Auxiliary forming equipment for building latticed shell mold body
By designing an auxiliary forming equipment for building grid shell molds with a left transmission plate, a right transmission plate, and a lifting device, the problem of poor fixing effect of molds of different specifications is solved, and efficient and stable mold fixing and unit forming are achieved, which is suitable for casting building grid shell molds.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA CONSTR EIGHT ENG DIV CORP LTD
- Filing Date
- 2025-03-25
- Publication Date
- 2026-04-21
AI Technical Summary
Existing auxiliary molding devices for building reticulated shell molds are not suitable for casting molds of different specifications of building reticulated shell molds, resulting in poor fixing effect and reduced stability and molding effect of building reticulated shell units.
An auxiliary molding device was designed, comprising a left transmission plate, a right transmission plate, left and right drive mechanisms, a support rod, a fixed plate, and a lifting device. Through the cooperation of the drive mechanism and the lifting device, effective fixing and enhanced stability of molds of different specifications can be achieved.
It improves the adaptability and fixing effect of casting molds for building reticulated shells of different specifications, enhances the stability of building reticulated shell units during casting, has a simple structure, low cost, and is suitable for large-scale promotion and application.
Smart Images

Figure CN224144943U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building grid shell structure technology, and particularly to the field of building grid shell mold technology, specifically referring to an auxiliary molding equipment for building grid shell molds. Background Technology
[0002] A grid shell structure is a latticed shell structure, or a curved grid structure, and is a spatial structural system. It uses rods as its basic building blocks, which are combined according to specific geometric rules to form a grid shape. In terms of spatial form and arrangement, it follows the principles of shell structures, hence the name grid shell structure. It can be imagined as a spatial framework built from many small rods, resembling a seashell or dome.
[0003] In the construction of a building grid shell structure, it is necessary to prefabricate the building grid shell mold in advance, cast the building grid shell mold with materials to form building grid shell units, and assemble the building grid shell units to form a building grid shell structure.
[0004] However, existing auxiliary forming devices for building grid shell molds still have the following defects when in use:
[0005] 1. The casting molds for building reticulated shells come in different specifications. Existing auxiliary forming devices for building reticulated shells cannot effectively fix casting molds of different specifications, which reduces the adaptability of the casting molds for building reticulated shells.
[0006] 2. The existing auxiliary forming device for building grid shell molds has a poor fixing effect on the casting mold of building grid shell molds, which makes the stability of building grid shell units poor when casting them using the building grid shell mold, thus reducing the forming effect of building grid shell units.
[0007] Therefore, it is desirable to provide an auxiliary molding device for building grid shell molds, which can be applied to casting molds of different specifications for building grid shell molds, effectively fix the casting molds for building grid shell molds, enhance the stability of the casting molds for building grid shell units, and improve the molding effect of building grid shell units. Utility Model Content
[0008] In order to overcome the shortcomings of the prior art, one objective of this utility model is to provide an auxiliary molding device for building reticulated shell molds, which can be applied to building reticulated shell molds of different specifications, can effectively fix the building reticulated shell molds, enhance the stability of the building reticulated shell unit casting, improve the molding effect of the building reticulated shell unit, and is suitable for large-scale promotion and application.
[0009] Another objective of this invention is to provide an auxiliary forming device for building mesh shell molds, which is ingeniously designed, simple in structure, easy to manufacture, and has low manufacturing cost, making it suitable for large-scale promotion and application.
[0010] To achieve the above objectives, this utility model provides an auxiliary forming device for building grid shell molds, characterized by comprising a base, a left transmission plate, a right transmission plate, left and right drive mechanisms, a left support rod, a right support rod, a left fixing plate, a right fixing plate, a left clamping plate, a right clamping plate, a left lifting device, and a right lifting device, wherein:
[0011] The left transmission plate and the right transmission plate are both vertically arranged and arranged along the front-back direction, and are spaced apart from each other on the left and right. The left transmission plate and the right transmission plate are both movably arranged on the base on the left and right. The left and right driving mechanisms are arranged on the base and are respectively connected to the left transmission plate and the right transmission plate for driving the left transmission plate and the right transmission plate to move closer to each other and further away from each other in the left and right direction.
[0012] The left and right support rods are both vertically arranged and spaced apart from each other, respectively, and are mounted on the left and right transmission plates. The left and right fixing plates are both horizontally arranged along the front-back direction and spaced apart from each other. The left and right fixing plates are respectively mounted on the left and right support rods. The right side of the left fixing plate and the left side of the right fixing plate are respectively provided with a left fixing groove and a right fixing groove along the front-back direction. The left and right fixing grooves are arranged opposite each other. The left and right clamping plates are both horizontally arranged and spaced apart from each other along the front-back direction. The left and right clamping plates are respectively located in the left and right fixing grooves. The left lifting device is mounted on the left fixing plate and connected to the left clamping plate for lifting the left clamping plate. The right lifting device is mounted on the right fixing plate and connected to the right clamping plate for lifting the right clamping plate.
[0013] Preferably, the left and right drive mechanism includes a screw and a drive device. The screw is arranged along the left and right direction and rotatably mounted on the base. The screw has opposite thread directions on the left and right halves. The drive device is mounted on the base and connected to the screw for driving the screw to rotate in the left and right direction. The left transmission plate and the right transmission plate are respectively sleeved and threadedly engaged with the left and right halves of the screw.
[0014] More preferably, the left and right drive mechanism further includes a left fixed block and a right fixed block. The left fixed block and the right fixed block are both vertically arranged and arranged along the front-back direction and spaced apart from each other. The left fixed block and the right fixed block are both arranged on the base. The screw is located between the left fixed block and the right fixed block. The left end and the right end of the screw are rotatably connected to the left fixed block and the right fixed block respectively around the left and right direction. The left transmission plate and the right transmission plate are both located between the left fixed block and the right fixed block.
[0015] Furthermore, the left and right drive mechanism also includes a fixed seat, which is disposed on the base. The drive device is disposed on the fixed seat and located to the left of the left fixed block. The drive shaft of the drive device is disposed along the left and right direction and passes through the left fixed block along the left and right direction. The drive shaft is located to the left of the left end of the screw and is connected to the left end of the screw.
[0016] Preferably, the auxiliary forming equipment for the building reticulated shell mold further includes a left front slider, a left rear slider, a right front slider, and a right rear slider. The top surface of the base is provided with a front slide groove and a rear slide groove along the left and right directions, respectively. The front slide groove and the rear slide groove are spaced apart from each other. The left front slider and the left rear slider are spaced apart from each other and are movably disposed in the front slide groove and the rear slide groove, respectively. The left front slider and the left rear slider are both located under the left transmission plate and are both connected to the left transmission plate. The right front slider and the right rear slider are spaced apart from each other and are movably disposed in the front slide groove and the rear slide groove, respectively. The right front slider and the right rear slider are both located under the right transmission plate and are both connected to the right transmission plate.
[0017] Preferably, there are multiple left support rods, which are spaced apart from each other. The number of right support rods is the same as the number of left support rods, and the right support rods and left support rods are arranged in a one-to-one correspondence.
[0018] Preferably, the left lifting device includes a left adjusting knob, a left threaded rod, a left adjusting plate, a left front slide rod, and a left rear slide rod. The left threaded rod is vertically arranged, passes vertically through and threadedly engages the upper wall of the left fixing groove. The lower end of the left threaded rod is located within the left fixing groove and between the upper wall of the left fixing groove and the left clamping plate, and is horizontally rotatably connected to the left clamping plate. The upper end of the left threaded rod is located above the left fixing plate. The left adjusting knob is horizontally arranged... On the upper end of the left threaded rod, the left adjusting plate is horizontally arranged and along the front-back direction. The left adjusting plate is located between the left adjusting knob and the left fixed plate and is sleeved on the left threaded rod. The left front slide rod and the left rear slide rod are both vertically arranged and spaced apart from each other. They are both vertically movable and pass through the upper groove wall of the left fixed groove. The left front slide rod and the left rear slide rod are both located between the left adjusting plate and the left clamping plate and are respectively connected to the left adjusting plate and the left clamping plate.
[0019] More preferably, the auxiliary forming equipment for the building reticulated shell mold further includes a left reinforcing strip, which is arranged along the left-right direction and located below the left clamping plate and connected to the left clamping plate. There are multiple left reinforcing strips, which are arranged at intervals from each other.
[0020] Preferably, the right lifting device includes a right adjusting knob, a right threaded rod, a right adjusting plate, a right front slide rod, and a right rear slide rod. The right threaded rod is vertically arranged, passes vertically through and threadedly engages with the upper wall of the right fixing groove. The lower end of the right threaded rod is located within the right fixing groove and between the upper wall of the right fixing groove and the right clamping plate, and is horizontally rotatably connected to the right clamping plate. The upper end of the right threaded rod is located above the right fixing plate. The right adjusting knob is horizontally arranged... On the upper end of the right threaded rod, the right adjusting plate is horizontally arranged and along the front-back direction. The right adjusting plate is located between the right adjusting knob and the right fixing plate and is sleeved on the right threaded rod. The right front slide rod and the right rear slide rod are both vertically arranged and spaced apart from each other. They are both vertically movable and pass through the upper groove wall of the right fixing groove. The right front slide rod and the right rear slide rod are both located between the right adjusting plate and the right clamping plate and are respectively connected to the right adjusting plate and the right clamping plate.
[0021] More preferably, the auxiliary forming equipment for the building reticulated shell mold further includes a right reinforcing strip, which is arranged along the left-right direction and located below the right clamping plate and connected to the right clamping plate. There are multiple right reinforcing strips, which are arranged at intervals from each other.
[0022] The main beneficial effects of this utility model are as follows:
[0023] 1. When using the auxiliary molding equipment for the building mesh shell mold of this utility model, the building mesh shell mold casting mold is placed in front of the left and right fixed plates, so that the left end of the building mesh shell mold casting mold is aligned with the position between the left clamping plate and the lower wall of the left fixed groove, and the right end of the building mesh shell mold casting mold is aligned with the position between the right clamping plate and the lower wall of the right fixed groove. Then, the building mesh shell mold casting mold is moved backward and lowered, so that the left end of the building mesh shell mold casting mold is inserted into the position between the left clamping plate and the lower wall of the left fixed groove and abuts against the lower wall of the left fixed groove, and the right end of the building mesh shell mold casting mold is inserted into the position between the right clamping plate and the lower wall of the right fixed groove and abuts against the lower wall of the right fixed groove. The left and right drive plates are driven to move closer to each other in the left and right direction by the left and right drive mechanism. The left and right support rods move closer to each other in the left-right direction, which in turn moves the left and right fixing plates closer to each other in the left-right direction. This causes the bottom of the left fixing groove to abut against the left end face of the building grid shell mold, and the bottom of the right fixing groove to abut against the right end face of the building grid shell mold. The left clamping plate is lowered by the left lifting device, so that it abuts against the left end of the building grid shell mold. The right clamping plate is lowered by the right lifting device, so that it abuts against the right end of the building grid shell mold. Therefore, it can be used for building grid shell molds of different specifications, effectively fixes the building grid shell mold, enhances the stability of the building grid shell unit casting, improves the forming effect of the building grid shell unit, and is suitable for large-scale promotion and application.
[0024] 2. When using the auxiliary molding equipment for the building mesh shell mold of this utility model, the building mesh shell mold casting mold is placed in front of the left and right fixed plates, so that the left end of the building mesh shell mold casting mold is aligned with the position between the left clamping plate and the lower wall of the left fixed groove, and the right end of the building mesh shell mold casting mold is aligned with the position between the right clamping plate and the lower wall of the right fixed groove. Then, the building mesh shell mold casting mold is moved backward and lowered, so that the left end of the building mesh shell mold casting mold is inserted into the position between the left clamping plate and the lower wall of the left fixed groove and abuts against the lower wall of the left fixed groove, and the right end of the building mesh shell mold casting mold is inserted into the position between the right clamping plate and the lower wall of the right fixed groove and abuts against the lower wall of the right fixed groove. The left and right drive plates are driven to move closer to each other in the left and right directions by the left and right drive mechanism, which in turn drives the left and right support rods to move closer to each other in the left and right directions, and in turn drives the left and right fixed plates to move closer to each other in the left and right directions. This makes the bottom of the left fixed groove abut against the left end face of the building grid shell mold and the bottom of the right fixed groove abut against the right end face of the building grid shell mold. The left clamping plate is lowered by the left lifting device, so that the left clamping plate abuts against the left end of the building grid shell mold. The right clamping plate is lowered by the right lifting device, so that the right clamping plate abuts against the right end of the building grid shell mold. Therefore, its design is ingenious, its structure is simple, its manufacturing is convenient, its manufacturing cost is low, and it is suitable for large-scale promotion and application.
[0025] These and other objects, features and advantages of this utility model will be fully apparent from the following detailed description and drawings, and can be achieved by the means, devices and combinations thereof specifically pointed out in the description of the utility model. Attached Figure Description
[0026] Figure 1 This is a three-dimensional schematic diagram of a specific embodiment of the auxiliary molding equipment for building mesh shell molds of this utility model, which is a fixed building mesh shell mold casting mold.
[0027] Figure 2 yes Figure 1 A three-dimensional schematic diagram of the lower structure of a specific embodiment is shown.
[0028] Figure 3 yes Figure 1 A perspective view of the left side portion of the upper structure of the specific embodiment shown.
[0029] Figure 4 yes Figure 1 A perspective view of the right side portion of the upper structure of the specific embodiment shown.
[0030] (Symbol Explanation)
[0031] 1. Base; 2. Left transmission plate; 3. Right transmission plate;
[0032] 4. Left and right drive mechanism; 41. Screw; 42. Drive device; 43. Left fixing block; 44. Right fixing block; 45. Fixing base; 46. Limiting block;
[0033] 5. Left support rod; 6. Right support rod; 7. Left fixing plate; 8. Right fixing plate; 9. Left clamping plate; 10. Right clamping plate;
[0034] 11 Left lifting device; 111 Left adjusting knob; 112 Left threaded rod; 113 Left adjusting plate; 114 Left front slide rod; 115 Left rear slide rod;
[0035] 12 Right lifting device; 121 Right adjusting knob; 122 Right threaded rod; 123 Right adjusting plate; 124 Right front slide rod; 125 Right rear slide rod;
[0036] 13 Left fixed groove; 14 Right fixed groove; 15 Left front slider; 16 Left rear slider; 17 Right front slider; 18 Right rear slider; 19 Front slide groove; 20 Rear slide groove; 21 Left reinforcing strip; 22 Right reinforcing strip; 23 Construction mesh shell casting mold. Detailed Implementation
[0037] In order to better understand the technical content of this utility model, the following embodiments are provided for detailed description.
[0038] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0039] Please see Figures 1-4 As shown, in a specific embodiment of this utility model, the auxiliary forming equipment for the building mesh shell mold of this utility model includes a base 1, a left transmission plate 2, a right transmission plate 3, a left and right drive mechanism 4, a left support rod 5, a right support rod 6, a left fixing plate 7, a right fixing plate 8, a left clamping plate 9, a right clamping plate 10, a left lifting device 11, and a right lifting device 12, wherein:
[0040] The left transmission plate 2 and the right transmission plate 3 are both vertically arranged and arranged along the front-back direction, and are spaced apart from each other on the left and right. The left transmission plate 2 and the right transmission plate 3 are both movably arranged on the base 1 on the left and right. The left and right drive mechanisms 4 are arranged on the base 1 and are respectively connected to the left transmission plate 2 and the right transmission plate 3 for driving the left transmission plate 2 and the right transmission plate 3 to move closer to each other and further away from each other in the left and right direction.
[0041] The left support rod 5 and the right support rod 6 are both vertically arranged and spaced apart from each other, respectively, and are mounted on the left transmission plate 2 and the right transmission plate 3. The left fixing plate 7 and the right fixing plate 8 are both horizontally arranged along the front-back direction and spaced apart from each other. The left fixing plate 7 and the right fixing plate 8 are respectively mounted on the left support rod 5 and the right support rod 6. The right side of the left fixing plate 7 and the left side of the right fixing plate 8 are respectively provided with a left fixing groove 13 and a right fixing groove 14 along the front-back direction. The left clamping plate 9 and the right clamping plate 10 are arranged opposite each other. The left clamping plate 9 and the right clamping plate 10 are both arranged horizontally and along the front-back direction and are spaced apart from each other. The left clamping plate 9 and the right clamping plate 10 are respectively located in the left clamping plate 13 and the right clamping plate 14. The left lifting device 11 is installed on the left fixing plate 7 and connected to the left clamping plate 9 for lifting the left clamping plate 9. The right lifting device 12 is installed on the right fixing plate 8 and connected to the right clamping plate 10 for lifting the right clamping plate 10.
[0042] The base 1 can have any suitable shape, please refer to Figures 1-2 As shown, in a specific embodiment of this utility model, the base 1 is a base plate, which is horizontally arranged and arranged along the left and right directions.
[0043] The base plate can have any suitable shape, please refer to Figures 1-2 As shown, in a specific embodiment of this utility model, the base plate is a rectangular base plate.
[0044] The left and right drive mechanisms 4 can have any suitable configuration; please refer to [link / reference]. Figures 1-2 As shown, in a specific embodiment of this utility model, the left and right driving mechanism 4 includes a screw 41 and a driving device 42. The screw 41 is arranged along the left and right direction and rotatably mounted on the base 1. The thread direction of the left half of the screw 41 is opposite to that of the right half. The driving device 42 is mounted on the base 1 and connected to the screw 41 to drive the screw 41 to rotate around the left and right direction. The left transmission plate 2 and the right transmission plate 3 are respectively sleeved and threadedly engaged with the left and right halves of the screw 41. With the above arrangement, when it is necessary to drive the left transmission plate 2 and the right transmission plate 3 to move closer and further apart in the left and right direction through the left and right driving mechanism 4, the driving device 42 drives the screw 41 to rotate around the left and right direction, so that the left transmission plate 2 and the right transmission plate 3 move closer and further apart in the left and right direction.
[0045] The drive device 42 can be any suitable drive device. In one specific embodiment of this utility model, the drive device 42 is a motor.
[0046] The screw 41 is rotatably mounted on the base 1 in the left-right direction, and can adopt any suitable structure. Please refer to [link / reference needed]. Figures 1-2 As shown, in a specific embodiment of this utility model, the left and right driving mechanism 4 further includes a left fixed block 43 and a right fixed block 44. The left fixed block 43 and the right fixed block 44 are both vertically arranged and arranged along the front-back direction and are spaced apart from each other on the left and right. The left fixed block 43 and the right fixed block 44 are both arranged on the base 1. The screw 41 is located between the left fixed block 43 and the right fixed block 44. The left end and the right end of the screw 41 are rotatably connected to the left fixed block 43 and the right fixed block 44 around the left and right direction, respectively. The left transmission plate 2 and the right transmission plate 3 are both located between the left fixed block 43 and the right fixed block 44.
[0047] The drive device 42 is mounted on the base 1 and connected to the screw 41. It can employ any suitable structure; please refer to [link / reference needed]. Figures 1-2 As shown, in a specific embodiment of this utility model, the left and right drive mechanism 4 further includes a fixed seat 45, which is disposed on the base 1. The drive device 42 is disposed on the fixed seat 45 and located to the left of the left fixed block 43. The drive shaft of the drive device 42 is disposed along the left and right direction and passes through the left fixed block 43 along the left and right direction. The drive shaft is located to the left of the left end of the screw 41 and is connected to the left end of the screw 41.
[0048] The mounting base 45 can have any suitable shape; please refer to [link / reference]. Figures 1-2 As shown, in a specific embodiment of this utility model, the fixing seat 45 is a plate-shaped fixing seat, which is horizontally arranged and arranged along the front-back direction.
[0049] The left and right drive mechanisms 4 can also include any other suitable configurations; please refer to [link / reference]. Figures 1-2 As shown, in a specific embodiment of this utility model, the left and right driving mechanism 4 further includes a limiting block 46. The limiting block 46 is vertically arranged and disposed on the base 1 along the front-back direction. The middle part of the screw 41 passes through the limiting block 46 along the left-right direction and is rotatably disposed relative to the limiting block 46 around the left-right direction.
[0050] Both the left transmission plate 2 and the right transmission plate 3 are movably mounted on the base 1, and can adopt any suitable structure. Please refer to [link / reference needed]. Figures 1-2As shown in a specific embodiment of this utility model, the auxiliary forming equipment for the building mesh shell mold further includes a left front slider 15, a left rear slider 16, a right front slider 17, and a right rear slider 18. The top surface of the base 1 is provided with a front sliding groove 19 and a rear sliding groove 20 along the left and right directions, respectively. The front sliding groove 19 and the rear sliding groove 20 are spaced apart from each other. The left front slider 15 and the left rear slider 16 are spaced apart from each other and are movably disposed in the front sliding groove 19 and the rear sliding groove 20, respectively. The left front slider 15 and the left rear slider 16 are both located under the left transmission plate 2 and are both connected to the left transmission plate 2. The right front slider 17 and the right rear slider 18 are spaced apart from each other and are movably disposed in the front sliding groove 19 and the rear sliding groove 20, respectively. The right front slider 17 and the right rear slider 18 are both located under the right transmission plate 3 and are both connected to the right transmission plate 3. With the above configuration, the stability of the left transmission plate 2 moving left and right is improved by the left front slider 15, the left rear slider 16, the front slide groove 19 and the rear slide groove 20; and the stability of the right transmission plate 3 moving left and right is improved by the right front slider 17, the right rear slider 18, the front slide groove 19 and the rear slide groove 20.
[0051] The number of left support rods 5 can be determined as needed. Preferably, there are multiple left support rods 5, which are spaced apart from each other. The number of right support rods 6 is the same as the number of left support rods 5, and the right support rods 6 and left support rods 5 are arranged in a one-to-one correspondence. The term "multiple" refers to two or more rods. Please refer to [link to relevant documentation]. Figure 3 As shown, in a specific embodiment of this utility model, the number of left support rods 5 is 2.
[0052] The left lifting device 11 can have any suitable configuration; please refer to [link / reference]. Figure 1 and Figure 3As shown, in a specific embodiment of this utility model, the left lifting device 11 includes a left adjusting knob 111, a left threaded rod 112, a left adjusting plate 113, a left front slide rod 114, and a left rear slide rod 115. The left threaded rod 112 is vertically arranged and passes through and threadedly engages with the upper groove wall of the left fixing groove 13. The lower end of the left threaded rod 112 is located in the left fixing groove 13 and between the upper groove wall of the left fixing groove 13 and the left clamping plate 9, and is horizontally rotatably connected to the left clamping plate 9. The upper end of the left threaded rod 112 is located above the left fixing plate 7. The left adjusting knob 111... 11 is horizontally positioned on the upper end of the left threaded rod 112. The left adjusting plate 113 is horizontally positioned and positioned along the front-back direction. The left adjusting plate 113 is located between the left adjusting knob 111 and the left fixing plate 7 and is sleeved on the left threaded rod 112. The left front slide rod 114 and the left rear slide rod 115 are both vertically positioned and spaced apart from each other. They are both vertically movable and pass through the upper groove wall of the left fixing groove 13. The left front slide rod 114 and the left rear slide rod 115 are both located between the left adjusting plate 113 and the left clamping plate 9 and are respectively connected to the left adjusting plate 113 and the left clamping plate 9. With the above configuration, when the left clamping plate 9 needs to be raised or lowered by the left lifting device 11, the left adjusting knob 111 is rotated horizontally, causing the left threaded rod 112 to rotate horizontally, so that the left threaded rod 112 moves up and down relative to the upper groove wall of the left fixed groove 13, thereby causing the left clamping plate 9 to move up and down. During this process, the left front slide rod 114, the left rear slide rod 115 and the left adjusting plate 113 follow the left clamping plate 9 to move up and down, thus guiding the left clamping plate 9 to move vertically.
[0053] The auxiliary molding equipment for the building grid shell mold may also include any other suitable components; please refer to [link / reference]. Figure 1 and Figure 3 As shown, in a specific embodiment of this utility model, the auxiliary forming equipment for the building reticulated shell mold further includes a left reinforcing strip 21. The left reinforcing strip 21 is arranged along the left-right direction and located below and connected to the left clamping plate 9. Multiple left reinforcing strips 21 are arranged at intervals. With this arrangement, the left reinforcing strip 21 enhances the effect of the left clamping plate 9 in fixing the left end of the building reticulated shell mold casting mold 23.
[0054] The number of the left reinforcing strips 21 can be determined as needed. "Multiple strips" refers to two or more strips. Please refer to [link to relevant documentation]. Figure 1 and Figure 3 As shown, in a specific embodiment of this utility model, the number of left reinforcing strips 21 is 10.
[0055] The left reinforcing strip 21 can be any suitable material. In a specific embodiment of this utility model, the left reinforcing strip 21 is a rubber strip.
[0056] The right lifting device 12 can have any suitable configuration; please refer to [link / reference]. Figure 1 and Figure 4 As shown, in a specific embodiment of this utility model, the right lifting device 12 includes a right adjusting knob 121, a right threaded rod 122, a right adjusting plate 123, a right front slide rod 124, and a right rear slide rod 125. The right threaded rod 122 is vertically arranged and passes through and threadedly engages with the upper groove wall of the right fixing groove 14. The lower end of the right threaded rod 122 is located in the right fixing groove 14 and between the upper groove wall of the right fixing groove 14 and the right clamping plate 10, and is horizontally rotatably connected to the right clamping plate 10. The upper end of the right threaded rod 122 is located above the right fixing plate 125. The right adjusting knob 121... 21 is horizontally arranged on the upper end of the right threaded rod 122. The right adjusting plate 123 is horizontally arranged along the front-back direction. The right adjusting plate 123 is located between the right adjusting knob 121 and the right fixing plate 8 and is sleeved on the right threaded rod 122. The right front slide rod 124 and the right rear slide rod 125 are both vertically arranged and spaced apart from each other. They are both vertically movable and pass through the upper groove wall of the right fixing groove 14. The right front slide rod 124 and the right rear slide rod 125 are both located between the right adjusting plate 123 and the right clamping plate 10 and are respectively connected to the right adjusting plate 123 and the right clamping plate 10. With the above configuration, when the right clamping plate 10 needs to be raised or lowered by the right lifting device 12, the right adjusting knob 121 is rotated horizontally, causing the right threaded rod 122 to rotate horizontally, so that the right threaded rod 122 moves up and down relative to the upper groove wall of the right fixed groove 14, thereby causing the right clamping plate 10 to move up and down. During this process, the right front slide rod 124, the right rear slide rod 125 and the right adjusting plate 123 follow the right clamping plate 10 to move up and down, thus guiding the right clamping plate 10 to move vertically.
[0057] The auxiliary molding equipment for the building grid shell mold may also include any other suitable components; please refer to [link / reference]. Figure 4 As shown, in a specific embodiment of this utility model, the auxiliary forming equipment for the building reticulated shell mold further includes a right reinforcing strip 22. The right reinforcing strip 22 is arranged along the left-right direction and located below and connected to the right clamping plate 10. Multiple right reinforcing strips 22 are arranged at intervals. With this arrangement, the right reinforcing strip 22 enhances the effect of the right clamping plate 10 in fixing the right end of the building reticulated shell mold casting mold 23.
[0058] The number of right reinforcing strips 22 can be determined as needed; please refer to [link / reference]. Figure 4 As shown, in a specific embodiment of this utility model, the number of right reinforcing strips 22 is 10.
[0059] The right reinforcing strip 22 can be any suitable material. In a specific embodiment of this utility model, the right reinforcing strip 22 is a rubber strip.
[0060] In use, taking the horizontally set and left-right oriented construction grid shell casting mold 23 as an example, place the construction grid shell casting mold 23 in front of the left fixing plate 7 and the right fixing plate 8, so that the left end of the construction grid shell casting mold 23 is aligned with the position between the left clamping plate 9 and the lower groove wall of the left fixing groove 13, and the right end of the construction grid shell casting mold 23 is aligned with the position between the right clamping plate 10 and the lower groove wall of the right fixing groove 14. Then move it backward and lower the construction grid shell casting mold 23, so that the left end of the construction grid shell casting mold 23 is inserted into the position between the left clamping plate 9 and the lower groove wall of the left fixing groove 13 and abuts against the lower groove wall of the left fixing groove 13, and the right end of the construction grid shell casting mold 23 is inserted into the position between the right clamping plate 10 and the lower groove wall of the right fixing groove 14 and abuts against the lower groove wall of the right fixing groove 14. The left and right drive plates 2 and 3 are driven to move closer to each other in the left and right directions by the left and right drive mechanism 4, which in turn drives the left support rod 5 and the right support rod 6 to move closer to each other in the left and right directions, and in turn drives the left fixed plate 7 and the right fixed plate 8 to move closer to each other in the left and right directions, so that the bottom of the left fixed groove 13 abuts against the left end face of the building grid shell casting mold 23 and the bottom of the right fixed groove 14 abuts against the right end face of the building grid shell casting mold 23; the left clamping plate 9 is lowered by the left lifting device 11, so that the left clamping plate 9 abuts against the left end of the building grid shell casting mold 23, and the right clamping plate 10 is lowered by the right lifting device 12, so that the right clamping plate 10 abuts against the right end of the building grid shell casting mold 23, thereby fixing the building grid shell casting mold 23, and then the building grid shell unit can be cast on the building grid shell casting mold 23.
[0061] Therefore, this utility model is adopted:
[0062] 1. By setting up the left transmission plate, right transmission plate, left and right drive mechanisms, left support rod, right support rod, left fixing plate and right fixing plate, the specifications of the building grid shell formwork casting mold can be effectively adjusted, which improves the adaptability when using building grid shell formwork casting molds of different specifications and improves the fixing effect of building grid shell formwork casting mold;
[0063] 2. By setting up the left fixed plate, right fixed plate, left clamping plate, right clamping plate, left lifting device and right lifting device, the building grid shell formwork can be effectively fixed, which enhances the stability of the building grid shell formwork when casting building grid shell units and improves the forming effect of building grid shell units.
[0064] In summary, the auxiliary molding equipment for building reticulated shell molds of this utility model is applicable to casting molds of building reticulated shell molds of different specifications. It can effectively fix the casting molds of building reticulated shell molds, enhance the stability of the casting molds of building reticulated shell molds when casting building reticulated shell units, improve the molding effect of building reticulated shell units, and has a clever design, simple structure, easy manufacturing, and low manufacturing cost, making it suitable for large-scale promotion and application.
[0065] Therefore, it is evident that the objective of this utility model has been fully and effectively achieved. The function and structural principles of this utility model have been demonstrated and explained in the embodiments. Without departing from the stated principles, any modifications can be made to the implementation methods. Therefore, this utility model includes all modified embodiments based on the spirit and scope of the claims.
Claims
1. An auxiliary forming apparatus for a building lattice shell mold, characterized by, Includes a base, left transmission plate, right transmission plate, left and right drive mechanisms, left support rod, right support rod, left fixed plate, right fixed plate, left clamping plate, right clamping plate, left lifting device, and right lifting device, wherein: The left transmission plate and the right transmission plate are both vertically arranged and arranged along the front-back direction, and are spaced apart from each other on the left and right. The left transmission plate and the right transmission plate are both movably arranged on the base on the left and right. The left and right driving mechanisms are arranged on the base and are respectively connected to the left transmission plate and the right transmission plate for driving the left transmission plate and the right transmission plate to move closer to each other and further away from each other in the left and right direction. The left and right support rods are both vertically arranged and spaced apart from each other, respectively, and are mounted on the left and right transmission plates. The left and right fixing plates are both horizontally arranged along the front-back direction and spaced apart from each other. The left and right fixing plates are respectively mounted on the left and right support rods. The right side of the left fixing plate and the left side of the right fixing plate are respectively provided with a left fixing groove and a right fixing groove along the front-back direction. The left and right fixing grooves are arranged opposite each other. The left and right clamping plates are both horizontally arranged and spaced apart from each other along the front-back direction. The left and right clamping plates are respectively located in the left and right fixing grooves. The left lifting device is mounted on the left fixing plate and connected to the left clamping plate for lifting the left clamping plate. The right lifting device is mounted on the right fixing plate and connected to the right clamping plate for lifting the right clamping plate.
2. The auxiliary forming apparatus for a building net shell mold according to claim 1, wherein The left and right drive mechanism includes a screw and a drive device. The screw is arranged along the left and right direction and is rotatably mounted on the base. The screw's thread direction on the left half is opposite to that on the right half. The drive device is mounted on the base and connected to the screw for driving the screw to rotate around the left and right direction. The left transmission plate and the right transmission plate are respectively sleeved and threadedly engaged with the left half and the right half of the screw.
3. The auxiliary forming apparatus for a building net shell mold according to claim 2, wherein The left and right drive mechanism further includes a left fixed block and a right fixed block. The left fixed block and the right fixed block are both vertically arranged and arranged along the front-back direction and are spaced apart from each other. The left fixed block and the right fixed block are both arranged on the base. The screw is located between the left fixed block and the right fixed block. The left end and the right end of the screw are rotatably connected to the left fixed block and the right fixed block respectively around the left and right direction. The left transmission plate and the right transmission plate are both located between the left fixed block and the right fixed block.
4. The auxiliary forming apparatus for a building net shell mold according to claim 3, wherein The left and right drive mechanism also includes a fixed seat, which is disposed on the base. The drive device is disposed on the fixed seat and located to the left of the left fixed block. The drive shaft of the drive device is disposed along the left and right direction and passes through the left fixed block along the left and right direction. The drive shaft is located to the left of the left end of the screw and is connected to the left end of the screw.
5. The auxiliary forming apparatus for a building net shell mold according to claim 1, wherein The auxiliary forming equipment for the building reticulated shell mold further includes a left front slider, a left rear slider, a right front slider, and a right rear slider. The top surface of the base is provided with a front slide groove and a rear slide groove along the left and right directions, respectively. The front slide groove and the rear slide groove are spaced apart from each other. The left front slider and the left rear slider are spaced apart from each other and are movable left and right in the front slide groove and the rear slide groove, respectively. The left front slider and the left rear slider are both located under the left transmission plate and are both connected to the left transmission plate. The right front slider and the right rear slider are spaced apart from each other and are movable left and right in the front slide groove and the rear slide groove, respectively. The right front slider and the right rear slider are both located under the right transmission plate and are both connected to the right transmission plate.
6. The auxiliary forming apparatus for a building net shell mold according to claim 1, wherein There are multiple left support rods, which are spaced apart from each other. The number of right support rods is the same as the number of left support rods, and the right support rods and left support rods are arranged in a one-to-one correspondence.
7. The auxiliary forming apparatus for a building net shell mold according to claim 1, wherein The left lifting device includes a left adjusting knob, a left threaded rod, a left adjusting plate, a left front slide rod, and a left rear slide rod. The left threaded rod is vertically arranged and passes through and threadedly engages the upper wall of the left fixed groove. The lower end of the left threaded rod is located in the left fixed groove and between the upper wall of the left fixed groove and the left clamping plate, and is horizontally rotatably connected to the left clamping plate. The upper end of the left threaded rod is located above the left fixed plate. The left adjusting knob is horizontally arranged on the upper end of the left threaded rod. The left adjusting plate is horizontally arranged along the front-back direction and is located between the left adjusting knob and the left fixed plate and sleeved on the left threaded rod. The left front slide rod and the left rear slide rod are both vertically arranged and spaced apart from each other, and both are vertically movable and pass through the upper wall of the left fixed groove. The left front slide rod and the left rear slide rod are both located between the left adjusting plate and the left clamping plate and are respectively connected to the left adjusting plate and the left clamping plate.
8. The auxiliary forming apparatus for a building net shell mold according to claim 7, wherein The auxiliary forming equipment for the building reticulated shell mold also includes a left reinforcing strip. The left reinforcing strip is arranged along the left-right direction and located below the left clamping plate and connected to the left clamping plate. There are multiple left reinforcing strips, which are arranged at intervals.
9. The auxiliary forming apparatus for a building net shell mold according to claim 1, wherein The right lifting device includes a right adjusting knob, a right threaded rod, a right adjusting plate, a right front slide rod, and a right rear slide rod. The right threaded rod is vertically arranged and threadedly engages the upper wall of the right fixed groove. The lower end of the right threaded rod is located inside the right fixed groove and between the upper wall of the right fixed groove and the right clamping plate, and is horizontally rotatably connected to the right clamping plate. The upper end of the right threaded rod is located above the right fixed plate. The right adjusting knob is horizontally arranged on the upper end of the right threaded rod. The right adjusting plate is horizontally arranged along the front-back direction and is located between the right adjusting knob and the right fixed plate, and is sleeved on the right threaded rod. The right front slide rod and the right rear slide rod are both vertically arranged and spaced apart from each other, and are both vertically movable through the upper wall of the right fixed groove. The right front slide rod and the right rear slide rod are both located between the right adjusting plate and the right clamping plate and are respectively connected to the right adjusting plate and the right clamping plate.
10. The auxiliary forming apparatus for a building net shell mold according to claim 9, wherein The auxiliary forming equipment for the building reticulated shell mold also includes a right reinforcing strip. The right reinforcing strip is arranged along the left-right direction and located below the right clamping plate and connected to the right clamping plate. There are multiple right reinforcing strips, which are arranged at intervals.