CN209993876U - Electric cabinet for numerical control machine tool - Google Patents
Electric cabinet for numerical control machine tool Download PDFInfo
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- CN209993876U CN209993876U CN201920783625.8U CN201920783625U CN209993876U CN 209993876 U CN209993876 U CN 209993876U CN 201920783625 U CN201920783625 U CN 201920783625U CN 209993876 U CN209993876 U CN 209993876U
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Abstract
The utility model provides an electricity cabinet for digit control machine tool, the intelligent cabinet temperature adjusting device comprises a cabinet body, the internal rear side of cabinet is equipped with the mounting panel, be equipped with the driver module on the mounting panel, power module, transformer module, temperature detect module, circuit breaker module, contactor module, terminal row module, divide into first region under to from last on the mounting panel, second area and third region, third region is from last to dividing into I subregion under to, II subregion and III subregion, the driver module is installed at first region, power module installs at first region and second region, transformer module and temperature detect module set up at the second region, circuit breaker module sets up at I subregion, contactor module installs at second region and II subregion, terminal row module sets up at I subregion and III subregion. The layout structure can improve the working efficiency, designs the relation flow chart of each module according to the type of the electric elements, and carries out step-by-step work according to the flow chart, thereby better completing the work.
Description
Technical Field
The utility model relates to an electrical equipment technical field specifically, relates to an inside layout structure of electricity cabinet for digit control machine tool.
Background
Practice shows that after an electrical schematic diagram is designed, workers are required to install and fix components according to the electrical schematic diagram, and in the process, each same machine is installed by different workers in the installation process, because each worker has own idea, when the electrical elements are installed in an electric cabinet, although the functions required by the electrical schematic diagram can be completed, in the process, different workers can install the electrical elements according to the own experience idea, so that the working efficiency is reduced, and the layout in each installation process cannot be guaranteed to be the same, so that the layout difference is large when the same machine type is installed by different workers, the subsequent maintenance work is influenced, and the retransmission work is brought.
Through the search to prior art, the invention patent with application number 201811534413.2 discloses an electrical control cabinet of digit control machine tool, including the cabinet body and fix the base in the cabinet body bottom, the cabinet body be cuboid hollow structure, be provided with the cabinet door in the front of the cabinet body, the cabinet door is to opening the door, divides left door and right door, is fixedly connected with the fixed plate at the top of the cabinet body, and one side of fixed plate is unsettled, has seted up the screw on the unsettled portion of fixed plate, fixed mounting has the air conditioner on the left door, installs temperature sensor on the left side of the internal portion of cabinet, and temperature sensor and air conditioner respectively with PLC controller electric connection. The electrical elements in the electrical cabinet are not explicitly arranged, and different workers can install the electrical elements, so that the arrangement difference is large, and the subsequent maintenance work is influenced.
SUMMERY OF THE UTILITY MODEL
To the defect among the prior art, the utility model aims at providing an inside layout structure of electricity cabinet for digit control machine tool.
According to the utility model provides an inside layout structure of electricity cabinet for numerical control machine tool, which comprises a cabinet body, wherein a mounting plate is arranged at the rear side in the cabinet body, and a driver module, a power module, a transformer module, a temperature detection module, a circuit breaker module, a contactor module and a terminal strip module are arranged on the mounting plate;
the mounting plate is divided into a first area, a second area and a third area from top to bottom, and the third area is divided into a first subarea, a second subarea and a third subarea from top to bottom;
the driver module is installed in first region, power module installs in first region and second region, transformer module and temperature detection module set up in the second region, the circuit breaker module sets up in I subregion, the contactor module is installed in second region and II subregion, the terminal row module sets up in I subregion and III subregion.
Further, the driver module comprises a C-axis driver module, a main shaft driver module, an X-axis driver module, a Y-axis driver module, a Z-axis driver module and an A-axis driver module which are sequentially arranged in the first area from left to right.
Further, the power module comprises a reactor arranged in the second area, a switch body, a fuse, an AIM module and an ALM module arranged in the first area, the switch body is arranged on the right side of the reactor, and the fuse is arranged right below the switch body.
Further, the second area sets up transformer module and temperature detection module, the transformer module includes 24V constant voltage power supply and transformer, 24V constant voltage power supply and transformer are located between reactor and the switch body, the temperature detection module includes TMCI20 module, sets up the left side at the reactor.
Further, a sensor SMC40 and an SMC20 are further arranged beside the TMCI20 module, an IO module is arranged below the TMCI20 module, a diode is arranged on the right side of the IO module and is located under the reactor, and a relay module is arranged under the transformer module.
Furthermore, the circuit breaker module comprises a single-pole air switch, a double-pole air switch and a circuit breaker which are sequentially arranged in the I-th subarea from left to right.
Further, the terminal strip module comprises a first junction box and a second junction box which are arranged in the I-th partition, and a terminal strip and a power supply inlet terminal strip which are arranged in the III-th partition.
Further, the third partition is also provided with a single-phase network meter VPM200, and the single-phase network meter VPM200 is arranged on the left side of the terminal block.
Further, the contactor module includes relay module and motor contactor module, the relay module sets up in the second region, the motor contactor module is located II subregion.
Further, the mounting plate thickness is 3mm, the width and the height of the cabinet body are 2000mm, the thickness of the cabinet body is 600mm, the fixed height of the below of the cabinet body is 100 mm's base.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the utility model discloses an inside layout structure of electricity cabinet for digit control machine tool can improve work efficiency, according to the electric elements kind, has designed the relation flow chart of each module, according to the flow chart, carries out substep work, can make the better completion of work.
2. The utility model discloses an inside layout structure of electricity cabinet for digit control machine tool, facilitate for the staff, carry out the overall arrangement to the electricity cabinet according to drawing and flow chart, install each module, the staff is to after categorised with a module, according to every electric element of drawing fixed, install in batches according to the flow chart, the product of every the same specification, all do according to this method, different people install, also can guarantee the electric element overall arrangement standard, neatly draw one, maintenance work brings very big facility to the day after, time saving, and the cost is reduced.
3. The utility model discloses an inside layout structure of electricity cabinet for digit control machine tool, the overall arrangement is categorised clear and definite, and forceful electric power and weak current are separately, and the strong module of interference nature is placed alone, reduces electromagnetic interference's influence.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a schematic structural view of the present invention;
fig. 2 is a flow chart of the connection relationship between the modules according to the present invention.
Detailed Description
The present invention will be described in detail with reference to the following embodiments. The following examples will assist those skilled in the art in further understanding the present invention, but are not intended to limit the invention in any way. It should be noted that various changes and modifications can be made by one skilled in the art without departing from the spirit of the invention. These all belong to the protection scope of the present invention.
As shown in fig. 1 and fig. 2, according to the utility model provides a pair of inside layout structure of electricity cabinet for digit control machine tool, including the cabinet body and the cabinet door of setting on the cabinet body, the internal rear side of cabinet is equipped with the mounting panel, divides into first region, second region and third region on the mounting panel from last to down, and the third region is from last to dividing into I subregion, II subregion and III subregion down. The thickness of the mounting plate is 3mm, the width and the height of the cabinet body are 2000mm, the thickness of the cabinet body is 600mm, and the lower fixed height of the cabinet body is a base of 100 mm.
The mounting plate is provided with the following modules:
the driver module comprises a C-axis driver module, a main shaft driver module, an X-axis driver module, a Y-axis driver module, a Z-axis driver module and an A-axis driver module;
the power supply module comprises a reactor, a switch body, a fuse, an AIM module and an ALM module;
the transformer module comprises a 24V stabilized voltage power supply and a transformer;
a temperature detection module comprising a TMCI20 module;
a circuit breaker module including a single pole air switch, a double pole air switch and a circuit breaker;
the contactor module comprises a relay module and a motor contactor module;
the terminal row module comprises a first junction box, a second junction box, a terminal row and a power supply incoming line terminal row.
The mounting layout of each module component is as follows:
in the first area, a C-axis driver module 1, a main shaft driver module 2, an AIM module 3, an X-axis driver module 4, a Y-axis driver module 5, a Z-axis driver module 6, an a-axis driver module 7, and an ALM module 8 are sequentially arranged from left to right.
The second area is divided into an upper layer and a lower layer, wherein the upper layer is sequentially provided with a sensor SMC20, an SMC40, a TMCI20 module, a reactor 9, a 24V stabilized voltage power supply 10, a transformer 11 and a switch body 12 from left to right; the IO module 13, the diode 14, the intermediate relay or relay module 15 and the fuse 16 are sequentially arranged on the lower layer from left to right.
The first section is provided with a first branch box 17, a second branch box 18, a single-pole air switch 19, a double-pole air switch 20 and an automatic air circuit breaker 21 from left to right.
In zone ii, a motor contactor module 22 is provided.
In the third partition, a single-phase network meter VPM200, a terminal row 23 and a power supply incoming line terminal row 24 are arranged from left to right in sequence.
The modules are different in weight, size and shape, different in function, clear in layout classification, separated in strong current and weak current, and strong in interference, and are independently placed, so that the influence of electromagnetic interference is reduced. Carry out the overall arrangement to the electricity cabinet according to drawing and flow chart, install each module, the staff is to after categorised with a module, install according to the flow chart, according to every electric element of drawing fixation, install in batches according to the flow chart, can improve work efficiency, bring the facility for the staff, the product of every same specification, all do according to this side, different people install, also can guarantee electric element layout standard, neatly mark, it is very convenient to bring the maintenance work in the future, time is saved, and cost is reduced.
If the staff can only install the layout chart and the flow chart according to the experience idea of the staff without the layout chart and the flow chart, the working efficiency is reduced, and the layout in each installation process cannot be guaranteed to be the same, so that the layout difference is large when the staff installs the same model and the staff does not need the layout chart and the flow chart, and the subsequent maintenance work is influenced.
In the description of the present application, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience in describing the present application and simplifying the description, but do not indicate or imply that the referred device or element must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present application.
The foregoing description of the specific embodiments of the invention has been presented. It is to be understood that the present invention is not limited to the specific embodiments described above, and that various changes or modifications may be made by those skilled in the art within the scope of the appended claims without departing from the spirit of the invention. The embodiments and features of the embodiments of the present application may be combined with each other arbitrarily without conflict.
Claims (10)
1. The electric cabinet for the numerical control machine tool is characterized by comprising a cabinet body, wherein a mounting plate is arranged on the rear side in the cabinet body, and a driver module, a power module, a transformer module, a temperature detection module, a circuit breaker module, a contactor module and a terminal strip module are arranged on the mounting plate;
the mounting plate is divided into a first area, a second area and a third area from top to bottom, and the third area is divided into a first subarea, a second subarea and a third subarea from top to bottom;
the driver module is installed in first region, power module installs in first region and second region, transformer module and temperature detection module set up in the second region, the circuit breaker module sets up in I subregion, the contactor module is installed in second region and II subregion, the terminal row module sets up in I subregion and III subregion.
2. The electricity cabinet for numerical control machine tool according to claim 1, wherein the driver module comprises a C-axis driver module, a main shaft driver module, an X-axis driver module, a Y-axis driver module, a Z-axis driver module and an a-axis driver module which are sequentially arranged in the first area from left to right.
3. The electric cabinet for the numerical control machine tool according to claim 1, wherein the power module comprises a reactor, a switch body and a fuse arranged in the second area, and an AIM module and an ALM module arranged in the first area, the switch body is arranged on the right side of the reactor, and the fuse is arranged right below the switch body.
4. The numerically-controlled machine tool power consumption cabinet according to claim 3, wherein a transformer module and a temperature detection module are arranged in the second area, the transformer module comprises a 24V voltage-stabilized power supply and a transformer, the 24V voltage-stabilized power supply and the transformer are located between the reactor and the switch body, and the temperature detection module comprises a TMCI20 module and is arranged on the left side of the reactor.
5. The electric cabinet for the numerical control machine tool according to claim 4, wherein sensors SMC40 and SMC20 are further arranged beside the TMCI20 module, an IO module is arranged below the TMCI20 module, a diode is arranged on the right side of the IO module, the diode is located right below the reactor, and a relay module is arranged right below the transformer module.
6. The electric cabinet for numerical control machine tool according to claim 1, wherein the breaker module comprises a single-pole air switch, a double-pole air switch and a breaker which are sequentially arranged in the I-th subarea from left to right.
7. The electric cabinet for numerical control machine tools according to claim 1, wherein the terminal block module comprises a first junction box and a second junction box arranged in the first zone, and a terminal block and a power inlet terminal block arranged in the third zone.
8. The electricity cabinet for numerical control machine tool according to claim 7, wherein the third partition is further provided with a single-phase network meter VPM200, and the single-phase network meter VPM200 is arranged at the left side of the terminal block.
9. The electric cabinet for the numerical control machine tool according to claim 1, wherein the contactor module comprises a relay module and a motor contactor module, the relay module is arranged in the second area, and the motor contactor module is located in the second zone.
10. The electric cabinet for the numerical control machine tool according to claim 1, wherein the thickness of the mounting plate is 3mm, the width and the height of the cabinet body are both 2000mm, the thickness of the cabinet body is 600mm, and a base with the height of 100mm is fixed below the cabinet body.
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CN201920783625.8U CN209993876U (en) | 2019-05-28 | 2019-05-28 | Electric cabinet for numerical control machine tool |
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CN201920783625.8U CN209993876U (en) | 2019-05-28 | 2019-05-28 | Electric cabinet for numerical control machine tool |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112672584A (en) * | 2020-11-05 | 2021-04-16 | 珠海格力电器股份有限公司 | Structure of electric cabinet and electrical equipment |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112672584A (en) * | 2020-11-05 | 2021-04-16 | 珠海格力电器股份有限公司 | Structure of electric cabinet and electrical equipment |
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