Slag removal device of cubic press

By designing a slag removal device for a six-sided top press, the slag is pushed laterally to the outside from the gaps using a slag guide plate and push plate structure, solving the problem of cleaning slag inside the six-sided top press and achieving efficient removal.

CN223732695UActive Publication Date: 2025-12-30BOZHOU HUIAN DIAMOND CO LTD
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Patent Information

Application Number
CN202520283821.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-12-30
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

In a six-sided top press, the edges and corners of blocky pyrophyllite fall off under high pressure, forming residue in a semi-enclosed space that is difficult to clean effectively.

Method used

A slag removal device for a six-sided top press was designed, including a slag guide plate, an annular slag gathering trough plate, a slag pusher plate, and a traction adjustment cable. Through the synergistic action of these components, the slag is pushed laterally from the gaps to the outside, thus achieving removal.

Benefits of technology

It effectively removes residue from the semi-enclosed space inside the six-sided top press, simplifying the cleaning process and improving work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of cubic presses, and particularly relates to a deslagging device of a cubic press, which comprises six cubic press pressure ends and six cubic press telescopic mechanisms, and the outer wall of the cubic press pressure end positioned below is fixedly connected with a residue guide plate. An annular residue gathering groove plate is fixedly connected to the bottom end of the residue guiding plate, a residue discharging groove plate is fixedly connected to one side of the annular residue gathering groove plate, residue falling holes are formed in the bottom end of the residue discharging groove plate, and a plurality of residue pushing plates are installed in the annular residue gathering groove plate; the top ends of the residue push plates are fixedly connected with a traction adjusting cable; the residue guide plates distributed in a conical mode and the annular residue gathering groove plates distributed in an annular mode can intercept and collect residues falling in a semi-closed space formed by the pressure ends of the cubic presses on the basis that the structures of the pressure ends of the cubic presses are avoided, and then the residues are pushed to the side direction of the semi-closed space.
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Description

Technical Field

[0001] This utility model belongs to the technical field of six-sided top press, specifically relating to a slag removal device for a six-sided top press. Background Technology

[0002] During diamond processing, a block-shaped pyrophyllite is wrapped around the outermost part of the raw material and placed in the center of the six-sided press as a medium for conducting high temperature and high pressure. The six ends of the six-sided press apply pressure to the six sides of the block-shaped pyrophyllite. During the extrusion process, the edges of the block-shaped pyrophyllite will fall off under high pressure and fall into the interior of the six-sided press. Since the six-sided frame structure of the six-sided press is interconnected, a semi-enclosed space is formed inside, which makes it inconvenient for workers to clean the residue in the semi-enclosed space. Utility Model Content

[0003] This utility model provides a slag removal device for a six-sided top press, which can push the residue laterally into the semi-enclosed space through the gaps, effectively removing the residue in the semi-enclosed space inside the six-sided top press.

[0004] This utility model provides the following technical solution: a slag removal device for a six-sided top press, comprising six six-sided top press pressure ends and six six-sided top press telescopic mechanisms. A slag guide plate is fixedly connected to the outer wall of the lower six-sided top press pressure ends. An annular slag gathering trough plate is fixedly connected to the bottom end of the slag guide plate. A slag discharge trough plate is fixedly connected to one side of the annular slag gathering trough plate. A slag drop hole is opened at the bottom end of the slag discharge trough plate. Several slag push plates are installed inside the annular slag gathering trough plate, and traction adjustment cables are fixedly connected to the top ends of the several slag push plates.

[0005] The annular residue gathering trough plate is fixedly connected to one side of a clearance inclined plate, and the annular residue gathering trough plate is fixedly connected to the residue guide plate through the clearance inclined plate.

[0006] The bottom end of the residue guide plate is fixedly connected to a support pad, which abuts against the pressure end of the six-sided top press located below.

[0007] The inner walls of both the annular residue gathering trough and the residue discharge trough are fixedly connected to limit rails.

[0008] One end of the traction adjustment cable is fixedly connected to a spare traction cable, which extends out of the annular residue gathering trough plate.

[0009] The excess traction cable is equipped with an electric take-up roller at one end, and the excess traction cable is wound up on the outer wall of the electric take-up roller.

[0010] The residue pusher plate has a limit slider fixedly connected to its top end, and the limit slide rail is slidably connected to the limit slider.

[0011] The beneficial effects of this utility model are: by using the conically distributed residue guide plate and the annularly distributed annular residue gathering trough plate, the residue falling into the semi-enclosed space formed by the pressure ends of the multiple six-sided top presses can be intercepted and collected while avoiding the structure of the pressure ends of the multiple six-sided top presses themselves. Then, with the help of the residue push plate and the traction adjustment cable, the residue can be pushed laterally into the semi-enclosed space, which can effectively remove the residue in the semi-enclosed space inside the six-sided top press.

[0012] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 This is a top view of the present invention;

[0015] Figure 3 for Figure 1 The intention behind enlarging part A in the middle.

[0016] In the diagram: 1. Pressure end of the six-sided top press; 11. Telescopic mechanism of the six-sided top press; 2. Residue guide plate; 21. Annular residue gathering trough plate; 211. Yielding inclined plate; 22. Residue discharge trough plate; 23. Residue drop hole; 24. Support pad block; 25. Limiting slide rail; 3. Residue push plate; 31. Traction adjustment cable; 32. Residual traction cable; 33. Electric winding roller; 34. Limiting slider. Detailed Implementation

[0017] Please see Figures 1-3 The present invention provides the following technical solution: a slag removal device for a six-sided top press, comprising six six-sided top press pressure ends 1 and six six-sided top press telescopic mechanisms 11. A slag guide plate 2 is fixedly connected to the outer wall of the lower six-sided top press pressure end 1. An annular slag gathering trough plate 21 is fixedly connected to the bottom end of the slag guide plate 2. A slag discharge trough plate 22 is fixedly connected to one side of the annular slag gathering trough plate 21. A slag drop hole 23 is opened at the bottom end of the slag discharge trough plate 22. A plurality of slag push plates 3 are installed inside the annular slag gathering trough plate 21. A traction adjustment cable 31 is fixedly connected to the top of the plurality of slag push plates 3.

[0018] In this implementation scheme: the top of the residue guide plate 2 is fixedly connected to the pressure end 1 of the six-sided top press located below. The inclination angle of the residue guide plate 2 is set according to the position of the gap formed when the multiple pressure ends 1 of the six-sided top press are closed. The top of the annular residue gathering trough plate 21 is lower than the bottom height of the pressure end 1 of the six-sided top press. The residue discharge trough plate 22 extends outward from the gap formed by the four pressure ends 1 of the six-sided top press. The pressure ends 1 of the six-sided top press and the telescopic mechanism 11 of the six-sided top press will not contact the residue guide plate 2 and the annular residue gathering trough plate 21 during the movement. When the residue falls, the residue is guided into the annular residue gathering trough plate 21 by the residue guide plate 2. The operator drives the residue pusher plate 3 along the trajectory of the annular residue gathering trough plate 21 and the residue discharge trough plate 22 by traction adjustment cable 31, gradually pushing the residue to the corresponding position of the residue drop hole 23. The residue falls through the hole 23 to the outside of the six-sided top press. In actual use, a garbage bin is placed below the hole 23 to collect the residue. Multiple residue push plates 3 are stacked at the end of the residue discharge trough plate 22. The traction adjustment cable 31 between two adjacent residue push plates 3 is in a slack state. Then, the staff releases the traction on the residue push plate 3 and the traction adjustment cable 31. The traction adjustment cable 31 is reset under the action of the remaining traction cable 32 and the electric winding roller 33. Through the conical residue guide plate 2 and the annular residue gathering trough plate 21, the residue falling in the semi-enclosed space formed by the pressure ends 1 of the multiple six-sided top presses can be intercepted and collected while avoiding the structure of the pressure ends 1 of the multiple six-sided top presses. Then, with the help of the residue push plate 3 and the traction adjustment cable 31, the residue can be pushed to the side of the semi-enclosed space, which can effectively remove the residue in the semi-enclosed space inside the six-sided top press.

[0019] A clearance inclined plate 211 is fixedly connected to one side of the annular residue gathering trough plate 21. The annular residue gathering trough plate 21 is fixedly connected to the residue guide plate 2 through the clearance inclined plate 211. By setting the clearance inclined plate 211, the tilt angle of the bottom mechanism of the six-sided top press telescopic mechanism 11 can be adjusted so that the residue guide plate 2 and the annular residue gathering trough plate 21 will not be obstructed when they move with the pressure end 1 of the six-sided top press.

[0020] A support pad 24 is fixedly connected to the bottom end of the residue guide plate 2. The support pad 24 abuts against the pressure end 1 of the six-sided top press located below. By setting the support pad 24, the residue guide plate 2 can be provided with auxiliary support, increasing the strength of the residue guide plate 2 in supporting the annular residue gathering trough plate 21.

[0021] The inner walls of the annular residue gathering trough plate 21 and the residue discharge trough plate 22 are both fixedly connected to the limiting slide rail 25; by setting the limiting slide rail 25, it can be used as a limiting structure for the residue push plate 3, and the residue push plate 3 moves along the trajectory of the limiting slide rail 25.

[0022] One end of the traction adjustment cable 31 is fixedly connected to a spare traction cable 32, which extends out of the annular residue gathering trough plate 21. The spare traction cable 32 is used as an extension of the connection between the traction adjustment cable 31 and the electric winding roller 33. When the residue push plate 3 is in the predetermined position, the spare traction cable 32 is partially wound onto the electric winding roller 33. When the residue push plate 3 is pulled by the traction adjustment cable 31, the spare traction cable 32 wound by the electric winding roller 33 is gradually released.

[0023] An electric take-up roller 33 is installed at one end of the excess traction cable 32, and the excess traction cable 32 is wound around the outer wall of the electric take-up roller 33. By setting the electric take-up roller 33, the excess traction cable 32 can be wound up and down to match the adjustment requirements of the position of the residue push plate 3, so as to pull the residue push plate 3 and drive the residue push plate 3 to reset. The electric take-up roller 33 is connected to the drive motor, and the controller controls the forward and reverse rotation of the drive motor to realize the winding and unwinding of the excess traction cable 32.

[0024] The top of the residue pusher plate 3 is fixedly connected to a limiting slider 34, and the limiting slide rail 25 is slidably connected to the limiting slider 34. By setting the limiting slider 34, it can cooperate with the limiting slide rail 25 to guide and limit the residue pusher plate 3, so that the residue pusher plate 3 can move along the trajectory of the annular residue gathering trough plate 21 and the residue discharge trough plate 22, and will not detach from the annular residue gathering trough plate 21 and the residue discharge trough plate 22.

[0025] The working principle and usage process of this utility model are as follows: The top of the residue guide plate 2 is fixedly connected to the pressure end 1 of the six-sided top press located below. The inclination angle of the residue guide plate 2 is set according to the position of the gap formed when multiple pressure ends 1 of the six-sided top press are closed. The top of the annular residue gathering trough plate 21 is lower than the bottom height of the side pressure end 1 of the six-sided top press. The residue discharge trough plate 22 extends outward from the gap formed by the four pressure ends 1 of the six-sided top press. The pressure ends 1 of the six-sided top press and the telescopic mechanism 11 of the six-sided top press will not collide with the residue guide plate 2 during the movement. When the annular residue gathering trough plate 21 contacts the residue, the residue is guided into the annular residue gathering trough plate 21 by the residue guide plate 2 when it falls. The operator drives the residue push plate 3 along the trajectory of the annular residue gathering trough plate 21 and the residue discharge trough plate 22 by the traction adjustment cable 31, and gradually pushes the residue to the corresponding position of the residue drop hole 23. The residue falls from the residue drop hole 23 to the outside of the six-sided top press. Then the operator releases the traction on the residue push plate 3 and the traction adjustment cable 31. The traction adjustment cable 31 is reset under the action of the residual traction cable 32 and the electric winding roller 33.

Claims

1. A device for debriding a cubic press, comprising six cubic press pressure heads (1) and six cubic press telescopic mechanisms (11), characterized in that: The lower six -sided top press pressure end (1) outer wall fixedly connected with the residue guide plate (2), the residue guide plate (2) bottom fixedly connected with annular residue gather groove plate (21), one side of the annular residue gather groove plate (21) fixedly connected with residue discharge groove plate (22), the residue discharge groove plate (22) bottom is provided with residue falling hole (23), the annular residue gather groove plate (21) is installed with several residue push plate (3), several residue push plate (3) top fixedly connected with traction adjustment cable (31).

2. A hexagonal press apparatus according to claim 1, wherein: The annular residue gather groove plate (21) is fixedly connected with the let -by inclined plate (211) on one side, and the annular residue gather groove plate (21) is fixedly connected with the residue guide plate (2) through the let -by inclined plate (211).

3. A de-pressing device for a cubic press according to claim 1, characterized in that: The residue guide plate (2) bottom fixedly connected with support pad (24), the support pad (24) with the lower six -sided top press pressure end (1) is in contact.

4. A hexagonal press apparatus according to claim 1, wherein: The annular residue gather groove plate (21) and the residue discharge groove plate (22) inner wall are all fixedly connected with the limiting slide rail (25).

5. A hexagonal press apparatus according to claim 1, wherein: One end of the traction adjustment cable (31) is fixedly connected with the excess traction cable (32), and the excess traction cable (32) extends out of the annular residue gather groove plate (21).

6. A hexagonal press apparatus according to claim 5, wherein: One end of the excess traction cable (32) is provided with an electric winding roller (33), and the excess traction cable (32) is wound on the outer wall of the electric winding roller (33).

7. A hexagonal press apparatus according to claim 4, wherein: The residue push plate (3) top fixedly connected with the limiting slide block (34), the limiting slide rail (25) and the limiting slide block (34) are slidably connected. The residue push plate (3) top fixedly connected with the limiting slide block (34), the limiting slide rail (25) and the limiting slide block (34) are slidably connected.