CN1773052A - Cavity structural member for hollow board - Google Patents

Cavity structural member for hollow board Download PDF

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Publication number
CN1773052A
CN1773052A CN 200410092046 CN200410092046A CN1773052A CN 1773052 A CN1773052 A CN 1773052A CN 200410092046 CN200410092046 CN 200410092046 CN 200410092046 A CN200410092046 A CN 200410092046A CN 1773052 A CN1773052 A CN 1773052A
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hollow mould
mould shell
perhaps
base plate
structure base
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CN 200410092046
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Chinese (zh)
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邱则有
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Individual
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Abstract

The present invention relates to a hollow cavity member for hollow plate. It includes hollow cavity forms and structural baseplate. Said hollow cavity forms and structural baseplate are connected into a whole body. On the structural baseplate the alternatively-arranged hollow cavity forms are set, the alternative hollow cavities between hollow cavity forms and structural baseplate are formed into poured-in-place structure inner rib mould cavities. It is characterized by that in every inner rib mould cavity at least a bracing component is set. The invented hollow cavity member is applicable to cast-in-place reinforced concrete or prestressed reinforced concrete hollow plate, hollow floor board, roof slab, foundation baseplate, wall body and open-web bridge.

Description

A kind of hollowcore slab Cavity structural member
(1) technical field
The present invention relates to a kind of hollowcore slab Cavity structural member.
(2) background technology
Advantages such as at present, at present, the most precast hollow slab that adopts of the building of brick mix structure and reinforced concrete structure is as floor structure, and it is fast that this floor structure has speed of application, and cost is low.But, only use the cement mortar joint filling, thereby globality is poor, is unfavorable for antidetonation, and phenomenons such as slit cracking, infiltration often occur owing to firmly do not link between adjacent two precast hollow slabs.In order to address the above problem, a lot of building have adopted the method for Cast-in-place concrete floor (solid, hollow), though solved antidetonation and problems of crack, will use template in a large number during construction, have not only increased expense, and have slowed down speed of application, have prolonged the duration.Application number is " a kind of combination concrete rib floor structure " utility model patent of 00203695.9, it is made up of prefabricated plate, formwork, dark rib, upper plate, each prefabricated plate is placed at interval, on prefabricated plate, be fixed with formwork, be provided with dark rib between contiguous prefabricated thin plate or the formwork, upper plate covers on the formwork, and connects as one with dark rib.Though this floor structure can be saved a large amount of templates, accelerate construction progress, but because formwork is what to separate with prefabricated plate, its strength and stiffness are corresponding relatively poor, thereby the problem that exists formwork easily to break, simultaneously, formwork is fixed on and does not relate to concrete fixed form on the prefabricated plate, thereby fixed in place is difficult.And the patent No. is 93206310.1 shuttering member utility model patent, it constitutes hollow mould shell by sidewall and formwork upper plate and is connected to form totally-enclosed cavity polyhedral structure with lower shoe again, prefabricated ribs is arranged in it, during use member is placed on the supporter of floor gap, formation bonded to one another is whole between cast-in-place main rib, the shuttering member.When this kind member uses, be a kind of prefabricated noggin piece purely, the ribs in the die housing only is used to support formwork, can not participate in the whole stressed of superstructure.And when being applied in than the large spatial structure superstructure, its stress performance is also phase strain differential thereupon, do not have time rib between the cast-in-place main rib and connect, thereby make the size of main rib need the phase strain big, or the quantity of main rib increases, and causes material usage to increase, and cost increases.For this reason, the applicant has applied for that November 15 calendar year 2001 publication number is that CN1349028A, name are called " a kind of Comobined ribbed cavity member for spatial structure roof " patent of invention, its disclosed Cavity structural member includes formwork and structure base plate, hollow mould shell and structure base plate connect into integral body, it is characterized in that having 2 hollow mould shells on the structure base plate at least alternately, its side and structure base plate constitute at least one cast-in-place structural time rib die cavity, and other lateral surface of hollow mould shell constitutes the side template of cast-in-place structural main rib or beam or wall.Like this, because on the prior art basis, at least 2 hollow mould shells and at least 1 cast-in-place structural time rib die cavity (internal-rib die cavity) are arranged on the structure base plate, on the structure base plate, just can form cast-in-place structure time rib, fellowship structure base plate, main rib, upper plate stressed, form two-way main rib time rib force structure, problems of the prior art have not only been solved, but also overall performance, the anti-seismic performance of superstructure have further been improved, reduced the thickness of superstructure, alleviate dead load, reduced cost.But this Cavity structural member is in carrying, work progress, and its structure base plate is prone to the phenomenon that fractures, thereby the breakage rate of Cavity structural member is big, and carrying, construction inconvenience have increased construction cost.Therefore, develop a kind of novel hollowcore slab and be urgent need with Cavity structural member.
(3) summary of the invention
The object of the present invention is to provide a kind of hollowcore slab Cavity structural member, have characteristics such as intensity height, non-frangibility, carrying, easy construction.
Solution of the present invention is on the basis of existing technology, include hollow mould shell, the structure base plate, hollow mould shell and structure base plate connect into integral body, the structure base plate is provided with hollow mould shell alternately, alternate cavity between the hollow mould shell and structure base plate constitute cast-in-place structural internal-rib die cavity, it is characterized in that being provided with in the described internal-rib die cavity at least one support draw piece, the adjacent cavities formwork is connected to each other, the vertical coaxial line of hollow mould shell is arranged, hollow mould shell is prefabricated opening peviform formwork, the opening of the hollow mould shell of prefabricated opening peviform is fastened on the elongated structure base plate of same steel bar concrete more than at least two, and connects to integral body.Like this, owing to be provided with at least one support draw piece in the internal-rib die cavity, the adjacent cavities formwork is connected to each other, hollow mould shell is prefabricated opening peviform formwork, the opening of the hollow mould shell of prefabricated opening peviform is fastened on the elongated structure base plate of same steel bar concrete more than at least two, and connect to integral body, thereby concrete hollow board is bigger with the intensity and the rigidity of Cavity structural member, and shock resistance is better, and its structure base plate is frangibility more not, carrying is more convenient with construction, and the vertical coaxial line of hollow mould shell is arranged, thereby the Cavity structural member construction is laid more convenient, can further reduce construction cost, thereby reach purpose of the present invention; Simultaneously, Cavity structural member also has characteristics such as simple in structure, easily manufactured, that cost is low, the hollowcore slab, hollow building cover, roof system, sole plate, body of wall and the hollow bridges that are applicable to cast-in-situ reinforced concrete or prestressed reinforced concrete are used, and are specially adapted to hollow arch without beam and use.
Feature of the present invention is that also one side at least of described structure base plate is extended with toss.Like this, Yi Bian the structure base plate be extended with toss at least, toss can replace template, reduces the template loss, reduces material cost, can save the template installation procedure simultaneously, accelerates speed of application, improves efficiency of construction.
Feature of the present invention also is the wide 10-110mm of being of described toss.Like this, can be according to the needs of different actual conditions, the width that can adjust toss satisfies it and uses needs.
Feature of the present invention is that also at least one non-prestressed or prestressed reinforcing bar, steel wire or steel strand are arranged in described hollow mould shell or the structure base plate.Like this, after at least one non-prestressed or prestressed reinforcing bar, steel wire or steel strand are arranged in hollow mould shell or structure base plate, can improve the strength and stiffness of hollow mould shell or structure base plate greatly, perhaps make it become prestressed member, thereby improved its force structure, made its force structure more good, reasonable.
Feature of the present invention also is to have in the described hollow mould shell at least one reinforcing bar or steel wire or steel strand to connect the wall and the support draw piece of hollow mould shell.Like this, there are at least one reinforcing bar or steel wire or steel strand to connect the wall and the support draw piece of hollow mould shell in the hollow mould shell, thereby improved the rigidity and the intensity of Cavity structural member greatly.
Feature of the present invention also be on the wall of described hollow mould shell or have on the structure base plate in the cavity of reinforcing rib or hollow mould shell supporting rod is arranged or the floor of putting more energy at least a.Like this, on the wall of hollow mould shell or have on the structure base plate in the cavity of reinforcing rib or hollow mould shell and supporting rod is arranged or the floor of putting more energy into, can strengthen the supporting capacity of Cavity structural member greatly, the proportion of goods damageds of Cavity structural member in transportation, installation, work progress have been reduced, save material, reduced the cost of hollowcore slab.
Feature of the present invention also be described reinforcing rib or/and supporting rod or/and be provided with reinforcing bar or steel mesh reinforcement in the floor of putting more energy into.Like this, reinforcing rib is or/and supporting rod, has been strengthened the rigidity and the intensity of reinforcing rib, supporting rod, the floor of putting more energy into greatly or/and be provided with reinforcing bar or steel mesh reinforcement in the floor of putting more energy into.
Feature of the present invention is that also described reinforcing bar or steel mesh reinforcement expose outside the hollow mould shell.Like this, reinforcing bar or steel mesh reinforcement expose outside the hollow mould shell, but convenient construction process hollow core simultaneously, is bonded to integral body with Cast-in-place concrete with Cavity structural member binding, installation and only floating, can make the globality of hollowcore slab better.
Feature of the present invention also is on the described hollow mould shell fluted.Like this, cast-in-situ reinforced concrete forms Cast-in-place concrete muscle, piece, bar, rod member or pier, and the Cast-in-place concrete that has constituted inner local reinforcement in the cast-in-place hollow slab adds competent structure, thereby makes structure more reasonable.
Feature of the present invention also is to have in the described groove at least a in back superimposed reinforcing bar, steel wire or the steel strand.Like this, when described hollowcore slab be applied to Cavity structural member cast-in-place concrete cored in after, Cast-in-place concrete pours in the groove, combines with superimposed reinforcing bar, steel wire or the steel strand in back and forms cast-in-place steel bar concrete primary structure member, can improve the structural strength and the rigidity of floor greatly.
Feature of the present invention is that also described support draw piece is a truss support draw piece.Like this, truss support draw piece, support draw piece have that rigidity is big, advantages of high strength, and it is more solid and reliable to make that member connects, and can be used as the enhancing skeleton of the dark close rib of cast-in-situ reinforced concrete in the hollowcore slab.
Feature of the present invention is that also described support draw piece is the compound rod member of tubulose.Like this, when the support draw piece was the compound rod member of tubulose, the support draw piece had that rigidity is big, advantages of high strength, and it is more solid and reliable to make that member connects, and can be used as the enhancing skeleton of the dark close rib of cast-in-situ reinforced concrete in the hollowcore slab.
Feature of the present invention is that also described support draw piece is the compound rod member of stratiform.Like this, when the support draw piece was the compound rod member of stratiform, the support draw piece had that rigidity is big, advantages of high strength, and it is more solid and reliable to make that member connects, and can be used as the enhancing skeleton of the dark close rib of cast-in-situ reinforced concrete in the hollowcore slab.
Feature of the present invention also is to contain reinforce in described hollow mould shell or the structure base plate, and hollow mould shell is extended with reinforce and is anchored in the structure base plate, perhaps has reinforce to be anchored in the hollow mould shell in the structure base plate.Like this, being provided with the structure base plate of reinforce and the intensity of hollow mould shell has obtained improving greatly.
Feature of the present invention is that also the sidewall of described hollow mould shell is superimposed with vertical rib, and vertical rib and structure base plate connect to integral body.Like this, the sidewall of hollow mould shell is superimposed with vertical rib, and vertical rib and base plate connect to integral body, has improved the overall performance of hollowcore slab with Cavity structural member greatly.
Feature of the present invention is that also described hollow mould shell and vertical rib are that prefabricated formwork and cast-in-place vertical rib are superimposed.Like this, cast-in-place and prefabricated structure combining form has reduced the production difficulty, and simultaneously, both are in conjunction with firm, and hollow mould shell is difficult for becoming flexible, dropping, and has improved the quality of hollowcore slab with Cavity structural member.
Feature of the present invention is that also described hollow mould shell and vertical rib are that prefabricated formwork and prefabricated vertical rib are superimposed.Like this, when hollow mould shell and vertical rib were prefabricated units, both can separately adopt mechanization to produce in enormous quantities, have reduced the production difficulty, have improved production efficiency, have reduced the cost of product.
Feature of the present invention is that also described hollow mould shell and vertical rib are that cast-in-place formwork and prefabricated vertical rib are superimposed.Like this, cast-in-place and prefabricated structure combining form has reduced the production difficulty, and simultaneously, both are in conjunction with firm, and hollow mould shell and vertical rib are difficult for becoming flexible, dropping, and have improved the quality of hollowcore slab with Cavity structural member.
Feature of the present invention is that also described structure base plate and vertical rib are the structure base plate or the vertical rib of cement mortar or concrete or steel bar concrete or steel mesh reinforcement concrete.Like this, the diversity of structure base plate and vertical rib manufacturing materials can make things convenient for its making to draw materials nearby, reduces the cost of hollowcore slab with Cavity structural member.
Feature of the present invention is that also described hollow mould shell is extended with reinforce and is anchored in the superimposed vertical rib.Like this, the connection by reinforce makes it can cracking destruction in application process, has improved the quality of hollowcore slab with Cavity structural member greatly.
Feature of the present invention is that also described vertical rib is provided with the range line pier.Like this, by the range line pier that on vertical rib, is provided with, can carry out accurate range line location with Cavity structural member to hollowcore slab, make it in application process, guarantee between the two distance, thereby guaranteed the width or the thickness of Cast-in-place concrete, made the constructor be easy to floor is carried out quality control.
Feature of the present invention also is to be provided with hole or groove with the corresponding position of internal-rib die cavity on the described vertical rib.Like this, when the hollowcore slab noggin piece be applied to cast-in-place concrete cored in the time, Cast-in-place concrete pours in above-mentioned hole or the groove, corresponding formation connects or the local Cast-in-place concrete member of strengthening, and can increase substantially the overall performance and the structural-load-carrying capacity of floor.
Feature of the present invention is that also the side shell of described hollow mould shell has superimposed reinforcing rib of column and structure base plate to intersect.Like this, when the side of hollow mould shell had superimposed reinforcing rib of column and base plate to intersect, the superimposed reinforcing rib of column connected to whole stressed member with structure base plate and hollow mould shell, has improved globality and resistance to compression, tension and the shear resistance of hollowcore slab with Cavity structural member.
Feature of the present invention is that also described hollow mould shell is provided with at least one in projection, reinforcing bar filler strip, pit or the hole.Like this, after described hollowcore slab is applied in the In-situ cast concrete board with Cavity structural member, Cast-in-place concrete pours in the above-mentioned structure, projection, reinforcing bar filler strip can accurately be located reinforcing bar, guarantee the pouring quality of floor, Cast-in-place concrete pours into the corresponding Cast-in-place concrete load-carrying construction member that formed in pit or the hole, can improve the structural performance of floor effectively.
Feature of the present invention also is what at least one sidewall of described hollow mould shell and structure base plate were formed in one.Like this, at least one sidewall of hollow mould shell and structure base plate are formed in one, and have improved the globality of hollowcore slab with Cavity structural member greatly.
Feature of the present invention is that also described hollow mould shell is a prefabricated component, forms integral body with the structure bottom plate glue.Like this, cast-in-place and prefabricated structure combining form has reduced the production difficulty, and simultaneously, both are in conjunction with firm, and hollow mould shell is difficult for becoming flexible, dropping, and has improved the quality of hollowcore slab with Cavity structural member.
Feature of the present invention is that also the top board of described hollow mould shell is a superimposed sheet.Like this, the top board of hollow mould shell is a superimposed sheet, and it is more convenient to construct.
Feature of the present invention is that also described hollow mould shell is provided with at least one in inner corner trim, chamfering or the arc angle.Like this, when hollowcore slab with Cavity structural member be applied to cast-in-place concrete cored in the time, Cast-in-place concrete pours in above-mentioned inner corner trim, chamfering or the arc angle, and corresponding formation connects or the local Cast-in-place concrete member of strengthening, and increased substantially the overall performance and the structural-load-carrying capacity of hollow mould shell.
Feature of the present invention is that also glued joint close is arranged on the described hollow mould shell.Like this, when on the hollow mould shell glued joint close being arranged, can strengthen the junction; Simultaneously, when described hollowcore slab be applied to Cavity structural member cast-in-place concrete cored in after, joint close can play the effect that promotes weak part, reduces the chance that member damages.
Feature of the present invention is that also the wall of described hollow mould shell is gauze wire cloth or fleece or fibre mortar wall.Like this, the variation of the material of the wall of hollow mould shell can be satisfied the needs of different situations.
Feature of the present invention is that also the wall of described hollow mould shell is concrete or gauze wire cloth concrete or fleece concrete or fiber concrete wall.Like this, the variation of the material of the wall of hollow mould shell can be satisfied the needs of different situations.
Feature of the present invention is that also the wall of described hollow mould shell is plastics or metal wooden partition.Like this, the variation of the material of the wall of hollow mould shell can be satisfied the needs of different situations.
Feature of the present invention is that also the side shell of described hollow mould shell is provided with the range line pier.Like this, side by hollow mould shell is provided with the range line pier, can carry out accurate range line location with Cavity structural member to hollowcore slab, makes it guarantee between the two distance in application process, thereby guaranteed the width or the thickness of Cast-in-place concrete, made the constructor be easy to floor is carried out quality control.
Feature of the present invention also is the wide 400-1300mm of being of described structure base plate.Like this,, satisfy the demand, greatly facilitate practical application but the production structure baseplate width is arbitrary width between the 400-1300mm according to the different needs of reality.
Feature of the present invention is that also described internal-rib die cavity is an inverted T-shaped internal-rib die cavity.Like this, because the internal-rib die cavity is inverted T-shaped, Cast-in-place concrete has formed the Cast-in-place concrete rib of inverted T-shaped in the internal-rib die cavity, thereby the intensity of superstructure and rigidity are bigger.
Feature of the present invention also is the wide 20-120mm of being of described internal-rib die cavity.Like this, according to the different needs of reality, the arbitrary width that can produce between the wide 20-120mm of being of internal-rib die cavity is satisfied the demand, and greatly facilitates practical application.
Feature of the present invention is that also described support draw piece is located along the same line.Like this, when the support draw piece was located along the same line, the support draw piece can connect stressed, makes hollowcore slab be difficult for being damaged with Cavity structural member, can reduce the proportion of goods damageds of product effectively.
Feature of the present invention also is to have in the described support draw piece that is located along the same line non-prestressed or prestressed reinforcing bar, steel wire or the steel strand of at least one lengthwise to pass.Like this, the support draw piece that the reinforcing bar that lengthwise passes will be located along the same line has been linked to be integral body, and the support draw piece can connect stressed, makes hollowcore slab be difficult for being damaged with Cavity structural member, can reduce the proportion of goods damageds of product effectively.
Feature of the present invention is that also described support draw piece is positioned at the top rotation angle position of hollow mould shell.Like this, when the support draw piece is positioned at the top rotation angle position of hollow mould shell, the support position that point is an intensity height on the hollow mould shell, transmission force property is good that draw piece supported, thereby in carrying and work progress, hollow mould shell upper part rotation angle position is difficult for destroyed, has reduced the proportion of goods damageds of member.
Feature of the present invention also is to have in the described structure base plate shaped steel to strengthen.Like this, when having shaped steel to strengthen in the structure base plate, the intensity of structure base plate has obtained strengthening significantly, makes the structure base plate can bear bigger load, fully satisfies the demand.
Feature of the present invention also is to have in the structure base plate at position, described internal-rib die cavity place shaped steel to strengthen.Like this, when having shaped steel to strengthen in the structure base plate at position, internal-rib die cavity place, the intensity of the structure base plate at position, internal-rib die cavity place has obtained significantly strengthening, and makes the structure base plate can bear bigger load, fully satisfies the demand.
Feature of the present invention is that also described shaped steel is band iron, angle steel or i shaped steel.Like this, the variation of shaped steel can be satisfied the needs of different actual conditions.
(4) description of drawings
Fig. 1 is the structural representation of the embodiment of the invention 1.
Fig. 2 is the structural representation of the embodiment of the invention 2.
Fig. 3 is the structural representation of the embodiment of the invention 3.
Fig. 4 is the structural representation of the embodiment of the invention 4.
Fig. 5 is the structural representation of the embodiment of the invention 5.
Fig. 6 is the structural representation of the embodiment of the invention 6.
Fig. 7 is the structural representation of the embodiment of the invention 7.
Fig. 8 is the structural representation of the embodiment of the invention 8.
Fig. 9 is the structural representation of the embodiment of the invention 9.
Figure 10 is the structural representation of the embodiment of the invention 10.
Figure 11 is the structural representation of the embodiment of the invention 11.
Figure 12 is the structural representation of the embodiment of the invention 12.
Figure 13 is the structural representation of the embodiment of the invention 13.
Figure 14 is the structural representation of the embodiment of the invention 14.
Figure 15 is the structural representation of the embodiment of the invention 15.
(5) specific embodiment
The present invention is further illustrated below in conjunction with drawings and Examples.
The present invention as shown in drawings, include hollow mould shell 1, structure base plate 2, hollow mould shell 1 connects into integral body with structure base plate 2, structure base plate 2 is provided with hollow mould shell 1 alternately, alternate cavity between the hollow mould shell 1 and structure base plate 2 constitute cast-in-place structural internal-rib die cavity 3, it is characterized in that being provided with in the described internal-rib die cavity 3 at least one support draw piece 4, adjacent cavities formwork 1 is connected to each other, hollow mould shell 1 vertical coaxial line is arranged, hollow mould shell 1 is prefabricated opening peviform formwork, the opening of the hollow mould shell 1 of prefabricated opening peviform is fastened on the elongated structure base plate 2 of same steel bar concrete more than at least two, and connects to integral body.In each accompanying drawing, 1 is hollow mould shell, and 2 is the structure base plate, and 3 is the internal-rib die cavity, and 4 are the support draw piece, below in each accompanying drawing, number identically, its explanation is identical.As shown in Figure 1, be provided with support draw piece 4 in its described internal-rib die cavity 3, adjacent cavities formwork 1 is connected to each other, hollow mould shell 1 vertical coaxial line is arranged, hollow mould shell 1 is prefabricated opening peviform formwork, the opening of the hollow mould shell 1 of prefabricated opening peviform is fastened on the same elongated reinforced concrete structure base plate 2, and connects to integral body.
Feature of the present invention is that also one side at least of described structure base plate 2 is extended with toss 5.As shown in Figure 2, its described structure base plate 2 is extended with toss 5.
Feature of the present invention also is the described toss 5 wide 10-110mm of being.As shown in Figure 2, its described toss 5 is wide is 110mm.
Feature of the present invention is that also at least one non-prestressed or prestressed reinforcing bar, steel wire or steel strand 6 are arranged in described hollow mould shell 1 or the structure base plate 2.As shown in Figure 3, in its described hollow mould shell 1 and the structure base plate 2 prestressed reinforcing bar 6 is arranged.
Feature of the present invention also is to have in the described hollow mould shell 1 at least one reinforcing bar or steel wire or steel strand 6 to connect the wall and the support draw piece 4 of hollow mould shell 1.As shown in Figure 3, there is reinforcing bar 6 to connect the wall and the support draw piece 4 of hollow mould shell 1 in its described hollow mould shell 1.
Feature of the present invention also be on the wall of described hollow mould shell 1 or have on the structure base plate 2 in the cavity of reinforcing rib 7 or hollow mould shell 1 supporting rod 8 is arranged or the floor 9 of putting more energy at least a.As shown in Figure 4, reinforcing rib 7 is arranged on the wall of its described hollow mould shell 1, the supporting rod 8 and the floor 9 of putting more energy into are arranged in the cavity of hollow mould shell 1.
Feature of the present invention also be described reinforcing rib 7 or/and supporting rod 8 or/and be provided with reinforcing bar 6 or steel mesh reinforcement 10 in the floor 9 of putting more energy into.As shown in Figure 4, be respectively arranged with reinforcing bar 6 and gauze wire cloth 10 in its described supporting rod 8 and the floor 9 of putting more energy into.
Feature of the present invention is that also described reinforcing bar 6 or steel mesh reinforcement 10 expose outside the hollow mould shell 1.As shown in Figure 4, its described reinforcing bar 6 exposes outside the hollow mould shell 1.
Feature of the present invention also is on the described hollow mould shell 1 fluted 11.As shown in Figure 5, on its described hollow mould shell 1 fluted 11.
Feature of the present invention also is to have in the described groove 11 at least a in back superimposed reinforcing bar, steel wire or the steel strand 6.As shown in Figure 5, the superimposed reinforcing bar 6 in back is arranged in its described groove 11.
Feature of the present invention is that also described support draw piece 4 is truss support draw piece.As shown in Figure 6, its described support draw piece 4 is truss support draw piece.
Feature of the present invention is that also described support draw piece 4 is the compound rod member of tubulose.As shown in Figure 7, its described support draw piece 4 is the compound rod member of tubulose.
Feature of the present invention is that also described support draw piece 4 is the compound rod member of stratiform.As shown in Figure 8, its described support draw piece 4 is the compound rod member of stratiform.
Feature of the present invention also is to contain reinforce 12 in described hollow mould shell 1 or the structure base plate 2, and hollow mould shell 1 is extended with reinforce 12 and is anchored in the structure base plate 2, perhaps has reinforce 12 to be anchored in the hollow mould shell 1 in the structure base plate 2.As shown in Figure 9, contain reinforce 12 in its described hollow mould shell 1 and the structure base plate 2, hollow mould shell 1 is extended with reinforce 12 and is anchored in the structure base plate 2.
Feature of the present invention is that also the sidewall of described hollow mould shell 1 is superimposed with vertical rib 13, and vertical rib 13 connects to integral body with structure base plate 2.As shown in Figure 9, the sidewall of its described hollow mould shell 1 is superimposed with vertical rib 13, and vertical rib 13 connects to integral body with structure base plate 2.
Feature of the present invention is that also described hollow mould shell 1 and vertical rib 13 are that prefabricated formwork and cast-in-place vertical rib are superimposed.As shown in Figure 9, its described hollow mould shell 1 is that prefabricated formwork and cast-in-place vertical rib are superimposed with vertical rib 13.
Feature of the present invention is that also described hollow mould shell 1 and vertical rib 13 are that prefabricated formwork and prefabricated vertical rib are superimposed.As shown in figure 10, its described hollow mould shell 1 is that prefabricated formwork and prefabricated vertical rib are superimposed with vertical rib 13.
Feature of the present invention is that also described hollow mould shell 1 and vertical rib 13 are that cast-in-place formwork and prefabricated vertical rib are superimposed.As shown in figure 11, its described hollow mould shell 1 is that cast-in-place formwork and prefabricated vertical rib are superimposed with vertical rib 13.
Feature of the present invention is that also described structure base plate 2 and vertical rib 13 are the structure base plate or the vertical rib of cement mortar or concrete or steel bar concrete or steel mesh reinforcement concrete.As shown in Figure 9, its described structure base plate 2 and vertical rib 13 are the structure base plate and the vertical rib of concrete.
Feature of the present invention is that also described hollow mould shell 1 is extended with reinforce 12 and is anchored in the superimposed vertical rib 13.As shown in Figure 9, its described hollow mould shell 1 is extended with reinforce 12 and is anchored in the superimposed vertical rib 13.
Feature of the present invention is that also described vertical rib 13 is provided with range line pier 14.As shown in figure 11, its described vertical rib 13 is provided with range line pier 14.
Feature of the present invention also is to be provided with hole 15 or groove 11 with internal-rib die cavity 3 corresponding positions on the described vertical rib 13.As shown in figure 12, be respectively arranged with hole 15 and groove 11 on its described vertical rib 13 with on the internal-rib die cavity 3 corresponding positions.
Feature of the present invention is that also the side shell of described hollow mould shell 1 has superimposed reinforcing rib 7 of column and structure base plate 2 to intersect.As shown in figure 13, its side shell in described hollow mould shell 1 has superimposed reinforcing rib 7 of column and structure base plate 2 to intersect.
Feature of the present invention is that also described hollow mould shell 1 is provided with at least one in projection 16, reinforcing bar filler strip 17, pit 18 or the hole 15.As shown in figure 13, be provided with projection 16, reinforcing bar filler strip 17, pit 18 simultaneously on its described hollow mould shell 1.
Feature of the present invention also is what at least one sidewall of described hollow mould shell 1 and structure base plate 2 were formed in one.As shown in figure 13, a sidewall of its described hollow mould shell 1 and structure base plate 2 are formed in one.
Feature of the present invention is that also described hollow mould shell 1 is prefabricated component, becomes whole with 2 gluings of structure base plate.As shown in figure 14, its described hollow mould shell 1 is a prefabricated component, becomes whole with 2 gluings of structure base plate.
Feature of the present invention is that also the top board 19 of described hollow mould shell 1 is superimposed sheet.As shown in figure 13, the top board 19 of its described hollow mould shell 1 is a superimposed sheet.
Feature of the present invention is that also described hollow mould shell 1 is provided with at least one in inner corner trim 20, chamfering 21 or the arc angle 22.As shown in figure 14, be provided with inner corner trim 20, chamfering 21 and arc angle 22 simultaneously on its described hollow mould shell 1.
Feature of the present invention is that also glued joint close 23 is arranged on the described hollow mould shell 1.As shown in figure 15, on its described hollow mould shell 1 glued joint close 23 is arranged.
Feature of the present invention is that also the wall of described hollow mould shell 1 is gauze wire cloth or fleece or fibre mortar wall.As shown in figure 11, the wall of its described hollow mould shell 1 is the fibre mortar wall.
Feature of the present invention is that also the wall of described hollow mould shell 1 is concrete or gauze wire cloth concrete or fleece concrete or fiber concrete wall.As shown in figure 12, the wall of its described hollow mould shell 1 is a fiber concrete wall.
Feature of the present invention is that also the wall of described hollow mould shell 1 is plastics or metal wooden partition.As shown in figure 14, the wall of its described hollow mould shell 1 is a plastic wall.
Feature of the present invention is that also the side shell of described hollow mould shell 1 is provided with range line pier 14.As shown in figure 15, the side shell of its described hollow mould shell 1 is provided with range line pier 14.
Feature of the present invention also is the described structure base plate 2 wide 400-1300mm of being.As shown in figure 15, its described structure base plate 2 is wide is 1300mm.
Feature of the present invention is that also described internal-rib die cavity 3 is inverted T-shaped internal-rib die cavity.As shown in figure 15, its described internal-rib die cavity 3 is an inverted T-shaped internal-rib die cavity.
Feature of the present invention also is the described internal-rib die cavity 3 wide 20-120mm of being.As shown in figure 15, its described internal-rib die cavity 3 is wide is 120mm.
Feature of the present invention is that also described support draw piece 4 is located along the same line.As shown in figure 15, its described support draw piece 4 is located along the same line.
Feature of the present invention also is to have in the described support draw piece 4 that is located along the same line non-prestressed or prestressed reinforcing bar, steel wire or the steel strand 6 of at least one lengthwise to pass.As shown in Figure 3, there is the prestressed reinforcing bar 6 of lengthwise to pass in its described support draw piece 4 that is located along the same line.
Feature of the present invention is that also described support draw piece 4 is positioned at the top rotation angle position of hollow mould shell 1.As shown in figure 15, its described support draw piece 4 is positioned at the top rotation angle position of hollow mould shell 1.
Feature of the present invention also is to have in the described structure base plate 2 shaped steel 24 to strengthen.As shown in figure 15, there is shaped steel 24 to strengthen in its described structure base plate 2.
Feature of the present invention also is to have in the structure base plate 2 at position, described internal-rib die cavity 3 place shaped steel 24 to strengthen.As shown in figure 15, there is shaped steel 24 to strengthen in the structure base plate 2 at its position, described internal-rib die cavity 3 place.
Feature of the present invention is that also described shaped steel 24 is band iron, angle steel or i shaped steel.As shown in figure 15, its described shaped steel 24 is band iron.
During the invention process, can make the hollow mould shell 1 of opening earlier in advance of cement mortar and fiberglass gridding cloth, be provided with cement mortar support draw piece 4 between the hollow mould shell 1, make hollow mould shell 1 become the cavity former component of bunchiness; Make structure base plate 2 with concrete and reinforcing bar or steel mesh reinforcement then, at it not during setting and harden, the hollow mould shell 1 of prefabricated bunchiness fastened on it, be bonded to integral body, treat its setting and harden after, maintenance promptly gets the hollowcore slab Cavity structural member to stipulating the length of time.

Claims (10)

1, a kind of hollowcore slab Cavity structural member, include hollow mould shell (1), structure base plate (2), hollow mould shell (1) connects into integral body with structure base plate (2), structure base plate (2) is provided with hollow mould shell (1) alternately, alternate cavity between the hollow mould shell (1) and structure base plate (2) constitute cast-in-place structural internal-rib die cavity (3), it is characterized in that being provided with in the described internal-rib die cavity (3) at least one support draw piece (4), adjacent cavities formwork (1) is connected to each other, hollow mould shell (1) vertically coaxial line is arranged, hollow mould shell (1) is prefabricated opening peviform formwork, the opening of the hollow mould shell (1) of prefabricated opening peviform is fastened on the elongated structure base plate (2) of same steel bar concrete more than at least two, and connects to integral body.
2, hollowcore slab Cavity structural member according to claim 1, it is characterized in that described structure base plate (2) Yi Bian be extended with toss (5) at least.
3, hollowcore slab Cavity structural member according to claim 2 is characterized in that the wide 10-110mm of being of described toss (5).
4, hollowcore slab Cavity structural member according to claim 1 is characterized in that at least one non-prestressed or prestressed reinforcing bar, steel wire or steel strand (6) are arranged in described hollow mould shell (1) or the structure base plate (2); Perhaps there are at least one reinforcing bar or steel wire or steel strand (6) to connect the wall and the support draw piece (4) of hollow mould shell (1) in the hollow mould shell (1); Perhaps on the wall of hollow mould shell (1) or have on the structure base plate (2) at least a in supporting rod (8) or the floor of putting more energy into (9) arranged in the cavity of reinforcing rib (7) or hollow mould shell (1); Perhaps reinforcing rib (7) or/and supporting rod (8) or/and be provided with reinforcing bar (6) or steel mesh reinforcement (10) in the floor of putting more energy into (9); Perhaps reinforcing bar (6) or steel mesh reinforcement (10) expose outside the hollow mould shell (1).
5, hollowcore slab Cavity structural member according to claim 1 is characterized in that described hollow mould shell (1) upward fluted (11); At least a in superimposed reinforcing bar, steel wire or the steel strand (6) in back perhaps arranged in the groove (11); Perhaps support draw piece (4) and be truss support draw piece; Perhaps supportting draw piece (4) is the compound rod member of tubulose; Perhaps supportting draw piece (4) is the compound rod member of stratiform.
6, hollowcore slab Cavity structural member according to claim 1, it is characterized in that containing reinforce (12) in described hollow mould shell (1) or the structure base plate (2), hollow mould shell (1) is extended with reinforce (12) and is anchored in the structure base plate (2), perhaps has reinforce (12) to be anchored in the hollow mould shell (1) in the structure base plate (2); Perhaps the sidewall of hollow mould shell (1) is superimposed with vertical rib (13), and vertical rib (13) connects to integral body with structure base plate (2); Perhaps hollow mould shell (1) is that prefabricated formwork and cast-in-place vertical rib are superimposed with vertical rib (13); Perhaps hollow mould shell (1) is that prefabricated formwork and prefabricated vertical rib are superimposed with vertical rib (13); Perhaps hollow mould shell (1) is that cast-in-place formwork and prefabricated vertical rib are superimposed with vertical rib (13); Perhaps structure base plate (2) and vertical rib (13) are the structure base plate or the vertical rib of cement mortar or concrete or steel bar concrete or steel mesh reinforcement concrete; Perhaps hollow mould shell (1) is extended with reinforce (12) and is anchored in the superimposed vertical rib (13); Perhaps vertical rib (13) is provided with range line pier (14); Perhaps vertical rib (13) is gone up and the corresponding position of internal-rib die cavity (3) is provided with hole (15) or groove (11); Perhaps the side shell of hollow mould shell (1) has superimposed reinforcing rib of column (7) and structure base plate (2) to intersect.
7, hollowcore slab Cavity structural member according to claim 1 is characterized in that described hollow mould shell (1) is provided with at least one in projection (16), reinforcing bar filler strip (17), pit (18) or the hole (15); Perhaps at least one sidewall of hollow mould shell (1) and structure base plate (2) are formed in one; Perhaps hollow mould shell (1) is a prefabricated component, becomes whole with structure base plate (2) gluing; Perhaps the top board (19) of hollow mould shell (1) is a superimposed sheet; Perhaps hollow mould shell (1) is provided with at least one in inner corner trim (20), chamfering (21) or the arc angle (22); Perhaps on the hollow mould shell (1) glued joint close (23) is arranged.
8, hollowcore slab Cavity structural member according to claim 1, the wall that it is characterized in that described hollow mould shell (1) are gauze wire cloth or fleece or fibre mortar wall; Perhaps the wall of hollow mould shell (1) is concrete or gauze wire cloth concrete or fleece concrete or fiber concrete wall; Perhaps the wall of hollow mould shell (1) is plastics or metal wooden partition; Perhaps the side shell of hollow mould shell (1) is provided with range line pier (14); Perhaps structure base plate (2) is wide is 400-1300mm.
9, hollowcore slab Cavity structural member according to claim 1 is characterized in that described internal-rib die cavity (3) is an inverted T-shaped internal-rib die cavity; Perhaps internal-rib die cavity (3) is wide is 20-120mm; Perhaps supportting draw piece (4) is located along the same line; There are non-prestressed or prestressed reinforcing bar, steel wire or the steel strand (6) of at least one lengthwise to pass in the support draw piece (4) that perhaps is located along the same line; Perhaps support the top rotation angle position that draw piece (4) is positioned at hollow mould shell (1).
10, hollowcore slab Cavity structural member according to claim 1 is characterized in that having in the described structure base plate (2) shaped steel (24) to strengthen; Perhaps there is shaped steel (24) to strengthen in the structure base plate (2) at internal-rib die cavity (3) position, place; Perhaps shaped steel (24) is band iron, angle steel or i shaped steel.
CN 200410092046 2004-11-11 2004-11-11 Cavity structural member for hollow board Pending CN1773052A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200410092046 CN1773052A (en) 2004-11-11 2004-11-11 Cavity structural member for hollow board

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200410092046 CN1773052A (en) 2004-11-11 2004-11-11 Cavity structural member for hollow board

Publications (1)

Publication Number Publication Date
CN1773052A true CN1773052A (en) 2006-05-17

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Family Applications (1)

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CN 200410092046 Pending CN1773052A (en) 2004-11-11 2004-11-11 Cavity structural member for hollow board

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CN (1) CN1773052A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109930749A (en) * 2017-12-19 2019-06-25 南宁学院 A kind of skeleton structure of beam

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109930749A (en) * 2017-12-19 2019-06-25 南宁学院 A kind of skeleton structure of beam

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