Anti-slide pile casting mold device for geological disaster control
By designing an adjustable mold shell and a molding device for a pressure-resistant and heat-insulating layer, the problems of fixed mold height and insufficient pressure resistance were solved, thus achieving efficient production of anti-slide piles.
Patent Information
- Application Number
- CN202520229342.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-13
AI Technical Summary
The existing casting molds have no adjustable height and insufficient compressive strength, making them prone to falling off and unable to meet the requirements of anti-slide piles under different geological conditions.
A casting device including a base, a first mold shell, and a second mold shell is designed. The mold shells can be stacked to adjust the height, and the mold's compressive strength and thermal insulation are enhanced by a compressive and thermal insulation layer. Combined with a heating plate, the concrete solidification is accelerated.
It enables flexible adjustment of the mold height, enhances the mold's compressive strength, and accelerates concrete solidification through heating, thereby improving the production efficiency of anti-slide piles.
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Figure CN223849560U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to geological disaster control technical field, concretely relates to a geological disaster control anti -slip pile casting mold device. BACKGROUND
[0002] Geological disaster refers to the natural disaster of geological dynamic activity or geological environment abnormal change as the main cause, through effective geological engineering technical means, change the process of these geological disasters, to achieve the purpose of preventing or mitigating disaster, anti -slip pile is the pile column that goes through the landslide and goes into the slide bed, and is used to support the sliding force of slide, and plays the role of stabilizing the slope, needs to use the casting mold device to produce anti -slip pile to achieve the purpose of preventing or mitigating disaster in the control.
[0003] At present, anti -slip pile is usually used in geological disaster control, and is suitable for shallow and medium thick layer landslide, and is a main measure of anti -slip treatment, and most of the anti -slip piles are reinforced concrete pile casting mold forming, and different heights of anti -slip piles are needed for different geology, but the height of the existing casting mold cannot be adjusted, and since the casting mold of the anti -slip pile is mostly vertically arranged, the compression resistance of some spliced casting molds is not enough after pouring concrete, and the mold is prone to falling off, therefore a geological disaster control anti -slip pile casting mold device is proposed, which can adjust the height of the casting mold and enhance the compression resistance of the mold. UTILITY MODEL CONTENT
[0004] In view of the problems in the prior art, the utility model provides a geological disaster control anti -slip pile casting mold device, which can adjust the height of the casting mold and enhance the compression resistance of the mold.
[0005] The utility model solves the technical scheme that adopts a kind of geological disaster control anti -slip pile casting mold device, including base, first mold shell and second mold shell, first mold shell and second mold shell are all arranged in U shape structure, the top of first mold shell and second mold shell is all set with recess, the recess is used to insert the plugboard installation insertion, the bottom of first mold shell and second mold shell is equipped with plugboard, one end of first mold shell is fixedly connected with connecting block, one end of second mold shell is set with connecting slot, the connecting block is compatible with connecting slot;
[0006] The top of base is used for the first mold shell and the second mold shell to be placed, the top of base is fixedly installed with second compression-resistant insulation board, and the top of base is movably installed with first compression-resistant insulation board.
[0007] By adopting the technical scheme, the first mold shell and the second mold shell are stacked and installed at the top ends of the first mold shell and the second mold shell, the height of the casting mold can be adjusted, different height anti-skid piles can be cast, and the setting of the first pressure-resistant heat preservation layer plate and the second pressure-resistant heat preservation layer plate can improve the pressure resistance of the first mold shell and the second mold shell and provide heat preservation for the first mold shell and the second mold shell.
[0008] Specifically, the first pressure-resistant heat preservation layer plate and the second pressure-resistant heat preservation layer plate are arranged in U-shaped structures, and the cavity between the first pressure-resistant heat preservation layer plate and the second pressure-resistant heat preservation layer plate is used for placing the first mold shell and the second mold shell.
[0009] By adopting the technical scheme, the second mold shell is attached to the inner side of the second pressure-resistant heat preservation layer plate, and the first mold shell and the second mold shell are connected through the connecting block and the connecting groove, so that the cavity between the first mold shell and the second mold shell forms a casting cavity of the anti-skid pile.
[0010] Specifically, the bottom end of the first pressure-resistant heat preservation layer plate is provided with a pulley, the pulley is provided with two pulleys, and the two pulleys are slidingly installed in the interior of a sliding groove.
[0011] By adopting the technical scheme, the pulley slides in the sliding groove, and the first pressure-resistant heat preservation layer plate can slide at the top end of the base.
[0012] Specifically, the top end of the base is fixedly installed with an electric cylinder, and the output end of the electric cylinder is fixedly connected with one side of the first pressure-resistant heat preservation layer plate.
[0013] By adopting the technical scheme, the external power source starts the electric cylinder, and the starting of the electric cylinder can push the first pressure-resistant heat preservation layer plate to be close to the second pressure-resistant heat preservation layer plate, so that the inner side of the first pressure-resistant heat preservation layer plate is attached to the outer side of the first mold shell, and the first pressure-resistant heat preservation layer plate and the second pressure-resistant heat preservation layer plate can wrap the first mold shell and the second mold shell.
[0014] Specifically, the first pressure-resistant heat preservation layer plate and the second pressure-resistant heat preservation layer plate are provided with heating electric plates in the interiors thereof, and the heating ends of the heating electric plates are arranged on the inner sides of the first pressure-resistant heat preservation layer plate and the second pressure-resistant heat preservation layer plate.
[0015] By adopting the technical scheme, the external power source starts the heating electric plates installed in the interiors of the first pressure-resistant heat preservation layer plate and the second pressure-resistant heat preservation layer plate, heat generated by the heating electric plates is transmitted to the concrete through the first mold shell and the second mold shell, so that the solidification of the concrete can be accelerated, and the production efficiency of the anti-skid pile is improved.
[0016] The utility model discloses the beneficial effect:
[0017] The anti-slide pile casting mold device for geological disaster control can adjust the height of the casting mold, so that anti-slide piles of different heights are cast, and the compression resistance of the first mold shell and the second mold shell can be improved and the first mold shell and the second mold shell are provided with heat preservation by the first compression-resistant heat preservation plate and the second compression-resistant heat preservation plate
[0018] The anti-slide pile casting mold device for geological disaster control can provide heating effect for the concrete in the first mold shell and the second mold shell through the heating electric plate installed in the first compression-resistant heat preservation plate and the second compression-resistant heat preservation plate, so that the solidification time of the concrete can be accelerated, and the production efficiency of the anti-slide pile is improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] The utility model is further described below in combination with the drawings and examples.
[0020] Fig. 1 It is a three-dimensional structure schematic view of the utility model;
[0021] Fig. 2 It is a three-dimensional structure schematic view of the first mold shell and the second mold shell of the utility model;
[0022] Fig. 3 It is a connection groove structure schematic view of the utility model;
[0023] In the drawing: 1, electric cylinder; 2, sliding chute; 3, pulley; 4, first compression-resistant heat preservation plate; 5, base; 6, second compression-resistant heat preservation plate; 7, heating electric plate; 8, first mold shell; 9, second mold shell; 10, recess; 11, connecting block; 12, connection groove; 13, plugboard. DETAILED DESCRIPTION
[0024] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific implementation manners.
[0025] In order to adjust the height of the casting mold and enhance the compression resistance of the mold, as an embodiment of the utility model, as Figs. 1-3As shown, the utility model relates to a kind of anti-slide pile casting mould devices for geological disaster control, including base 5, first mould shell 8 and second mould shell 9, first mould shell 8 and second mould shell 9 are all set as U-shaped structure, recess 10 is set in the top of first mould shell 8 and second mould shell 9, recess 10 is used for the installation of inserting plate 13, the bottom of first mould shell 8 and second mould shell 9 is equipped with inserting plate 13, one end of first mould shell 8 is fixedly connected with connecting block 11, one end of second mould shell 9 is equipped with connecting groove 12, connecting block 11 is matched with connecting groove 12.
[0026] The top of base 5 is used for the stacking of first mould shell 8 and second mould shell 9, second compression-resistant insulation board 6 is fixedly installed on the top of base 5, first compression-resistant insulation board 4 is movably installed on the top of base 5.
[0027] In use, the height of casting mould can be adjusted by the stacking of first mould shell 8 and second mould shell 9 on the top of first mould shell 8 and second mould shell 9, so that anti-slide piles of different heights can be cast, and the compression resistance of first mould shell 8 and second mould shell 9 can be improved by the arrangement of first compression-resistant insulation board 4 and second compression-resistant insulation board 6, and the heat preservation of first mould shell 8 and second mould shell 9 is provided.
[0028] The utility model also includes that first compression-resistant insulation board 4 and second compression-resistant insulation board 6 are all set as U-shaped structure, and the cavity between first compression-resistant insulation board 4 and second compression-resistant insulation board 6 is used for placing first mould shell 8 and second mould shell 9.
[0029] In use, second mould shell 9 is attached to the inner side of second compression-resistant insulation board 6, and first mould shell 8 and second mould shell 9 are connected through connecting block 11 and connecting groove 12, so that the cavity between first mould shell 8 and second mould shell 9 forms the casting cavity of anti-slide pile.
[0030] The utility model also includes that the bottom of first compression-resistant insulation board 4 is equipped with pulley 3, pulley 3 is equipped with two, pulley 3 is slidably installed in the inside of slide groove 2, slide groove 2 is set on the top surface of base 5, and slide groove 2 is equipped with two.
[0031] In use, first compression-resistant insulation board 4 can slide on the top of base 5 by the sliding of pulley 3 in slide groove 2.
[0032] The utility model also includes that electric cylinder 1 is fixedly installed on the top of base 5, and the output end of electric cylinder 1 is fixedly connected with one side of first compression-resistant insulation board 4.
[0033] In use, the external power supply starts the electric cylinder 1, the start of the electric cylinder 1 can push the first compression insulation board 4 close to the second compression insulation board 6, can let the inside of the first compression insulation board 4 be attached to the outside of the first mold shell 8, so that the first compression insulation board 4 and the second compression insulation board 6 can be wrapped around the first mold shell 8 and the second mold shell 9.
[0034] The utility model also includes, the inside of the first compression insulation board 4 and the second compression insulation board 6 is equipped with heating electric board 7, the heating end of the heating electric board 7 is located at the inside of the first compression insulation board 4 and the second compression insulation board 6.
[0035] In use, the external power supply starts the electric cylinder 1, the start of the electric cylinder 1 can push the first compression insulation board 4 close to the second compression insulation board 6, can let the inside of the first compression insulation board 4 be attached to the outside of the first mold shell 8, so that the first compression insulation board 4 and the second compression insulation board 6 can be wrapped around the first mold shell 8 and the second mold shell 9.
[0036] The utility model discloses when needing to carry out the casting to the anti -slip pile in use, first the outside of the second mold shell 9 is attached to the inside of the second compression insulation board 6, then the connecting block 11 of first mold shell 8 one end is inserted into the connecting groove 12 of second mold shell 9 one end, make the cavity between first mold shell 8 and second mold shell 9 form the casting cavity of anti -slip pile, and according to the demand height of the demand of anti -slip pile, the top of first mold shell 8 and second mold shell 9 is respectively stacked and installed first mold shell 8 and second mold shell 9, let the plugboard 13 of the bottom of first mold shell 8 and second mold shell 9 installed in the upper layer be inserted into the recess 10 of the top of first mold shell 8 and second mold shell 9 of lower layer, after assembling, through external power supply starts electric cylinder 1, the start of the electric cylinder 1 can push the first compression insulation board 4 close to the second compression insulation board 6, can let the inside of the first compression insulation board 4 be attached to the outside of the first mold shell 8, then the reinforcement is placed in the casting cavity between first mold shell 8 and second mold shell 9 and pours concrete, through the setting of first compression insulation board 4 and second compression insulation board 6 can provide the compression insulation effect for first mold shell 8 and second mold shell 9, can also through external power supply starts the heating electric board 7 of first compression insulation board 4 and second compression insulation board 6 inside installation, let the heat of heating electric board 7 be transferred to concrete through first mold shell 8 and second mold shell 9, so that the solidification of concrete can be accelerated, and the production efficiency of anti -slip pile is improved.
[0037] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A geological disaster control anti-slide pile casting mold device, comprising a base (5), a first mold shell (8) and a second mold shell (9), characterized in that, The first mold shell (8) and the second mold shell (9) are arranged in U-shaped structure, the top end of the first mold shell (8) and the second mold shell (9) is provided with a recess (10), the recess (10) is used for installing and inserting the plugboard (13), the bottom end of the first mold shell (8) and the second mold shell (9) is provided with the plugboard (13), one end of the first mold shell (8) is fixedly connected with the connecting block (11), one end of the second mold shell (9) is provided with the connecting groove (12), the connecting block (11) is matched with the connecting groove (12). The top end of the base (5) is used for stacking the first mold shell (8) and the second mold shell (9), the top end of the base (5) is fixedly installed with the second compression-resistant insulation board (6), and the top end of the base (5) is movably installed with the first compression-resistant insulation board (4).
2. The cast form device for a landslide control anti-slide pile according to claim 1, wherein The first compression-resistant insulation board (4) and the second compression-resistant insulation board (6) are arranged in U-shaped structure, and the cavity between the first compression-resistant insulation board (4) and the second compression-resistant insulation board (6) is used for placing the first mold shell (8) and the second mold shell (9).
3. The cast form device for a landslide control anti-slide pile according to claim 1, wherein, The bottom end of the first compression-resistant insulation board (4) is provided with a pulley (3), the pulley (3) is provided with two, and the two pulleys (3) are slidably installed in the inside of the sliding groove (2), the sliding groove (2) is arranged on the top end surface of the base (5), and the sliding groove (2) is provided with two.
4. The cast form device for a landslide control anti-slide pile according to claim 1, wherein, The top end of the base (5) is fixedly installed with an electric cylinder (1), and the output end of the electric cylinder (1) is fixedly connected with one side of the first compression-resistant insulation board (4).
5. The cast form device for a landslide control anti-slide pile according to claim 1, wherein, The first compression-resistant insulation board (4) and the second compression-resistant insulation board (6) are provided with heating electric plates (7) inside, and the heating end of the heating electric plate (7) is arranged on the inside of the first compression-resistant insulation board (4) and the second compression-resistant insulation board (6).