구대체강근진행결구가고공작。
Aiming at the serious production safety problems caused by corrosion of steel in the field of engineering reinforcement ,new basalt fiber reinforced plastics (BFRP) tendons was applied to reinforce concrete beams. Seven concrete beams under monotonic loads were tested. Behavior of concrete beams strengthened with different diameter and number of BFRP tendons were studied. Based on tested values of concrete beams strengthened with new BFRP tendons,the stressing process,failure capacity, flexural capacity,deformation and crack distribution were studied.The test shows that strengthening technique using new BFRP tendons bonding in concrete cover can enhance the first-crack load and steel-yielding load of beams compared with the ordinary beam,the crack loads increased by 73.88%to 165.01%,the limit bearing capacities increased by 62.16%to 72.90%. The BFRP tendons can limit the crack width all the way up to failure and reduces deformation of reinforcement effectively. The reinforcement effect of the concrete beams is not better than the concrete beams strengthened with more BFRP tendons. BFRP tendons can be widely used in structure reinforcement instead of steel in susceptible to corrosion area.