Glass fiber concrete slab production device
By designing a fiberglass concrete slab production device including the main frame, movable box, conveying part and control part, the problems of large space occupation, high labor intensity and difficult concrete to be recycled during the concrete production process are solved, automatic conveying and stirring are realized, and the working environment is significantly improved.
Patent Information
- Application Number
- CN202422054622.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-23
AI Technical Summary
During the production process of fiberglass concrete slabs, concrete needs to be transferred back and forth when injecting molds and mixing, resulting in concrete storage tools occupying a large amount of space, high labor intensity, and overflowing concrete is difficult to recycle, and the working environment is harsh.
A glass fiber concrete slab production device is designed, including the main frame, movable box part, conveying part, concrete injection part, pressing part, storage part and control part. Through linear motors, servo motors and mixers and other equipment, automated concrete conveying and mixing are realized, reducing manual operations.
It effectively saves space, reduces labor intensity, reduces manpower and material consumption, and recycles overflowing concrete through the collection agency, improving the working environment.
Smart Images

Figure CN223044770U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of glass fiber concrete, in particular to a production device for glass fiber concrete slabs. Background Art
[0002] Glass fiber concrete slabs have now been widely used in indoor and outdoor decoration of buildings. Its production process mainly includes raw material preparation, concrete preparation, heating of fibers, injection into molds and stirring, curing and maintenance, demolding and trimming, etc. During the production process of glass fiber concrete components, many devices are required. For example, a template fastening device for recycled glass fiber concrete components disclosed in Chinese Patent CN220008190U includes a first servo motor, a support rod installed at the surface output end position of the first servo motor, cavity sleeve boxes are connected to the four corners of the surface of the disc plate, and square frames are connected to the outside of the cavity sleeve boxes.
[0003] During the production process of glass fiber concrete components such as the above, when injecting into the mold and stirring, it is necessary to transfer the concrete back and forth, and there are the following defects:
[0004] First, additional concrete storage tools are required, occupying a large amount of space;
[0005] Second, a large number of workers are required to transfer the concrete, with a large labor intensity and consuming a large amount of manpower and material resources;
[0006] Third, the spilled concrete is difficult to recycle, and the working environment is poor. Content of the Utility Model
[0007] The utility model provides a production device for glass fiber concrete slabs, which can effectively solve the problems mentioned in the background art.
[0008] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0009] A production device for glass fiber concrete slabs includes a main body frame, a movable box part, a conveying part, a concrete injection part, a pressing part, a storage part and a control part.
[0010] Specifically, the main body frame includes a base, a transportation seat and a transfer carrier plate. The base includes a cuboid hollow container I, and a rectangular through hole I is provided on its upper bottom plate; the transportation seat is arranged on the base through columns, rectangular through holes II are symmetrically arranged on its upper bottom plate and lower bottom plate, and a strip-shaped guard plate is also provided on the upper bottom plate; the rectangular through holes II are connected by a strip-shaped through pipe; the transfer carrier plate is in a "cross" shape, is arranged on the base through columns, is located above the transportation seat, and strip-shaped through holes I and strip-shaped through holes II are provided on it.
[0011] Specifically, the movable box part includes a bottom box, a box cover, a fixed through pipe, and a pin column. The bottom box includes a first rectangular container, and overflow ports and press-fit through holes are provided on its front side plate and rear side plate; the box cover includes a first rectangular plate; the fixed through pipes are symmetrically arranged on the box cover, and third rectangular through holes are symmetrically arranged thereon; the pin column is adapted to the fixed through pipe, and one end of the pin column is provided with an inclined surface.
[0012] Specifically, the conveying part includes a power mechanism and a fixing mechanism. The power mechanism includes a linear motor, a slide bar, and a first movable carrier plate; the linear motor and the slide bar are symmetrically arranged on the transport seat; a movable slider is arranged on the slide bar; the movable slider is connected to the mover of the linear motor; the first movable carrier plate is arranged on the upper bottom surface of the movable slider through an "L"-shaped connecting plate, and fourth rectangular through holes are symmetrically arranged thereon. The fixing mechanism includes a first push rod motor, a movable limit block, and a return spring; the first push rod motor is symmetrically arranged on the first movable carrier plate; the movable limit block is arranged on the movable end of the first push rod motor through the return spring.
[0013] Specifically, the concrete injection part includes an injection mechanism and a collection mechanism. The injection mechanism includes a storage bin, a first servo motor, a first electric telescopic rod, and a concrete vibrator; the storage bin is arranged on the base through an "n"-shaped mounting bracket, and a first electric valve is arranged at its lower end; the first servo motor is arranged on the storage bin through a mounting bracket, and a first stirring blade is arranged on its rotating shaft through a reduction gearbox; the first electric telescopic rod is arranged on the lower bottom surface of the transfer carrier plate; the concrete vibrator is arranged on the transfer carrier plate, and its vibrating head is arranged on the movable end of the first electric telescopic rod. The collection mechanism includes a collection hopper, a stirring bin, and a second servo motor; the collection hopper is arranged on the lower bottom plate of the transport seat through a mounting bracket and is located below the strip-shaped through pipe; the stirring bin is located below the collection hopper, and a second electric valve is arranged at its lower end; the second servo motor is arranged on the stirring bin, and a second stirring blade is arranged on its rotating shaft through a reduction gearbox; the second stirring blade is located inside the stirring bin.
[0014] Specifically, the press-fitting part includes a transfer mechanism and a press-fitting mechanism.
[0015] More specifically, the transfer mechanism includes a first screw stepper motor, a second movable carrier plate, a second electric telescopic rod, a first jaw motor, and a storage box. The first screw stepper motor is arranged on the second movable carrier plate; the second movable carrier plate is slidably connected to the second movable carrier plate through rollers and is connected to the nut seat of the first screw stepper motor; the second electric telescopic rod is located below the second movable carrier plate and is arranged on the lower bottom surface of the second movable carrier plate through a mounting carrier plate; the first jaw motor is arranged on the movable end of the second electric telescopic rod; the storage box is arranged on the base and includes a second rectangular container, and a first "U"-shaped open through groove is provided on its side plate.
[0016] More specifically, the pressing mechanism includes a push rod motor II and a storage tube. The push rod motor II is arranged on the transport seat through an "L"-shaped mounting bracket; the storage tube includes a rectangular container II, on the left side plate of which there is a "U"-shaped opening through groove II, and on the rear side plate there is a rectangular through hole V.
[0017] Specifically, the storage part includes a grasping mechanism and a storage mechanism.
[0018] More specifically, the grasping mechanism includes a lead screw stepping motor II, a movable carrier plate III, an electric telescopic rod III, a jaw motor II and an electric roller shaft. The lead screw stepping motor II is arranged on the transfer carrier plate; the movable carrier plate III is slidably connected to the transfer carrier plate through rollers and is connected to the nut seat of the lead screw stepping motor II; the electric telescopic rod III is located below the transfer carrier plate II and is arranged on the bottom surface of the movable carrier plate III through a mounting carrier plate II; the jaw motor II is arranged on the movable end of the electric telescopic rod III; the electric roller shafts are arranged on the transport seat at equal intervals.
[0019] More specifically, the storage mechanism includes a push rod motor III, an electric lifting device, a "C"-shaped limiting plate and a storage rack. The push rod motor III is arranged on the base through a "mu"-shaped frame; the "C"-shaped limiting plate is arranged on the movable end of the push rod motor III, and rollers are arranged at its lower end; the electric lifting device is arranged in the base, and a limiting groove is arranged on its movable end; the storage rack includes a "mu"-shaped frame and support columns; the "mu"-shaped frames are arranged on the support columns at equal intervals, and limiting protrusions are arranged on them at equal intervals.
[0020] Specifically, the control part includes a control mechanism, a feedback mechanism and a PLC controller. The control mechanism includes a start switch, an unloading switch and a pause switch. The feedback mechanism includes several distance sensor modules.
[0021] Furthermore, a fan is added to the inner wall of the side plate of the "C"-shaped limiting plate.
[0022] Advantages compared with the prior art:
[0023] In the present utility model, through the overall setting of the main body frame, the movable box part, the conveying part, the concrete injection part, the pressing part, the storage part and the control part, the following functions are realized:
[0024] Firstly, the setting of the concrete injection part enables the concrete storage tool not to occupy the ground space, saving a large amount of space.
[0025] Secondly, there is no need for staff to manually transfer concrete, greatly reducing the labor intensity and saving a large amount of manpower and material resources.
[0026] Thirdly, the setting of the collection mechanism enables the spilled concrete to be recycled, significantly improving the working environment. Description of the Drawings
[0027] Figure 1 This is a schematic top view structure diagram of the present utility model;
[0028] Figure 2 This is a schematic top view partial sectional structure diagram of the present utility model;
[0029] Figure 3 This is a schematic front view partial sectional structure diagram of the present utility model;
[0030] Figure 4 This is a schematic front view partial enlarged sectional structure diagram of the present utility model;
[0031] Figure 5 This is a schematic system structure diagram of the present utility model Figure 1 ;
[0032] Figure 6 This is a schematic system structure diagram of the present utility model Figure 2 .
[0033] In the figure: 101. Base, 102. Transport seat, 103. Transfer carrier plate, 201. Bottom box, 202. Box cover, 203. Pin column, 301. Linear motor, 302. Movable carrier plate 1, 303. Push rod motor 1, 304. Movable limit block, 401. Storage bin, 402. Servo motor 1, 403. Electric telescopic rod 1, 404. Concrete vibrator, 405. Electric valve 1, 406. Mixing bin, 407. Servo motor 2, 501. Lead screw stepping motor 1, 502. Electric telescopic rod 2, 503. Claw motor 1, 504. Storage box, 505. Push rod motor 2, 506. Storage pipe, 601. Lead screw stepping motor 2, 602. Electric telescopic rod 3, 603. Claw motor 2, 604. Electric roller shaft, 605. Push rod motor 3, 606. Electric lifting device, 607. Storage rack. Specific embodiments
[0034] Example 1, referring to the attached Figures 1-6 , a glass fiber concrete board production device, including a main body frame, a movable box part, a conveying part, a concrete injection part, a pressing part, a storage part and a control part.
[0035] The main body frame includes a base 101, a transport seat 102 and a transfer carrier plate 103.
[0036] The base 101 includes a cuboid hollow container 1.
[0037] A rectangular through hole 1 is provided on the upper bottom plate of the cuboid hollow container 1.
[0038] The transport seat 102 is arranged on the base 101 through columns.
[0039] Rectangular through holes two are symmetrically arranged on the upper bottom plate and the lower bottom plate of the transport seat 102; the rectangular through holes two are connected by a strip-shaped through pipe.
[0040] A strip-shaped guard plate is arranged on the upper bottom plate of the transport seat 102.
[0041] The transfer carrier plate 103 is arranged on the base 101 through a support column and is located above the transport seat 102.
[0042] The transfer carrier plate 103 is in a "cross" shape.
[0043] Strip-shaped through holes one and strip-shaped through holes two are arranged on the transfer carrier plate 103.
[0044] The movable box part includes a bottom box 201, a box cover 202, a fixed through pipe and a pin 203.
[0045] The bottom box 201 includes a rectangular container one.
[0046] Overflow ports are arranged on the front side plate and the rear side plate of the rectangular container one.
[0047] Press-fit through holes are arranged on the front side plate and the rear side plate of the rectangular container one.
[0048] The box cover 202 includes a rectangular plate one.
[0049] The fixed through pipes are symmetrically arranged on the box cover 202.
[0050] Rectangular through holes three are symmetrically arranged on the fixed through pipes.
[0051] One end of the pin 203 is provided with an inclined surface; the pin 203 is adapted to the fixed through pipe.
[0052] The conveying part includes a power mechanism and a fixing mechanism.
[0053] The power mechanism includes a linear motor 301, a slide bar and a movable carrier plate one 302.
[0054] The linear motor 301 and the slide bar are symmetrically arranged on the transport seat 102.
[0055] A movable slider is arranged on the slide bar.
[0056] The movable slider is connected to the mover of the linear motor 301.
[0057] The movable carrier plate one 302 is arranged on the upper bottom surface of the movable slider through an "L"-shaped connecting plate.
[0058] Rectangular through holes four are symmetrically arranged on the movable carrier plate one 302.
[0059] The fixing mechanism includes a push rod motor one 303, a movable limit block 304 and a return spring.
[0060] The push rod motor 1 is symmetrically arranged on the movable carrier plate 1.
[0061] The movable limit block is arranged on the movable end of the push rod motor 1 through a return spring.
[0062] The concrete injection part includes an injection mechanism and a collection mechanism.
[0063] The injection mechanism includes a storage bin 401, a servo motor 1 402, an electric telescopic rod 1 403, and a concrete vibrator 404.
[0064] The storage bin 401 is arranged on the base 101 through an "n"-shaped mounting bracket; an electric valve 1 405 is arranged at the lower end of the storage bin 401.
[0065] The servo motor 1 402 is arranged on the storage bin 401 through a mounting bracket; a stirring blade 1 is arranged on the rotating shaft of the servo motor 1 402 through a reduction gearbox.
[0066] The electric telescopic rod 1 403 is arranged on the lower bottom surface of the transfer carrier plate 103.
[0067] The concrete vibrator 404 is arranged on the transfer carrier plate 103; the vibrating head of the concrete vibrator 404 is arranged on the movable end of the electric telescopic rod 1 403.
[0068] The collection mechanism includes a collection hopper, a stirring bin 406, and a servo motor 2 407.
[0069] The collection hopper is arranged on the lower bottom plate of the transport seat 102 through a mounting bracket, below the strip-shaped through pipe.
[0070] The stirring bin 406 is located below the collection hopper.
[0071] An electric valve 2 is arranged at the lower end of the stirring bin 406.
[0072] The servo motor 2 407 is arranged on the stirring bin 406.
[0073] The rotating shaft of the servo motor 2 407 is provided with a stirring blade 2 through a reduction gearbox.
[0074] The stirring blade 2 is located inside the stirring bin 406.
[0075] The pressing part includes a transfer mechanism and a pressing mechanism.
[0076] The transfer mechanism includes a lead screw stepping motor 1 501, a movable carrier plate 2, an electric telescopic rod 2 502, a jaw motor 1 503, and a storage box 504.
[0077] The lead screw stepping motor 1 501 is arranged on the transfer carrier plate 103.
[0078] The second movable carrier plate is slidably connected to the transfer carrier plate 103 through rollers.
[0079] The second movable carrier plate is connected to the nut seat of the lead screw stepper motor 501.
[0080] The second electric telescopic rod 502 is arranged on the lower bottom surface of the second movable carrier plate through the first mounting carrier plate; the second electric telescopic rod 502 is located below the transfer carrier plate 103.
[0081] The first jaw motor 503 is arranged on the movable end of the second electric telescopic rod 502.
[0082] The storage box 504 is arranged on the base 101.
[0083] The storage box 504 includes a second rectangular container.
[0084] A "U"-shaped open through groove one is arranged on the side plate of the second rectangular container.
[0085] The pressing mechanism includes a second push rod motor 505 and a storage tube 506.
[0086] The second push rod motor 505 is arranged on the transport seat 102 through an "L"-shaped mounting bracket.
[0087] The storage tube 506 includes a second rectangular container.
[0088] A "U"-shaped open through groove two is arranged on the left side plate of the second rectangular container.
[0089] A rectangular through hole five is arranged on the rear side plate of the second rectangular container.
[0090] The storage part includes a grasping mechanism and a storage mechanism.
[0091] The grasping mechanism includes a second lead screw stepper motor 601, a third movable carrier plate, a third electric telescopic rod 602, a second jaw motor 603 and an electric roller 604.
[0092] The second lead screw stepper motor 601 is arranged on the transfer carrier plate 103.
[0093] The third movable carrier plate is slidably connected to the transfer carrier plate 103 through rollers.
[0094] The third movable carrier plate is connected to the nut seat of the second lead screw stepper motor 601.
[0095] The third electric telescopic rod 602 is arranged on the lower bottom surface of the third movable carrier plate through the second mounting carrier plate; the third electric telescopic rod 602 is located below the second transfer carrier plate 103.
[0096] The second jaw motor 603 is arranged on the movable end of the third electric telescopic rod 602.
[0097] The electric roller shafts 604 are equidistantly arranged on the transport seat 102.
[0098] The storage mechanism includes the push rod motor three 605, the electric lifting device 606, the "C"-shaped limit plate, and the storage rack 607.
[0099] The push rod motor three 605 is arranged on the base 101 through the "eye"-shaped frame.
[0100] The "C"-shaped limit plate is arranged on the movable end of the push rod motor three 605; rollers are arranged at the lower end of the "C"-shaped limit plate.
[0101] The electric lifting device 606 is arranged inside the base 101; a limit groove is arranged on the movable end of the electric lifting device 606.
[0102] The storage rack 607 includes an "eye"-shaped frame and support columns.
[0103] The "eye"-shaped frames are equidistantly arranged on the support columns; limit protrusions are equidistantly arranged on the "eye"-shaped frames.
[0104] The control part includes a control mechanism, a feedback mechanism, and a PLC controller.
[0105] The control mechanism includes a start switch, an unloading switch, and a pause switch.
[0106] The start switch, the unloading switch, and the pause switch are arranged on the side plate of the transport seat 102.
[0107] The feedback mechanism includes distance sensor module one, distance sensor module two, distance sensor module three, distance sensor module four, and distance sensor module five.
[0108] The distance sensor module one is arranged on the push rod motor one 303 and is used to assist the PLC controller in detecting the position of the bottom box 201.
[0109] The distance sensor module two is arranged on the storage bin 401 and is used to assist the PLC controller in detecting the position of the bottom box 201.
[0110] The distance sensor module three is arranged on the lower bottom surface of the transfer carrier plate 103 and is used to assist the PLC controller in detecting the position of the bottom box 201.
[0111] The distance sensor module four is arranged on the lower bottom surface of the mounting carrier plate one and is used to assist the PLC controller in detecting the position of the box cover 202.
[0112] The distance sensor module five is arranged on the lower bottom surface of the mounting carrier plate two and is used to assist the PLC controller in detecting the position of the box cover 202.
[0113] Working principle and usage method:
[0114] Step 1, presetting:
[0115] Power on and perform no-load test on the device of the present utility model. Stack the box covers 202 orderly into the storage box 504. Stack the pin posts 203 orderly into the storage tube 506. Place the recycling box under the second electric valve.
[0116] Step 2, use:
[0117] Press the start switch, and place the bottom box 201 on the movable carrier plate 1 302; the distance sensor module 1 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the push rod motor 1 303 and the linear motor 301.
[0118] The push rod motor 1 303 starts and fixes the bottom box 201 through the movable limit block 304.
[0119] The linear motor 301 drives the movable carrier plate 1 302 to move rightward after a delay. When the movable carrier plate 1 302 reaches below the storage bin 401, the distance sensor module 2 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the servo motor 1 402, the electric telescopic rod 1 403, the concrete vibrator 404, and the first electric valve 405.
[0120] The servo motor 1 402 and the first electric valve 405 start orderly, and the linear motor 301 drives the bottom box 201 to move orderly, so that several piles of glass fiber concrete exist uniformly in the bottom box 201; then, the electric telescopic rod 1 403 and the concrete vibrator 404 start, and keep the vibrating head of the concrete vibrator 404 inside the bottom box 201, so that the piled glass fiber concrete is evenly distributed in the bottom box 201.
[0121] The linear motor 301 drives the movable carrier plate 1 302 to move rightward after a delay. When the movable carrier plate 1 302 reaches below the installation carrier plate 1, the distance sensor module 3 outputs a signal to the PLC controller, and the PLC controller outputs a signal to the lead screw stepping motor 1 501, the electric telescopic rod 2 502, the jaw motor 1 503, the servo motor 2 407, the second electric valve, and the push rod motor 2 505.
[0122] The lead screw stepping motor 1 501 drives the installation carrier plate 1 to run above the box cover 202; the distance sensor module 4 outputs a signal to the PLC controller, and the PLC controller controls the electric telescopic rod 2 502 and the jaw motor 1 503 to start after a delay, completes the grasping of the box cover 202, then transfers it above the bottom box 201, and moves down into the bottom box 201, and the push rod motor 2 505 pushes the pin post 203 in after a delay to complete the fixation. The overflowed glass fiber concrete enters the mixing bin 406 through the strip-shaped through pipe, and the servo motor 2 407 starts after a delay.
[0123] The linear motor 301 drives the movable carrier plate 1 302 to move rightward with a delay. When the movable carrier plate 1 302 reaches below the mounting carrier plate 2, the distance sensor module 5 outputs a signal to the PLC controller, and the PLC controller outputs signals to the lead screw stepper motor 2 601, the electric telescopic rod 3 602, the gripper motor 2 603, the electric roller 604, and the electric lifting device 606.
[0124] The electric telescopic rod 3 602 and the gripper motor 2 603 grip the movable box part. The lead screw stepper motor 2 601 transfers the movable box part to the electric roller 604. The electric roller 604 starts and transfers the movable box part to the storage rack 607. The electric lifting device 606 moves down by one unit distance with a delay to facilitate the subsequent storage of the movable box part.
[0125] Step 2, unloading:
[0126] Press the unloading switch, and the PLC controller outputs signals to the electric lifting device 606, the push rod motor 3 605, and the electric valve 2.
[0127] The electric lifting device 606 and the push rod motor 3 605 retract and reset to facilitate unloading; the electric valve 2 opens, allowing the collected glass fiber concrete to enter the recycling box.
[0128] Embodiment 2, on the basis of Embodiment 1, a fan is added to the inner wall of the side plate of the "C"-shaped limiting plate.
[0129] The lead screw stepper motor described in the present utility model includes a servo motor, a ball screw pair, and a nut seat; the servo motor and the ball screw pair are in screw drive. The ball screw pair includes a combination of a ball screw, a ball nut, a rotary steel ball, and a circulating part. The nut seat is connected to the ball nut of the ball screw pair.
Claims
1. A glass fiber concrete board production device, characterized in that: The invention comprises a main frame, a movable box part, a conveying part, a concrete injection part, a pressing part, a storage part and a control part; the main frame comprises a base (101), a transport seat (102) and a transfer carrier (103); the movable box part comprises a bottom box (201), a box cover (202), a fixed through pipe and a pin (203); the conveying part comprises a power mechanism and a fixing mechanism; the concrete injection part comprises an injection mechanism and a collection mechanism; the injection mechanism comprises a storage bin (401), a servo motor (402), an electric telescopic rod (403) and a concrete vibrator (404); the storage bin (401 ) is arranged on the base (101) through an "n"-shaped mounting frame; an electric valve (405) is arranged at the lower end of the storage bin (401); a servo motor (402) is arranged on the storage bin (401) through the mounting frame, and a stirring blade (405) is arranged on the rotating shaft of the servo motor (402) through a reduction gear box; an electric telescopic rod (403) is arranged on the lower bottom surface of the transfer carrier (103); a concrete vibrator (404) is arranged on the transfer carrier (103), and a vibrating head of the electric telescopic rod (403) is arranged on the movable end; the pressing part includes a transfer mechanism and a pressing mechanism; and the storage part includes a grabbing mechanism and a storage mechanism.
2. A glass fiber concrete board production device according to claim 1, characterized in that: The collecting mechanism comprises a collecting bucket, a stirring chamber (406) and a second servo motor (407); the collecting bucket is arranged on the lower bottom plate of the transport seat (102) through a mounting frame and is located below the strip-shaped through pipe; the stirring chamber (406) is located below the collecting bucket, and a second electric valve is arranged at the lower end of the stirring chamber; the second servo motor (407) is arranged on the stirring chamber (406), and a second stirring blade is arranged on the rotating shaft of the servo motor (407) through a reduction gear box; and the second stirring blade is located in the stirring chamber (406).
3. A glass fiber concrete board production device according to claim 1, characterized in that: The base (101) comprises a rectangular hollow container (1), on whose upper bottom plate a rectangular through hole (1) is arranged; a transport seat (102) is arranged on the base (101) via a support, and on whose upper bottom plate and lower bottom plate two rectangular through holes are arranged; the two rectangular through holes are connected via a strip-shaped through pipe; a strip-shaped guard plate is arranged on the upper bottom plate of the transport seat (102); a transfer carrier (103) is in a "cross" shape, is arranged on the base (101) via a support, is located above the transport seat (102), and is provided with a strip-shaped through hole (1) and a strip-shaped through hole (2).
4. The glass fiber concrete board production device according to claim 1, characterized in that: The bottom box (201) comprises a rectangular container, on which overflow ports and press-fit through holes are arranged on the front side plate and the rear side plate; the box cover (202) comprises a rectangular plate; a fixed through pipe is arranged on the box cover (202); and a bevel is arranged on one end of the pin (203).
5. The glass fiber concrete board production device according to claim 1, characterized in that: The power mechanism comprises a linear motor (301), a slide bar and a movable carrier plate (302); the linear motor (301) and the slide bar are arranged on a transport seat (102); a movable slider is arranged on the slide bar; the movable slider is connected to a mover of the linear motor (301); the movable carrier plate (302) is arranged on the upper bottom surface of the movable slider via an "L"-shaped connecting plate, and a rectangular through hole (4) is arranged on the movable slider.
6. The glass fiber concrete board production device according to claim 1, characterized in that: The fixing mechanism includes a push rod motor 1 (303), a movable limit block (304), and a return spring; the push rod motor 1 (303) is arranged on the movable carrier plate 1 (302); the movable limit block (304) is arranged on the movable end of the push rod motor 1 (303) through the return spring.
7. The glass fiber concrete board production device according to claim 1, characterized in that: The transfer mechanism includes a lead screw stepper motor 1 (501), a movable carrier plate 2, an electric telescopic rod 2 (502), a jaw motor 1 (503), and a storage box (504); the lead screw stepper motor 1 (501) is arranged on the transfer carrier plate (103); the movable carrier plate 2 is slidably connected to the transfer carrier plate (103) through rollers and is connected to the nut seat of the lead screw stepper motor 1 (501); the electric telescopic rod 2 (502) is located below the transfer carrier plate (103) and is arranged on the bottom surface of the movable carrier plate 2 through the mounting carrier plate 1; the jaw motor 1 (503) is arranged on the movable end of the electric telescopic rod 2 (502); the storage box (504) is arranged on the base (101), and a "U”-shaped open through groove 1 is arranged on its side plate.
8. The glass fiber concrete board production device according to claim 1, characterized in that: The pressing mechanism includes a push rod motor 2 (505) and a storage tube (506); the push rod motor 2 (505) is arranged on the transportation seat (102) through an "L”-shaped mounting bracket; the storage tube (506) includes a rectangular container 2, a "U”-shaped open through groove 2 is arranged on its left side plate, and a rectangular through hole 5 is arranged on its rear side plate.
9. The glass fiber concrete board production device according to claim 1, characterized in that: The grasping mechanism includes a lead screw stepper motor 2 (601), a movable carrier plate 3, an electric telescopic rod 3 (602), a jaw motor 2 (603), and an electric roller shaft (604); the lead screw stepper motor 2 (601) is arranged on the transfer carrier plate (103); the movable carrier plate 3 is slidably connected to the transfer carrier plate (103) through rollers and is connected to the nut seat of the lead screw stepper motor 2 (601); the electric telescopic rod 3 (602) is located below the transfer carrier plate (103) 2 and is arranged on the bottom surface of the movable carrier plate 3 through the mounting carrier plate 2; the jaw motor 2 (603) is arranged on the movable end of the electric telescopic rod 3 (602); the electric roller shaft (604) is arranged on the transportation seat (102).
10. The glass fiber concrete board production device according to claim 1, characterized in that: The storage mechanism includes a push rod motor 3 (605), an electric lifting device (606), a "C”-shaped limit plate, and a storage rack (607); the push rod motor 3 (605) is arranged on the base (101) through a "mesh”-shaped frame; the "C”-shaped limit plate is arranged on the movable end of the push rod motor 3 (605), and rollers are arranged at its lower end; the electric lifting device (606) is arranged in the base (101), and a limit groove is arranged on its movable end; the storage rack (607) includes a "mesh”-shaped frame and support columns.
Citation Information
Patent Citations
Regenerated glass fiber concrete member template fastening device
CN220008190U