压型钢板组合楼板课件.ppt
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1、Chapter 3 Composite floor with steel profiled压型钢板压型钢板-混凝土组合楼板混凝土组合楼板 By Professor Shiming Chen Lecture Notes for Presentation2019 OBJECTIVE/SCOPE To describe the design of one-way spanning composite slabs,formed using profiled steel sheeting and a concrete topping,including consideration of ultimate
2、 and serviceability limit state design for building structures.压型钢板、压型钢板分类 压型钢板-混凝土组合楼板 应用范围 设计方法 构造3.1 Introduction 压型钢板-混凝土组合楼板是指将压型钢板与混凝土通过某种构造措施组合成整体而共同工作的受力构件。Composite flooring system consists of a cold-formed,profiled steel sheet which acts,not only as the permanent formwork for an in-situ ca
3、st concrete slab,but also as the tensile reinforcement The essential composite action between the steel deck and the concrete slab is provided by some form of interlocking device,capable of resisting horizontal shear and preventing vertical separation at the steel/concrete interface.Composite slab w
4、ith profiled steel sheetit provides a working platform for construction.it acts as formwork for the concrete slab.it constitutes bottom reinforcement for the slab.Profiled Steel sheeting(a pattern of embossments)板面的齿槽与压痕可提供界面粘结力;界面的摩擦粘结等 Construction stage:place the profiled steel sheeting over the
5、support beams Construction stage:weld studs through the steel sheeting with portable welding gunConstruction stage:place the light steel reinforcement/steel meshConstruction stage:cast concreteTypes of Profiled Sheet压型钢板类型压型钢板类型Re-entrant types闭口型压型钢板闭口型压型钢板Trapezoidal types开口型压型钢板开口型压型钢板 Advantages
6、 identified as the follows:The steel deck acts as permanent shuttering for the in-situ cast concrete slab,with a consequent saving in time and labor.It once in position,immediately provides a platform to support construction loads and a safe,sturdy working surface.It acts as the tensile reinforcemen
7、t.The steel deck geometry can result in a reduction of labor about 30%in the amount of concrete fill required for the floor,significant reduction in dead weight loads.3.2.DESIGN PRINCIPLES 设计验算设计验算 Design Situations(设计工况)(设计工况)Two distinct structural states must be checked:firstly,the temporary stat
8、e of execution,when only the sheeting resists the applied loads(construction stage 施工阶段);secondly,the permanent state,after the concrete is bonded to the steel giving composite action(composite stage 正常使用阶段).Relevant limit states and load cases are considered for both design situations.a)Steel deck
9、shuttering(施工阶段)Verifications at the ultimate limit and serviceability limit states are required,with respect to the safety and serviceability of the steel deck acting as formwork for the wet concrete.The effects of any temporary props used during execution,must be taken into account in this design
10、situation.b)Composite slabs(正常使用阶段)Verifications at the ultimate limit and serviceability limit states are required,with respect to the safety and the serviceability of the composite slab after composite behaviour has commenced and any props have been removed.设计考虑因素:设计考虑因素:Three major aspects identi
11、fied for consideration during the design of a composite flooring deck:o The steel deck itself must be sufficiently strong and rigid to support the weight to wet concrete during casting-construction stage behavior.o The steel deck acting compositely with the hardened concrete,and spanning between the
12、 supporting steel beams,must support the imposed live loading-composite slab action.o The steel beams,acting compositely with the hardened concrete through the stud shear connectors must support the imposed live loading-composite beam action.3.2 Criteria for the design of composite floors 设计准则设计准则 I
13、n design,it is necessary to ensure that the strength and deflections both during construction(when the concrete is still green)and in service(when composite action has been achieved)are satisfactory.Construction stage:the profiled steel deck alone withstands the weight of wet concrete,workman and eq
14、uipment.Composite slab stage:the hardened concrete slab,acting compositely with the profiled steel sheet,spans between the supporting beams and carries the imposed live loads Key points for Construction stage-Profiled steel as shuttering Installation of the sheeting is carried out by laying one or m
15、ore span lengths over the supporting beams.The sheeting behaves as a folded plate structure and,for low load levels,the behavior is similar to simple beam behavior.At higher load levels,buckling of the component plates may occur.The prediction of buckling stresses on the component plates can be achi
16、eved using classical or energy methods.The sheeting has to have adequate bending strength and stiffness.The section properties of profiled sheets can be computed based on the analytical methods provided by design codes.Manufacturers prefer to carry out load tests on their products to assess full cap
17、acity and provide load-span tables appropriate to each profile.Propping can dramatically reduce deflections.Key points for composite stage The steel deck acts as tensile reinforcement to the slab and the development of composite action depends entirely upon adequate transference of horizontal shear
18、forces at the steel/concrete interface.To evaluate the shear bond resistance at the interface between the concrete and the profiled deck,Porter and Ekberg(1976)proposed a testing program(shear-bond test)now worldwide adopted in determination of the shear bond resistance for composite slabs.3.3 BEHAV
19、IOR AND ANALYSIS Steel deck(混凝土结硬前:压型钢板)During execution when the concrete is wet,the steel deck alone resists the exterior loads.Its behavior is then comparable to that of profiles used for roof decking.The steel deck is subjected mainly to bending and shear;compression due to bending may arise in
20、either the flanges or the web;shear occurs essentially near the supports.Once the concrete has hardened the steel deck and concrete combine to form a single structural unit,the composite slab.Behavior of a composite slab is analogous to that of a conventional reinforced concrete slab.The bond betwee
21、n the steel deck and concrete may not be fully effective and longitudinal slip may occur before the steel deck yields.Composite slab failure mode types Failure type I:弯曲破坏(flexural failure):Failure type II:纵向剪切破坏(longitudinal shear failure,shear-bond failure.):Failure type III:垂直剪切破坏(vertical shear
22、failure)Load deflection response of brittle and ductile slabs The brittle or ductile mode of failure depends on the characteristics of the steel-concrete interface.Shear bond failure Brittle behavior in which slip causes a sudden decrease in load carrying capacity as the surface bond is broken.The e
23、xtent to which the load reduces is dependent on the effectiveness of the mechanical embossments.Ductile behavior in which case the mechanical shear connection is capable of transferring the shear force until failure occurs.This may be flexural or by longitudinal shear.Behavior of Composite Slabs Lon
24、gitudinal shear in composite slabs Three types of shear connection between a profiled steel sheet and a concrete slab:(1)natural bond between the two,known as frictional interlock (2)mechanical interlock provided by pressing dimples or ribs into the sheet (3)end anchorage provided by means of shot-f
25、ired pins,or by welding studs through the sheeting to the steel flange.Determination of the longitudinal shear strength The m-k or shear-bond testMode 1 brittle(or non-ductile)behaviorMode 2 ductile behavior Empirical method for evaluating longitudinal shear resistance The merits of using profiled s
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