Laterally-discharged insulation board core material pressing forming machine
By coordinating the motor, shaft, and drive gear, the insulation board core material is discharged laterally, solving the problem of limited workshop space and improving the equipment's flexibility and installation efficiency.
Patent Information
- Application Number
- CN202520439075.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-13
AI Technical Summary
Existing insulation board core material pressing and molding machines cannot achieve lateral discharge when workshop space is limited, resulting in installation difficulties.
The system employs a combination of a motor, shaft, drive gear, and rack to push the push plate towards the discharge port via a sliding plate, thereby achieving the lateral ejection of the insulation board core material.
This technology enables the lateral discharge of insulation board core material between a specific installation location in the workshop and the conveyor belt, solving the problem of limited space and improving the flexibility and installation efficiency of the equipment.
Smart Images

Figure CN223802764U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of heat insulation plate press forming equipment, and specifically relates to a side discharging heat insulation plate core material press forming machine. BACKGROUND
[0002] The vacuum heat insulation (insulation) board is a new type of building energy-saving material which is inorganic, non-combustible and has the same service life as the building, and can be used together with bonding mortar, anti-cracking mortar, finishing mortar, glass fiber mesh, finishing layer, gypsum board and other materials to form a green, environment-friendly, low-carbon and energy-saving insulation system. The silica vacuum heat insulation board core material is generally pressed and formed by a press forming machine.
[0003] After the core material is pressed and formed by the press forming machine for heat insulation board core material, it is generally discharged from the front of the press forming machine. When the workshop cannot discharge from the front due to area or space problems, a side discharging method is needed to solve the above problems. Therefore, an improved technology is urgently needed to solve the problem existing in the prior art. UTILITY MODEL CONTENT
[0004] The utility model discloses a kind of side discharging heat insulation plate core material press forming machines, when heat insulation plate is formed, it can be moved to the direction of discharge port by motor, shaft, driving gear and rack cooperation with sliding plate driving push plate, to push out heat insulation plate core material from discharge port after forming from side, to realize the cooperation between specific installation position in workshop and conveying belt, to solve the problem raised in the above background art.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of side discharging heat insulation plate core material press forming machines, including forming machine main body and side push mechanism;
[0006] The forming machine main body includes arch-shaped bin, workbench, female die, upper die and lower die, the workbench is arranged in the arch-shaped bin, the workbench is provided with female die, the female die is provided with a plurality of die grooves, the horizontal plate is arranged in the arch-shaped bin and below the workbench, the upper hydraulic cylinder is arranged at the top of the arch-shaped bin, the lower surface of the horizontal plate is provided with lower hydraulic cylinder, the piston rod of the upper hydraulic cylinder passes through the top of the arch-shaped bin and is connected with upper die holder, the lower surface of the upper die holder is provided with a plurality of upper dies, the piston rod of the lower hydraulic cylinder passes through the horizontal plate and is connected with lower die holder, the upper surface of the lower die holder is provided with a plurality of lower dies, the upper die and the corresponding lower die are one-to-one corresponding, the upper die and the corresponding lower die are one-to-one corresponding with the die groove and cooperate with each other, the discharge port is arranged at one side of the arch-shaped bin and corresponds to the female die, the through slot is arranged at the other side of the arch-shaped bin and corresponds to the female die, the outer end of the through slot is further provided with a supporting table on one side of the arch-shaped bin, the supporting table is provided with a supporting frame at the bottom, and the upper surface of the supporting table is provided with a plurality of groups of symmetrically arranged L-shaped limiters.
[0007] The side pushing mechanism comprises a motor, a shaft rod, a driving gear, a sliding plate, a push plate and a rack, the motor is arranged on the upper surface of the support table, the output shaft of the motor is connected with one end of the shaft rod through a shaft coupling, the other end of the shaft rod is connected with a bearing support, the bearing support is arranged on the upper surface of the support table, the sliding plate is slidingly arranged on the upper surface of the support table, a rack is arranged at the middle position of the upper surface of the sliding plate, the rack is engaged with the driving gear, the two sides of the sliding plate are slidingly matched with and limited by the L-shaped limit members, the sliding plate is slidingly arranged in the through slot, and the push plate is arranged at one end of the sliding plate close to the upper die.
[0008] Preferably, the utility model provides a kind of side discharge's heat insulation board core material press forming machine, wherein, the upper surface of the workbench is also provided with pneumatic cylinder, the piston rod of the pneumatic cylinder is connected with material box, and the material box is slidingly arranged on the upper surface of the workbench.
[0009] Preferably, the utility model provides a kind of side discharge's heat insulation board core material press forming machine, wherein, the top of the arch-shaped bin is provided with raw material tank, the bottom of the raw material tank is provided with discharge port, the discharge port is arranged in the top of the arch-shaped bin and is provided with discharge valve, and the material box is movably arranged below the raw material tank.
[0010] Preferably, the utility model provides a kind of side discharge's heat insulation board core material press forming machine, wherein, a plurality of connecting columns are further arranged between the workbench and the transverse plate.
[0011] Preferably, the utility model provides a kind of side discharge's heat insulation board core material press forming machine, wherein, the lower surface of the transverse plate is further provided with a plurality of reinforcing plates on the two sides.
[0012] Preferably, the utility model provides a kind of side discharge's heat insulation board core material press forming machine, wherein, the upper surface of the upper die seat is further provided with a plurality of first guide rods, and the first guide rods are arranged in the top of the arch-shaped bin and are guidedly matched with the top of the arch-shaped bin.
[0013] Preferably, the utility model provides a kind of side discharge's heat insulation board core material press forming machine, wherein, the lower surface of the lower die seat is further provided with a plurality of second guide rods, and the second guide rods are arranged in the transverse plate and are guidedly matched with the transverse plate.
[0014] Compared with the prior art, the utility model has the advantages that:
[0015] The arch-shaped bin is provided with a supporting table, a sliding plate is slidably arranged on the surface of the supporting table, the sliding plate is slid by the cooperation of the rack and the driving gear, the driving gear is connected with the output shaft of the motor through a shaft, and when the heat insulation plate is formed, the cooperation of the motor, the shaft, the driving gear and the rack can drive the sliding plate to move the push plate to the discharge port, so that the formed heat insulation plate core material is pushed out from the discharge port, thereby realizing the cooperation between the specific installation position in the workshop and the conveying belt. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a front perspective structure schematic view of the utility model;
[0017] Figure 2 It is a side perspective structure schematic view of the utility model;
[0018] Figure 3 It is a side appearance structure schematic view of the utility model;
[0019] Figure 4 It is an attached Figure 3 It is an enlarged structure schematic view of the mark A;
[0020] Figure 5 It is an attached Figure 3 It is a rear view structure schematic view.
[0021] In the figure: arch-shaped bin 1, workbench 2, female die 3, upper die 4, lower die 5, die groove 6, horizontal plate 7, upper hydraulic cylinder 8, lower hydraulic cylinder 9, upper die seat 10, lower die seat 11, discharge port 12, through groove 13, supporting table 14, supporting frame 15, L-shaped limiting piece 16, motor 17, shaft 18, driving gear 19, sliding plate 20, push plate 21, rack 22, bearing support 23, air cylinder 24, material box 25, raw material tank 26, discharge valve 27, connecting column 28, reinforcing plate 29, first guide rod 30, second guide rod 31. DETAILED DESCRIPTION
[0022] The technical scheme of the utility model will be described clearly and completely below by combining the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skilled in the art without creative labor belong to the protection scope of the utility model;
[0023] It should be noted that, in the description of the utility model, it should be noted that the terms "inner", "outer", "upper", "lower", "two sides", "one end", "the other end", "left", "right" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.
[0024] Please refer to Figures 1-5 The utility model provides a kind of technical scheme: a kind of side discharging's heat insulation board core material press forming machine, including forming machine main body and side pushing mechanism.
[0025] The forming machine body comprises an arched bin 1, a workbench 2, a female die 3, an upper die 4 and a lower die 5, the arched bin 1 is internally provided with the workbench 2, the workbench 2 is provided with the female die 3, the female die 3 is provided with a plurality of die grooves 6, the arched bin 1 is internally provided with a horizontal plate 7 below the workbench 2, a plurality of connecting columns 28 are further arranged between the workbench 2 and the horizontal plate 7 to improve the structural stability of the workbench 2 and the horizontal plate 7, a plurality of reinforcing plates 29 are further arranged on both sides of the lower surface of the horizontal plate 7 to ensure the supportability and stability of the horizontal plate 7, the arched bin 1 is provided with an upper hydraulic cylinder 8 at the top end, the horizontal plate 7 is provided with a lower hydraulic cylinder 9 at the lower surface, the piston rod of the upper hydraulic cylinder 8 penetrates through the top of the arched bin 1 and is connected with an upper die seat 10, the lower surface of the upper die seat 10 is provided with a plurality of upper dies 4, the upper surface of the upper die seat 10 is further provided with a plurality of first guide rods 30, the first guide rods 30 are arranged in the top of the arched bin 1 and are guidedly matched with the top of the arched bin 1 to ensure the stability of the upper die seat 10 during lifting, the piston rod of the lower hydraulic cylinder 9 penetrates through the horizontal plate 7 and is connected with a lower die seat 11, the upper surface of the lower die seat 11 is further provided with a plurality of second guide rods 31, the second guide rods 31 are arranged in the horizontal plate 7 and are guidedly matched with the horizontal plate 7 to ensure the stability of the lower die seat 11 during lifting, the upper surface of the lower die seat 11 is provided with a plurality of lower dies 5, the upper dies 4 and the corresponding lower dies 5 correspond to each other, the upper dies 4 and the corresponding lower dies 5 correspond to each other and are matched with the die grooves 6, a discharge port 12 is arranged at one side of the arched bin 1 and corresponds to the female die 3, a through groove 13 is arranged at the other side of the arched bin 1 and corresponds to the female die 3, a supporting table 14 is further arranged at the outer end of the through groove 13, the supporting table 14 is provided with a supporting frame 15 at the bottom, the upper surface of the supporting table 14 is provided with a plurality of groups of symmetrically arranged L-shaped limit pieces 16, the upper surface of the workbench 2 is further provided with a pneumatic cylinder 24, the piston rod of the pneumatic cylinder 24 is connected with a material box 25, the material box 25 is slidingly arranged on the upper surface of the workbench 2, the upper and lower surfaces of the material box 25 are both open, through the cooperation of the pneumatic cylinder 24, the material box 25 is realized to slide on the surface of the workbench 2, so as to realize material receiving and discharging, a raw material tank 26 is arranged at the top end of the arched bin 1, the raw material tank 26 is provided with a discharge port 12 at the bottom, the discharge port 12 penetrates through the top of the arched bin 1 and is provided with a discharge valve 27, the material box 25 is movably arranged below the raw material tank 26, the raw material of the heat insulation plate is stored through the raw material tank 26, and the raw material is discharged through the discharge valve 27;
[0026] The side pushing mechanism comprises a motor 17, a shaft rod 18, a driving gear 19, a sliding plate 20, a pushing plate 21 and a rack 22. The motor 17 is arranged on the upper surface of the support platform 14. The output shaft of the motor 17 is connected with one end of the shaft rod 18 through a shaft coupling. The other end of the shaft rod 18 is connected with a bearing support 23 arranged on the upper surface of the support platform 14. The sliding plate 20 is slidingly arranged on the upper surface of the support platform 14. The middle position of the upper surface of the sliding plate 20 is provided with the rack 22. The rack 22 is engaged with the driving gear 19. The two sides of the sliding plate 20 are slidingly matched with the L-shaped limiting members 16 and are limited by the L-shaped limiting members 16. The sliding plate 20 is slidingly arranged in the through slot 13. The sliding plate 20 is provided with the pushing plate 21 near one end of the upper die 4. The pushing plate 21 is slidingly arranged on the upper surface of the workbench 2.
[0027] Working method and principle: before use, the sliding plate 20 provided with the rack 22 is placed on the support platform 14. The sliding plate 20 is limited by the L-shaped limiting plates on the two sides. Then the sliding plate 20 is arranged through the through slot 13 and the pushing plate 21 is arranged at the inner end of the sliding plate 20. Then the shaft rod 18 provided with the driving gear 19 is connected with the output shaft of the motor 17 and the bearing support 23 at the two ends respectively. The driving gear 19 is engaged with the rack 22. When working, the lower hydraulic cylinder 9 drives the lower die base 11 and the lower die 5 to descend and forms a mold cavity in the mold groove 6 of the female die 3. The raw material is poured into the raw material tank 26. The material box 25 is driven by the air cylinder 24 and moves below the raw material tank 26. The discharge valve 27 at the bottom of the raw material tank 26 is opened, so that the raw material falls into the material box 25. Then the air cylinder 24 drives the material box 25 to move forward and makes the raw material fall into the mold groove 6 of the female die 3. The material box 25 retreats below the raw material tank 26. Then the upper hydraulic cylinder 8 drives the upper die base 10 to descend and makes the upper die 4 press into the mold groove 6 of the female die 3. Through the cooperation of the upper die 4 and the lower die 5, the raw material is pressed and formed to obtain the heat insulation plate. The upper hydraulic cylinder 8 drives the upper die 4 to rise and leave the mold groove 6. The lower hydraulic cylinder 9 drives the lower die 5 to rise and makes the upper surface of the lower die 5 flush with the upper surface of the workbench 2. The motor 17 drives the shaft rod 18 to rotate. The shaft rod 18 drives the sliding plate 20 to move to the direction of the arc-shaped bin 1 through the cooperation of the driving gear 19 and the rack 22. The pushing plate 21 pushes the heat insulation plate out of the discharge port 12 on the other side of the arc-shaped bin 1 to complete the discharging. The arc-shaped bin 1 outside and at the discharge port 12 can be matched with the conveying belt to realize material receiving and can be matched with subsequent drying treatment. The utility model has the advantages of reasonable structure. One side of the arc-shaped bin 1 is provided with the support platform 14. The sliding plate 20 is slidingly arranged on the upper surface of the support platform 14. The sliding plate 20 is slidingly matched with the driving gear 19 through the cooperation of the rack 22. The driving gear 19 is connected with the output shaft of the motor 17 through the shaft rod 18. When the heat insulation plate is formed, the sliding plate 20 drives the pushing plate 21 to move to the direction of the discharge port 12 through the cooperation of the motor 17, the shaft rod 18, the driving gear 19 and the rack 22. Thus the formed heat insulation plate core material is pushed out of the discharge port 12 laterally, so that the cooperation between the specific installation position in the workshop and the conveying belt is realized.
[0028] The details not described in the utility model are the known technology of the skilled person in the art.
[0029] Finally, it should be pointed out that the above specific embodiments are only used to illustrate the technical solutions of the utility model and are not limiting. Although the utility model has been described in detail with reference to the embodiments, those skilled in the art should understand that the technical solutions of the utility model can be modified and replaced equivalently without departing from the spirit and scope of the technical solutions of the utility model, and they should all be included in the scope of the claims of the utility model.
Claims
1. A side-discharge adiabatic panel core material press forming machine characterized by: The molding machine body and the side pushing mechanism are included; The molding machine body includes an arch-shaped bin (1), a workbench (2), a female die (3), an upper die (4), and a lower die (5), the workbench (2) is arranged inside the arch-shaped bin (1), the workbench (2) is provided with the female die (3), the female die (3) is provided with a plurality of die grooves (6), the arch-shaped bin (1) is internally provided with a horizontal plate (7) below the workbench (2), the arch-shaped bin (1) is provided with an upper hydraulic cylinder (8) at the top end, the lower surface of the horizontal plate (7) is provided with a lower hydraulic cylinder (9), the piston rod of the upper hydraulic cylinder (8) penetrates through the top of the arch-shaped bin (1) and is connected with an upper die seat (10), the lower surface of the upper die seat (10) is provided with a plurality of upper dies (4), the piston rod of the lower hydraulic cylinder (9) penetrates through the horizontal plate (7) and is connected with a lower die seat (11), the upper surface of the lower die seat (11) is provided with a plurality of lower dies (5), the upper die (4) and the corresponding lower die (5) correspond to each other and cooperate with the die groove (6), the arch-shaped bin (1) is provided with a discharge port (12) at one side and a corresponding position of the female die (3), the arch-shaped bin (1) is provided with a through groove (13) at the other side and a corresponding position of the female die (3), the outer end of the arch-shaped bin (1) at one side of the through groove (13) is further provided with a supporting table (14), the supporting table (14) is provided with a support frame (15) at the bottom, and the supporting table (14) is provided with a plurality of groups of symmetrically arranged L-shaped limiting pieces (16) on the upper surface. The side pushing mechanism includes a motor (17), a shaft rod (18), a driving gear (19), a sliding plate (20), a push plate (21), and a rack (22), the motor (17) is arranged on the upper surface of the supporting table (14), the output shaft of the motor (17) is connected with one end of the shaft rod (18) through a shaft coupling, the other end of the shaft rod (18) is connected with a bearing support (23), the bearing support (23) is arranged on the upper surface of the supporting table (14), the sliding plate (20) is slidingly arranged on the upper surface of the supporting table (14), the middle position of the upper surface of the sliding plate (20) is provided with the rack (22), the rack (22) is engaged with the driving gear (19), the two sides of the sliding plate (20) are respectively slidingly matched with the L-shaped limiting pieces (16) and are limited, the sliding plate (20) slidingly penetrates through the through groove (13), and the end of the sliding plate (20) close to the upper die (4) is provided with the push plate (21), the push plate (21) is slidingly arranged on the upper surface of the workbench (2).
2. A machine for the press forming of a side-discharged core material for an insulating board according to claim 1, characterized in that: The upper surface of the workbench (2) is further provided with a pneumatic cylinder (24), the piston rod of the pneumatic cylinder (24) is connected with a material box (25), and the material box (25) is slidingly arranged on the upper surface of the workbench (2).
3. A machine for the press forming of a side-discharged core material for an insulating board according to claim 2, characterized in that: The top end of the arch-shaped bin (1) is provided with a raw material tank (26), the bottom of the raw material tank (26) is provided with a discharge port (12), the discharge port (12) penetrates through the top of the arch-shaped bin (1) and is provided with a discharge valve (27), and the material box (25) is movably arranged below the raw material tank (26).
4. A machine for forming a side-discharged board core material according to claim 1, characterized in that: A plurality of connecting columns (28) are arranged between the workbench (2) and the cross plate (7).
5. A machine for forming a side-discharged board core material according to claim 1, characterized in that: A plurality of reinforcing plates (29) are arranged on both sides of the lower surface of the cross plate (7).
6. A machine for forming a side-discharged board core material according to claim 1, characterized in that: A plurality of first guide rods (30) are arranged on the upper surface of the upper die seat (10), the first guide rods (30) are arranged through the top of the arched bin (1) and are in guiding cooperation with the top of the arched bin (1).
7. A machine for forming a side-discharged board core material according to claim 1, characterized in that: A plurality of second guide rods (31) are arranged on the lower surface of the lower die seat (11), the second guide rods (31) are arranged through the cross plate (7) and are in guiding cooperation with the cross plate (7).