Transferring motor for code spraying and packaging of integrally-formed inductors
By installing an encoder in the material transfer motor of the integrated inductive inkjet packaging to identify gear speed and correct printing information, the problem of printing defects was solved, and the stability and product quality of inductive inkjet packaging were improved.
Patent Information
- Application Number
- CN202520132088.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-20
AI Technical Summary
In the current process of integrated inductive inkjet packaging, it is difficult to match the printing speed with the carrier belt running speed, resulting in long debugging time when changing content, product skewing and jamming causing poor printing, and differences in positioning hole distance affecting printing quality.
An integrated inductive inkjet printing packaging transfer motor was designed. By installing an encoder on the rear side of the transfer motor body, the rotation speed of the gears is identified and transmitted to the inkjet printer in real time for correction, ensuring the accuracy of printing speed and position. Fixed components are set to improve installation convenience.
This achieves stability and consistency in the printed content, avoids problems in the inspection process and customer complaints, and improves the product yield.
Smart Images

Figure CN223859000U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the material motor technology field, concretely relates to integrally formed inductance code spraying packaging material motor. BACKGROUND
[0002] The integrally formed inductance is an inductor, which is characterized in that the winding body is embedded in the metal magnetic powder and pressure-cast to form a seat body, has high inductance and small leakage inductance, and the design not only improves the performance of the inductance, but also makes the inductance more stable and durable in use. The code spraying and packaging process of the integrally formed inductance refers to combining the two processes of code spraying and packaging together, and the process of spraying code and packaging the inductance product by automatic equipment, that is, the code spraying and packaging machine are combined to complete the code spraying and packaging of the inductance by automatic equipment, thereby improving the production efficiency and product quality.
[0003] The existing integrally formed inductance commonly uses a code spraying and packaging process, in which the packaging machine detects that the product is placed in the carrier tape, drives the carrier tape to displace forward by a gear, and outputs a signal to the code spraying machine. The code spraying machine starts to spray on the surface of the product after receiving the trigger signal. During the spraying process, the carrier tape moves forward, otherwise the sprayed content cannot be expanded and will be squeezed into a line. Therefore, the spraying speed of the code spraying machine and the running speed of the carrier tape of the packaging machine must be matched with each other, so that the sprayed content is consistent in size, continuous in words, and non-deformed. Therefore, in actual application, the following problems exist: 1. When the sprayed content is replaced, the running speed of the carrier tape of the packaging machine and the spraying speed of the code spraying machine need to be adjusted constantly to find the best balance point, which consumes a long time; 2. When the product is placed in the carrier tape of the packaging machine, occasionally, the product cannot be placed smoothly in the carrier tape due to the jamming phenomenon, and at this time, if the running speed of the carrier tape is slowed down, the sprayed content will become smaller, resulting in poor code spraying; 3. The displacement distance of the carrier tape is set based on the carrier tape positioning hole, and if there is a slight difference in the hole distance of the individual carrier tape positioning hole, the displacement distance will change, which will also cause poor code spraying of the product, causing problems in the subsequent inspection process or customer complaints. Therefore, the utility model provides an integrally formed inductance code spraying and packaging material motor. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing an integrally formed inductance code spraying and packaging material motor to solve the problem of poor code spraying caused by the change in speed due to the jamming of the motor or the difference in the positioning hole distance when the inductor detects that the product is placed in the carrier tape during operation.
[0005] In order to achieve the above object, the utility model provides the following technical scheme: The integral forming inductance code spraying packaging material -turning motor, including material -turning motor body, the rear side of material -turning motor body is installed with encoder, the encoder is composed of wire, cover, end cover, rotating shaft, the end cover is installed in the end of cover, the wire is installed in the side of cover, the rotating shaft is installed in the end of end cover, the junction of end cover and cover is provided with fixed assembly, the fixed assembly is composed of fixed groove, limit sliding part, the fixed groove is opened in the end of cover, the limit sliding part sets up in the engagement of cover and end cover.
[0006] Preferably, the limit sliding part is composed of a limit sliding groove and a limit sliding block, the limit sliding groove is opened in the inner wall of the cover, the limit sliding block is fixed to the surface of the end cover, and the limit sliding block and the limit sliding groove are in an engagement state.
[0007] Preferably, the length of the limit sliding block is consistent with the length of the limit sliding groove.
[0008] Preferably, the end of the cover is fixed with a silica gel seat, and the cross section of the silica gel seat is in a circular structure.
[0009] Preferably, the inside of the cover is provided with a circuit board, and the bottom end of the circuit board and located inside the cover is provided with a code disc.
[0010] Preferably, the material -turning motor body is composed of a main body, an end cover and a shaft rod, the end cover is arranged on the front side of the main body, and the shaft rod is arranged on the end of the end cover.
[0011] Preferably, mounting holes are arranged at the junction of the main body and the end cover, and bolts are arranged in the inside of the mounting holes.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] The encoder is arranged at the end of the material -turning motor body, the rotating speed of the gear is recognized by the encoder, then the recognized position and speed information are transmitted to the code spraying machine, the speed and position are corrected in real time by the code spraying machine, and the spraying information is given according to the corrected recognized speed and position, so that no matter the running speed of the equipment changes or the equipment position is inaccurate due to external factors, appropriate font information can be sprayed, the inspection process is not disturbed, and the product yield is improved. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the structural schematic view of the utility model;
[0015] Figure 2 It is the encoder, material rotating motor body installation schematic view of the utility model;
[0016] Figure 3 It is the cover, end cover installation schematic view of the utility model;
[0017] Figure 4 It is the A part area amplification schematic view in the utility model Figure 3 ;
[0018] Figure 5 It is the cover end amplification schematic view of the utility model;
[0019] In the drawing: 1, material rotating motor body; 11, main body; 12, end cover; 13, shaft; 2, encoder; 21, electric wire; 22, cover; 221, fixed groove; 2210, silica gel seat; 222, limit sliding part; 2221, limit sliding groove; 2222, limit sliding block; 23, end cover; 24, rotating shaft. Specific implementation
[0020] The technical scheme in the utility model embodiment will be clearly and completely described below with the drawings in the utility model embodiment, obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the scope of the utility model protection.
[0021] Embodiment 1
[0022] Please refer to Figures 1 to 4The utility model provides a kind of technical scheme: integrated inductive code spraying packaging material rotating motor, including material rotating motor body 1, encoder 2 is installed in the back of material rotating motor body 1, encoder 2 is composed of electric wire 21, cover 22, end cover 23, rotating shaft 24, gear rotation speed is identified by encoder 2, then the position and speed information identified are transmitted to code spraying machine, and code spraying machine carries out real-time correction to speed and position, and after correction, it gives out printing information according to the speed and position identified after correction, end cover 23 is installed at the end of cover 22, electric wire 21 is installed at the side of cover 22, rotating shaft 24 is installed at the end of end cover 23, fixed assembly is provided at the joint of end cover 23 and cover 22, fixed assembly is composed of fixed groove 221 and limiting sliding part 222, fixed groove 221 is opened in the end of cover 22, limiting sliding part 222 is arranged at the clamping position of cover 22 and end cover 23, by the designed encoder 2, improve the original integrated inductive code spraying packaging operation process, when inductor detects that product is placed into carrier tape, gear is driven by material collecting motor, gear is stuck in carrier tape positioning hole and displaces forward, and the speed changes due to motor jam or the difference of positioning hole distance when displacing, and it is easy to cause printing defect, by setting encoder 2 at the end of material rotating motor body 1, gear rotation speed is identified by encoder 2, then the position and speed information identified are transmitted to code spraying machine, and code spraying machine carries out real-time correction to speed and position, and after correction, it gives out printing information according to the speed and position identified after correction, can ensure that the running speed of equipment changes or the equipment position is not accurate due to external factors, and suitable font information can be printed out, avoid inspection process trouble and complaint problem, improve product yield, and by setting fixed assembly at the joint of cover 22 and end cover 23, the installation convenience between the two is increased, limiting sliding part 222 is composed of limiting sliding groove 2221 and limiting sliding block 2222, limiting sliding groove 2221 is opened in the inner wall of cover 22, limiting sliding block 2222 is fixed to the surface of end cover 23, limiting sliding block 2222 and limiting sliding groove 2221 are in clamping state, the length of limiting sliding block 2222 is consistent with the length size of limiting sliding groove 2221, circuit board is arranged on the inner side of cover 22, code disc is arranged at the bottom end of circuit board and on the inner side of cover 22, material rotating motor body 1 is composed of main body 11, end cover 12 and shaft rod 13, end cover 12 is arranged at the front side of main body 11, shaft rod 13 is arranged at the end of end cover 12, mounting hole is opened at the joint of main body 11 and end cover 12, and bolt is penetrated in the inner side of mounting hole.
[0023] Example 2
[0024] Please refer to Figures 1 to 5The utility model provides a technical scheme: integrated inductive code spraying packaging material -turning motor, including material -turning motor body 1, the rear side of material -turning motor body 1 is installed with encoder 2, encoder 2 is by wire 21, cover 22, end cover 23, rotating shaft 24 is composed, the gear rotation speed is identified through encoder 2, then the position and speed information of identification are delivered to code spraying machine, and the code spraying machine carries out real -time correction to speed and position, gives the printing information according to the speed and position of identification after correction after correction, end cover 23 is installed at the end of cover 22, wire 21 is installed at the side of cover 22, rotating shaft 24 is installed at the end of end cover 23, and the junction of end cover 23 and cover 22 is provided with fixed assembly, and fixed assembly is composed of fixed groove 221, limit sliding part 222, fixed groove 221 is opened in the end of cover 22, and limit sliding part 222 is arranged at the clamping place of cover 22 and end cover 23, through the encoder 2 of design, improve the integrated inductive code spraying packaging operation process, when the inductor detects that the product is put into the carrier tape, then the material -turning motor drives the gear, and the gear is stuck in the carrier tape positioning hole and displaces forward, and the speed changes due to the difference of motor jam or positioning hole distance when displacement, which is easy to cause printing defect, through the encoder 2 setting at the end of material -turning motor body 1, the gear rotation speed is identified through encoder 2, then the position and speed information of identification are delivered to code spraying machine, and the code spraying machine carries out real -time correction to speed and position, gives the printing information according to the speed and position of identification after correction after correction, can ensure that the running speed of equipment or the equipment position inaccuracy caused by external factors, all can print out suitable font information, avoid the inspection process trouble and customer complaint problem, improve product yield, and through the fixed assembly setting at the junction of cover 22 and end cover 23, increase the installation convenience between the two, limit sliding part 222 is composed of limit sliding groove 2221, limit sliding block 2222, limit sliding groove 2221 is opened in the inner wall of cover 22, limit sliding block 2222 is fixed to the surface of end cover 23, limit sliding block 2222 and limit sliding groove 2221 are in the clamping state, the length of limit sliding block 2222 is consistent with the length size of limit sliding groove 2221, the end of cover 22 is fixed with silica gel seat 2210, the cross section of silica gel seat 2210 is circular structure, and silica gel seat 2210 is silica gel material, through silica gel seat 2210, the junction of cover 22 and end cover 23 increases sealing structure, improves the sealing property of encoder 2 when using.
[0025] The working principle and use process of the utility model: in the integrated inductive code spraying package operation process, the gear rotation speed is identified through the encoder 2, then the identified position and speed information is transmitted to the code spraying machine, the code spraying machine carries out real-time correction to the speed and position, after correction, the spraying information is given according to the corrected identified speed and position, can ensure that no matter the running speed change of equipment or the equipment position inaccuracy caused by external factors, the appropriate font information can be sprayed out;When the outer cover 22 and the end cover 23 need to be assembled, the end of the end cover 23 is preliminarily clamped into the inner side of the outer cover 22, due to the non-alignment state of the limiting sliding groove 2221 and the limiting sliding block 2222 between the end cover 23 and the outer cover 22, the end of the end cover 23 is preliminarily clamped into the inner side of the fixing groove 221 opened at the end of the outer cover 22, then the end cover 23 is rotated, and the end cover 23 is synchronously pressed forward, when the limiting sliding groove 2221 and the limiting sliding block 2222 are aligned, the limiting sliding block 2222 is clamped into the inner side of the limiting sliding groove 2221, the clamping operation of the outer cover 22 and the end cover 23 is completed, at this moment, the multiple holes between the two are in the alignment state, then the bolt is penetrated through the hole, the assembly operation of the encoder 2 is completed.
[0026] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. An integrally formed inductance code printing packaging material rotating motor, comprising a rotating motor body (1), characterized in that: The rear side of the material transferring motor body (1) is provided with an encoder (2), which is composed of a wire (21), an outer cover (22), an end cover (23) and a rotating shaft (24), the end cover (23) is installed at the end of the outer cover (22), the wire (21) is installed at the side of the outer cover (22), the rotating shaft (24) is installed at the end of the end cover (23), a fixing assembly is arranged at the connection between the end cover (23) and the outer cover (22), and the fixing assembly is composed of a fixing groove (221) and a limiting sliding piece (222), the fixing groove (221) is arranged at the end of the outer cover (22), and the limiting sliding piece (222) is arranged at the clamping position of the outer cover (22) and the end cover (23).
2. The integrally formed inductance inkjet package transfer motor of claim 1, wherein: The limiting sliding piece (222) is composed of a limiting sliding groove (2221) and a limiting sliding block (2222), the limiting sliding groove (2221) is arranged at the inner wall of the outer cover (22), and the limiting sliding block (2222) is fixed to the surface of the end cover (23), and the limiting sliding block (2222) and the limiting sliding groove (2221) are in clamping state.
3. The integrally formed inductance inkjet package transfer motor of claim 2, wherein: The length of the limiting sliding block (2222) is consistent with the length of the limiting sliding groove (2221).
4. The integrally formed inductance inkjet package transfer motor of claim 1, wherein: The end of the outer cover (22) is fixedly provided with a silica gel seat (2210), and the silica gel seat (2210) has a circular structure in cross section.
5. The integrally formed inductance inkjet package transfer motor of claim 1, wherein: The inner side of the outer cover (22) is provided with a circuit board, and the bottom end of the circuit board and the inner side of the outer cover (22) are provided with a code disc.
6. The integrally formed inductance inkjet package transfer motor of claim 1, wherein: The material transferring motor body (1) is composed of a main body (11), an end cover (12) and a shaft rod (13), the end cover (12) is arranged at the front side of the main body (11), and the shaft rod (13) is arranged at the end of the end cover (12).
7. The integrally formed inductance inkjet package transfer motor of claim 6, wherein: Mounting holes are arranged at the connection between the main body (11) and the end cover (12), and bolts are arranged in the mounting holes.