Novel self-diagnosis sensor of packaging machine

By combining a motor, transmission rod, active bevel gear, and protective cover design, the problem of inconvenient disassembly and assembly of traditional self-diagnostic sensors is solved, enabling rapid disassembly and assembly, efficient fault diagnosis, and improved service life.

CN223672994UActive Publication Date: 2025-12-16JINAN DELIO AUTOMATION EQUIPMENT CO LTD
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Patent Information

Application Number
CN202423003034.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-12-16
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Traditional self-diagnostic sensors are inconvenient to connect to packaging machines, and disassembly and assembly operations are not conducive to rapid maintenance.

Method used

A novel self-diagnostic sensor for packaging machines was designed, employing a combination structure of a motor, transmission rod, active bevel gear, driven bevel gear, lead screw, and external thread, along with a limit slider and tension spring, to achieve rapid sensor assembly and disassembly. Simultaneously, the use of an operating block, interactive groove, limit cavity, and spring facilitates the removal and installation of the protective cover, thus protecting the sensor.

Benefits of technology

It enables rapid sensor assembly and disassembly and protection, improves service life, and enables efficient fault diagnosis through the detection value, matrix, and fault degree acquisition modules.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel self-diagnosis sensor of a packing machine, which comprises a self-diagnosis sensor body, a clamping rod, a moving cylinder and an external thread, the upper surface of the self-diagnosis sensor body is connected with a mounting seat, the lower surface of the mounting seat is connected with an assembling seat, and the assembling seat is sleeved outside the joint of the self-diagnosis sensor body and the mounting seat. A motor, a transmission rod, a driving bevel gear, a driven bevel gear, a lead screw and an external thread are arranged and matched with a limiting sliding block to guide and slide along a limiting sliding groove, so that an auxiliary moving barrel can be limited to linearly move along the external thread, and the distance between two clamping rods is adjusted to be matched with a preset hole site in the mounting position of the packaging machine and the specification of the whole body; and the expansibility of the tension spring is matched with the guide block to guide and slide along the guide groove, so that the clamping rod can be clamped with the assembly preset hole position for a long time, and the quick disassembly and assembly operation of the sensor is realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to packing machine technical field, concretely is a novel self -diagnostic sensor of packing machine. BACKGROUND

[0002] The bag type packing machine is a kind of machine for packing bulk goods or granular goods, mainly utilizes automatic technology and packing material to seal goods in bag, to keep the freshness, hygiene and shelf life of goods, can improve the packing quality and work efficiency of goods, is one of indispensable automatic packing equipment.

[0003] Traditional self-diagnostic sensors mostly choose direct integration with packing machine or utilize fastener assembly mode, dismounting operation is not enough convenient, is not conducive to subsequent quick disassembly and overhauls operation, and urgently needs to be developed. UTILITY MODEL CONTENT

[0004] The utility model is to provide a novel self-diagnostic sensor of packing machine to solve the problems in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme: a novel self-diagnostic sensor of packing machine, including self-diagnostic sensor body, clamping rod, mobile cylinder and external thread, the upper surface of self-diagnostic sensor body is connected with mounting seat, the lower surface of mounting seat is connected with assembly seat, the assembly seat is set to the outside of the self-diagnostic sensor body and mounting seat junction;

[0006] The middle part in mounting seat is connected with transmission rod, the upper end of transmission rod extends to the top of mounting seat and is connected with motor, the outer surface of transmission rod is sleeved with driving bevel gear, the both sides of driving bevel gear are engaged with driven bevel gear, the inside of two driven bevel gears is connected with lead screw, the outer surface of lead screw is connected with external thread, the outside of external thread is sleeved with mobile cylinder, mobile cylinder extends to the side of mounting seat and is connected with limit support plate, the side surface of limit support plate is connected with clamping rod through hinged support no.

[0007] The top and bottom of mobile cylinder are connected with limit sliding block, the top and bottom in the inside of mounting seat are connected with the limit sliding slot matched with limit sliding block, limit sliding block slides along limit sliding slot and can limit auxiliary mobile cylinder linear movement along external thread.

[0008] The upper surface of guide block and the top of limit support plate side surface are connected with hinged support no.

[0009] The outer part of the self-diagnosis sensor body is provided with a protective cover, both sides of the top of the protective cover are connected with splicing blocks, the inside of the splicing seat is symmetrically connected with splicing grooves matched with the splicing blocks, the inside of the splicing block is connected with clamping holes, and the inner side of the splicing groove is connected with clamping grooves.

[0010] The inside of the splicing seat is connected with a limiting cavity, and the bottom of the limiting cavity is connected with an interactive groove.

[0011] The inside of the limiting cavity is connected with a limiting block through a spring, one side of the limiting block is connected with a clamping block matched with the clamping grooves and the clamping holes, the bottom of the limiting block is connected with an operation block, the operation block penetrates the interactive groove and extends to the bottom of the splicing seat, and the interactive groove is arranged for limiting the activity range of the operation block.

[0012] The inside of the self-diagnosis sensor body comprises a detection value acquisition module, a matrix acquisition module, a fault degree acquisition module and a fault degree distribution matrix acquisition module.

[0013] Compared with the prior art, the self-diagnosis sensor has the advantages that:

[0014] (1) The self-diagnosis sensor of the packaging machine is characterized in that the limiting auxiliary moving cylinder can move linearly along the external thread by the cooperation of the motor, the transmission rod, the driving bevel gear, the driven bevel gear, the lead screw and the external thread, the spacing between the two clamping rods is adjusted to match the preset hole position and the overall specification of the packaging machine installation position, the clamping rod is kept clamped with the assembly preset hole for a long time by the expansion of the tension spring and the guiding sliding of the guide block along the guide groove, and the sensor can be quickly disassembled and assembled.

[0015] (2) The self-diagnosis sensor of the packaging machine is characterized in that the splicing seat is connected with the splicing grooves matched with the splicing blocks, the clamping grooves are matched with the clamping blocks, the clamping holes are matched with the clamping blocks, the operation block is matched with the interactive groove, the limiting cavity is matched with the spring and the limiting block, and the limiting block is matched with the clamping grooves and the clamping holes.

[0016] (3) the novel self-diagnosis sensor of the packaging machine, through including detection value acquisition module, matrix acquisition module one, fault degree acquisition module and fault degree distribution matrix acquisition module in the self-diagnosis sensor body, the detection value acquisition module is used to obtain the detection value corresponding to each moment of product, the matrix acquisition module one is used to obtain the time parameter matrix of each product at the same manufacturing moment and the quality parameter matrix of the same product in the manufacturing process according to the detection value obtained, the fault degree acquisition module is used to obtain the fault degree of each value according to the outlying degree of each value in the time parameter matrix of each product at the same manufacturing moment, and then the fault degree distribution matrix acquisition module is used to obtain the corresponding fault degree distribution matrix of each product in the manufacturing process according to the degree of each value appearing fault, the quality parameter matrix of the same product in the manufacturing process and the outlying degree of each value, and the fault diagnosis structure of the packaging machine is obtained optimally. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the front view structural schematic diagram of the utility model;

[0018] Figure 2 It is the front view structural schematic diagram of the utility model; Figure 1 It is the enlarged structure schematic diagram of A place in the utility model;

[0019] Figure 3 It is the enlarged structure schematic diagram of B place in the utility model; Figure 1 It is the enlarged structure schematic diagram of B place in the utility model;

[0020] Figure 4 It is the protective cover and the assembled seat connection side cross section structural schematic diagram of the utility model;

[0021] Figure 5 It is the self-diagnosis sensor body connection structural schematic diagram of the utility model.

[0022] In the drawing: 1, self-diagnosis sensor body;101, detection value acquisition module;102, matrix acquisition module one;103, fault degree acquisition module;104, fault degree distribution matrix acquisition module;2, limit support plate;3, limit sliding slot;4, limit sliding block;5, protective cover;6, driven bevel gear;7, motor;8, transmission rod;9, driving bevel gear;10, lead screw;11, clamping rod;12, mounting seat;13, moving cylinder;14, external thread;15, assembled seat;16, hinged support one;17, hinged support two;18, guide slot;19, guide block;20, tension spring;21, splicing block;22, clamping groove;23, clamping block;24, clamping hole;25, splicing groove;26, operating block;27, interactive groove;28, limit cavity;29, spring;30, limit block. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.

[0024] Please refer to Figures 1-5 The utility model provides an embodiment: a novel self -diagnosis sensor of packing machine, including self -diagnosis sensor body 1, clamping rod 11, mobile cylinder 13 and outer thread 14, the upper surface of self -diagnosis sensor body 1 is connected with mounting seat 12, the middle part in mounting seat 12 is connected with transmission rod 8, and the upper end of transmission rod 8 extends to the top of mounting seat 12 and is connected with motor 7, the outer surface of transmission rod 8 is equipped with driving bevel gear 9, and both sides of driving bevel gear 9 are engaged with driven bevel gear 6, and the inside of two driven bevel gear 6 is connected with lead screw 10, the outer surface of lead screw 10 is connected with outer thread 14, and motor 7, transmission rod 8, driving bevel gear 9, driven bevel gear 6, lead screw 10 and outer thread 14 are set with cooperation limiting slide block 4 along limiting slide groove 3 guiding sliding can limit auxiliary mobile cylinder 13 can move along outer thread 14 linearly, make the spacing between the adjustment two clamping rods 11 and the pre -set hole position and the whole body specification of packing machine installation position match;

[0025] The outer surface of outer thread 14 is equipped with mobile cylinder 13, mobile cylinder 13 extends to the side of mounting seat 12 and is connected with limiting support plate 2, the top and bottom of mobile cylinder 13 are connected with limiting slide block 4, and the top and bottom in the inside of mounting seat 12 are connected with limiting slide groove 3 matched with limiting slide block 4.

[0026] The side surface of limiting support plate 2 is connected with clamping rod 11 through hinged support two 17, the upper surface of clamping rod 11 is connected with guide groove 18, and guide block 19 is slidably arranged in the inside of guide groove 18.

[0027] The upper surface of guide block 19 and the top of the side surface of limiting support plate 2 are connected with hinged support one 16, and two hinged supports one 16 are connected through tension spring 20, and clamping rod 11 remains clamping effect with assembled pre -set hole by the expansion of tension spring 20 and the guiding sliding of guide block 19 along guide groove 18 for a long time, so that the sensor realizes quick disassembly and assembly operation.

[0028] The lower surface of mounting seat 12 is connected with assembling seat 15, and assembling seat 15 is arranged on the outside of the connecting part of self -diagnosis sensor body 1 and mounting seat 12.

[0029] The self-diagnosis sensor body 1 is externally sleeved with a protective cover 5, both sides of the top of the protective cover 5 are connected with splicing blocks 21, the inside of the splicing seat 15 is symmetrically connected with splicing grooves 25 matched with the splicing blocks 21, the inside of the splicing block 21 is connected with clamping holes 24, and the inside of the splicing groove 25 is connected with clamping grooves 22.

[0030] The inside of the splicing seat 15 is connected with a limiting cavity 28, the bottom of the limiting cavity 28 is connected with an interactive groove 27, the inside of the limiting cavity 28 is connected with a limiting block 30 through a spring 29, one side of the limiting block 30 is connected with a clamping block 23 matched with the clamping groove 22 and the clamping hole 24, the bottom of the limiting block 30 is connected with an operation block 26, the operation block 26 penetrates the interactive groove 27 and extends to the bottom outside of the splicing seat 15, and the operation block 26, the interactive groove 27, the limiting cavity 28, the spring 29 and the limiting block 30 are arranged and cooperatively used to adjust and control the plug-in positioning state of the clamping block 23 and the clamping groove 22 and the clamping hole 24, facilitate dismounting and mounting operations of the protective cover 5, the self-diagnosis sensor body 1 can be protected by the protective cover 5, external force impact damage to the self-diagnosis sensor body 1 is reduced, and the service life of the self-diagnosis sensor body 1 is prolonged.

[0031] The inside of the self-diagnosis sensor body 1 comprises a detection value acquisition module 101, a matrix acquisition module 102, a fault degree acquisition module 103 and a fault degree distribution matrix acquisition module 104, and the detection value acquisition module 101 is used for acquiring detection values corresponding to products at each moment.

[0032] The matrix acquisition module 102 is used for acquiring a moment parameter matrix of each product at the same manufacturing moment and a quality parameter matrix of the same product in a manufacturing process according to the acquired detection values.

[0033] The fault degree acquisition module 103 is used for acquiring fault degrees of each value according to the outlying degrees of each value in the moment parameter matrix of each product at the same manufacturing moment.

[0034] The fault degree distribution matrix acquisition module 104 is used for acquiring a fault degree distribution matrix corresponding to each product in the manufacturing process according to the degree of each value appearing fault, the quality parameter matrix of the same product in the manufacturing process and the outlying degrees of each value, and the fault diagnosis structure of the packaging machine is optimally obtained.

[0035] The embodiment of the application is used for: the detection value acquisition module 101 is used for acquiring the detection value of the product at each time, the matrix acquisition module 102 is used for acquiring the time parameter matrix of each product at the same manufacturing time and the quality parameter matrix of the same product in the manufacturing process according to the acquired detection value, the fault degree acquisition module 103 is used for acquiring the fault degree of each value according to the outlying degree of each value in the time parameter matrix of each product at the same manufacturing time, and the fault degree distribution matrix acquisition module 104 is used for acquiring the corresponding fault degree distribution matrix of each product in the manufacturing process according to the degree of each value appearing fault, the quality parameter matrix of the same product in the manufacturing process and the outlying degree of each value, the optimal packaging machine fault diagnosis structure is obtained, the motor 7, the transmission rod 8, the driving bevel gear 9, the driven bevel gear 6, the screw rod 10 and the outer thread 14 are arranged in cooperation with the limiting sliding block 4 to guide the sliding of the limiting sliding block 4 along the limiting sliding groove 3, the movable cylinder 13 can be linearly moved along the outer thread 14, the spacing between the two clamping rods 11 is adjusted, the preset hole position in the packaging machine installation position and the overall specification are matched, the clamping rod 11 is guided to slide along the guide groove 18 through the expansion of the tension spring 20 and the cooperation of the guide block 19, and the clamping rod 11 is kept in the clamping action with the assembly of the preset hole for a long time.

Claims

1. A novel self-diagnostic sensor for packaging machines, characterized by, The utility model provides a self -diagnosis sensor body (1) including, clamping rod (11), mobile cylinder (13) and outer thread (14), the upper surface of self -diagnosis sensor body (1) is connected with mounting seat (12), the middle part in mounting seat (12) is connected with transmission rod (8), and the upper end of transmission rod (8) extends to the top of mounting seat (12) and is connected with motor (7), the outer surface of transmission rod (8) is sleeved with driving bevel gear (9), and both sides of driving bevel gear (9) are engaged transmission driven bevel gear (6), and the inside of two driven bevel gear (6) is connected with lead screw (10), and the outer surface of lead screw (10) is connected with outer thread (14), and the outside of outer thread (14) is sleeved with mobile cylinder (13), and mobile cylinder (13) extends to the side of mounting seat (12) and is connected with limiting support plate (2), and the top and bottom of mobile cylinder (13) are connected with limiting sliding block (4), and the top and bottom in mounting seat (12) are connected with the limiting sliding slot (3) matched with limiting sliding block (4).

2. A novel self-diagnostic sensor for packaging machines according to claim 1, characterized in that: The side surface of the limiting support plate (2) is connected with the clamping rod (11) through the hinged support two (17), the upper surface of the clamping rod (11) is connected with the guide groove (18) in the inside, and the guide block (19) is slidably arranged in the inside of the guide groove (18).

3. A novel self-diagnostic sensor for packaging machines according to claim 2, characterized in that: The upper surface of the guide block (19) and the top of the side surface of the limiting support plate (2) are connected with the hinged support one (16), and the two hinged supports one (16) are connected through the tension spring (20).

4. A novel self-diagnostic sensor for packaging machines according to claim 1, characterized in that: The lower surface of the mounting seat (12) is connected with the assembly seat (15), and the assembly seat (15) is sleeved on the outside of the connection between the self-diagnosis sensor body (1) and the mounting seat (12).

5. A novel self-diagnostic sensor for packaging machines according to claim 4, characterized in that: The outside of the self-diagnosis sensor body (1) is sleeved with the protective cover (5), and the two sides of the top of the protective cover (5) are connected with the splicing block (21), the inside of the assembly seat (15) is symmetrically connected with the splicing groove (25) matched with the splicing block (21), the inside of the splicing block (21) is connected with the clamping hole (24), and the inside of the splicing groove (25) is connected with the clamping groove (22).

6. A novel self-diagnostic sensor for packaging machines according to claim 4, characterized in that: The inside of the assembly seat (15) is connected with the limiting cavity (28), and the bottom of the limiting cavity (28) is connected with the interactive groove (27).

7. A novel self-diagnostic sensor for packaging machines according to claim 6, characterized in that: The inside of the limiting cavity (28) is connected with the limiting block (30) through the spring (29), one side of the limiting block (30) is connected with the clamping block (23) matched with the clamping groove (22) and the clamping hole (24), the bottom of the limiting block (30) is connected with the operation block (26), and the operation block (26) penetrates the interactive groove (27) and extends to the bottom outside of the assembly seat (15).

8. A novel self-diagnostic sensor for packaging machines according to claim 1, characterized in that: The inside of the self-diagnosis sensor body (1) comprises a detection value acquisition module (101), a matrix acquisition module one (102), a fault degree acquisition module (103) and a fault degree distribution matrix acquisition module (104).