CN112459485B - Circular concrete awl is fought inboard template reinforcing support frame device - Google Patents

Circular concrete awl is fought inboard template reinforcing support frame device Download PDF

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Publication number
CN112459485B
CN112459485B CN202011176920.0A CN202011176920A CN112459485B CN 112459485 B CN112459485 B CN 112459485B CN 202011176920 A CN202011176920 A CN 202011176920A CN 112459485 B CN112459485 B CN 112459485B
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steel pipe
template
support
horizontal support
steel
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CN112459485A (en
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王盛宇
武杰
张金宝
余洋
赵宏斌
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China First Metallurgical Group Co Ltd
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China First Metallurgical Group Co Ltd
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G17/00Connecting or other auxiliary members for forms, falsework structures, or shutterings
    • E04G17/14Bracing or strutting arrangements for formwalls; Devices for aligning forms
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G13/00Falsework, forms, or shutterings for particular parts of buildings, e.g. stairs, steps, cornices, balconies foundations, sills
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H7/00Construction or assembling of bulk storage containers employing civil engineering techniques in situ or off the site
    • E04H7/22Containers for fluent solids, e.g. silos, bunkers; Supports therefor
    • E04H7/24Constructions, with or without perforated walls, depending on the use of specified materials
    • E04H7/26Constructions, with or without perforated walls, depending on the use of specified materials mainly of concrete, e.g. reinforced concrete or other stone-like materials

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Forms Removed On Construction Sites Or Auxiliary Members Thereof (AREA)

Abstract

The invention discloses a circular concrete cone hopper inner side template reinforcing and supporting frame device which comprises a template system, a central connecting pipe, a supporting system and a jacking support, wherein the template system comprises tool type aluminum dies which are sequentially assembled layer by layer to form a cone hopper inner side circular arc template; the central connecting pipe is arranged between the center of the circular concrete cone hopper and the template system and is connected through a supporting system; the jacking connection is used for adjusting the inclination of the template between the supporting system and the template system. The invention not only realizes the purposes of quickly installing, reinforcing and removing the cone bucket inner die, but also solves the problems of difficult shaping of the circular inner die, incapability of adjusting the gradient of the template, non-compact joint and the like. Therefore, the construction speed is accelerated, the construction difficulty is reduced, the construction period is shortened, the turnover rate of the template is improved, materials are saved, and the concrete pouring quality is improved.

Description

Circular concrete awl is fought inboard template reinforcing support frame device
Technical Field
The invention relates to the technical field of concrete cone bucket supporting, in particular to a reinforcing and supporting frame device for a circular concrete cone bucket inner side formwork.
Background
Along with the development of the building industry, the concrete special-shaped structure is rich and diversified, wherein the concrete cone hopper is widely applied to a discharge port in the storage industry. The application of the concrete cone hopper accelerates the discharging speed, reduces the residual material accumulation quantity at the discharging port, thereby reducing the labor and time spent in cleaning and greatly accelerating the storage turnover rate. But the concrete cone fill template is propped up and is established the difficulty, and circular cone fill centre form is the arc template, and there is great difficulty in template installation, reinforcement, and when propping up and establishing the template, for realizing the inboard radian of cone fill, mostly adopt wooden model concatenation, reinforcing bar to consolidate, causes a large amount of templates, reinforcing bar loss. The formwork and the support system are not firm, and the quality problems of mold expansion, slurry leakage and the like are easily caused when concrete is poured.
Disclosure of Invention
The invention aims to solve the problems in the prior art, and provides a circular concrete cone hopper inner side formwork reinforcing and supporting frame device.
In order to achieve the purpose, the invention provides the following technical scheme, and the device for reinforcing the support frame of the circular concrete cone hopper inner side template is characterized in that: comprises a template system, a central connecting pipe, a supporting system and a top support,
the template system comprises tool type aluminum dies which are sequentially assembled layer by layer to form a circular arc template on the inner side of the conical hopper;
the central connecting pipe is arranged between the center of the circular concrete cone hopper and the template system and is connected through a supporting system;
the jacking connection is used for adjusting the inclination of the template between the supporting system and the template system.
Further, the center connecting pipe comprises a center steel pipe and a center steel pipe connecting sleeve, threads are fully distributed on the outer portion of the center steel pipe, the center steel pipe is sequentially connected with a plurality of center steel pipe connecting sleeves in a threaded mode from top to bottom, a plurality of center steel pipe connecting lugs are circumferentially arranged on the center steel pipe connecting sleeves, and through holes are formed in the center steel pipe connecting lugs.
Further, the support system comprises a first horizontal support, a plurality of alternately arranged bidirectional adjusting screw rods from inside to outside and a second horizontal support, one end of the first horizontal support is connected with the central steel pipe connecting lug, the other end of the first horizontal support is connected with the bidirectional adjusting screw rods, the bidirectional adjusting screw rods and the second horizontal supports are arranged in pairs, and the outer ends of the last group of second horizontal supports are connected with the top support and then support the template.
Furthermore, the first horizontal support comprises a support steel pipe U-shaped connecting lug, a first horizontal support steel pipe and a first connecting nut which are connected in sequence, and the central steel pipe connecting lug is inserted into the support steel pipe U-shaped connecting lug and connected through a fastening bolt; the bidirectional adjusting screw comprises a bidirectional screw, and the middle part of the bidirectional screw is fixedly connected with an adjusting handle; the second horizontal support comprises a second horizontal support steel pipe and second connecting nuts fixedly connected to two ends of the second horizontal support steel pipe respectively, supporting steel pipe connecting lugs are further arranged on the second horizontal support steel pipe, two ends of the two-way screw rod are connected with the first connecting nut and the second connecting nut respectively, and the right end of the last section of the two-way screw rod is connected with the jacking thread.
Further, still including the connecting steel pipe, be equipped with connecting sleeve on the connecting steel pipe, the connecting steel pipe is responsible for including the connecting steel pipe, the connecting steel pipe is responsible for both ends and is fixedly equipped with the connecting steel pipe engaging lug respectively, connecting sleeve includes adapter sleeve and sleeve pipe engaging lug, the connecting steel pipe engaging lug at connecting steel pipe both ends with it will to support the steel pipe engaging lug connection connecting steel pipe connects between adjacent second horizontal braces, and adjacent second horizontal braces includes respectively in the coplanar and adjacent second horizontal braces between the coplanar.
And one end of the additional support steel pipe is connected to the sleeve connecting lug between the outermost sides in the uppermost horizontal plane, and the other end of the additional support steel pipe supports the template system.
Further, the template system is including the rectangle aluminum mould board and the triangle-shaped aluminum mould board of concatenation, connect and fill soft rubber strip through the template fastener between the template of concatenation, the template fastener is including fastening splint and connecting pin, fastening splint are "V" font, fastening splint bottom end fixed connection connecting pin, connecting pin is hook-shaped, fastening splint press from both sides adjacent aluminum mould board between fastening splint then insert connecting pin in with adjacent aluminum mould board fixed connection in the hole that sets up on the aluminum mould board.
The template system is connected with the top support through a reinforcing angle steel, the reinforcing angle steel comprises a ring-shaped angle steel, a tie angle steel, a hook-shaped bolt rod and a fastening nut, the hook-shaped bolt rod hooks the aluminum membrane plate, the front end of the hook-shaped bolt rod fixedly connects the tie angle steel to the hook-shaped bolt rod through the fastening nut, one end of the ring-shaped angle steel is fixed between the tie angle steel and the hook-shaped bolt rod, the other end of the ring-shaped angle steel is arranged on the aluminum template in a pressing mode, and the steel plate of the top support presses the ring-shaped angle steel to fix the aluminum template in the pressing mode.
Further, unable adjustment base is equipped with bottom the center steel pipe, unable adjustment base includes base connecting sleeve, base connecting sleeve includes base center steel pipe connecting sleeve and base steel pipe connecting sleeve, base center steel pipe connecting sleeve and center steel pipe threaded connection, a plurality of base steel pipe connecting sleeve of fixedly connected with in the circumference, base steel pipe connecting sleeve outside of tubes end threaded connection base steel pipe, the base steel pipe outside is right the aluminium template supports.
Compared with the prior art, the invention at least comprises the following beneficial effects:
1. the conical hopper template adopts a tool type aluminum mould combined by the rectangular template and the triangular template, is convenient to carry and install, reduces the using amount of wood moulds, improves the turnover rate of the template and effectively saves the engineering cost. The rectangular template and the triangular template are combined, so that the appearance of the arc template can be realized, the template can be conveniently manufactured and installed in a standardized manner, and the construction speed is increased;
2. the template is convenient to disassemble, and the concrete vibrating rod inserting holes can be reserved during concrete pouring, so that the concrete vibrating compactness is improved, and the concrete pouring quality is ensured.
3. The templates are connected by the novel connecting clamp, so that the assembling speed and the stability of the templates are improved;
4. according to the invention, tool type aluminum templates are spliced into a cone shape, gaps exist among the templates, and the soft rubber strips are used for plugging the gaps of the templates, so that slurry leakage is avoided, and the concrete pouring quality is improved;
5. the angle steel is adopted to manufacture the reinforcing ribs, and the reinforcing ribs are combined with the hook-shaped bolt rods, so that the integral rigidity of the template is improved, and the angle steel is firmly connected with the template.
6. The support system adopts a detachable tool type support, the outside of the central steel pipe is fully provided with threads, and the central steel pipe connecting sleeve can be adjusted up and down through the threads so as to adjust the height of the template; the central steel pipe connecting sleeve is connected with the horizontal support rod by using a bolt (or a bolt), so that the central steel pipe connecting sleeve can be quickly assembled and disassembled;
7. the horizontal support rods are connected by using a bidirectional adjusting screw rod (in the diameter direction), and the overall length of the support rods can be adjusted by adjusting handles, so that template reinforcement and template gradient adjustment are realized;
8. the horizontal support rods are reinforced by the connecting rods, and the connecting rods are connected and reinforced with the horizontal support rods through the connecting sleeves and the connecting lugs of the support steel pipes, so that a support system is quickly installed and dismantled, the construction difficulty is reduced, and the material turnover rate is improved;
9. the template and the supporting system are connected with the external mold (or the bottom) of the funnel through the fixed base, so that the floating of the internal template or the sinking of the supporting system caused by the concrete pressure are avoided.
Drawings
FIG. 1 is a top view of the overall structure of the present invention;
FIG. 2 is a cross-sectional view taken along line 1-1 of FIG. 1 in accordance with the present invention;
FIG. 3 is a top view of the center connection tube of the present invention;
FIG. 4 is a top plan view of a first horizontal support of the present invention;
FIG. 5 is a top view of the bi-directional adjustment screw of the present invention;
FIG. 6 is a second horizontal support front view of the present invention;
FIG. 7 is a front elevational view of the jacking of the present invention;
FIG. 8 is a front view of the connecting steel pipe of the present invention;
FIG. 9 is a side view of the coupling sleeve of the present invention;
FIG. 10 is a front view of the reinforcement angle of the present invention;
FIG. 11 is a side view of a reinforcement angle of the present invention;
FIG. 12 is a schematic view of a base of the present invention;
FIG. 13 is a schematic view of the form fastening connection of the present invention;
FIG. 14 is a schematic illustration of template stitching according to the present invention;
in the figure, 1-central connecting pipe, 1.1-central steel pipe, 1.2-central steel pipe connecting sleeve and 1.3-central steel pipe connecting lug; 2-a first horizontal support, 2.1-a support steel pipe U-shaped connecting lug, 2.2-a first horizontal support steel pipe and 2.3-a first connecting nut; 3-bidirectional adjusting screw, 3.1-bidirectional screw and 3.2-adjusting handle; 4-second horizontal support, 4.1-second horizontal support steel pipe, 4.2-support steel pipe connecting lug and 4.3-second connecting nut; 5-connecting steel pipes, 5.1-connecting steel pipe main pipes and 5.2-connecting steel pipe connecting lugs; 6-connecting sleeve, 6.1-connecting sleeve and 6.2-connecting lug; 7-reinforcing angle steel, 7.1-annular angle steel, 7.2-tie angle steel, 7.3-hook bolt rod and 7.4-fastening nut; 8-jacking; 9-aluminum template, 9.1-rectangular aluminum template, 9.2-triangular aluminum template, 9.3-soft rubber strip, 9.4-template fastening connecting piece, 9.4.1-connecting bolt and 9.4.2-fastening clamping plate; 10-fixing a base, 10.1-connecting a base center steel pipe with a sleeve, 10.2-connecting a base steel pipe with a sleeve, and 10.3-connecting a base steel pipe; 11-additional support steel pipes.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It is to be noted that the experimental methods described in the following embodiments are all conventional methods unless otherwise specified, and the reagents and materials, if not otherwise specified, are commercially available; in the description of the present invention, the terms "lateral", "longitudinal", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention.
Furthermore, the terms "horizontal", "vertical", "overhang" and the like do not imply that the components are required to be absolutely horizontal or overhang, but may be slightly inclined. For example, "horizontal" merely means that the direction is more horizontal than "vertical" and does not mean that the structure must be perfectly horizontal, but may be slightly inclined.
In the description of the present application, it is further noted that, unless expressly stated or limited otherwise, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present application can be understood in a specific case by those of ordinary skill in the art.
As shown in fig. 1-14, the present application provides a circular concrete cone bucket inside formwork reinforcing support frame device, which is characterized in that: the template system comprises tool type aluminum dies which are sequentially spliced layer by layer to form a circular arc template on the inner side of the conical hopper; the central connecting pipe 1 is arranged between the center of the circular concrete cone hopper and the template system and is connected through a supporting system; the jacking 8 is connected between the supporting system and the template system to adjust the gradient of the template. In the embodiment, the horizontal support rods connected through the central connecting pipe 1 can be used for reinforcing a template system and adjusting the gradient of the template by using the bidirectional adjusting screw rods 3 and the jacking supports 8, and the elevation of the bottom of the template can be adjusted through the central steel pipe connecting sleeve 1.2; the template system uses rectangle aluminium template 9.1, triangle-shaped aluminium template 9.2, can satisfy the inboard circular arc concatenation of awl fill, adopts fastening connection spare, reinforcement angle steel 7 to connect the reinforcement between the template, increases template bulk rigidity, and the template gap sets up soft rubber strip 9.3, avoids the template to leak the thick liquid.
In a further preferred embodiment, center connecting pipe 1 includes center steel pipe 1.1 and center steel pipe adapter sleeve 1.2, the outside full thread that fills up of center steel pipe 1.1, center steel pipe 1.1 goes up from last to down a plurality of center steel pipe adapter sleeve 1.2 of threaded connection in proper order, center steel pipe adapter sleeve 1.2 is equipped with a plurality of center steel pipe engaging lugs 1.3 in week, be equipped with the through-hole on the center steel pipe engaging lug 1.3. In the above embodiment, a fixing base 10 is further arranged at the bottom of the central steel pipe 1.1, the fixing base 10 includes a base connecting sleeve, the base connecting sleeve includes a base central steel pipe connecting sleeve 10.1 and a base steel pipe connecting sleeve 10.2, the base central steel pipe connecting sleeve 10.1 is in threaded connection with the central steel pipe, a plurality of base steel pipe connecting sleeves 10.2 are fixedly connected in the circumferential direction, the outer end of each base steel pipe connecting sleeve 10.2 is in threaded connection with the corresponding base steel pipe 10.3, and the aluminum template 9 is supported outside the base steel pipe 10.3. In the embodiment, the base center steel pipe connecting sleeve 10.1 and the center steel pipe connecting sleeve 1.2 are both in threaded connection with the center steel pipe, so that the vertical free adjustment can be realized.
In a further preferred embodiment, the supporting system comprises a first horizontal support 2, a plurality of bidirectional adjusting screws 3 and second horizontal supports 4 which are alternately arranged from inside to outside, one end of the first horizontal support 2 is connected with a central steel pipe connecting lug 1.3, the other end of the first horizontal support is connected with the bidirectional adjusting screws 3, the bidirectional adjusting screws 3 and the second horizontal supports 4 are arranged in pairs, and the templates are supported after the outer ends of the last group of the second horizontal supports 4 are connected with the jacking 8. The first horizontal support 2 comprises a support steel pipe U-shaped connecting lug 2.1, a first horizontal support steel pipe 2.2 and a first connecting nut 2.3 which are connected in sequence, and the central steel pipe connecting lug 1.3 is inserted into the support steel pipe U-shaped connecting lug 2.1 and connected through a fastening bolt; the bidirectional adjusting screw 3 comprises a bidirectional screw 3.1, and the middle part of the bidirectional screw 3.1 is fixedly connected with an adjusting handle 3.2; the second horizontal support 4 includes second horizontal support steel pipe 4.1 and difference fixed connection is in the second coupling nut 4.3 at second horizontal support steel pipe 4.1 both ends, still be equipped with on the second horizontal support steel pipe 4.1 and support steel pipe engaging lug 4.2, the both ends of two-way screw rod 3.1 respectively with first coupling nut 2.3 with second coupling nut 4.3 connects, the right-hand member of last section two-way screw rod 3.1 with 8 threaded connection hold in the palm on the top. In the above embodiment, the whole concrete cone hopper inner side formwork is formed by splicing a plurality of layers, each layer of corresponding height position is provided with 1 central steel pipe connecting sleeve, the central steel pipe connecting sleeve is circumferentially provided with a plurality of central steel pipe connecting lugs 1.3, each central steel pipe connecting lug 1.3 is connected with the first horizontal support 2, then a plurality of groups of alternately arranged bidirectional adjusting screw rods 3 and second horizontal supports 4 are sequentially connected, the right end of the last group of second horizontal supports 4 is connected with the jacking support 8, and the jacking support 8 is connected with the aluminum formwork 9 through the reinforcing angle steel 7 in a reinforcing manner. The reinforcing angle steel 7 comprises a ring angle steel 7.1, a tie angle steel 7.2, a hook bolt rod 7.3 and a fastening nut 7.4, the hook bolt rod 7.3 hooks the aluminum template, the front end of the hook bolt rod 7.3 fixedly connects the tie angle steel 7.2 to the hook bolt rod 7.3 through the fastening nut 7.4, one end of the ring angle steel 7.1 is fixed between the tie angle steel 7.2 and the hook bolt rod 7.3, the other end of the ring angle steel 7.1 is arranged on the aluminum template 9 in a pressing mode, and the steel plate of the jacking support 8 presses on the ring angle steel 7.1 to fix the aluminum template 9 in the pressing mode.
In the further preferred embodiment, still include connecting steel pipe 5, be equipped with connecting sleeve 6 on connecting steel pipe 5, connecting steel pipe 5 is responsible for 5.1 including connecting steel pipe, connecting steel pipe is responsible for 5.1 both ends and is fixed being equipped with respectively and connect steel pipe engaging lug 5.2, connecting sleeve 6 includes connecting sleeve 6.1 and sleeve pipe engaging lug 6.2, connecting steel pipe engaging lug 5.2 at steel pipe both ends with it will to support steel pipe engaging lug 4.2 connection connecting steel pipe connects between adjacent second horizontal braces 4, and adjacent second horizontal braces 4 includes respectively in the same horizontal plane and adjacent second horizontal braces 4 between the same vertical plane. The template system is characterized by further comprising additional support steel pipes 11, wherein one ends of the additional support steel pipes 11 are connected to the sleeve connecting lugs 6.2 between the outermost sides in the uppermost horizontal plane, and the other ends support the template system.
In a further preferred embodiment, the formwork system comprises spliced rectangular aluminum formworks 9.1 and triangular aluminum formworks 9.2, the spliced formworks are connected through formwork fasteners and filled with soft rubber strips 9.3, the formwork fasteners are fastening clamping plates 9.4.2 and connecting bolts 9.4.1, the fastening clamping plates 9.4.2 are in a shape of a 'V', the bottom ends of the fastening clamping plates 9.4.2 are fixedly connected with the connecting bolts 9.4.1, the connecting bolts 9.4.1 are in a hook shape, the fastening clamping plates 9.4.2 clamp the adjacent aluminum formworks between the fastening clamping plates 9.4.2, and then the connecting bolts 9.4.1 are inserted into holes formed in the aluminum formworks to fixedly connect the adjacent aluminum formworks.
The concrete construction process of the invention is as follows:
1. according to the drawing size of the cone bucket, arranging and lofting the inner template;
2. after the support of the outer template of the cone hopper and the binding of the steel bars are finished, the support of the inner template is started, and a fixed base 10 is arranged on a side template support frame; installing a central steel pipe through a base central steel pipe connecting sleeve 10.1;
3. a rectangular aluminum template 9.1 and a triangular aluminum template 9.2 are constructed according to a lofting drawing to assemble a first circle of cone hopper internal mold, a soft rubber strip 9.3 is placed in a gap between the templates, and the templates are connected and reinforced by template fastening connecting pieces 9.4;
4. after the assembly of a circle of templates is completed, annular angle steel 7.1 is installed, the annular angle steel 7.1 is connected with the templates through tie angle steel 7.2 by using fastening nuts 7.4 and hook bolt rods 7.3, and the rigidity of the templates is enhanced;
5. after the installation of the circle of annular angle steel 7.1 is finished, the support frame body is installed, the central steel pipe connecting sleeve 1.2 is installed on the central steel pipe 1.1, and the position of the central steel pipe connecting sleeve 1.2 is preliminarily estimated and adjusted; installing a first horizontal support 2, and primarily connecting a central steel pipe connecting sleeve 1.2 with the first horizontal support 2 through a supporting steel pipe U-shaped connecting lug 2.1 by using a bolt; the first horizontal support 2 is connected with the second horizontal support 4 through a bidirectional adjusting screw 3; the second horizontal support 4 and the template are reinforced by a jacking 8;
6. adjusting the central steel pipe connecting sleeve 1.2 to enable the first horizontal support 2, the second horizontal support 4 and the reinforcing angle steel 7 to be positioned on the same straight line, and screwing down the connecting bolt; repeating the step 5, completing the installation of the first layer of the reinforcing support frame, and laterally reinforcing the second horizontal support 4 by using the connecting steel pipe 5; adjusting the bidirectional adjusting screw 3 and the jacking 8 to enable the horizontal supporting frame to jack the reinforcing angle steel 7 tightly, and completing the reinforcement of the formwork on the layer; if the diameter of the cone hopper is too large, an additional support steel pipe 11 is added on the outermost side connection steel pipe, so that the stability of the template system is ensured;
7. repeating the steps 3, 4, 5 and 6 to complete the assembly and reinforcement of the second layer of templates; the connecting steel pipes 5 are used for reinforcing the horizontal supports and the connecting steel pipes 5 in the horizontal direction, so that the upper layer reinforcing steel pipes and the lower layer reinforcing steel pipes are connected to form a whole, and the lateral instability of the support rod pieces is avoided;
8. repeating the step 7, completing the installation and the reinforcement of the inner side template of the circular cone hopper, and adjusting the fixed base 10 to ensure that the inner side template and the outer side template are tightly connected, so as to avoid the floating of the inner side template during the pouring;
9. when concrete is poured, partial middle templates can be removed according to actual conditions so as to facilitate the vibration of the concrete, the templates are recovered after the vibration is finished, and the upper layer concrete is continuously poured;
10. and (3) after the concrete is solidified, firstly removing the support frame, then removing the template, carrying out concrete maintenance, cleaning and maintaining the removed support frame body and template, and transferring to the next cone hopper for continuous use.
The above-described embodiments are merely illustrative of the preferred embodiments of the present invention and do not limit the spirit and scope of the present invention. Various modifications and improvements of the technical solutions of the present invention may be made by those skilled in the art without departing from the design concept of the present invention, and the technical contents of the present invention are all described in the claims.

Claims (7)

1. The utility model provides an inboard template reinforcement support frame device of circular concrete awl fill which characterized in that: the device comprises a template system, a central connecting pipe, a supporting system and a top support;
the template system comprises tool type aluminum dies which are sequentially assembled layer by layer to form a circular arc template on the inner side of the conical hopper; the template system comprises spliced rectangular aluminum templates and triangular aluminum templates, the spliced templates are connected through template fasteners and filled with soft rubber strips, each template fastener comprises fastening clamp plates and connecting bolts, each fastening clamp plate is V-shaped, the bottom ends of the fastening clamp plates are fixedly connected with the connecting bolts, the connecting bolts are hook-shaped, the fastening clamp plates clamp the adjacent aluminum templates between the fastening clamp plates, and then the connecting bolts are inserted into holes formed in the aluminum templates to fixedly connect the adjacent aluminum templates;
the formwork system is connected with the jacking through reinforcing angle steel, the reinforcing angle steel comprises annular angle steel, tie angle steel, a hook-shaped bolt rod and a fastening nut, the hook-shaped bolt rod hooks the aluminum formwork, the front end of the hook-shaped bolt rod fixedly connects the tie angle steel to the hook-shaped bolt rod through the fastening nut, one end of the annular angle steel is fixed between the tie angle steel and the hook-shaped bolt rod, the other end of the annular angle steel is arranged on the aluminum formwork in a pressing mode, and the steel plate of the jacking presses the annular angle steel to fix the aluminum formwork in the pressing mode;
the central connecting pipe is arranged between the center of the circular concrete cone hopper and the template system and is connected through a supporting system;
the jacking connection is used for adjusting the inclination of the template between the supporting system and the template system.
2. The circular concrete cone bucket inner side formwork reinforcing and supporting frame device as claimed in claim 1, is characterized in that: the center connecting pipe comprises a center steel pipe and a center steel pipe connecting sleeve, threads are fully distributed on the outside of the center steel pipe, the center steel pipe is sequentially connected with a plurality of center steel pipe connecting sleeves in a threaded mode from top to bottom, a plurality of center steel pipe connecting lugs are circumferentially arranged on the center steel pipe connecting sleeve, and through holes are formed in the center steel pipe connecting lugs.
3. The circular concrete cone bucket inner side formwork reinforcing and supporting frame device as claimed in claim 2, wherein: the support system comprises a first horizontal support, a plurality of alternately arranged bidirectional adjusting screw rods from inside to outside and a second horizontal support, one end of the first horizontal support is connected with the central steel pipe connecting lug, the other end of the first horizontal support is connected with the bidirectional adjusting screw rods, the bidirectional adjusting screw rods and the second horizontal support are arranged in pairs, and the outer ends of the last group of second horizontal supports are supported by the top support and then are connected with the template.
4. The circular concrete cone bucket inner side formwork reinforcing and supporting frame device as claimed in claim 3, wherein: the first horizontal support comprises a support steel pipe U-shaped connecting lug, a first horizontal support steel pipe and a first connecting nut which are connected in sequence, and the central steel pipe connecting lug is inserted into the support steel pipe U-shaped connecting lug and connected through a fastening bolt; the bidirectional adjusting screw comprises a bidirectional screw, and the middle part of the bidirectional screw is fixedly connected with an adjusting handle; the second horizontal support comprises a second horizontal support steel pipe and second connecting nuts fixedly connected to two ends of the second horizontal support steel pipe respectively, supporting steel pipe connecting lugs are further arranged on the second horizontal support steel pipe, two ends of the two-way screw rod are connected with the first connecting nut and the second connecting nut respectively, and the right end of the last section of the two-way screw rod is connected with the jacking thread.
5. The circular concrete cone bucket inner side formwork reinforcing and supporting frame device as claimed in claim 4, wherein: still including connecting the steel pipe, be equipped with connecting sleeve on the connecting steel pipe, connecting the steel pipe and being responsible for including connecting the steel pipe, connecting the steel pipe and being responsible for both ends and fixedly being equipped with respectively and connecting the steel pipe engaging lug, connecting sleeve includes adapter sleeve and sleeve pipe engaging lug, connecting the steel pipe engaging lug at steel pipe both ends with it will to support the steel pipe engaging lug connection connecting the steel pipe is connected between adjacent second horizontal support, and adjacent second horizontal support includes respectively in the same horizontal plane and adjacent second horizontal support between the same perpendicular.
6. The circular concrete cone bucket inner side formwork reinforcing and supporting frame device as claimed in claim 5, wherein: the template system is characterized by further comprising additional support steel pipes, wherein one ends of the additional support steel pipes are connected to the sleeve pipe connecting lugs between the outermost sides in the uppermost horizontal plane, and the other ends of the additional support steel pipes support the template system.
7. The circular concrete cone bucket inner side formwork reinforcing and supporting frame device as claimed in claim 3, wherein: the aluminum formwork support structure is characterized in that a fixed base is arranged at the bottom of the central steel pipe and comprises a base connecting sleeve, the base connecting sleeve comprises a base central steel pipe connecting sleeve and a base steel pipe connecting sleeve, the base central steel pipe connecting sleeve is in threaded connection with the central steel pipe, a plurality of base steel pipe connecting sleeves are fixedly connected in the circumferential direction, the outer end of each base steel pipe connecting sleeve is in threaded connection with the corresponding base steel pipe, and the aluminum formwork is supported outside the corresponding base steel pipe.
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