Building template manufacturing device

Through the combined design of centering components, transmission components, downward components, support components and limit components, the problem of position offset during template cutting is solved, and the accuracy and production efficiency of template cutting are improved.

CN223129492UActive Publication Date: 2025-07-22THE THIRD CONSTR CO LTD OF YNJG
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Patent Information

Application Number
CN202422113763.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-07-22
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The existing building formwork manufacturing devices are prone to offset during the cutting process, resulting in inaccurate cutting position, affecting production efficiency and increasing downtime.

Method used

The combined design of centering components, transmission components, downward components, support components and limit components is adopted. Through the coordinated work of the electric telescopic rod and the transmission motor, the template maintains precise position during the cutting process and prevents deviation.

Benefits of technology

It realizes position accuracy during the template cutting process, reduces readjustment and downtime, improves production efficiency and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a building template manufacturing device which comprises a control device, a working table, a conveying belt and a cutting tool, and mounting grooves are symmetrically formed in the two sides of the interior of one end of the working table; the centering assemblies are symmetrically arranged at an opening in one end of the workbench; the transmission assembly is arranged on the top wall in the workbench; the downward pressing assembly is connected to the transmission assembly; the plurality of bearing assemblies are respectively mounted in the mounting grooves in a sliding manner; and the multiple limiting assemblies are installed on the lower portions of the installation grooves correspondingly and used for limiting the corresponding bearing assemblies. The template cutting device is high in practicability, safe and reliable, the position of the template can be accurate in the cutting process, the template cannot deviate from the size and shape required by the design, the readjustment time and the downtime are shortened, the production efficiency is improved, and the production cost and the time waste are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of building formwork manufacturing, and particularly to a building formwork manufacturing device. Background Technique

[0002] As is well known, a building formwork is a temporary support structure, which is made according to design requirements to form concrete structures and components in accordance with specified positions and geometric dimensions, maintain their correct positions, and bear the self-weight of the building formwork and external loads acting thereon. According to the nature of the materials, it can be divided into building formwork, building plywood, film-coated board, multi-layer board, double-sided coated glue, double-sided film-coated building formwork, etc.

[0003] At present, the Chinese utility model patent with the publication number of CN202320222706.7 discloses a building formwork manufacturing device, including: a workbench, a conveyor belt and supporting legs installed thereon, and two groups of conveyor belts are installed on the workbench. Guide grooves and tool grooves are also opened on the workbench, and the tool groove is located between the two groups of conveyor belts, and two groups of guide grooves are opened; a cutting tool, which is installed in the tool groove; a fixing component, two groups of fixing components are arranged in each group of guide grooves, and the fixing component includes a base and a fixing block. The base is slidably installed in the guide groove through an adjustable reset component, and the fixing block is slidably installed in the base through an elastic support member; and a pressing component, which is installed on the workbench through a moving component. Although this device has the effect of preventing the formwork from shifting during cutting, when the formwork is conveyed on the conveyor belt, due to the initial placement position shifting or the conveyor belt itself shaking, the formwork will have a certain shift, resulting in the center position of the formwork not being at the center position of the two conveyor belts, thus causing the cutting position to shift. And this device does not have a device for adjusting the position of the formwork itself, so its practicability is not very good and there is still room for improvement.

[0004] Therefore, it is the key to solve the above technical problems to develop a building formwork manufacturing device with strong practicability, stability and reliability. Summary of the Invention

[0005] In view of the many defects and deficiencies in the above background technique, the utility model has made improvements and innovations. The purpose is to provide a building formwork manufacturing device with high automation, safety and reliability, which can achieve accurate position of the formwork during the cutting process, without deviating from the designed dimensions and shapes, thereby reducing the need for readjustment and downtime, improving production efficiency, and reducing production costs and time waste.

[0006] To solve the above problems and achieve the above invention purpose, a building formwork manufacturing device of the utility model is realized by adopting the following design structure and the following technical solutions:

[0007] A building formwork manufacturing device includes a control device, a workbench (1), a conveyor belt (2) disposed in the workbench (1) in parallel with each other, and a cutting tool (3) installed in the workbench (1). The cutting tool (3) is located between two groups of conveyor belts (2). On both sides of one end of the workbench (1) internally, mounting grooves (11) are symmetrically opened; it further includes:

[0008] A centering component (4), which is symmetrically disposed at the opening of one end of the workbench (1);

[0009] A transmission component (5), which is disposed on the inner top wall of the workbench (1);

[0010] A pressing-down component (6), which is connected to the transmission component (5);

[0011] Several supporting components (7), which are respectively slidably installed in the mounting grooves (11);

[0012] Several limiting components (8), which are respectively installed at the lower part of the mounting grooves (11) for limiting the corresponding supporting components (7).

[0013] Preferably, the mounting grooves (11) are opened in the bottom plate of the workbench (1) between the centering component (4) and the cutting tool (3). The cross-section of the mounting grooves (11) is integrally in a "cross" shape, and a limiting groove (12) is also communicated and opened below the mounting grooves (11).

[0014] Preferably, the centering component (4) includes: a first electric telescopic rod (41), which is connected to the side plate at the opening of the workbench (1) at the end far from the cutting tool (3), and the first electric telescopic rod (41) is connected to the control device;

[0015] An adjustment plate (42), one end face of which is connected to the telescopic part of the first electric telescopic rod (41);

[0016] Wherein, the telescopic part of the first electric telescopic rod (41) penetrates through the side plate of the workbench (1) and is connected to the middle part of one end face of the adjustment plate (42) on this side; the adjustment plate (42) is slightly higher than the height of the conveyor belt (2).

[0017] Preferably, the transmission component (5) includes:

[0018] A transmission motor (51), which is connected to the inner top wall of the workbench (1) near the cutting tool end;

[0019] The drive screw rod (52) has both ends connected to the upper part inside the workbench (1) through fixed plates (53), and one end of the drive screw rod (52) is connected to the output shaft of the drive motor (51);

[0020] The moving block (54) is threadedly connected to the drive screw rod (52);

[0021] Among them, the drive screw rod (52) is rotatably connected to the fixed plate (53), and the drive motor (51) is connected to the control device.

[0022] Preferably, the pressing component (6) includes:

[0023] The second electric telescopic rod (61) has its fixed end connected to the moving block (54);

[0024] The extrusion block (62), the middle of one end face of the extrusion block (62) is connected to the telescopic part of the second electric telescopic rod (61);

[0025] Among them, the second electric telescopic rod (61) is connected to the control device.

[0026] Preferably, the supporting component (7) includes:

[0027] The support plate (71);

[0028] The slider (72), the support plate (71) is symmetrically connected to both sides below the support plate (71);

[0029] The rolling ball (73), the rolling ball (73) is rotatably connected to both ends of the bottom of the support plate (71).

[0030] Preferably, it further includes a protective pad (74) arranged on the upper end face of the support plate (71).

[0031] Preferably, the support plate (71) is integrally in a cuboid structure;

[0032] The slider (72) is respectively slidably connected to the corresponding notch of the installation groove (11);

[0033] The lower end of the rolling ball (73) is in contact connection with the inner bottom of the installation groove (11);

[0034] Among them, the outside of the rolling ball (73) is coated with an anti-corrosion coating.

[0035] Preferably, there are at least two limiting components (8), and the limiting components (8) are symmetrically arranged at the lower parts of the two installation grooves (11) far from the cutting tool (3); the limiting components (8) include:

[0036] The third electric telescopic rod (81), and the third electric telescopic rod (81) is respectively installed on the workbench (1) below each limiting groove (12);

[0037] The limiting block (82), and the middle part of one end face of the limiting block (82) is connected to the telescopic part of the third electric telescopic rod (81);

[0038] Wherein, the third electric telescopic rod (81) is connected to the control device.

[0039] Preferably, the workbench (1) is integrally in a square structure with openings at both ends and a hollow interior, and legs (13) are further connected to the four corners at the lower end of the workbench (1), and the legs (13) are fixed legs or legs with adjustable height.

[0040] The working principle is as follows: during work, the operator starts the device. When the external metering and conveying device conveys the template (9) onto the conveyor belt (2), when the conveyor belt (2) conveys the template (9) to the position of the position-adjusting plate (42), the control device starts the first electric telescopic rod (41), and the first electric telescopic rod (41) extends to drive the connected position-adjusting plate (42) to approach the template (9), and moves the template (9) to the central part between the two conveyor belts (2), then the first electric telescopic rod (41) contracts, and drives the position-adjusting plate (42) to move back to the original position;

[0041] Then, the conveyor belt (2) conveys the template (9) onto the protective pads (74) on the two supporting components (7). Subsequently, the control device starts the second electric telescopic rod (61), and the second electric telescopic rod (61) extends to drive the extrusion block (62) to move downward and press on the upper part of the template (9);

[0042] Immediately afterwards, the control device starts each third electric telescopic rod (81), and each third electric telescopic rod (81) contracts to drive the connected limiting block (82) to move downward into the limiting groove (12). At this time, the height of the limiting block (82) is flush with the bottom wall of the installation groove (11), which can facilitate the sliding of the supporting component (7) in the installation groove (11);

[0043] Then, the control device starts the drive motor (51), and the drive motor (51) rotates to drive the drive screw rod (52) connected to the output shaft of the drive motor (51) to rotate. Furthermore, the drive screw rod (52) drives the moving block (54) threadedly connected thereto and the downward pressing component (6) on the moving block (54) to move to the right. At the same time, the extrusion block (62) of the downward pressing component (6) drives the template (9) and the supporting component (7) to move to the right, so that the template (9) contacts the cutting tool (3) for cutting;

[0044] After cutting is completed, the control device controls the second electric telescopic rod (61) to contract, so that the extrusion block (62) moves away from the template (9). Subsequently, the cut template (9) is conveyed away by the conveyor belt (2). Then, the control device controls the second electric telescopic rod (61) to extend, driving the extrusion block (62) to move downward until it contacts the protective pad (74) and generates a certain pressure. Then, the control device reversely starts the drive motor (51), and the drive motor (51) rotates in reverse. The drive screw rod (52) drives the moving block (54) threadedly connected thereto and the downward pressing assembly (6) on the moving block (54) to drive the extrusion block (62) and the supporting assembly (7) to move leftward to the original position. Immediately afterwards, the control device starts each third electric telescopic rod (81), and each third electric telescopic rod (81) extends, driving the limiting block (82) connected thereto to move upward. After the left part of the limiting block (82) fits with the right part of the supporting assembly (7), finally, the control device controls the second electric telescopic rod (61) to contract, driving the extrusion block (62) to rise to the original position, and then closes the second electric telescopic rod (61), thus completing the cutting work of one template (9). The subsequent templates (9) can work in such a cycle.

[0045] The beneficial effects of the present utility model compared with the prior art are as follows:

[0046] 1. The centering assembly provided in the present utility model drives the corresponding adjustment plate to move through the corresponding first electric telescopic rod, so that the two adjustment plates approach each other, thereby pushing the template to move and pushing the central part of the template to the central part of the two conveyor belts, thus ensuring the accurate position of the template during the cutting process and preventing deviation from the dimensions and shapes required by the design, and thus improving a certain practicality;

[0047] 2. The centering assembly provided in the present utility model can make the entire cutting process more stable. By ensuring the accuracy and stability of the template position, it is possible to reduce the time for readjustment and downtime, thereby improving production efficiency and reducing production costs and time waste;

[0048] 3. The two centering assemblies provided in the present utility model can be used flexibly. The two centering assemblies can be used simultaneously, or the position of one centering assembly can be fixed in advance according to the template cutting size requirements. During use, the control device is used to drive the other centering assembly for use;

[0049] 4. A limiting assembly is installed below the limiting groove of the present utility model. The limiting assembly can better limit the movement of the supporting assembly and can effectively prevent the supporting assembly from sliding in the installation groove under the movement of the conveyor belt or the vibration generated during the operation of the device;

[0050] 5. A protective pad is further provided on the upper part of the supporting component of the present utility model. The protective pad can play a certain protective role for the template, and at the same time can prevent the surface of the template from being indented due to excessive pressure during processing.

[0051] 6. The present utility model has strong practicability, is stable and reliable, has a high degree of automation, is safe and reliable, and is easy to operate. BRIEF DESCRIPTION OF THE DRAWINGS

[0052] The following further describes in detail the specific implementation manners of the present utility model with reference to the drawings, where:

[0053] Figure 1 is one of the usage state diagrams of the present utility model;

[0054] Figure 2 is the second usage state diagram of the present utility model;

[0055] Figure 3 is the third usage state diagram of the present utility model;

[0056] Figure 4 is the fourth usage state diagram of the present utility model;

[0057] Figure 5 is the fifth usage state diagram of the present utility model;

[0058] Figure 6 is the sixth usage state diagram of the present utility model;

[0059] Figure 7 is the seventh usage state diagram of the present utility model;

[0060] Figure 8 is the eighth usage state diagram of the present utility model;

[0061] Figure 9 is the ninth usage state diagram of the present utility model;

[0062] Figure 10 is one of the overall structure diagrams of the present utility model;

[0063] Figure 11 is the second overall structure diagram of the present utility model;

[0064] Figure 12 is the partial cross-sectional view of the present utility model;

[0065] Figure 13 is the exploded view of the supporting component (7) part of the present utility model;

[0066] Among them, the reference numerals in the figure: 1 - workbench, 11 - installation groove, 12 - limiting groove, 13 - leg;

[0067] 2—Conveyor belt;

[0068] 3—Cutting tool;

[0069] 4—Centering assembly, 41—First electric telescopic rod, 42—Position adjusting plate;

[0070] 5—Transmission assembly, 51—Transmission motor, 52—Transmission screw, 53—Fixing plate, 54—Moving block;

[0071] 6—Pressing-down assembly, 61—Second electric telescopic rod, 62—Pressing block;

[0072] 7—Supporting assembly, 71—Supporting plate, 72—Slider, 73—Rolling ball, 74—Protective pad;

[0073] 8—Limiting assembly, 81—Third electric telescopic rod, 82—Limiting block;

[0074] 9—Template. Detailed implementation manners

[0075] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the technical solutions of the present utility model will be further described in detail below with reference to the drawings and specific implementation manners. It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. The present utility model will be described in detail below with reference to the drawings and embodiments.

[0076] As shown in the attached Figure 1 to the attached Figure 13 A building template manufacturing device, including a control device, a workbench 1, a conveyor belt 2 disposed in the workbench 1 in parallel with each other, and a cutting tool 3 installed in the workbench 1. The cutting tool 3 is located between two groups of conveyor belts 2. Installation grooves 11 are symmetrically formed on both sides of one end of the workbench 1; further included are:

[0077] A centering assembly 4, which is symmetrically disposed at the opening of one end of the workbench 1;

[0078] A transmission assembly 5, which is disposed on the inner top wall of the workbench 1;

[0079] A pressing-down assembly 6, which is connected to the transmission assembly 5;

[0080] Several supporting assemblies 7, which are respectively slidably installed in the installation grooves 11;

[0081] Several limiting assemblies 8, which are respectively installed at the lower part of the installation grooves 11 for limiting the corresponding supporting assemblies 7.

[0082] In the present utility model, the supporting assembly 7 is slidably installed in the installation groove 11 on the workbench 1 between the centering assembly 4 and the cutting tool 3; there is a gap between the lower part of the position adjusting plate 42 and the upper part of the corresponding conveyor belt 2, and there is a gap between the right part of the conveyor belt 2 and the left part of the extrusion block 62.

[0083] Further, as Figure 1 shown, the installation groove 11 is opened in the bottom plate of the workbench 1 between the centering assembly 4 and the cutting tool 3. The cross-section of the installation groove 11 is integrally in the shape of a cross, and a limiting groove 12 is also communicated and opened below the installation groove 11.

[0084] In the present utility model, the installation groove 11 is a cross-shaped groove. At least one limiting groove 12 is provided below the installation groove 11 and all penetrate through the installation groove 11. A third electric telescopic rod 81 is installed in each limiting groove 12, and a limiting block 82 is connected to each third electric telescopic rod 81. One end of the support plate 71 is in close contact with one end of the corresponding limiting block 82.

[0085] Further, as shown in the figure, the centering assembly 4 includes: a first electric telescopic rod 41, the first electric telescopic rod 41 is connected to the side plate at the opening of the workbench 1 at the end far from the cutting tool 3, and the first electric telescopic rod 41 is connected to the control device;

[0086] a position adjusting plate 42, one end face of the position adjusting plate 42 is connected to the telescopic part of the first electric telescopic rod 41;

[0087] Among them, the telescopic part of the first electric telescopic rod 41 penetrates through the side plate of the workbench 1 and is connected to the middle part of one end face of the position adjusting plate 42 on this side; the position adjusting plate 42 is slightly higher than the height of the conveyor belt 2.

[0088] Further, as Figure 12 shown, the transmission assembly 5 includes:

[0089] a transmission motor 51, the transmission motor 51 is connected to the inner top wall of the workbench 1 near the cutting tool end;

[0090] a transmission screw rod 52, both ends of the transmission screw rod 52 are connected to the upper part inside the workbench 1 through fixing plates 53, and one end of the transmission screw rod 52 is connected to the output shaft of the transmission motor 51;

[0091] a moving block 54, the moving block 54 is threadedly connected to the transmission screw rod 52;

[0092] Among them, the transmission screw rod 52 is rotatably connected to the fixing plate 53, and the transmission motor 51 is connected to the control device.

[0093] In the present utility model, both ends of the transmission screw rod 52 are connected to the corresponding fixed plates 53 through bearings; the transmission screw rod 52 is a full-thread screw rod or one section is a screw rod and the other section is a cylinder; preferably, the transmission screw rod 52 is one section is a screw rod and the other section is a cylinder; during use, the operator pre-sets the working time of the forward rotation and reverse rotation of the transmission motor 51 according to the usage situation.

[0094] Furthermore, as Figure 12 shown, the pressing component 6 includes:

[0095] A second electric telescopic rod 61, the fixed end of the second electric telescopic rod 61 is connected to the moving block 54;

[0096] A pressing block 62, the middle of one end face of the pressing block 62 is connected to the telescopic part of the second electric telescopic rod 61;

[0097] Among them, the second electric telescopic rod 61 is connected to the control device.

[0098] Furthermore, as Figure 13 shown, the supporting component 7 includes:

[0099] A tray 71;

[0100] Sliders 72, symmetrically connected to both sides below the tray 71;

[0101] Rolling balls 73, rotatably connected to both ends of the bottom of the tray 71.

[0102] Specifically, as Figure 13 shown, it further includes a protective pad 74 arranged on the upper end face of the tray 71.

[0103] More specifically, as Figure 13 shown, the tray 71 is integrally in a cuboid structure;

[0104] The sliders 72 are respectively slidably connected to the corresponding slots of the installation groove 11;

[0105] The lower ends of the rolling balls 73 are in contact connection with the inner bottom of the installation groove 11;

[0106] Among them, the outer part of the rolling ball 73 is coated with an anti-corrosion coating.

[0107] In the present utility model, the overall height of the supporting component 7 is flush with the height of the conveyor belt 2 when the template 9 is placed.

[0108] Furthermore, as Figure 2 shown, there are at least two limiting components 8, and the limiting components 8 are symmetrically arranged at the lower parts of the two installation grooves 11 far from the cutting tool 3 end; the limiting components 8 include:

[0109] The third electric telescopic rod 81 is respectively installed on the workbench 1 below each limit slot 12;

[0110] The limit block 82, the middle of one end face of the limit block 82 is connected to the telescopic part of the third electric telescopic rod 81;

[0111] Among them, the third electric telescopic rod 81 is connected to the control device.

[0112] In the present utility model, there are two limit assemblies 8; the limit block 82 can be slidably connected in the limit slot 12 under the drive of the third electric telescopic rod 81; when the third electric telescopic rod 81 contracts, at this time the height of the limit block 82 is flush with the bottom wall of the installation slot 11, which can facilitate the sliding of the supporting component 7 in the installation slot 11.

[0113] Further, as Figure 3 shown, the workbench 1 is integrally in a square structure with openings at both ends and a hollow interior, and fixed legs or height-adjustable legs 13 are also connected to the four corners at the lower end of the workbench 1.

[0114] To sum up, a more specific implementation manner of the present utility model is:

[0115] Before using a building formwork manufacturing device with the above design structure, it is necessary to install the device that has been manufactured as a standby.

[0116] As shown in the attached Figures 1 to 13 specification, a building formwork manufacturing device includes a workbench 1, a cutting groove is provided on the workbench 1, a cutting tool 3 is installed in the cutting groove for cutting the formwork 9, two groups of conveyor belts 2 are installed in the workbench 1 for conveying the formwork 9, and first electric telescopic rods 41 are symmetrically arranged outside the opening at one end of the workbench 1, and one end of each first electric telescopic rod 41 is connected to an adjustment plate 42; a gap is provided between the lower part of the adjustment plate 42 and the upper part of the corresponding conveyor belt 2 to prevent the adjustment plate 42 from hitting the conveyor belt 2.

[0117] Two installation slots 11 are symmetrically arranged on both sides of the lower part of the workbench 1, a supporting component 7 is slidably connected in the installation slots 11, and protective pads 74 are arranged on the upper parts of the supporting components 7; the protective pads 74 can play a certain protective role for the formwork 9 to prevent the surface of the formwork 9 from being indented due to excessive pressure during processing.

[0118] Below the installation groove 11, a plurality of limiting grooves 12 are also connected and arranged at equal intervals, and all of them penetrate through the installation groove 11. A third electric telescopic rod 81 is installed in each of the plurality of limiting grooves 12, and a limiting block 82 is connected to each of the plurality of third electric telescopic rods 81. One end of the support plate 71 is in fit connection with one end of the corresponding limiting block 82; the limiting block 82 is used to limit the support plate 71 to prevent the template 9 from sliding in the installation groove 11 when it moves onto the support plate 71 due to the generated impact force.

[0119] On both sides of the lower part of the installation groove 11, there are sliding grooves, and a sliding block 72 is slidably connected in the sliding grooves. One end of the sliding block 72 is connected to one end of the support plate 71. The sliding block 72 plays a role in restricting the supporting component 7 to prevent the supporting component 7 from turning over under the impact of the template 9. A plurality of rolling grooves are provided in the lower part of the supporting component 7, and a rolling ball 73 is rotatably connected in each rolling groove. The lower parts of the rolling balls 73 are all in contact with the bottom of the installation groove 11, and an anti-corrosion coating is applied to all the rolling balls 73. The rolling balls 73 roll in the installation groove 11, driving the supporting component 7 and the template 9 to move, which can reduce the friction force.

[0120] On the upper part of the workbench 1, a plurality of fixing plates 53 are provided, and a transmission screw rod 52 is rotatably connected through a bearing. A transmission motor 51 is installed on the right part of the transmission screw rod 52. A moving block 54 is threadedly connected to the transmission screw rod 52. A second electric telescopic rod 61 is installed on the lower part of the moving block 54, and an extrusion block 62 is connected to the lower part of the second electric telescopic rod 61; there is a gap between the left part of the extrusion block 62 and the right part of the position-adjusting plate 42 to prevent the extrusion block 62 from colliding with the position-adjusting plate 42 when moving downward.

[0121] The specific usage steps are as follows:

[0122] During work, the operator starts the device. When the external metering and conveying equipment conveys the template 9 onto the conveyor belt 2, and when the conveyor belt 2 conveys the template 9 to the position-adjusting plate 42, the control device starts the first electric telescopic rod 41. The first electric telescopic rod 41 extends to drive the connected position-adjusting plate 42 to approach the template 9, and moves the template 9 to the central part between the two conveyor belts 2. Then, the first electric telescopic rod 41 contracts and drives the position-adjusting plate 42 to move back to its original position;

[0123] Then, the conveyor belt 2 conveys the template 9 onto the protective pads 74 on the two supporting components 7. Subsequently, the control device starts the second electric telescopic rod 61. The second electric telescopic rod 61 extends to drive the extrusion block 62 to move downward and press on the upper part of the template 9;

[0124] Next, the control device activates each third electric telescopic rod 81, and each third electric telescopic rod 81 contracts, driving the limiting block 82 connected thereto to move downward into the limiting groove 12. At this time, the height of the limiting block 82 is flush with the bottom wall of the installation groove 11, which can facilitate the sliding of the supporting component 7 in the installation groove 11;

[0125] Then, the control device activates the driving motor 51. The driving motor 51 rotates, driving the driving screw rod 52 connected to the output shaft of the driving motor 51 to rotate. Further, the driving screw rod 52 drives the moving block 54 and the pressing component 6 on the moving block 54 that are threadedly connected thereto to move to the right. At the same time, the pressing block 62 of the pressing component 6 drives the template 9 and the supporting component 7 to move to the right, causing the template 9 to contact the cutting tool 3 for cutting;

[0126] After cutting is completed, the control device controls the second electric telescopic rod 61 to contract, so that the pressing block 62 moves away from the template 9. Subsequently, the cut template 9 is conveyed away by the conveyor belt 2; then the control device controls the second electric telescopic rod 61 to extend, driving the pressing block 62 to move downward until it contacts the protective pad 74 and generates a certain pressure. Then the control device reversely activates the driving motor 51, and the driving motor 51 rotates in reverse. The driving screw rod 52 drives the moving block 54 and the pressing component 6 on the moving block 54 that are threadedly connected thereto to drive the pressing block 62 and the supporting component 7 to move to the left to the original position; next, the control device activates each third electric telescopic rod 81, and each third electric telescopic rod 81 extends, driving the limiting block 82 connected thereto to move upward. After the left part of the limiting block 82 fits with the right part of the supporting component 7, finally, the control device controls the second electric telescopic rod 61 to contract, driving the pressing block 62 to rise to the original position, and then the second electric telescopic rod 61 is turned off, thus completing the cutting work of one template 9; subsequent templates 9 can work in such a cycle.

[0127] During the above usage process, an infrared sensor is provided on the external metering and conveying device. When the external conveying device conveys the template 9, when the infrared sensor senses that the template 9 reaches the preset sensing position, the infrared sensor sends a signal to the control device. After the control device receives the signal from the infrared sensor, the control device sends an instruction to the first electric telescopic rod 41, and the first electric telescopic rod 41 will drive the position-adjusting plate 42 to start working. After working for one cycle, that is, after extending and contracting one working unit, it can stop working; the start and stop of the first electric telescopic rod 41 can be set in terms of time units on the control device; the installation and setting of devices such as the control device, the external metering and conveying device, and the infrared sensor are all existing mature technologies.

[0128] In the present utility model, during use, the speed of the driving motor 51 and the speed of the conveyor belt 2 are adjusted to the same or similar speed values. Secondly, the surface of the conveyor belt 2 has a high smoothness, and the frictional force between the conveyor belt 2 and the template 9 is relatively small. The supporting assembly 7 is slidably arranged in the mounting groove 11 through the rolling balls 73; the function of the limiting assembly 8 is that when the supporting assembly 7 is not required to lift the template 9, the supporting assembly 7 moves to the left part of the mounting groove 11 under the drive of the pressing assembly 6. At this time, the third electric telescopic rod 81 extends, driving the limiting block 82 to rise and clamping the supporting plate 71 to prevent the supporting assembly 7 from sliding to the right in the mounting groove 11 under the movement of the conveyor belt 2 or the vibration generated during the operation of the device. If it moves away from the pressing block 62, the pressing block 62 and the supporting plate 71 cannot cooperate to press the template 9 for cutting work.

[0129] In the present utility model, the two centering assemblies 4 can be flexibly used according to the specific usage situation. The two centering assemblies 4 can be used simultaneously, or the position of one centering assembly 4 can be fixed, and during use, the other centering assembly 4 can be driven by a control device for use.

[0130] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and does not limit the present utility model in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes. However, any simple modification, equivalent change, and modification made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution content of the present utility model still fall within the protection scope of the technical solution of the present utility model.

Claims

1. An architectural formwork manufacturing device, comprising control equipment, a workbench (1), a conveyor belt (2) disposed in the workbench (1) in a relatively parallel manner to each other, and a cutting tool (3) installed in the workbench (1), the cutting tool (3) being located between two sets of conveyor belts (2), characterized in that, On both sides of the inner part of one end of the workbench (1), mounting grooves (11) are symmetrically opened; further comprising: A centering component (4), which is symmetrically arranged at the opening of one end of the workbench (1); A transmission component (5), which is arranged on the inner top wall of the workbench (1); A pressing-down component (6), which is connected to the transmission component (5); A plurality of supporting components (7), which are respectively slidably mounted in the mounting grooves (11); A plurality of limiting components (8), which are respectively mounted at the lower part of the mounting grooves (11) for limiting the corresponding supporting components (7).

2. The building formwork manufacturing device according to claim 1, characterized in that, The mounting grooves (11) are opened in the bottom plate of the workbench (1) between the centering component (4) and the cutting tool (3). The cross-section of the mounting grooves (11) is integrally in a "cross" shape, and a limiting groove (12) is also communicated and opened below the mounting grooves (11).

3. An apparatus for manufacturing a building formwork according to claim 1, wherein, The centering component (4) includes: a first electric telescopic rod (41), which is connected to the side plate at the opening of the workbench (1) at the end far from the cutting tool (3), and the first electric telescopic rod (41) is connected to the control device; An adjustment plate (42), one end face of which is connected to the telescopic part of the first electric telescopic rod (41); Wherein, the telescopic part of the first electric telescopic rod (41) penetrates through the side plate of the workbench (1) and is connected to the middle part of one end face of the adjustment plate (42) on this side; the adjustment plate (42) is slightly higher than the height of the conveyor belt (2).

4. An apparatus for manufacturing building formwork according to claim 1, characterized in that, The transmission component (5) includes: A transmission motor (51), which is connected to the inner top wall of the workbench (1) near the cutting tool end; A transmission screw rod (52), both ends of which are connected to the upper part inside the workbench (1) through fixing plates (53), and one end of the transmission screw rod (52) is connected to the output shaft of the transmission motor (51); A moving block (54), which is threadedly connected to the transmission screw rod (52); Wherein, the transmission screw rod (52) is rotatably connected to the fixing plate (53), and the transmission motor (51) is connected to the control device.

5. An apparatus for manufacturing building formwork according to claim 1, characterized in that, The pressing-down component (6) includes: A second electric telescopic rod (61), the fixed end of which is connected to the moving block (54); An extrusion block (62), the middle part of one end face of which is connected to the telescopic part of the second electric telescopic rod (61); Wherein, the second electric telescopic rod (61) is connected to the control device.

6. The building formwork manufacturing device according to claim 1, characterized in that, The supporting component (7) includes: A supporting plate (71); Sliders (72), which are symmetrically connected to both sides below the supporting plate (71); Rolling balls (73), which are rotatably connected to both ends of the bottom of the supporting plate (71).

7. An apparatus for manufacturing building formwork according to claim 6, characterized in that, A protective pad (74) is further arranged on the upper end face of the supporting plate (71).

8. An apparatus for manufacturing a building formwork according to claim 6, characterized in that, The supporting plate (71) is integrally in a cuboid structure; The sliders (72) are respectively slidably connected to the corresponding slots of the mounting grooves (11); The lower ends of the rolling balls (73) are in contact connection with the inner bottom of the mounting grooves (11); Wherein, an anti-corrosion coating is applied to the outside of the rolling balls (73).

9. An apparatus for manufacturing a building formwork according to claim 1, wherein, There are at least two limiting components (8), and the limiting components (8) are symmetrically arranged at the lower parts of the two mounting grooves (11) at the end far from the cutting tool (3); the limiting components (8) include: The third electric telescopic rod (81), and the third electric telescopic rods (81) are respectively installed on the workbench (1) below each limiting groove (12); The limiting block (82), and the middle of one end face of the limiting block (82) is connected to the telescopic part of the third electric telescopic rod (81); Wherein, the third electric telescopic rod (81) is connected to the control device.

10. A building formwork manufacturing device according to claim 1, characterized in that, The workbench (1) is integrally in a square body structure with openings at both ends and a hollow interior, and legs (13) are further connected to the four corners at the lower end of the workbench (1), and the legs (13) are fixed legs or legs with adjustable height.

Citation Information

Patent Citations

  • Building template manufacturing device

    CN219311368U