CN216139212U - Pneumatic type light fragment of brick cuts device - Google Patents

Pneumatic type light fragment of brick cuts device Download PDF

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Publication number
CN216139212U
CN216139212U CN202121939210.9U CN202121939210U CN216139212U CN 216139212 U CN216139212 U CN 216139212U CN 202121939210 U CN202121939210 U CN 202121939210U CN 216139212 U CN216139212 U CN 216139212U
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China
Prior art keywords
bearing platform
electromagnetic valve
cylinder
slide rail
synchronous belt
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CN202121939210.9U
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Chinese (zh)
Inventor
王帅
方一丰
李文祥
王为刚
曹洋
王明昭
罗乐
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Wuhan Construction Engineering Co Ltd
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Wuhan Construction Engineering Co Ltd
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Abstract

The utility model discloses a pneumatic light brick cutting device which comprises a bearing platform part and a cutting part arranged on the bearing platform part, wherein the bearing platform part comprises a lower bearing platform, a screw rod and an upper bearing platform, and the upper bearing platform is connected with the lower bearing platform through the screw rod; the cutting-off part comprises an impact cylinder, an electromagnetic valve b, a hammer, a spring and a knife switch, the impact cylinder is vertically arranged in the middle of a fixing plate, the fixing plate is arranged at the upper end of the upper bearing platform in a sliding mode, the impact cylinder is connected with the electromagnetic valve b through an air pipe, a relay b controls the electromagnetic valve b through an electric wire, an air compressor conveys compressed air to the electromagnetic valve b through the air pipe, the head of a cylinder rod of the impact cylinder is fixedly provided with the hammer, and the knife switch is arranged at the lower end of the fixing plate through the spring. The utility model adopts the slide rail to accurately control the cutting position, thereby saving trouble and time. Carry out the hammering through strikeing the cylinder and cut, can cut by quick accurate.

Description

Pneumatic type light fragment of brick cuts device
Technical Field
The utility model relates to the technical field of brick processing, in particular to a pneumatic light brick cutting device.
Background
During construction, because the size of the building brick is fixed, sometimes the brick needs to be cut into a required shape, but sometimes workers are in urgent need in time, the brick can be cut off at will and are different in size, so that the construction of the building is influenced very much, and the brick cannot be reused due to improper size, and waste is also caused. And the fragment of brick on the market cuts the device and is mostly manual adjustment data size, and although the size is suitable, transfers the size and also can waste a bit of time, so this device adopts full-automatic mode, can accurately cut, saves time.
SUMMERY OF THE UTILITY MODEL
In order to realize full-automatic brick cutting, the utility model aims to provide a pneumatic light brick cutting device, which adopts a slide rail to accurately control a cutting position and can save trouble and time. Carry out the hammering through strikeing the cylinder and cut, can cut by quick accurate.
In order to further achieve the purpose, the utility model adopts the following technical scheme: a pneumatic type light brick cutting device comprises a bearing platform part and a cutting part arranged on the bearing platform part, wherein the bearing platform part comprises a lower bearing platform, a screw rod and an upper bearing platform, and the upper bearing platform is connected with the lower bearing platform through the screw rod;
the cutting-off part comprises an impact cylinder, an electromagnetic valve b, a hammer, a spring and a knife switch, the impact cylinder is vertically arranged in the middle of a fixing plate, the fixing plate is arranged at the upper end of the upper bearing platform in a sliding mode, the impact cylinder is connected with the electromagnetic valve b through an air pipe, a relay b controls the electromagnetic valve b through an electric wire, an air compressor conveys compressed air to the electromagnetic valve b through the air pipe, the head of a cylinder rod of the impact cylinder is fixedly provided with the hammer, and the knife switch is arranged at the lower end of the fixing plate through the spring.
Optionally, the bearing platform part further comprises a clamping cylinder and an electromagnetic valve a, the clamping cylinder is arranged at the bottom of the lower bearing platform, and the clamping cylinder is connected with the electromagnetic valve a through an air pipe.
Preferably, four clamping blocks which are arranged in a rectangular shape are arranged on the upper end face of the lower bearing platform, a notch is formed in the lower bearing platform, one clamping block is fixed on the movable end of the clamping cylinder, and the clamping block can move back and forth along the notch under the action of the clamping cylinder.
Optionally, still include the slide rail part, the slide rail part includes slide rail an, slide rail b, slider a, slider b, synchronizing shaft, hold-in range a, hold-in range b and step motor, slide rail a is fixed in with slide rail b symmetry on the upper bolster, step motor is connected with the synchronizing shaft, hold-in range a pot head is in on the slide rail a gear, another pot head is in on the gear of synchronizing shaft, hold-in range b pot head is in on the slide rail b gear, another pot head is in on the gear of synchronizing shaft, slider a, slider b pass through the bolt bayonet socket and are connected with hold-in range a, hold-in range b respectively.
Optionally, the power supply b is connected with the relay b through a wire and used for supplying power to the relay b.
Optionally, the power supply a is connected with the relay a through a wire and used for supplying power to the relay a.
Compared with the prior art, the utility model has the advantages that: the slide rail is adopted to accurately control the cutting position, so that trouble and time can be saved. Carry out the hammering through strikeing the cylinder and cut, can cut by quick accurate.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the application and together with the description serve to explain the application and not to limit the application. In the drawings:
FIG. 1 is a general schematic of the present invention;
FIG. 2 is a schematic view of a portion of the platform of the present invention;
FIG. 3 is a schematic view of a portion of the slide of the present invention;
fig. 4 is a schematic view of a broken away portion of the present invention.
In the figure:
100-a platform part;
101-a lower bearing platform; 102-a clamping cylinder; 103-electromagnetic valve a; 104-a screw rod; 105-an upper deck; 106-relay a; 107-power supply a; 108-an air compressor; 109-pressure regulating valve a;
200-a sled portion;
201-slide rail a; 202-slide rail b; 203-a stepping motor; 204-synchronizing shaft; 205-slider a; 206-slider b; 207-synchronous belt a; 208-synchronous belt b;
300-a truncation;
301-impact cylinder; 302-solenoid valve b; 303-extension spring; 304-hammer; 305-a knife switch; 306-relay b; 307-power supply b; 308-a fixing plate; 309-pressure regulating valve b.
Detailed Description
The present invention will be described in further detail with reference to examples for the purpose of facilitating understanding and practice of the utility model by those of ordinary skill in the art, and it is to be understood that the present invention has been described in the illustrative embodiments and is not to be construed as limited thereto.
The pneumatic light brick cutting device provided by the embodiment, as shown in fig. 1-4, comprises a bearing platform part 100, a sliding rail part 200 and a cutting part 300, wherein:
the bearing platform part 100 comprises a lower bearing platform 101, a clamping cylinder 102, an electromagnetic valve a103, a screw rod 104 and an upper bearing platform 105, wherein the clamping cylinder 102 is installed at the bottom of the lower bearing platform 101, one end of the clamping cylinder 102 is fixed on the lower bearing platform 101, and the other end of the clamping cylinder 102 is movable and used for clamping bricks; four clamping blocks which are arranged in a rectangular shape are arranged on the upper end face of the lower bearing platform 101, a notch is formed in the lower bearing platform 101, one clamping block is fixed on the movable end of the clamping cylinder 102, and the clamping block can move back and forth along the notch under the action of the clamping cylinder 102. The clamping cylinder 102 is connected with the electromagnetic valve a103 through an air pipe, and the clamping cylinder 102 can move by adjusting the electromagnetic valve a103, so that the purpose of clamping bricks is achieved, the bricks are fixed, and the bricks are cut off more accurately; the upper bearing platform 105 is connected with the lower bearing platform 101 through the screw 104, the upper bearing platform 105 can move up and down, the distance between the upper bearing platform 105 and the lower bearing platform 101 is adjusted, and a worker can place bricks conveniently, and particularly, the upper bearing platform 105 is a frame with a hollow middle part and is used for installing the sliding rail part 200; the relay a106 controls the on-off of the electromagnetic valve a103 through an electric wire to control the work of the clamping cylinder 102, the power supply a107 supplies power to the relay a106 through an electric wire, and the air compressor 108 is connected with the pressure regulating valve a109 through an air pipe to supply compressed air to the electromagnetic valve a 103.
The slide rail part 200 comprises a slide rail a201, a slide rail b202, a slide block a205, a slide block b206, a synchronous shaft 204, a synchronous belt a207, a synchronous belt b208 and a stepping motor 203, the slide rail a201 and the slide rail b202 are symmetrically fixed on an upper bearing platform 105, the stepping motor 203 is fixedly connected with the synchronous shaft 204, one end of the synchronous belt a207 is sleeved on a gear of the slide rail a201, the other end of the synchronous belt b208 is sleeved on a gear of the slide rail b202, the other end of the synchronous belt b is sleeved on a gear of the synchronous shaft 204, the slide block a205 and the slide block b206 are respectively and fixedly connected with the synchronous belt a207 and the synchronous belt b208 through bolt bayonets, when the stepping motor 203 rotates, the synchronous shaft 204 is driven to rotate, the gear on the synchronous shaft 204 drives the synchronous belt to move, the synchronous belt a207 drives the slide block a205 to move, the synchronous belt b208 drives the slide block b206 to move, the slide rail a201 and the gear at one end of the slide rail b202 are connected through the synchronous shaft 204, so that the synchronous belt a207 and the synchronous belt b208 can move synchronously, synchronous movement of the sliding block a205 and the sliding block b206 is realized, and the stepping motor 203 controls the rotation of the synchronous shaft 204 to ensure synchronous movement of the synchronous belts on the two sliding rails, so that the sliding blocks move synchronously, and the position of the sliding blocks is controlled to accurately control the position of the cut-off part.
The cutting part 300 comprises an impact cylinder 301, an electromagnetic valve b, a hammer 304, a spring 303 and a knife switch 305, the impact cylinder 301 is connected with the electromagnetic valve b302 through an air pipe, the relay b306 controls the work of the impact cylinder 301 through the on-off of the electromagnetic valve b302 controlled by an electric wire, a power supply b307 supplies power to the relay b306 through an electric wire, an air compressor 108 is connected with a pressure regulating valve b309 through an air pipe to deliver compressed air to the electromagnetic valve b302, the head of a cylinder rod of the impact cylinder 301 is fixedly provided with the hammer 304, so that the knife switch 305 is stably hammered, the knife switch 305 is connected with a fixing plate 308 through the spring 303, the knife switch 305 can be quickly retracted after falling down, the next cutting is carried out, and the knife switch is retracted through the spring after the striking is finished, so that the effects of automatic cutting and retraction are realized.
In the utility model, the clamping cylinder 102 is a TN20X50-S double-shaft cylinder; the type of the electromagnetic valve a103 is a 4V210-08 electromagnetic valve; the type of the relay a106 is a JZX-22F small electromagnetic relay; the type of the power supply a107 is Rui si 220V outdoor mobile power supply; the air compressor 108 is a FUJ1100A air compressor; the model of the pressure regulating valve a109 is AR 2000; the model of the stepping motor 203 is a 86BYG250D stepping motor; the impact cylinder 301 is an SDA40-50 cylinder; the type of the electromagnetic valve b302 is a 4V210-08 electromagnetic valve; the type of the relay b306 is a JZX-22F small electromagnetic relay; the model of the power supply b307 is Rui si 220V outdoor mobile power supply; the model of the pressure regulating valve b309 is AR 2000.
When the brick cutting machine is used, bricks are fixed on the lower bearing platform 101 through the clamping cylinder 102, when the stepping motor 203 rotates, the sliding blocks a205 and b206 can move synchronously, so that the cutting position of the bricks can be controlled, when a cutting part moves to a place required for cutting, the impact cylinder 301 works to drive the hammer 304 fixed on the head of the cylinder to hammer the knife switch 305, and after the cutting is finished, the knife switch 305 is retracted through the spring 303, so that the falling and retraction of the knife switch can be realized.
While the foregoing is directed to the preferred embodiment of the present invention, other and further embodiments of the utility model may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow.

Claims (6)

1. The pneumatic light brick cutting device is characterized by comprising a bearing platform part and a cutting part arranged on the bearing platform part, wherein the bearing platform part comprises a lower bearing platform, a screw rod and an upper bearing platform, and the upper bearing platform is connected with the lower bearing platform through the screw rod;
the cutting-off part comprises an impact cylinder, an electromagnetic valve b, a hammer, a spring and a knife switch, the impact cylinder is vertically arranged in the middle of a fixing plate, the fixing plate is arranged at the upper end of the upper bearing platform in a sliding mode, the impact cylinder is connected with the electromagnetic valve b through an air pipe, a relay b controls the electromagnetic valve b through an electric wire, an air compressor conveys compressed air to the electromagnetic valve b through the air pipe, the head of a cylinder rod of the impact cylinder is fixedly provided with the hammer, and the knife switch is arranged at the lower end of the fixing plate through the spring.
2. The pneumatic type light brick truncation device of claim 1, wherein the bearing platform part further comprises a clamping cylinder and an electromagnetic valve a, the clamping cylinder is arranged at the bottom of the lower bearing platform, and the clamping cylinder is connected with the electromagnetic valve a through an air pipe.
3. The pneumatic type light brick cutting device according to claim 2, wherein four clamping blocks are arranged in a rectangular shape on the upper end surface of the lower bearing platform, a notch is formed in the lower bearing platform, one of the clamping blocks is fixed on the movable end of the clamping cylinder, and the clamping block can move back and forth along the notch under the action of the clamping cylinder.
4. The pneumatic light brick cutting device according to claim 1, further comprising a slide rail part, wherein the slide rail part comprises a slide rail a, a slide rail b, a slide block a, a slide block b, a synchronous shaft, a synchronous belt a, a synchronous belt b and a stepping motor, the slide rail a and the slide rail b are symmetrically fixed on the upper bearing platform, the stepping motor is connected with the synchronous shaft, one end of the synchronous belt a is sleeved on the slide rail a gear, the other end of the synchronous belt a is sleeved on the synchronous shaft gear, one end of the synchronous belt b is sleeved on the slide rail b gear, the other end of the synchronous belt b is sleeved on the synchronous shaft gear, and the slide block a and the slide block b are respectively connected with the synchronous belt a and the synchronous belt b through bolt bayonets.
5. The pneumatic light brick truncation device of claim 1, further comprising a power supply b connected to the relay b through an electric wire for supplying power to the relay b.
6. The pneumatic light brick truncation device of claim 1, further comprising a power source a connected to the relay a through an electric wire for supplying power to the relay a.
CN202121939210.9U 2021-08-18 2021-08-18 Pneumatic type light fragment of brick cuts device Active CN216139212U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121939210.9U CN216139212U (en) 2021-08-18 2021-08-18 Pneumatic type light fragment of brick cuts device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121939210.9U CN216139212U (en) 2021-08-18 2021-08-18 Pneumatic type light fragment of brick cuts device

Publications (1)

Publication Number Publication Date
CN216139212U true CN216139212U (en) 2022-03-29

Family

ID=80806603

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121939210.9U Active CN216139212U (en) 2021-08-18 2021-08-18 Pneumatic type light fragment of brick cuts device

Country Status (1)

Country Link
CN (1) CN216139212U (en)

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