Shaping device for bottom surface of inorganic millstone

By designing a shaping device for the bottom surface of inorganic grinding stones, and utilizing a cam system driven by a hydraulic cylinder and a motor, combined with a limit post and sealing gasket structure, the problem of complex and time-consuming demolding after hot pressing of inorganic grinding stones was solved, achieving rapid demolding and efficient production.

CN223918781UActive Publication Date: 2026-02-17SHANXI VICTORY FLOORING MATERIAL CO LTD
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Patent Information

Application Number
CN202520130322.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-02-17
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

The existing process of demolding inorganic grinding stones after hot pressing is complex and time-consuming, which affects production efficiency.

Method used

Design a shaping device for the bottom surface of an inorganic grinding stone. Utilize a hydraulic cylinder to drive a hot press plate and a motor-driven cam system, combined with a limit post and sealing gasket structure, to achieve the lifting and lowering of the mold frame and the rapid movement of the top plate, simplifying the demolding process.

Benefits of technology

This technology enables rapid demolding of inorganic terrazzo slabs, improves production efficiency, and ensures the sealing performance between the mold frame and the support plate, without affecting subsequent processing operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shaping devices, in particular to an inorganic millstone bottom surface shaping device which comprises a case, a support is fixedly connected to the top surface of the case, a hydraulic cylinder is fixedly connected to the top surface of the support, a hot pressing plate is fixedly connected to the output end of the hydraulic cylinder, and a bearing plate is fixedly connected to the top surface of the case. The stone plate forming machine has the advantages that after a stone plate is completely formed, the electric push rod can be started to drive the mold frame to move upwards, at the moment, the mold frame can move upwards along the limiting column, lifting of the mold frame can be guided until the mold frame is separated from the stone plate after rising to a proper height, and at the moment, the motor is started to drive the cam to rotate; and after the tip end of the cam vertically faces upwards, the lifting plate can be jacked to move upwards, a top plate can be driven to move upwards through transmission of a connecting rod, a stone plate can be jacked up, rapid demolding of the inorganic stone grinding plate can be achieved, and the production efficiency of the inorganic stone grinding plate is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a shaping device technology field, especially a kind of inorganic abrasive stone bottom surface shaping device. BACKGROUND

[0002] Inorganic abrasive stone, as a kind of high-performance ground decoration material, with its excellent wear resistance, pressure resistance, skid resistance and aesthetic, has been widely used in indoor and outdoor decoration field.Inorganic abrasive stone bottom surface shaping device, it is just for inorganic abrasive stone material in the forming process, especially the bottom surface shaping link is designed a kind of professional equipment.The main function of the device is when inorganic abrasive stone material is in plastic state, through specific mould and shaping process, to make its bottom surface form stable, flat, size accurate shape, provide solid foundation for subsequent construction and use.

[0003] In the existing inorganic abrasive stone forming process, a part will adopt hot-pressing mode to form.Hot-pressing forming has the advantages of fast forming speed, high production efficiency, good product strength etc., but at the same time, it also faces the problem that inorganic abrasive stone is troublesome to be taken out from mould after forming.Specifically, since strong adhesion between inorganic abrasive stone and mould is formed during hot-pressing process, and material itself has certain toughness, so that demolding process becomes complex and time-consuming.This not only affects production efficiency. CONTENT OF THE UTILITY MODEL

[0004] The utility model aims at solving at least one of the technical defects.

[0005] Therefore, one purpose of the utility model is to propose a kind of inorganic abrasive stone bottom surface shaping device to solve the problems mentioned in the background art and overcome the deficiencies in the prior art.

[0006] In order to achieve the above object, the utility model provides a kind of inorganic grinding stone bottom surface shaping device, including cabinet, the top of the cabinet is fixedly connected with support, the top of the support is fixedly connected with hydraulic cylinder, the output end of the hydraulic cylinder is fixedly connected with hot press plate, the top of the cabinet is fixedly connected with bearing plate, the bearing plate is up and down corresponding with hot press plate, the inner wall of the cabinet is fixedly connected with several symmetrically arranged springs, the bottom end of several The spring is fixedly connected with lifting plate, the lifting plate is parallel with bearing plate, the top of the lifting plate is fixedly connected with several symmetrically arranged connecting rods, the top of every two front and back corresponding connecting rods is fixedly connected with a top plate, the top plate and connecting rod are all slidably connected with bearing plate, the back of the cabinet is fixedly connected with motor, the output end of the motor is fixedly connected with drive rod, the outer surface of the drive rod is fixedly connected with cam, the cam is located directly below lifting plate, the inner wall of the cabinet is fixedly connected with two symmetrically arranged electric push rods, the output end of each electric push rod is fixedly connected with a horizontal plate, two The horizontal plate between fixedly connected with mold frame, the bottom surface of the mold frame is attached to the top surface of bearing plate.

[0007] It is preferred from any of the above solutions that the top surface of the bearing plate is fixedly connected with a plurality of symmetrically arranged limiting columns, a plurality of symmetrically arranged limiting holes are provided through the top surface of the mold frame, and the mold frame is slidably connected with the limiting columns through the limiting holes.

[0008] It is preferred from any of the above solutions that the bottom surface of the mold frame is fixedly connected with a sealing gasket, a sealing groove is provided in the top surface of the bearing plate, and the sealing gasket is slidably connected with the bearing plate through the sealing groove.

[0009] It is preferred from any of the above solutions that the top surface of the bearing plate is provided with two symmetrically arranged embedding grooves, two top plates are slidably connected with the bearing plate through the two embedding grooves, and the depth of the embedding grooves is equal to the thickness of the top plates.

[0010] It is preferred from any of the above solutions that a through hole is provided through the inner wall of the embedding groove, the connecting rod is slidably connected with the bearing plate through the through hole, and the plurality of connecting rods are respectively located inside the plurality of springs.

[0011] It is preferred from any of the above solutions that the inner wall of the cabinet is fixedly connected with a lifting ring, and the end of the drive rod away from the motor is rotatably connected with the lifting ring.

[0012] It is preferred from any of the above solutions that the bottom surface of each horizontal plate is fixedly connected with two symmetrically arranged guide rods, the electric push rod is located between the two guide rods, and the two guide rods are slidably connected with the cabinet.

[0013] Compared with the prior art, the utility model has the advantages and beneficial effects that:

[0014] 1、When the shaping operation of inorganic abrasive stone needs to be carried out, the appropriate amount of boron nitride powder can be added in the inside of the mold frame, then the hydraulic cylinder is started to drive the hot press plate to hot-press the boron nitride powder to form a stone plate, until the stone plate is completely formed, the electric push rod can be started to drive the mold frame to move upward, at this time the mold frame will move upward along the limiting column, the lifting of the mold frame can be guided, until the mold frame rises to the appropriate height and is separated from the stone plate, at this time the motor is started to drive the cam to rotate, until the tip of the cam is vertically upward, the lifting plate can be moved upward, the top plate can be driven to move upward through the transmission of the connecting rod, the stone plate can be lifted, the rapid demolding of the inorganic abrasive stone plate can be realized, and the production efficiency of the inorganic abrasive stone is greatly improved.

[0015] 2、After the demolding of the inorganic abrasive stone plate is completed, the motor is started to drive the driving rod to reverse, the cam can be reset through the transmission of the driving rod, the extrusion on the lifting plate can be released, the top plate can be driven to move into the embedded groove under the driving of the spring, the rapid reset of the top plate can be realized, then the electric push rod is started to drive the mold frame to move downward, until the bottom surface of the mold frame is attached to the top surface of the bearing plate, at this time the sealing gasket can be inserted into the sealing groove, the sealing performance between the mold frame and the bearing plate can be improved, and the rapid reset of the top plate and the mold frame can be realized, and the subsequent operation work will not be affected. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structure schematic view of the assembly of the utility model;

[0017] Figure 2 It is a first perspective structure schematic view of the utility model case;

[0018] Figure 3 It is a second perspective structure schematic view of the utility model case;

[0019] Figure 4 It is a third perspective structure schematic view of the utility model case;

[0020] Figure 5 It is a structure schematic view of the mold frame.

[0021] In the drawing: 1 - case, 2 - support, 3 - hydraulic cylinder, 4 - hot press plate, 5 - bearing plate, 6 - spring, 7 - lifting plate, 8 - connecting rod, 9 - top plate, 10 - motor, 11 - driving rod, 12 - cam, 13 - electric push rod, 14 - horizontal plate, 15 - mold frame, 16 - limiting column, 17 - limiting hole, 18 - sealing gasket, 19 - sealing groove, 20 - embedded groove, 21 - through hole, 22 - lifting ring, 23 - guide rod. DETAILED DESCRIPTION

[0022] The utility model is further described below with reference to the drawings, but the protection scope of the utility model is not limited to the following.

[0023] As Figures 1 to 5 As shown in a kind of inorganic grinding stone bottom surface shaping device, it includes machine case 1, the top surface of machine case 1 is fixedly connected with support 2, the top surface of support 2 is fixedly connected with hydraulic cylinder 3, the output end of hydraulic cylinder 3 is fixedly connected with hot press plate 4, the top surface of machine case 1 is fixedly connected with bearing plate 5, bearing plate 5 is in correspondence with hot press plate 4 upside and downside, the inner wall of machine case 1 is fixedly connected with several symmetrically arranged springs 6, the bottom end of several springs 6 is fixedly connected with lifting plate 7, lifting plate 7 is parallel with bearing plate 5, the top surface of lifting plate 7 is fixedly connected with several symmetrically arranged connecting rods 8, the top end of every two front and back corresponding connecting rods 8 is fixedly connected with a roof 9, roof 9 and connecting rod 8 are all slidably connected with bearing plate 5, the back of machine case 1 is fixedly connected with motor 10, the output end of motor 10 is fixedly connected with drive rod 11, the outer surface of drive rod 11 is fixedly connected with cam 12, cam 12 is located just below lifting plate 7, the inner wall of machine case 1 is fixedly connected with two symmetrically arranged electric push rods 13, the output end of each electric push rod 13 is fixedly connected with a horizontal plate 14, two horizontal plates 14 are fixedly connected with mould frame 15 between, the bottom surface of mould frame 15 is in conformity with the top surface of bearing plate 5.

[0024] As an optional technical scheme of the utility model, the top surface of bearing plate 5 is fixedly connected with several symmetrically arranged limit posts 16, the top surface of mould frame 15 is fixedly connected with several symmetrically arranged limit holes 17, mould frame 15 is slidably connected with limit post 16 through limit hole 17, mould frame 15 will move upwards along limit post 16, can guide the lifting of mould frame 15.

[0025] As an optional technical scheme of the utility model, the bottom surface of mould frame 15 is fixedly connected with sealing gasket 18, the top surface of bearing plate 5 is provided with sealing groove 19, sealing gasket 18 is slidably connected with bearing plate 5 through sealing groove 19, until the bottom surface of mould frame 15 is in conformity with the top surface of bearing plate 5, at this time, sealing gasket 18 will be inserted into sealing groove 19 inside, can improve the sealing performance between mould frame 15 and bearing plate 5.

[0026] As an optional technical scheme of the utility model, the top surface of bearing plate 5 is provided with two symmetrically arranged embedding grooves 20, two roof 9 are slidably connected with bearing plate 5 through two embedding grooves 20, the depth of embedding groove 20 is equal to the thickness of roof 9, open motor 10 drives drive rod 11 to reverse, the transmission of drive rod 11 can drive cam 12 to reset, can remove the extrusion to lifting plate 7, can drive roof 9 to move into embedding groove 20 inside under the drive of spring 6, can realize the quick reset of roof 9.

[0027] As an optional technical solution of this utility model, the inner wall of the embedded groove 20 is provided with a through hole 21, and the connecting rod 8 is slidably connected to the bearing plate 5 through the through hole 21. Several connecting rods 8 are respectively located inside several springs 6. Through the transmission of the connecting rods 8, the top plate 9 can be driven to move upward, which can lift the stone slab and realize the rapid demolding of the inorganic grinding stone slab, greatly improving the production efficiency of inorganic grinding stone.

[0028] As an optional technical solution of this utility model, a lifting ring 22 is fixedly connected to the inner wall of the casing 1, and the end of the drive rod 11 away from the motor 10 is rotatably connected to the lifting ring 22. The setting of the lifting ring 22 can make the rotation of the drive rod 11 more stable.

[0029] As an optional technical solution of this utility model, two symmetrically arranged guide rods 23 are fixedly connected to the bottom surface of each horizontal plate 14, and the electric push rod 13 is located between the two guide rods 23. Both guide rods 23 are slidably connected to the housing 1.

[0030] A shaping device for the bottom surface of an inorganic grinding stone, the working principle of which is as follows:

[0031] 1) When it is necessary to perform the shaping operation of inorganic grinding stone, an appropriate amount of boron nitride powder can be added inside the mold frame 15. Then, the hydraulic cylinder 3 is turned on to drive the hot press plate 4 to hot press the boron nitride powder to form a stone slab. After the stone slab is completely formed, the electric push rod 13 can be turned on to drive the mold frame 15 to move upward.

[0032] 2): Once the mold frame 15 rises to a suitable height, it will detach from the stone slab. At this time, the motor 10 is turned on to drive the cam 12 to rotate. After the tip of the cam 12 is vertically upward, it can push the lifting plate 7 upward. Through the transmission of the connecting rod 8, the top plate 9 can be driven upward, which can lift the stone slab and realize the rapid demolding of the inorganic stone slab.

[0033] 3): When the motor 10 is turned on, the drive rod 11 is reversed. Through the transmission of the drive rod 11, the cam 12 can be reset, which can release the pressure on the lifting plate 7. Under the drive of the spring 6, the top plate 9 can be moved into the embedded groove 20, which can realize the rapid reset of the top plate 9.

[0034] In summary, the shaping device for the bottom surface of this inorganic grinding stone allows for the following steps: When shaping the inorganic grinding stone, an appropriate amount of boron nitride powder can be added inside the mold frame 15. Then, the hydraulic cylinder 3 is activated to drive the hot press plate 4 to hot press the boron nitride powder into a stone slab. Once the stone slab is fully formed, the electric push rod 13 can be activated to move the mold frame 15 upwards. At this point, the mold frame 15 will move upwards along the limit post 16, guiding its lifting motion until it reaches a suitable height and detaches from the stone slab. Then, the motor 10 is activated to rotate the cam 12 until its tip is vertically upwards, pushing the lifting plate 7 upwards. Through the transmission of the connecting rod 8, the top plate 9 can be moved upwards, lifting the stone slab. This allows for rapid demolding of inorganic grinding stone slabs, greatly improving the production efficiency of inorganic grinding stone. After demolding, the motor 10 is turned on to drive the drive rod 11 in reverse. Through the transmission of the drive rod 11, the cam 12 can be reset, releasing the pressure on the lifting plate 7. Under the drive of the spring 6, the top plate 9 can be moved into the embedded groove 20, achieving rapid reset of the top plate 9. Then, the electric push rod 13 is turned on to drive the mold frame 15 downward until the bottom surface of the mold frame 15 is in contact with the top surface of the support plate 5. At this time, the sealing gasket 18 will be inserted into the sealing groove 19, which can improve the sealing performance between the mold frame 15 and the support plate 5, and can also achieve rapid reset of the top plate 9 and the mold frame 15 without affecting subsequent processing operations.

Claims

1. A setting device for inorganic abrasive stone floor finishing, characterized by: The utility model provides a hot pressing machine, including the cabinet (1), the top of cabinet (1) is fixedly connected with support (2), the top of support (2) is fixedly connected with hydraulic cylinder (3), the output of hydraulic cylinder (3) is fixedly connected with hot pressing plate (4), the top of cabinet (1) is fixedly connected with bearing plate (5), bearing plate (5) and hot pressing plate (4) correspond in upside and downside, the inner wall of cabinet (1) is fixedly connected with a plurality of symmetrical spring (6), the bottom of a plurality of spring (6) is fixedly connected with lifting plate (7), lifting plate (7) is parallel with bearing plate (5), the top of lifting plate (7) is fixedly connected with a plurality of symmetrical connecting rod (8), every two front and back corresponding connecting rod (8) top is fixedly connected with a roof (9), roof (9) and connecting rod (8) are all with bearing plate (5) sliding connection, the back of cabinet (1) is fixedly connected with motor (10), the output of motor (10) is fixedly connected with drive rod (11), the outer surface of drive rod (11) is fixedly connected with cam (12), cam (12) is located the just below of lifting plate (7), the inner wall of cabinet (1) is fixedly connected with two symmetrical electric push rod (13), the output of every electric push rod (13) is fixedly connected with a cross plate (14), two cross plate (14) between fixedly connected with mould frame (15), the bottom of mould frame (15) and the top of bearing plate (5) are congruent.

2. A setting device for inorganic abrasive stone floors as claimed in claim 1, characterized in that: The top of bearing plate (5) is fixedly connected with a plurality of symmetrical limit post (16), a plurality of symmetrical limit hole (17) are passed through and set up on the top of mould frame (15), and the mould frame (15) is slidably connected with the limit post (16) through the limit hole (17).

3. A device for profiling the bottom surface of an inorganic abrasive stone according to claim 2, characterized in that: The bottom of mould frame (15) is fixedly connected with a sealing gasket (18), and a sealing groove (19) is formed in the top of bearing plate (5). The sealing gasket (18) is slidably connected with the bearing plate (5) through the sealing groove (19).

4. The device for profiling inorganic abrasive stone floors according to claim 3, characterized in that: Two symmetrical embedding grooves (20) are formed in the top of bearing plate (5), and the two roof (9) is slidably connected with the bearing plate (5) through the two embedding grooves (20). The depth of the embedding groove (20) is equal to the thickness of the roof (9).

5. A device for profiling the bottom of an inorganic abrasive stone according to claim 4, characterized in that: A through hole (21) is formed in the inner wall of the embedding groove (20), and the connecting rod (8) is slidably connected with the bearing plate (5) through the through hole (21). A plurality of connecting rods (8) are respectively arranged in a plurality of springs (6).

6. A device for profiling the bottom of an inorganic abrasive stone according to claim 5, characterized in that: The inner wall of the cabinet (1) is fixedly connected with a lifting ring (22), and one end of the drive rod (11) away from the motor (10) is rotatably connected with the lifting ring (22).

7. A device for profiling the bottom of an inorganic abrasive stone according to claim 6, characterized in that: The bottom of each cross plate (14) is fixedly connected with two symmetrical guide rods (23), and the electric push rod (13) is located between the two guide rods (23). The two guide rods (23) are slidably connected with the cabinet (1).