A device base template reinforcing device

CN224769367UActive Publication Date: 2026-09-18WEIFANG CHANGDA CONSTR GROUP
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Patent Information

Application Number
CN202522261294.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-09-18
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

[0002]目前传统设备基础模板支设工艺在施工过程中存在一些弊端,例如:定位钢筋或定位装置在混凝土浇筑过程中容易产生移位,从而导致设备基础模板移轴线位移;“U”型方木配对拉螺栓加固因方木刚度不够,牢固性较差,导致设备基础出现胀模、混凝土成型效果较差情况出现

Benefits of technology

每个所述子模板的底部均通过固定件与地面连接,所述固定件的一端固定连接于地面上,另一端与子模板连接,通过固定件将模板主体固定在地面上,从而可以简化模板的固定流程,实现模板主体固定的可靠性,综上,本实用新型产生的技术效果是通过设置一种定尺加工的L型定位板,可按照二次结构控制线迅速完成设备基础模板定位,定位迅速准确,无需反复调整;同时L型定位板通过膨胀螺栓及固定钢销连接地面与设备基础模板,固定牢固保证模板在遭受外力时不会发生位移,保证设备基础模板位置稳定性,避免混凝土浇筑过程中设备基础模板的移位。

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Abstract

The utility model is suitable for device foundation template technical field provides a kind of device foundation template reinforcing device, it include: template main part, the template main part includes several combined assembly subtemplate, several subtemplate combination assembly form pouring area;Between two adjacent subtemplates, it is equipped with compression assembly, the compression assembly acts on the position of two adjacent subtemplates and is compressed and fixed;The bottom of each subtemplate is connected with ground by fixing part, one end of fixing part is fixedly connected on ground, other end is connected with subtemplate, by this, the utility model is processed by setting a L-shaped positioning plate of fixed size, can complete device foundation template positioning according to secondary structure control line quickly, positioning is rapid and accurate, need not repeatedly adjust;Meanwhile, L-shaped positioning plate is connected ground and device foundation template by expansion bolt and fixed steel pin, fixed firm guarantee that template does not occur displacement when suffering external force.
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Description

Technical Field

[0001] This utility model relates to the field of equipment foundation template technology, and in particular to an equipment foundation template reinforcement device. Background Technology

[0002] Traditional equipment foundation formwork erection techniques have several drawbacks during construction. For example, positioning reinforcement bars or devices are prone to displacement during concrete pouring, leading to axial displacement of the equipment foundation formwork. Furthermore, the use of U-shaped square timber with tie bolts results in insufficient rigidity and poor stability, leading to bulging of the formwork and poor concrete forming. The distance between equipment foundations is designed based on the weight support points of the installed equipment and future maintenance space. Displacement and bulging of the equipment foundations can prevent precise alignment of the equipment, affecting its stability, operational performance, and increasing maintenance costs.

[0003] In conclusion, the existing technology obviously has inconveniences and defects in practical use, so it is necessary to improve it. Utility Model Content

[0004] To address the aforementioned shortcomings, the purpose of this utility model is to provide a reinforcement device for equipment foundation templates. This device can quickly and accurately position the equipment foundation templates according to the secondary structure control lines by using a fixed-length L-shaped positioning plate. The positioning is rapid and accurate, eliminating the need for repeated adjustments. Simultaneously, the L-shaped positioning plate is connected to the ground and the equipment foundation templates via expansion bolts and fixing steel pins, ensuring a firm fixation that prevents the templates from shifting under external forces. This guarantees the stability of the equipment foundation templates and prevents them from moving during concrete pouring.

[0005] To achieve the above objectives, this utility model provides a device for reinforcing equipment foundation templates, comprising: The template body includes several assembled sub-templates, which are assembled to form a pouring area; A clamping component is provided between two adjacent sub-templates, and the clamping component is used to clamp and fix the positions of the two adjacent sub-templates; The bottom of each sub-template is connected to the ground via a fastener, one end of which is fixedly connected to the ground and the other end is connected to the sub-template.

[0006] In one embodiment, two parallel sub-templates facing each other are fixed to each other by a grid fixing component to maintain the two sub-templates in the corresponding posture. The grid fixing component is inserted into the two sub-templates.

[0007] In one embodiment, the grid fixing assembly includes: Two connecting fixing rods are respectively inserted into the two sub-templates, and the two fixing rods are arranged in parallel. A tensioning member is sleeved on the two fixed rods, and at least two tensioning members are provided, with a certain distance between the two tensioning members.

[0008] In one embodiment, the tensioning member is an L-shaped positioning plate with a snap-fit ​​hole. The snap-fit ​​hole is fitted onto the fixing rod, and the top of the fixing rod has a threaded portion. The tensioning member located at the top is disposed on the threaded portion and is fixed by a nut.

[0009] In one embodiment, the clamping assembly includes: A clamping screw is fixedly connected to one of the sub-templates; A clamping sleeve is fixedly connected to another adjacent sub-template row, and the clamping sleeve is fitted onto the clamping screw.

[0010] In one embodiment, both the clamping screw and the clamping sleeve are fixedly connected to the sub-template via a fixed base, and the clamping screw is provided with a fixing nut for clamping the clamping sleeve.

[0011] In one embodiment, the fixing member is an L-shaped positioning plate, and the fixing member is connected to the ground by expansion bolts. The outer periphery of the template body is provided with a fixing protrusion, and the fixing member is pressed against the top of the fixing protrusion. A fixing hole is opened on the fixing protrusion, and the fixing member and the fixing hole are fixed by a pin.

[0012] This utility model provides a device for reinforcing equipment foundation templates, including: The template body includes several assembled sub-templates, which are assembled to form a pouring area. Concrete is injected into the pouring area to realize the pouring process of the equipment foundation template. A clamping component is provided between two adjacent sub-templates. The clamping component is used to clamp and fix the positions of the two adjacent sub-templates, thereby ensuring that the two adjacent sub-templates can be clamped together and preventing the sub-templates from bulging, thus achieving the reliability of the equipment foundation formwork pouring. The bottom of each sub-template is connected to the ground via a fixing member. One end of the fixing member is fixed to the ground, and the other end is connected to the sub-template. The fixing member secures the main body of the template to the ground, thereby simplifying the template fixing process and ensuring the reliability of the template main body fixing. In summary, the technical effect of this utility model is that by setting a fixed-length L-shaped positioning plate, the equipment foundation template can be quickly positioned according to the secondary structure control line. The positioning is fast and accurate, without repeated adjustments. At the same time, the L-shaped positioning plate is connected to the ground and the equipment foundation template by expansion bolts and fixing steel pins, which firmly fixes the template and ensures that it will not shift when subjected to external forces, ensuring the positional stability of the equipment foundation template and avoiding displacement of the equipment foundation template during concrete pouring. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the assembled three-dimensional structure of this utility model; Figure 2 This is an enlarged structural diagram of part A of this utility model; Figure 3 This is a schematic diagram of the three-dimensional structure of the template body of this utility model; In the figure, 1-template body, 11-fixed protruding edge, 12-fixing hole, 13-insertion hole, 2-fixing component, 3-fixing rod, 4-top tensioning component, 5-bottom tensioning component, 6-pressure sleeve, 61-fixed base, 62-connecting rod, 7-pressure screw, 71-threaded part, 8-pouring area, 9-fixing nut. Detailed Implementation

[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0015] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0016] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0017] See Figure 1 and Figure 2 This utility model provides a reinforcement device for equipment foundation formwork. The device includes a formwork body 1, which comprises several assembled sub-formworks. These sub-formworks are assembled to form a pouring area 8. Concrete is injected into the pouring area 8 to achieve the pouring process of the equipment foundation formwork. A clamping component is provided between two adjacent sub-formworks. The clamping component acts to clamp and fix the positions of the two adjacent sub-formworks, thereby ensuring that the two adjacent sub-formworks can be clamped together and preventing the sub-formworks from bulging, thus achieving the reliability of the equipment foundation formwork pouring. The bottom of each sub-formwork is connected to the ground through a fixing member 2. One end of the fixing member 2 is fixedly connected to the ground, and the other end is connected to the sub-formwork. The fixing member 2 fixes the formwork body 1 to the ground, thereby simplifying the formwork fixing process and achieving the reliability of the formwork body 1 fixing.

[0018] In one embodiment, in order to ensure the position between two parallel sub-templates, the two opposite parallel sub-templates are fixed to each other by a grid fixing component to keep the two sub-templates in the corresponding posture. The grid fixing component is inserted into the two sub-templates. By setting the grid fixing component, it is ensured that the position of the sub-templates can be fixed by two vertical fixing members 2.

[0019] Specifically, to ensure the fixing effect of the grid fixing component, the grid fixing component includes: Two connecting fixing rods 3 are respectively inserted into the two sub-forms. The two fixing rods 3 are arranged in parallel to ensure the fixing effect of the two fixing rods 3 on the sub-forms. At the same time, insertion holes 13 can be set at the top of the sub-forms. By inserting the two fixing rods 3 into the insertion holes 13, the sub-forms can maintain their original position under the action of the insertion holes 13 and the fixing rods 3, thereby ensuring that the concrete inside will not bulge. The tensioning members are sleeved on the two fixing rods 3. There are at least two tensioning members, and there is a certain distance between the two tensioning members to ensure that the tensioning members cooperate with each other when tensioning, so as to prevent the fixing rods 3 from slipping and affecting the fixing effect on the sub-template.

[0020] In one exemplary embodiment, the tensioning member is an L-shaped positioning plate. The L-shape ensures the tensile strength of the tensioning member. Alternatively, it can be a flat plate structure. The tensioning member has snap-fit ​​holes that fit onto the fixing rod 3. The positions of the two fixing rods 3 are restricted by the two snap-fit ​​holes, thereby adjusting the position of the sub-template. The top of the fixing rod 3 has a threaded portion 71. The tensioning member at the top is mounted on the threaded portion 71 and fixed by a nut. This ensures that the top tensioning member 4 can be positioned under the constraint of the nut. The bottom tensioning member 5 directly abuts against the top of the sub-template. The bottom tensioning member 5 and the top tensioning member 4 restrict the overall position of the fixing rod 3, preventing the fixing rod 3 from tilting.

[0021] In one embodiment, the clamping assembly includes: A clamping screw 7 is fixedly connected to one of the sub-templates. The front end of the clamping screw 7 is provided with a fixing nut 9. The clamping sleeve 6 is clamped by the fixing nut 9 to prevent the clamping sleeve 6 from shifting. A clamping sleeve 6 is fixedly connected to another adjacent sub-template row. The clamping sleeve 6 is connected to the fixed base 61 by a connecting rod 62, ensuring that the clamping sleeve 6 can be fitted onto the clamping screw 7, thereby fixing the two adjacent sub-templates. The clamping sleeve 6 is fitted onto the clamping screw 7. Both the clamping screw 7 and the clamping sleeve 6 are fixedly connected to the sub-template by the fixed base 61. The clamping screw 7 is provided with a fixing nut 9 for clamping the clamping sleeve 6, thereby clamping the clamping sleeve 6 onto the clamping screw 7.

[0022] For details, see Figure 2 and Figure 3To fix the sub-template to the ground, the fixing member 2 can be an L-shaped positioning plate or a rectangular positioning plate. The fixing member 2 is connected to the ground by expansion bolts to ensure the reliability of the fixing between the fixing member 2 and the ground. At the same time, the outer periphery of the template body 1 is provided with a fixing protrusion 11. The fixing member 2 is pressed to the top of the fixing protrusion 11. The fixing protrusion 11 is provided with a fixing hole 12. The fixing member 2 and the fixing hole 12 are fixed by a pin limiter to achieve the fixing effect between the sub-template and the fixing member 2.

[0023] The construction process and key operating points of this device are as follows, combined with... Figures 1-3 , Process Flow Construction preparation → Positioning and layout → Roughening treatment → Formwork positioning → Formwork splicing → Formwork reinforcement → Concrete pouring → Curing.

[0024] During operation: First, perform positioning and layout to determine the connection positions of the expansion bolts on the fixing component 2. Determine the position and width of the template according to the construction drawings, mark the template edge line on the floor slab with ink lines, and pop out 200mm control lines on both sides of the template edge line.

[0025] Further roughening treatment is carried out. The vertical part at the root of the template and the junction of the frame column is roughened with a hammer. The roughening depth should be controlled between 5 and 10 mm, and the roughening should be uniform and fine.

[0026] Then, the template is positioned. First, use an electric hammer to drill holes in the floor slab on the control line 200mm outside the template positioning line. Align one end of the L-shaped positioning plate with the fixing hole 12 and the electric hammer hole, and use expansion bolts of the same diameter to insert into the two holes to fix the positioning plate on the floor slab. The second step involves placing the other end of the L-shaped positioning plate against the fixed protrusion 11 at the bottom of the template body 1. By using the fastener 2 to cooperate with the fixing hole 12 on the template body 1, a steel pin matching the diameter of the fixing hole 12 is inserted to connect the template body 1 with the fastener 2.

[0027] Then, the templates are assembled. After the templates are positioned, the templates are connected using sliding clamping components at the straight-line splicing and inside / outside corner splicing points. The fixing nut 9 at the sliding end of the clamping component is tightened using an electric wrench to clamp the adjacent sub-templates.

[0028] Further, the template is reinforced. After the template is in place according to the width of the template being constructed, the first clamping piece is placed on top of the template body 1. The spacing of the clamping pieces is adjusted appropriately according to the length of the template. Align the holes on the clamping pieces with the insertion holes 13 on the template. With the end of the clamping steel with the baffle welded on facing upwards, insert the clamping steel into the fixing holes 12 of the first clamping piece and the template, ensuring that the clamping steel is inserted to the root of the template. Place the second clamping piece on the baffle at the top of the clamping steel to form a grid-shaped fixing assembly, thus completing the template reinforcement. Alternatively, the second clamping piece can be clamped to the predetermined position by screwing two nuts onto the threaded part 71, thus completing the template reinforcement effect.

[0029] Finally, after the formwork reinforcement is completed and passes inspection, the concrete is poured. Before pouring, the surface is moistened with water and treated with neat cement slurry. During the concrete pouring process, timely vibration is carried out to ensure that the concrete surface has a floating slurry that no longer settles and no more air bubbles appear.

[0030] Finally, curing is carried out. After the formwork concrete is poured, it is watered for curing. Of course, there may be other embodiments of this utility model. Without departing from the spirit and essence of this utility model, those skilled in the art can make various corresponding changes and modifications based on this utility model, but these corresponding changes and modifications should all fall within the protection scope of the appended claims of this utility model.

Claims

1. A device foundation template reinforcement apparatus, characterized by, include: The template body includes several assembled sub-templates, which are assembled to form a pouring area; A clamping component is provided between two adjacent sub-templates, and the clamping component is used to clamp and fix the positions of the two adjacent sub-templates; The bottom of each sub-template is connected to the ground via a fastener, one end of which is fixedly connected to the ground and the other end is connected to the sub-template.

2. The equipment foundation template reinforcement apparatus of claim 1, wherein, Two parallel sub-templates facing each other are fixed to each other by a grid fixing component to keep the two sub-templates in the same posture. The grid fixing component is inserted into the two sub-templates.

3. The equipment foundation template reinforcement apparatus of claim 2, wherein, The grid fixing assembly includes: Two connecting fixing rods are respectively inserted into the two sub-templates, and the two fixing rods are arranged in parallel. A tensioning member is sleeved on the two fixed rods, and at least two tensioning members are provided, with a certain distance between the two tensioning members.

4. The equipment foundation template reinforcement apparatus of claim 3, wherein, The tensioning member is an L-shaped positioning plate with a snap-fit ​​hole. The snap-fit ​​hole is fitted onto the fixing rod. The top of the fixing rod has a threaded part. The tensioning member at the top is mounted on the threaded part and fixed by a nut.

5. The device foundation template reinforcement apparatus of claim 1, wherein, The clamping assembly includes: A clamping screw is fixedly connected to one of the sub-templates; A clamping sleeve is fixedly connected to another adjacent sub-template row, and the clamping sleeve is fitted onto the clamping screw.

6. The apparatus foundation template reinforcement device of claim 5, wherein, Both the clamping screw and the clamping sleeve are fixedly connected to the sub-template via a fixed base, and the clamping screw is provided with a fixing nut for clamping the clamping sleeve.

7. The device foundation template reinforcement apparatus of claim 1, wherein, The fixing component is an L-shaped positioning plate. The fixing component is connected to the ground by expansion bolts. The outer periphery of the template body is provided with a fixing protrusion. The fixing component is pressed against the top of the fixing protrusion. A fixing hole is opened on the fixing protrusion. The fixing component and the fixing hole are fixed by a pin.