CN211653928U - Learning device for casting process flow - Google Patents

Learning device for casting process flow Download PDF

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Publication number
CN211653928U
CN211653928U CN201921545891.3U CN201921545891U CN211653928U CN 211653928 U CN211653928 U CN 211653928U CN 201921545891 U CN201921545891 U CN 201921545891U CN 211653928 U CN211653928 U CN 211653928U
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China
Prior art keywords
rfid
process flow
learning device
main part
casting process
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CN201921545891.3U
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Chinese (zh)
Inventor
申长龙
张庆涛
高圣
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Qingdao Banghe Foundry Co ltd
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Qingdao Banghe Foundry Co ltd
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Abstract

The utility model discloses a learning device for casting process flow, which comprises a main body and an RFID label, the front end of the main body is provided with a charging indicator light, a touch display screen and a power supply button, the bottom of the main body is provided with a loudspeaker and a charging port, the top of the main body is provided with an RFID reader-writer, the right end of the main body is provided with a USB interface, the rear end of main part is provided with the cover, the lower extreme of cover is provided with the thermovent, the inside of main part comprises PLC, signal processing circuit, battery, WIFI module, 4/5G communication module, RFID read write line and memory etc. the utility model discloses use RFID radio frequency identification technique as the rationale, the staff of conveniently just going into the mill combines on-the-spot process flow or the more audio-visual understanding of equipment to study, compares the effect of studying from books, PPT or computer video better, understands more thoroughly.

Description

Learning device for casting process flow
Technical Field
The utility model relates to a casting machinery specifically is a learning device for casting process flow.
Background
The RFID technology is also called radio frequency identification technology, and its principle is that a reader and a tag perform non-contact data communication to achieve the purpose of identifying a target. The application of RFID is very wide, and the typical applications at present include animal wafer, automobile wafer burglar alarm, entrance guard control, parking lot control, production line automation and material management. At present, RFID technique is applied to the study of technology factory flow among the mechanical factory seldom, and the staff of just going into the factory learns to know cast technology flow or equipment operation explanation through forms such as document, PPT, books, computer video, and its study is bored, and learning efficiency is lower, understands thoroughly inadequately, in order to solve the problem that above-mentioned exists, the utility model discloses a learning device for casting technology flow.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the current RFID technique and rarely being applied to the study of technology factory flow among the mechanical factory in, the staff of just going into the mill learns to know cast process flow or equipment operation explanation through forms such as document, PPT, books, computer video basically, and it learns bored, and learning efficiency is lower, understands shortcoming such as thorough inadequately, and provides a learning device for the casting process flow.
In order to achieve the above object, the utility model provides a following technical scheme: including main part and RFID label, the front end of main part is provided with charge indicator, touch display screen and power button, the bottom of main part is provided with the speaker and charges the mouth, the top of main part is provided with the RFID read write line, the right-hand member of main part is provided with the USB interface, the rear end of main part is provided with the cover, the lower extreme of cover is provided with the thermovent, the inside of main part comprises PLC, signal processing circuit, battery, WIFI module, 4/5G communication module, RFID read write line and memory etc..
Preferably, the cover is fixed with the main part through the screw, and the cover is the integrated into one piece structure with the thermovent, and the thermovent dispels the heat for the inside electrical components of main part, and the cover facilitates the use mould batch production with the thermovent structure as an organic whole.
Preferably, the signal processing circuit is electrically connected with the touch display screen, the loudspeaker, the storage battery, the WIFI module, the 4/5G communication module, the RFID reader-writer and the memory respectively by taking the PLC as a center, the PLC is programmed to work through the programmer, and the PLC is connected with the electrical element in the main body through the signal processing circuit so as to control the work and the operation of the electrical element.
Preferably, the battery respectively with charge mouthful and charge indicator for electric connection, through the mouth that charges to the battery repeatedly cycle uses, charge indicator lets the more audio-visual charged state of understanding this moment of people.
Preferably, the memory is electrically connected with the USB interface, the RFID reader reads information in the RFID chip after sensing the RFID tag, then the content is displayed on the touch display screen, and related videos or information can be directly downloaded after the USB interface is plugged with a USB flash disk, so that staff can conveniently play back and learn.
Preferably, the WIFI module and the 4/5G communication module are both connected with the cloud platform through wireless signals, and when the content in the RFID tag is found to be wrong or needs to be updated, the WIFI module and the 4/5G communication module are connected with the cloud platform system to send out signals, so that the background can modify or update the content in the corresponding RFID chip in time.
Preferably, the RFID reader is connected with the RFID tag through a radio frequency signal, and after the RFID reader is in non-contact induction with the RFID tag, the RFID reader reads the content in the RFID chip in the RFDI tag, and the content is put on the touch display screen through the PLC.
Preferably, an RFID chip is arranged inside the RFID tag, an equipment name or a process name is printed outside the RFID tag, the process or an equipment operation guide is stored in the RFID chip, the corresponding RFID tag is adhered to the corresponding equipment or process line, the name outside the RFID tag is convenient for visual search, and the RFID chip inside the RFID tag is used for storing corresponding information and is in radio frequency signal connection with an RFID reader-writer.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses use RFID radio frequency identification technique as the rationale, introduce the mill study with the RFID technique, the staff that conveniently just goes into the mill combines on-the-spot process flow or the more audio-visual understanding study of equipment, compares the effect of studying from books, PPT or computer video better, and learning efficiency is higher, understands more thoroughly.
Drawings
Fig. 1 is a work flow framework diagram of the present invention.
Fig. 2 is a schematic top view of the main body of the present invention.
Fig. 3 is a schematic view of the main body of the present invention.
Fig. 4 is a right side view structure diagram of the main body of the present invention.
Fig. 5 is a schematic bottom view of the main body of the present invention.
Fig. 6 is a rear view structure diagram of the main body of the present invention.
Fig. 7 is a schematic structural diagram of the RFID tag of the present invention.
In the figure: the intelligent charging system comprises a main body, a 2-touch display screen, a 3-power button, a 4-charging port, a 5-loudspeaker, a 6-RFID reader-writer, a 7-USB interface, an 8-machine cover, a 9-heat dissipation port, a 10-RFID tag, a 11-PLC, a 12-signal processing circuit, a 13-storage battery, a 14-WIFI module, a 15-4/5G communication module, a 16-RFID chip, a 17-storage and an 18-charging indicator lamp.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-7, the present invention provides a technical solution: including main part 1 and RFID label 10, the front end of main part 1 is provided with charge indicator 18, touch display screen 2 and power button 3, the bottom of main part 1 is provided with speaker 5 and charging mouth 4, the top of main part 1 is provided with RFID read write line 6, the right-hand member of main part 1 is provided with USB interface 7, the rear end of main part 1 is provided with cover 8, the lower extreme of cover 8 is provided with thermovent 9, the inside of main part 1 comprises PLC11, signal processing circuit 12, battery 13, WIFI module 14, 4/5G communication module 15, RFID read write line 6 and memory 17 etc. cover 8 is fixed mutually with main part 1 through the screw, cover 8 and thermovent 9 are integrated into one piece structure, thermovent 9 dispels the heat for the electrical components of main part 1 inside, cover 8 and thermovent 9 are structure as an organic whole, facilitate the use mould batch production, the signal processing circuit is respectively and electrically connected with the touch display screen 2, the loudspeaker 5, the storage battery 13, the WIFI module 14, the 4/5G communication module 15, the RFID reader-writer 6 and the memory 17 by taking a PLC11 as a center, the PLC11 is subjected to work programming through a programmer, the PLC11 is connected with electrical components in the main body 1 through the signal processing circuit 12 so as to control the work and the operation of the electrical components, the storage battery 13 is respectively and electrically connected with the charging port 4 and the charging indicator lamp 18, the storage battery 13 is charged through the charging port 4 and can be repeatedly recycled, the charging indicator lamp 18 enables a person to more intuitively know the charging state at the moment, the memory 17 is electrically connected with the USB interface 7, the RFID reader-writer 6 senses the RFID label 10 and then interprets the information in the RFID chip 16 and then presents the content on the touch display screen 2, and related videos or information can be directly downloaded after the USB interface 7 is plugged with a U disk, the WIFI module 14 and the 4/5G communication module 15 are both connected with a cloud platform through wireless signals, when the content in the RFID tag 10 is found to be wrong or needs to be updated, the WIFI module 14 and the 4/5G communication module 15 are connected with the cloud platform system to send out signals, a background is enabled to modify or update the content in the corresponding RFID chip 16 in time, the RFID reader-writer 6 is connected with the RFID tag 10 through a radio frequency signal, after the RFID reader-writer 6 and the RFID tag 10 are subjected to non-contact induction, the RFID reader-writer 6 reads the content in the RFID chip 16 in the RFDI tag 10, the content is put into the touch display screen 2 through the PLC11, a user can learn more intuitively according to the on-site process flow or equipment operation and can understand the RFID chip 16 conveniently, the equipment name or the process flow name is printed outside the RFID tag 10, the process flow or the equipment operation guide is stored in the RFID chip 16, the corresponding RFID label 10 is adhered to the corresponding equipment or the process flow line, the name of the outside of the RFID label 10 is convenient for visual search, and the RFID chip 16 in the RFID label 10 is used for storing the corresponding information and is in radio frequency signal connection with the RFID reader-writer 6.
The utility model discloses a theory of operation does: pasting the RFID label 10 to a corresponding device or a process flow line according to the name of the RFID label 10, taking the main body 1 to the corresponding RFID label 10 accessory, turning on the power button 3, aligning the RFID reader-writer 6 to the RFID label 10, after the RFID reader-writer 6 and the RFID label 10 are in non-contact induction, after the RFID reader-writer 6 interprets the content in the RFID chip 16 in the RFDI label 10, sending a signal to the PLC11 through the signal processing circuit 12, after the PLC11 receives the signal, putting related information or related video on the touch display screen 2, the user can learn by combining the operation of field devices or process flows, the understanding is more thorough, the user can insert a USB flash disk at the USB interface 7 according to the own needs, download the corresponding information for reviewing and learning, when the content in the RFID label 10 is found to be wrong or needs to be updated, the user can send a signal by connecting the WIFI module 14 and the 4/5G communication module 15 with a cloud platform system, the background is enabled to modify or update the content in the corresponding RFID chip 16 in time.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention 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.

Claims (8)

1. A learning device for a casting process flow comprises a main body (1) and an RFID tag (10), and is characterized in that: the front end of main part (1) is provided with charge indicator (18), touch display screen (2) and power button (3), the bottom of main part (1) is provided with speaker (5) and mouthful (4) that charge, the top of main part (1) is provided with RFID read write line (6), the right-hand member of main part (1) is provided with USB interface (7), the rear end of main part (1) is provided with cover (8), the lower extreme of cover (8) is provided with thermovent (9), the inside of main part (1) comprises PLC (11), signal processing circuit (12), battery (13), WIFI module (14), 4/5G communication module (15), RFID read write line (6) and memory (17) etc..
2. The learning device for the casting process flow according to claim 1, wherein: the cover (8) is fixed with the main body (1) through screws, and the cover (8) and the heat dissipation port (9) are of an integrally formed structure.
3. The learning device for the casting process flow according to claim 1, wherein: the signal processing circuit is electrically connected with the touch display screen (2), the loudspeaker (5), the storage battery (13), the WIFI module (14), the 4/5G communication module (15), the RFID reader-writer (6) and the memory (17) respectively by taking the PLC (11) as a center.
4. The learning device for the casting process flow according to claim 1, wherein: the storage battery (13) is electrically connected with the charging port (4) and the charging indicator lamp (18) respectively.
5. The learning device for the casting process flow according to claim 1, wherein: the memory (17) is electrically connected with the USB interface (7).
6. The learning device for the casting process flow according to claim 1, wherein: WIFI module (14) and 4/5G communication module (15) are connected with the cloud platform through wireless signals.
7. The learning device for the casting process flow according to claim 1, wherein: the RFID reader-writer (6) is connected with the RFID label (10) through a radio frequency signal.
8. The learning device for the casting process flow according to claim 1, wherein: an RFID chip (16) is arranged inside the RFID label (10), and an equipment name or a process name is printed outside the RFID label (10).
CN201921545891.3U 2019-09-18 2019-09-18 Learning device for casting process flow Active CN211653928U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921545891.3U CN211653928U (en) 2019-09-18 2019-09-18 Learning device for casting process flow

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921545891.3U CN211653928U (en) 2019-09-18 2019-09-18 Learning device for casting process flow

Publications (1)

Publication Number Publication Date
CN211653928U true CN211653928U (en) 2020-10-09

Family

ID=72682175

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921545891.3U Active CN211653928U (en) 2019-09-18 2019-09-18 Learning device for casting process flow

Country Status (1)

Country Link
CN (1) CN211653928U (en)

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