CN220978977U - Laser cutting machine central control room convenient to accuse temperature - Google Patents

Laser cutting machine central control room convenient to accuse temperature Download PDF

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Publication number
CN220978977U
CN220978977U CN202322962545.8U CN202322962545U CN220978977U CN 220978977 U CN220978977 U CN 220978977U CN 202322962545 U CN202322962545 U CN 202322962545U CN 220978977 U CN220978977 U CN 220978977U
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CN
China
Prior art keywords
control room
electromechanical control
electromechanical
ventilation
cutting machine
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CN202322962545.8U
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Chinese (zh)
Inventor
陈帅宇
施慧春
王凤培
陈云之
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Jiangsu Jianwei Antong Electromechanical Equipment Manufacturing Co ltd
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Jiangsu Jianwei Antong Electromechanical Equipment Manufacturing Co ltd
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Priority to CN202322962545.8U priority Critical patent/CN220978977U/en
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Abstract

The utility model discloses a central control room of a laser cutting machine convenient for temperature control, which comprises an electromechanical control room, wherein a square ventilation port is formed in the outer wall of the electromechanical control room, a working room is arranged on the side surface of the electromechanical control room, the electromechanical control room comprises electric control equipment, a water cooling pump is arranged on the side surface of the electric control equipment, a cold row is arranged behind the electric control equipment and is connected with the inner wall of the electromechanical control room through a screw, the cold row is connected with the water cooling pump through a pipeline, a protective door is arranged on the outer side of the electromechanical control room, a first ventilation device is arranged at the top of the electromechanical control room, a second ventilation device is arranged behind the electromechanical control room, the working room comprises a working table, a round observation window is arranged on the side surface of the working table, and a square observation window is arranged on the side surface of the round observation window; the utility model has the advantage of high efficiency of electromechanical control of indoor cooling and ventilation in cutting operation.

Description

Laser cutting machine central control room convenient to accuse temperature
Technical Field
The utility model belongs to the technical field of manufacturing of central control rooms, and particularly relates to a central control room of a laser cutting machine, which is convenient to control temperature.
Background
The central control room of the laser cutting machine refers to an operation control room of the laser cutting machine, is usually located beside or above the laser cutting equipment, and is usually provided with necessary equipment such as a control panel, a computer, a monitoring device and the like of the laser cutting machine for operating and monitoring the laser cutting machine. In a central control room of the laser cutting machine, an operator can set and adjust parameters such as cutting speed, power, cutting path and the like of the laser cutting machine through a control panel or a computer so as to meet different cutting requirements. Meanwhile, through the monitoring equipment, an operator can monitor the state of the laser cutting machine in real time and check whether abnormal conditions occur in the cutting process.
The common laser cutting machine central control room is equipped with more electrical equipment generally inside, and the electrical equipment is a large amount of to outside heat dissipation in the course of the work, just can make the inside temperature of electromechanical control room rise by a wide margin in very short time, and inside equipment is long-time to be operated under high temperature environment, leads to electronic components quick ageing to influence life easily, and the shell of metal manufacturing makes the indoor temperature of electromechanical control difficult quick reduction again, uses the air conditioner to cool down not only heat to add the exchange inefficiency to the wind that the outer machine of air conditioner produced still can blow the raise dust on ground, influences work efficiency.
Disclosure of utility model
The utility model aims to provide a temperature-control-convenient central control room of a laser cutting machine, which aims to solve the problems of lower cooling and ventilation efficiency and the like of the central control room of the traditional laser cutting machine.
The utility model realizes the above purpose through the following technical scheme: including the electromechanical control room, be equipped with square ventilation mouth on the electromechanical control room outer wall, electromechanical control room side is equipped with the working chamber, the electromechanical control room includes electrical equipment, electrical equipment side is equipped with the water-cooling pump, electrical equipment is equipped with cold row at the back, cold row with electromechanical control room inner wall passes through screwed connection, cold row with the water-cooling pump passes through the pipe connection, electromechanical control room outside is equipped with the guard gate, electromechanical control room top is equipped with first ventilation unit, electromechanical control room is equipped with the second ventilation unit at the back, the working chamber includes the workstation, the workstation side is equipped with circular observation window, circular observation window side is equipped with square observation window.
Further, the first ventilation device comprises a top plate, four air inlet grids are arranged below the top plate, the four air inlet grids are arranged in a square mode, the four air inlet grids are connected with the top of the electromechanical control room and the top plate through screws, two circular mounting brackets are arranged on the inner side of the air inlet grids and penetrate through the top of the electromechanical control room and are connected through screws, a ventilation fan is arranged on the inner side of each circular mounting bracket and is connected with the corresponding circular mounting bracket through a rotating shaft, the ventilation fan is driven through a motor, a filter grid is arranged at the bottom of each circular mounting bracket, and the filter grid is connected with the corresponding circular mounting bracket through screws.
Further, the second ventilation device comprises a ventilation port sealing plate, two racks are fixedly arranged above the ventilation port sealing plate, a transmission device is arranged outside the racks and is penetrated by the racks, the transmission device is connected with the outer wall of the electromechanical control chamber through screws, two motors are arranged on the side face of the transmission device, two motor output ends are connected with the racks through gears, and the motors are connected with the transmission device through screws.
Further, the workstation includes the host computer display, the host computer display with the studio inner wall passes through the buckle to be connected, host computer display below is equipped with table surface, be equipped with the control key mouse on the table surface, the control key mouse with the host computer display passes through electric connection, the table surface below is equipped with two spliced poles, the spliced pole with studio ground reaches table surface passes through welded connection, two be equipped with the bench between the spliced pole, the bench below is fixed to be equipped with two sliding connection blocks, two the sliding connection block inboard all is equipped with the slide bar, two the slide bar with the studio inner wall passes through screwed connection.
Further, the protection door comprises two limiting sliding grooves, the two limiting sliding grooves are connected with the electromechanical control room through screws, a sliding door is arranged between the two limiting sliding grooves, sliding blocks are fixedly arranged at two ends of the sliding door and located on the inner side of the limiting sliding grooves, and square openings are formed in the side walls of the electromechanical control room at positions corresponding to the sliding door.
Furthermore, a face recognition device is fixedly arranged between the electromechanical control room and the working room.
Further, a filtering gauze is arranged in the square ventilation opening.
The beneficial effects are that: the utility model has reasonable design and has the following beneficial effects:
1. In the scheme of the utility model, the first ventilation device is arranged at the top of the electromechanical control room, clean air above the electromechanical control room can be sent into the electromechanical control room through the ventilation fan, sundries in the air can be filtered out through the air inlet grid and the filtering grid, when the temperature in the electromechanical control room is higher, the square ventilation opening is opened by lifting the ventilation opening closing plate through the motor and the transmission device, and the air sent from the upper part pushes internal hot air from the square ventilation opening to the outside, so that the hot air in the electromechanical control room can be conveniently dispersed;
2. In the scheme of the utility model, the cold row is arranged on the side surface of the electric control equipment and is close to the electric control equipment, and after the cold row is mutually close to the electric control equipment, the electric control equipment can be cooled through the water cooling pump and the cold row, so that the electric control equipment is prevented from being damaged due to overhigh temperature.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a front view of the electromechanical control chamber structure of the present utility model;
FIG. 3 is a schematic diagram of a second ventilating device according to the present utility model;
FIG. 4 is an exploded view of a first ventilating device according to the present utility model;
FIG. 5 is a schematic view of a partial structure of an electromechanical control chamber according to the present utility model;
fig. 6 is a schematic view of the working chamber structure of the present utility model.
In the figure: 1-electromechanical control room, 2-working room, 3-square ventilation port and 4-face recognition device;
11-electric control equipment, 12-water cooling pumps, 13-cold rows, 14-protective doors, 15-first ventilation devices, 16-second ventilation devices, 21-working tables, 22-round observation windows and 23-square observation windows;
141-limit sliding chute, 142-sliding door, 143-sliding block, 144-square opening, 151-top plate, 152-air inlet grid, 153-round mounting bracket, 154-ventilation fan, 155-filter grid, 161-ventilation port closing plate, 162-rack, 163-transmission device, 164-motor, 211-host display, 212-working table, 213-control keyboard and mouse, 214-connecting column, 215-stool, 216-sliding connecting block and 217-sliding rod.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
The utility model provides a laser cutting machine central control room convenient to accuse temperature that combines shown in fig. 1 through 6, including electromechanical control room 1, be equipped with square ventilation mouth 3 on electromechanical control room 1 outer wall, electromechanical control room 1 side is equipped with work room 2, electromechanical control room 1 includes electrical control equipment 11, electrical control equipment 11 side is equipped with water-cooling pump 12, electrical control equipment 11 is equipped with cold row 13 at the back, cold row 13 passes through screwed connection with electromechanical control room 1 inner wall, cold row 13 passes through pipe connection with water-cooling pump 12, electromechanical control room 1 outside is equipped with guard gate 14, electromechanical control room 1 top is equipped with first ventilation unit 15, electromechanical control room 1 is equipped with second ventilation unit 16 at the back, work room 2 includes workstation 21, workstation 21 side is equipped with circular observation window 22, circular observation window 22 side is equipped with square observation window 23.
The first ventilation device 15 includes a top plate 151, four air inlet grids 152 are arranged below the top plate 151, the four air inlet grids 152 are arranged in a square shape, the four air inlet grids 152 are connected with the top of the electromechanical control room 1 and the top plate 151 through screws, two circular mounting brackets 153 are arranged on the inner sides of the four air inlet grids 152, the two circular mounting brackets 153 penetrate through the top of the electromechanical control room 1 and are connected through screws, ventilation fans 154 are arranged on the inner sides of the two circular mounting brackets 153, the ventilation fans 154 are connected with the circular mounting brackets 153 through rotating shafts, the ventilation fans 154 are driven by motors, a filter grid 155 is arranged at the bottom of the circular mounting brackets 153, the filter grid 155 is connected with the circular mounting brackets 153 through screws, the air inlet grids 152 perform first filtration on the outside air, and the filter grid 155 performs second filtration on the outside air to prevent dust and sundries from being sent into the electromechanical control room;
The second ventilation device 16 comprises a ventilation opening sealing plate 161, two racks 162 are fixedly arranged above the ventilation opening sealing plate 161, a transmission device 163 is arranged outside the two racks 162, the transmission device 163 is penetrated by the racks 162, the transmission device 163 is connected with the outer wall of the electromechanical control chamber 1 through screws, two motors 164 are arranged on the side face of the transmission device 163, the output ends of the two motors 164 are connected with the racks 162 through gears in a transmission manner, the motors 164 are connected with the transmission device 163 through screws, and the motors 164 are linked with the racks 162 through the transmission device 163, so that the ventilation opening sealing plate 161 moves vertically, and the function of opening or sealing the square ventilation opening 3 is realized;
The workbench 21 comprises a host display 211, the host display 211 is connected with the inner wall of the working chamber 2 through a buckle, a workbench surface 212 is arranged below the host display 211, a control key mouse 213 is arranged on the workbench surface 212, the control key mouse 213 is electrically connected with the host display 211, two connecting columns 214 are arranged below the workbench surface 212, the connecting columns 214 are connected with the ground of the working chamber 2 and the workbench surface 212 through welding, a stool 215 is arranged between the two connecting columns 214, two sliding connecting blocks 216 are fixedly arranged below the stool 215, sliding rods 217 are arranged on the inner sides of the two sliding connecting blocks 216, the two sliding rods 217 are connected with the inner wall of the working chamber 2 through screws, an operator can easily perform various control operations on the workbench surface 22 through the control key mouse 213, the design of the sliding connecting blocks 226 enables the stool 225 to slide freely, the operator can adjust sitting postures and positions conveniently, and meanwhile, the space is saved;
The protective door 14 comprises two limiting sliding grooves 141, the two limiting sliding grooves 141 are connected with the electromechanical control room 1 through screws, a sliding door 142 is arranged between the two limiting sliding grooves 141, sliding blocks 143 are fixedly arranged at two ends of the sliding door 142, the sliding blocks 143 are positioned on the inner sides of the limiting sliding grooves 141, square openings 144 are formed in the side walls of the electromechanical control room 1 at positions corresponding to the sliding door 142, the limiting sliding grooves 141 are used for limiting the movement range of the sliding door 142, opening and closing of the door are guaranteed to be carried out in a set limiting range, and after the sliding door 142 is opened, the electronic control equipment 11 can be directly controlled through the square openings 144;
A face recognition device 4 is fixedly arranged between the electromechanical control room 1 and the working room 2, so that the safety performance is improved, and misoperation that irrelevant personnel open a central control room door is avoided;
the square ventilation opening 3 is internally provided with a filtering gauze to prevent external impurities from entering the electromechanical control room 1 from the square ventilation opening 3.
Working principle: when the intelligent air conditioner is used, an operator opens the door after authenticating through the face recognition device, enters the working chamber to open the host display, pulls the bench outwards from the slide rod, controls the laser cutting machine through the control key mouse, starts the water cooling pump in the electromechanical control chamber, flows water in the cold row, takes away the temperature of electric control equipment close to the cold row, starts the ventilating fan at the top, sends outside air into the electromechanical control chamber, filters sundries and dust through the air inlet grid and the filtering grid, and enables the ventilating opening sealing plate to move vertically through the transmission device and the rack, so that the square ventilating opening is opened or closed, ventilation and cooling are assisted to the electromechanical control chamber, and meanwhile, after pushing the sliding door, the electric control equipment can be directly controlled through the square opening, so that the operator is convenient to control the electric control equipment outdoors and is prevented from being influenced by high temperature.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.

Claims (7)

1. The utility model provides a laser cutting machine central control room convenient to accuse temperature, includes electromechanical control room (1), be equipped with square scavenge port (3) on electromechanical control room (1) outer wall, electromechanical control room (1) side is equipped with working chamber (2), its characterized in that: the utility model provides an electromechanical control room (1) includes electrical equipment (11), electrical equipment (11) side is equipped with water-cooling pump (12), be equipped with cold row (13) at the back of electrical equipment (11), cold row (13) with electromechanical control room (1) inner wall passes through screwed connection, cold row (13) with water-cooling pump (12) pass through the pipe connection, electromechanical control room (1) outside is equipped with guard gate (14), electromechanical control room (1) top is equipped with first ventilation unit (15), electromechanical control room (1) is equipped with second ventilation unit (16) at the back, workstation (2) are including workstation (21), workstation (21) side is equipped with circular observation window (22), circular observation window (22) side is equipped with square observation window (23).
2. The laser cutting machine central control room convenient for temperature control according to claim 1, wherein: the first ventilation device (15) comprises a top plate (151), four air inlet grids (152) are arranged below the top plate (151), the four air inlet grids (152) are arranged in a square mode, the four air inlet grids (152) are connected with the top of the electromechanical control room (1) and the top plate (151) through screws, two circular mounting brackets (153) are arranged on the inner side of the air inlet grids (152), the two circular mounting brackets (153) penetrate through the top of the electromechanical control room (1) and are connected through screws, ventilation fans (154) are arranged on the inner side of the circular mounting brackets (153), the ventilation fans (154) are connected with the circular mounting brackets (153) through shafts, the bottoms of the circular mounting brackets (153) are provided with filter grids (155), and the filter grids (155) are connected with the circular mounting brackets (153) through screws.
3. The laser cutting machine central control room convenient for temperature control according to claim 2, wherein: the second ventilation device (16) comprises a ventilation opening sealing plate (161), two racks (162) are fixedly arranged above the ventilation opening sealing plate (161), a transmission device (163) is arranged on the outer side of each rack (162), each transmission device (163) is penetrated by each rack (162), each transmission device (163) is connected with the outer wall of the electromechanical control room (1) through screws, two motors (164) are arranged on the side face of each transmission device (163), the output ends of the two motors (164) are connected with the corresponding racks (162) through gears, and the motors (164) are connected with the transmission devices (163) through screws.
4. A laser cutting machine central control room convenient for temperature control according to claim 3, characterized in that: the workbench (21) comprises a host display (211), the host display (211) is connected with the inner wall of the working chamber (2) through a buckle, a workbench surface (212) is arranged below the host display (211), a control key mouse (213) is arranged on the workbench surface (212), the control key mouse (213) is electrically connected with the host display (211), two connecting columns (214) are arranged below the workbench surface (212), the connecting columns (214) are connected with the ground of the working chamber (2) and the workbench surface (212) through welding, a stool (215) is arranged between the two connecting columns (214), two sliding connection blocks (216) are fixedly arranged below the stool (215), sliding rods (217) are arranged on the inner sides of the two sliding connection blocks (216), and the two sliding rods (217) are connected with the inner wall of the working chamber (2) through screws.
5. The laser cutting machine central control room convenient for temperature control according to claim 4, wherein: the protection door (14) comprises two limiting sliding grooves (141), the two limiting sliding grooves (141) are connected with the electromechanical control room (1) through screws, a sliding door (142) is arranged between the two limiting sliding grooves (141), sliding blocks (143) are fixedly arranged at two ends of the sliding door (142), the sliding blocks (143) are located on the inner sides of the limiting sliding grooves (141), and square openings (144) are formed in the side walls of the electromechanical control room (1) at positions corresponding to the sliding door (142).
6. The laser cutting machine central control room convenient for temperature control according to claim 5, wherein: a face recognition device (4) is fixedly arranged between the electromechanical control room (1) and the working room (2).
7. The laser cutting machine central control room convenient for temperature control according to claim 6, wherein: a filtering gauze is arranged in the square ventilation opening (3).
CN202322962545.8U 2023-11-02 2023-11-02 Laser cutting machine central control room convenient to accuse temperature Active CN220978977U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322962545.8U CN220978977U (en) 2023-11-02 2023-11-02 Laser cutting machine central control room convenient to accuse temperature

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322962545.8U CN220978977U (en) 2023-11-02 2023-11-02 Laser cutting machine central control room convenient to accuse temperature

Publications (1)

Publication Number Publication Date
CN220978977U true CN220978977U (en) 2024-05-17

Family

ID=91059698

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322962545.8U Active CN220978977U (en) 2023-11-02 2023-11-02 Laser cutting machine central control room convenient to accuse temperature

Country Status (1)

Country Link
CN (1) CN220978977U (en)

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