Brick strip cutting machine

By designing a moving cutting component and an ejection component, the problem of uneven cutting surfaces caused by the cutting blade embedding in the cement blank was solved, achieving stable cutting and smooth ejection of bricks, thus improving cutting efficiency and quality.

CN223904198UActive Publication Date: 2026-02-13DACHENG COUNTY XINLEI NEW WALL MATERIALS CO LTD
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Patent Information

Application Number
CN202520395707.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-02-13
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

As the cutting blade moves downwards and cuts the pre-placed cement blank, the pre-placed cement blank moves along with the conveyor belt, causing the wire cutter to embed into the cement blank, resulting in an uneven cut surface.

Method used

The design includes a moving cutting assembly and an ejection assembly, comprising a drive screw, a cutting groove, a buffer spring, a vibration motor, and a cutting line. The drive screw controls the linear movement of the platform, and the vibration motor provides vibration cutting to ensure stable brick cutting. The ejection assembly uses an ejection cylinder, a rotating frame, and transmission gears to eject the bricks flat.

Benefits of technology

It achieves stable straight-line cutting and flat ejection of bricks, avoiding uneven cut surfaces and deformation problems, and improving cutting efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related technical field of brick making equipment, and provides a brick strip cutting machine which comprises a bottom frame and a door-shaped frame, the door-shaped frame is fixed in the bottom frame, push-out assemblies are arranged on the two sides of the door-shaped frame, a platform is arranged in the bottom frame, a movable cutting assembly is arranged on the bottom frame and the door-shaped frame, and the movable cutting assembly comprises a plurality of round rods. The round rods are fixed in the bottom frame, the platform is slidably connected to the round rods, a driving lead screw is rotationally connected into the bottom frame, and the bottom of the platform is connected with the driving lead screw in a threaded fit mode. By means of the technical scheme, the problems that in the prior art, in the process that a cutting knife moves downwards and cuts a preset cement blank, the preset cement blank still moves along with a conveying belt, a steel wire knife is prone to being embedded into the preset cement blank in the moving process in the preset cement blank, and the cement blank is damaged are solved. And the cutting surface of the cut preset brick is not flat.
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Description

TECHNICAL FIELD

[0001] The utility model relates to related technical field of brick making equipment, specifically, relate to a brick cutting machine. BACKGROUND

[0002] Common cement brick making method, usually first preset long strip's preset cement embryo, cut into a certain size preset brick through the cutting machine and then dry hardening of preset cement embryo. But because cutting knife is in the process of moving downward and cutting preset cement embryo, preset cement embryo still moves with the conveyor belt, the process of steel wire knife in preset cement embryo is easy to embed in preset cement embryo, easy to cause the preset brick cutting surface uneven of cutting down.

[0003] Therefore, the above problems are improved. CONTENT OF THE UTILITY MODEL

[0004] The utility model provides a brick cutting machine, solve because cutting knife is in the process of moving downward and cutting preset cement embryo in related art, preset cement embryo still moves with the conveyor belt, the process of steel wire knife in preset cement embryo is easy to embed in preset cement embryo, easy to cause the preset brick cutting surface uneven of cutting down.

[0005] The technical scheme of the utility model is as follows: including

[0006] Chassis and door shape frame, the door shape frame is fixed in the chassis,

[0007] Push-out assembly, the push-out assembly is arranged in both sides of the door shape frame,

[0008] Platform and mobile cutting assembly, the platform is arranged in the chassis, the mobile cutting assembly is arranged on the chassis and the door shape frame,

[0009] The mobile cutting assembly includes a plurality of round rods, the round rods are all fixed in the chassis, the platform is slidably connected on the round rods, the chassis is rotationally connected with a drive screw, and the platform bottom is connected with the drive screw through thread cooperation.

[0010] As a further technical scheme, the platform surface is provided with a plurality of cutting grooves, the inner side surface of the chassis is provided with a plurality of fixed rods, the bottom of the door shape frame is provided with a bottom groove, the bottom groove is provided with buffer springs at both ends, and the lower end of the buffer spring is provided with a connecting seat.

[0011] As a further technical scheme, the connecting seat surface is provided with a vibration motor, the connecting seat bottom surface and the chassis surface are both provided with a plurality of mounting seats, and a cutting line is connected between the upper and lower connecting seats, the cutting line corresponds in position to the cutting groove.

[0012] As a further technical solution, the door-shaped frame surface is provided with a pair of horizontal openings, a telescopic air cylinder is arranged in the horizontal opening, a pair of inner rods are arranged in the horizontal opening, a limiting baffle is slidably connected to the inner rod, and the limiting baffle is connected with the output end of the telescopic air cylinder.

[0013] As a further technical solution, the push-out assembly includes a pair of push-out air cylinders, the push-out air cylinders are fixed at both ends of the door-shaped frame surface, a connecting plate is connected with the output end of the push-out air cylinder, and a rotating frame is rotatably connected with the output end of the push-out air cylinder.

[0014] As a further technical solution, a driving motor is arranged on the surface of the connecting plate, a transmission gear is arranged on the output end of the driving motor and the rotating frame, and a push plate is arranged at one end of the rotating frame.

[0015] As a further technical solution, a notch is arranged on the upper end surface of the base frame, and a short-distance conveying belt is arranged in the notch.

[0016] As a further technical solution, a pair of limiting rods are arranged on the outer surface of the base frame, and the limiting rods are located at both ends of the short-distance conveying belt.

[0017] As a further technical solution, a plurality of shaft rollers are arranged in the short-distance conveying belt.

[0018] The working principle and beneficial effects of the utility model are as follows:

[0019] 1. The movable cutting assembly is arranged in the utility model, the driving lead screw, the cutting groove, the buffer spring, the connecting seat, the vibration motor, the mounting seat, the cutting wire, the telescopic air cylinder and the limiting baffle are interacted, the linear movement of the brick is stably controlled, the brick is cut by the continuously vibrating cutting wire during the movement, the position of the brick is not affected, and the cutting processing is stably completed.

[0020] 2. The push-out assembly is arranged in the utility model, the push-out air cylinder, the rotating frame, the transmission gear and the push plate are interacted, the push plate which can be completely attached to the brick is arranged, the whole brick is pushed to the receiving frame, and the deformation problem is not caused. DRAWINGS

[0021] The utility model will be further described in detail in combination with the drawings and specific embodiments.

[0022] Figure 1 It is a structural schematic diagram of the utility model;

[0023] Figure 2 It is an axonometric view of the utility model;

[0024] Figure 3 Another perspective view of the utility model;

[0025] Figure 4 A sectional view of the utility model;

[0026] Figure 5 Another perspective sectional view of the utility model;

[0027] Figure 6 An appendix of the utility model Figure 5 A partial enlarged view of part A;

[0028] In the figure: 1, the chassis; 2, the door-shaped frame; 3, the platform; 4, the mobile cutting assembly; 4-1, the round rod; 4-2, the driving screw; 4-3, the cutting groove; 4-4, the fixed rod; 4-5, the bottom groove; 4-6, the buffer spring; 4-7, the connecting seat; 4-8, the vibration motor; 4-9, the mounting seat; 4-10, the cutting line; 4-11, the transverse opening; 4-12, the telescopic air cylinder; 4-13, the inner rod; 4-14, the limiting baffle; 5, the push-out assembly; 5-1, the push-out air cylinder; 5-2, the connecting plate; 5-3, the rotary frame; 5-4, the driving motor; 5-5, the transmission gear; 5-6, the push plate; 6, the slot; 7, the short-distance conveying belt; 8, the limiting rod. DETAILED DESCRIPTION

[0029] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor are involved in the protection scope of the utility model.

[0030] As Figures 1-6 shown, the embodiment provides a brick strip cutting machine, which comprises

[0031] The chassis 1 and the door-shaped frame 2, the door-shaped frame 2 is fixed in the chassis 1;

[0032] The push-out assembly 5 is arranged on both sides of the door-shaped frame 2;

[0033] The platform 3 and the mobile cutting assembly 4, the platform 3 is arranged in the chassis 1, and the mobile cutting assembly 4 is arranged on the chassis 1 and the door-shaped frame 2;

[0034] The mobile cutting assembly 4 comprises a plurality of round rods 4-1 fixed in the chassis 1, the platform 3 is slidingly connected to the round rods 4-1, a driving lead screw 4-2 is rotatably connected in the chassis 1, the bottom of the platform 3 is threadedly connected to the driving lead screw 4-2, a plurality of cutting grooves 4-3 are formed in the surface of the platform 3, a plurality of fixing rods 4-4 are arranged on the inner surface of the chassis 1, a bottom groove 4-5 is formed in the bottom of the door-shaped frame 2, buffer springs 4-6 are arranged at the two ends in the bottom groove 4-5, a connecting seat 4-7 is arranged at the lower end of the buffer spring 4-6, a vibration motor 4-8 is arranged on the surface of the connecting seat 4-7, a plurality of mounting seats 4-9 are arranged on the surface of the chassis 1 and the surface of the connecting seat 4-7, a cutting wire 4-10 is connected between the mounting seats 4-9 above and below the connecting seat 4-7, the cutting wire 4-10 corresponds to the cutting grooves 4-3 in position, a pair of horizontal openings 4-11 are formed in the surface of the door-shaped frame 2, telescopic cylinders 4-12 are arranged in the horizontal openings 4-11, a pair of inner rods 4-13 are arranged in the horizontal openings 4-11, limit baffles 4-14 are slidingly connected to the inner rods 4-13, and the limit baffles 4-14 are connected to the output ends of the telescopic cylinders 4-12.

[0035] In this embodiment, in order to realize the effect of stable cutting, the mobile cutting assembly 4 is designed, a plurality of round rods 4-1 are fixed in the chassis 1, a driving lead screw 4-2 is arranged at the bottom, the platform 3 is connected to the round rods 4-1 and the driving lead screw 4-2, the platform 3 can move forward by controlling the driving lead screw 4-2, a plurality of cutting grooves 4-3 are formed in the surface of the platform 3, a bottom groove 4-5 is formed in the top of the door-shaped frame 2 and two buffer springs 4-6 are arranged inside, a connecting seat 4-7 is connected to the lower end of the buffer spring 4-6, a vibration motor 4-8 is arranged on the connecting seat 4-7, a plurality of mounting seats 4-9 are arranged on the surface of the connecting seat 4-7 and the inner surface of the chassis 1, a cutting wire 4-10 for cutting bricks is connected between the mounting seats 4-9, the cutting wire 4-10 can be vibrated in a low range by the vibration motor 4-8, the cutting effect of the cutting wire 4-10 is improved, when the platform 3 moves, the bricks can be cut at the cutting grooves 4-3 by the cutting wire 4-10, a pair of horizontal openings 4-11 are formed in the surface of the door-shaped frame 2, inner rods 4-13 and telescopic cylinders 4-12 are arranged in the horizontal openings 4-11, limit baffles 4-14 are slidingly connected to the inner rods 4-13, the limit baffles 4-14 are connected to the output ends of the telescopic cylinders 4-12, the position of the limit baffles 4-14 can be controlled by the telescopic cylinders 4-12, and the bricks can be placed in the middle.

[0036] Further, the pushing assembly 5 comprises a pair of pushing cylinders 5-1 fixed at both ends of the surface of the door-shaped frame 2, a connecting plate 5-2 connected to the output end of the pushing cylinder 5-1, a rotating frame 5-3 rotatably connected to the output end of the pushing cylinder 5-1, a driving motor 5-4 arranged on the surface of the connecting plate 5-2, and a transmission gear 5-5 arranged on the output end of the driving motor 5-4 and the rotating frame 5-3, and a pushing plate 5-6 arranged at one end of the rotating frame 5-3.

[0037] In this embodiment, in order to achieve the effect of pushing the cut brick outward and horizontally, the pushing assembly 5 is designed, two pushing cylinders 5-1 are arranged on the surface of the door-shaped frame 2, a connecting plate 5-2 is arranged at the output end of the pushing cylinder 5-1, a driving motor 5-4 is fixed on the connecting plate 5-2, a rotating block is rotatably connected to the output end of the pushing cylinder 5-1, a transmission gear 5-5 is arranged on the output end of the driving motor 5-4 and the rotating block, the rotating frame 5-3 can be controlled to rotate through the driving motor 5-4, a pushing plate 5-6 is arranged at one end of the rotating frame 5-3, the pushing plate 5-6 can be controlled to push the brick outward through the pushing cylinder 5-1, and the pushing plate 5-6 can be controlled to rotate to both sides to avoid the moving path of the platform 3, and the pushing plate 5-6 can be rotated outward by 90°.

[0038] Further, a groove 6 is formed in the upper end surface of the base frame 1, and a short-distance conveying belt 7 is arranged in the groove 6.

[0039] In this embodiment, the groove 6 is formed in the front end of the base frame 1, and the short-distance conveying belt 7 is arranged inside, so that the brick can move outward on the short-distance conveying belt 7.

[0040] Further, a pair of limiting rods 8 are arranged on the outer surface of the base frame 1, and the limiting rods 8 are located at both ends of the short-distance conveying belt 7.

[0041] In this embodiment, the pair of limiting rods 8 are arranged for positioning the receiving frame to accurately receive the brick.

[0042] Further, the shaft rollers in the short-distance conveying belt 7 are arranged in plurality.

[0043] In this embodiment, the number of shaft rollers is increased, so that the short-distance conveying belt 7 will not be deformed when conveying the brick.

[0044] When processing is needed, the brick is placed on the platform 3, the telescopic cylinder 4-12 is started, the position of the brick is corrected through the limiting baffle 4-14, the platform 3 is controlled to move linearly through the driving lead screw 4-2, the brick is cut into strips through the vibrating cutting line 4-10 when moving, after complete cutting, the driving motor 5-4 is started to control the pushing plate 5-6 to rotate to the inside, the receiving frame is moved to between the limiting rods 8, then the pushing cylinder 5-1 is started to push the brick to the frame through the pushing plate 5-6, and the brick is conveyed through the short-distance conveying belt 7 when receiving.

[0045] The above merely describes the preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A brick slitter, characterized in that, Comprising A chassis (1) and a door-shaped frame (2) fixed in the chassis (1); A push-out assembly (5) arranged on both sides of the door-shaped frame (2); A platform (3) arranged in the chassis (1) and a mobile cutting assembly (4) arranged on the chassis (1) and the door-shaped frame (2); The mobile cutting assembly (4) comprises a plurality of round rods (4-1) fixed in the chassis (1), the platform (3) is slidably connected to the round rods (4-1), and a driving lead screw (4-2) is rotatably connected in the chassis (1), and the bottom of the platform (3) is threadedly connected with the driving lead screw (4-2).

2. A brick slitter as claimed in claim 1, characterised in that, A plurality of cutting grooves (4-3) are formed on the surface of the platform (3), a plurality of fixing rods (4-4) are arranged on the inner surface of the chassis (1), a bottom groove (4-5) is formed on the bottom of the door-shaped frame (2), and a buffer spring (4-6) is arranged at both ends of the bottom groove (4-5), and a connecting seat (4-7) is arranged at the lower end of the buffer spring (4-6).

3. A brick slitter as claimed in claim 2, characterised in that, A vibration motor (4-8) is arranged on the surface of the connecting seat (4-7), a plurality of mounting seats (4-9) are arranged on the surface of the chassis (1) and the bottom surface of the connecting seat (4-7), a cutting line (4-10) is connected between the mounting seats (4-9) above and below the connecting seat (4-7), and the cutting line (4-10) corresponds in position to the cutting grooves (4-3).

4. A brick slitter as claimed in claim 3, wherein A pair of horizontal openings (4-11) are formed on the surface of the door-shaped frame (2), a telescopic air cylinder (4-12) is arranged in the horizontal opening (4-11), a pair of inner rods (4-13) are arranged in the horizontal opening (4-11), a limiting baffle (4-14) is slidably connected to the inner rod (4-13), and the limiting baffle (4-14) is connected to the output end of the telescopic air cylinder (4-12).

5. A brick slitter as claimed in claim 1, wherein, The push-out assembly (5) comprises a pair of push-out air cylinders (5-1) fixed on both ends of the surface of the door-shaped frame (2), a connecting plate (5-2) connected to the output end of the push-out air cylinder (5-1), and a rotating frame (5-3) rotatably connected to the output end of the push-out air cylinder (5-1).

6. A brick slitter as claimed in claim 5, characterised in that, A driving motor (5-4) is arranged on the surface of the connecting plate (5-2), a transmission gear (5-5) is arranged on the output end of the driving motor (5-4) and the rotating frame (5-3), and a push plate (5-6) is arranged at one end of the rotating frame (5-3).

7. A brick slitter as claimed in claim 1, wherein, A notch (6) is formed on the upper end surface of the chassis (1), and a short-distance conveying belt (7) is arranged in the notch (6).

8. A brick slitter as claimed in claim 7, characterised in that, A pair of limiting rods (8) are arranged on the outer surface of the chassis (1), and the limiting rods (8) are located at both ends of the short-distance conveying belt (7).

9. A brick slitter as claimed in claim 7, wherein, A plurality of shaft rollers are arranged in the short-distance conveying belt (7).