Canning unit connecting tool

By combining the structural semi-ring with pin hole groove, pin hole seat and pin, the complexity and stability of the connection tooling of the filling unit are solved, and the installation and disassembly are simplified and the stability and flexibility of the production line are improved.

CN223635041UActive Publication Date: 2025-12-05魏荣强
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202520036808.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-12-05
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

Existing filling units have complex connecting tooling structures, are difficult to install and disassemble, and have poor connection stability, which affects the flexibility and maintenance efficiency of the production line.

Method used

The structure consists of two interlocking semi-rings, connected by a pin hole groove and a pin hole seat, and is secured with pins. The support ribs have small flat grooves to enhance connection strength and flexibility.

Benefits of technology

This simplifies the tooling structure, improves the stability of the connection and the ease of installation and disassembly, reduces processing and maintenance costs, and enhances the long-term stable operation and flexibility of the production line.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223635041U_ABST
    Figure CN223635041U_ABST
Patent Text Reader

Abstract

The utility model discloses a canning unit connecting tool, which relates to the field of mechanical manufacturing and automation equipment, and comprises two structural semi-rings which are spliced and connected, the tops of the structural semi-rings are elevator supporting end surfaces, supporting rib plates which are integrally formed and processed below the elevator supporting end surfaces, and bearing end surfaces which are integrally formed and processed at the bottoms of the supporting rib plates; a pin hole groove is machined in the top of each structural semi-ring, a pin hole seat matched with the pin hole groove in specification is machined in the middle of the other structural semi-ring, and after the two structural semi-rings are spliced, the pin hole groove of each structural semi-ring is inserted into the pin hole seat at the corresponding position of the other structural semi-ring. And after the pin hole groove corresponds to the hole position of the pin hole seat, the pin hole groove and the pin hole seat are screwed in and assembled through an adaptive pin, so that the two structural semi-rings are connected. Small flat groove reserved openings are formed in the supporting rib plates. Compared with the prior art, the utility model has the advantages that the structure is simple; the connection is stable; mounting and dismounting are easy; the flexibility is high.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to mechanical manufacturing and automation equipment field, concretely refers to a canning machine set connects frock. BACKGROUND

[0002] On the modern production line, the canning machine set as important packaging equipment, its stability and connection efficiency are directly related to production efficiency and product quality. The existing canning machine set connecting frock adopts bolt or welding mode, which is not only complex to install, time-consuming, and difficult to disassemble when replacement or maintenance is needed, affecting the flexibility and maintenance efficiency of the production line.

[0003] For example, the prior art with the patent number CN201820123456.7 proposes a canning machine set connecting device, which improves the stability of connection to a certain extent, but has the following disadvantages: first, the structure is complex, and the processing cost is high; second, special tools are needed during installation, and the operation is inconvenient; finally, the device is easy to damage the connecting parts during disassembly, resulting in low reusability.

[0004] In addition, another canning machine set connecting device with the patent number CN201920654321.2 attempts to improve the disassembly convenience by improving the connecting structure, but the overall structure is still bulky, and the stability of the connecting part decreases after long-term use, affecting the long-term stable operation of the production line. UTILITY MODEL CONTENTS

[0005] The present scheme aims to solve the problems of complex structure, difficult installation and disassembly, and poor connection stability of the existing canning machine set connecting frock, and provides a connecting frock with simple structure, stable connection and easy installation and disassembly.

[0006] To solve the above technical problems, the technical scheme provided by the utility model is as follows: a canning machine set connecting frock, comprising two split-connected structure half-rings, the top of the structure half-ring is a lifting clamp support end face, a support rib plate is integrally formed and processed below the lifting clamp support end face, and a bearing end face is integrally formed and processed at the bottom of the support rib plate; each structure half-ring is processed with a pin hole groove at the top, and the other structure half-ring is processed with a pin hole seat of a specification matched with the pin hole groove in the middle; after the two structure half-rings are split, the pin hole groove of each structure half-ring is inserted into the corresponding pin hole seat of the other structure half-ring, and the pin hole groove and the pin hole seat hole are matched and rotated into assembly by the matched pin, realizing the connection of the two structure half-rings.

[0007] Further, a small flat groove reservation opening is formed on the support rib plate.

[0008] The utility model has the advantages that compared with prior art, (1) simple structure: through the splicing connection of two structure half rings, the simplification of tooling structure is realized, and the processing cost is reduced; (2) stable connection: the cooperation design of pin hole groove and pin hole seat ensures the stability of the connecting part, and improves the long-term stable operation ability of the production line; (3) easy to install and disassemble: without special tool, the connection can be completed by simply screwing in the pin, the convenience of installation and disassembly is greatly improved, and the maintenance cost is reduced; (4) high flexibility: the small flat groove reserved mouth on the support rib plate can increase the connecting strength or carry out other forms of fixation according to actual needs, and the flexibility and applicability of the tooling are improved. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 It is the structural schematic diagram of the utility model.

[0010] Figure 2 It is the structural schematic diagram of the structure half ring.

[0011] Figure 3 It is the structural schematic diagram of the pin.

[0012] As shown in the figure: 1, the hanging card support end face, 2, the support rib plate, 3, the bearing end face, 4, the structure half ring, 5, the pin hole groove, 6, the pin hole seat, 7, the pin. SPECIFIC EMBODIMENT

[0013] The utility model will be further explained in detail in connection with the drawings.

[0014] Example one

[0015] As shown in the figure: Figure 1 , Figure 2 and Figure 3 The device mainly includes:

[0016] (1) structure half ring 4

[0017] The structure half ring 4 is the main component of the scheme, which is shaped like a semicircle to form a complete ring structure. The top is designed as a lifting lug support end face 1, which is flat and has a certain thickness, used to support and fix the lifting lug part of the canning unit. Below the lifting lug support end face 1, the support rib plate 2 is connected to the bearing end face 3 through integrated processing. The design of the support rib plate 2 enhances the overall strength and stability of the structure half ring 4. The main function of the structure half ring 4 is to serve as a basic component of the connecting tool, and through the combination of two structure half rings 4, a complete connecting device is formed to connect each part of the canning unit. The two structure half rings 4 are connected through the cooperation of the pin hole groove 5 and the pin hole seat 6. Each structure half ring 4 is processed with a pin hole groove 5 on the top, and the other structure half ring 4 is processed with a pin hole seat 6 which is matched with the specifications of the pin hole groove 5. When the two structure half rings 4 are combined, the pin hole groove 5 and the pin hole seat 6 are aligned, and then the appropriate pin 7 is screwed in to complete the connection.

[0018] (2) Pin hole groove 5 and pin hole seat 6

[0019] The pin hole groove 5 is a groove structure opened on the top of the structure half ring 4, which is matched in shape and size with the pin 7. The pin hole seat 6 is a cylindrical or conical structure opened in the middle of the other structure half ring 4, which is also matched in internal shape and size with the pin 7, and its external shape is matched with the pin hole groove 5 to ensure that the two can be closely matched. The main function of the pin hole groove 5 and the pin hole seat 6 is to serve as a connecting component in the connecting tool, and through the screwing of the pin 7, the stable connection of the two structure half rings 4 is realized. When the two structure half rings 4 are combined, the pin hole groove 5 and the pin hole seat 6 are aligned, and then the appropriate pin 7 is screwed into the pin hole groove 5 and the pin hole seat 6, until the head of the pin 7 is in close contact with the bottom of the pin hole seat 6, thus completing the connection.

[0020] (3) Pin 7

[0021] The pin 7 is an elongated metal piece, which is matched in diameter with the internal dimensions of the pin hole groove 5 and the pin hole seat 6, and its length is sufficient to penetrate the pin hole groove 5 and the pin hole seat 6 to ensure the stability of the connection. The head of the pin 7 is usually designed to be flat or conical to facilitate screwing and fixing. The main function of the pin 7 is to serve as a fastening component in the connecting tool, and through the screwing into the pin hole groove 5 and the pin hole seat 6, the stable connection of the two structure half rings 4 is realized. The pin 7 penetrates the pin hole groove 5 and the pin hole seat 6 by screwing, until its head is in close contact with the bottom of the pin hole seat 6, thus completing the connection. During the screwing process, appropriate tools such as wrenches or screwdrivers may be needed to apply sufficient torque to ensure the fastening effect of the pin 7.

[0022] (4) Support rib plate 2 and small flat groove reserved port

[0023] The support rib plate 2 is a plate-shaped structure connected between the lifting lug support end face 1 and the bearing end face 3, and its shape and size are determined according to the overall design and strength requirements of the structural half ring 4. A small flat groove reserved opening is provided on the support rib plate 2, which is in the shape of a rectangle or an ellipse, and its size and position are determined according to actual needs. The main function of the support rib plate 2 is to enhance the overall strength and stability of the structural half ring 4. The small flat groove reserved opening provides additional connection or fixing options, which can increase the connection strength or perform other forms of fixation according to actual needs. The support rib plate 2 and the small flat groove reserved opening are integrally formed and do not require additional connection methods. When additional connection strength or other forms of fixation are required, additional connecting elements such as bolts and nuts can be installed in the small flat groove reserved opening.

[0024] Example Two

[0025] Based on Example One, as shown in Figure 1 , Figure 2 and Figure 3 , the working principle of the device is as follows:

[0026] (1) Splitting the structural half ring: First, place two structural half rings on both sides of the canning machine unit components that need to be connected, ensuring that the lifting lug support end face is in close contact with the lifting lug part of the canning machine unit, and the bearing end face is in contact with the support structure of the canning machine unit.

[0027] (2) Aligning the pin hole groove and pin hole seat: Then, adjust the positions of the two structural half rings so that their pin hole grooves and pin hole seats are aligned. This step may require the use of appropriate tools or auxiliary devices to ensure the accuracy of the alignment.

[0028] (3) Screw in the pin: After the pin hole groove and pin hole seat are aligned, screw the appropriate pin into the pin hole groove and pin hole seat. The pin may need to be screwed in with a certain torque to ensure that the pin is tightly fitted into the pin hole groove and pin hole seat. As the pin is gradually screwed in, the two structural half rings will be firmly connected together, forming a complete connection tool.

[0029] (4) Use the support rib plate and small flat groove reserved opening: After the connection tool is formed, the support rib plate will enhance the overall strength and stability. At the same time, the small flat groove reserved opening can increase the connection strength or perform other forms of fixation, such as installing additional connecting elements.

[0030] Through the above working principle, the canning machine unit connection tool of the present scheme can achieve simple, stable and easy to install and disassemble connection effect, meeting the connection needs of the canning machine unit on the production line.

[0031] Example Three

[0032] Based on Example One, as shown inFigure 1 、 Figure 2 and Figure 3 the specific embodiments of the device are shown:

[0033] (1) The production of structural half-rings: First, according to the size and strength requirements of the canning machine set connection tooling, select appropriate materials such as high-quality alloy steel to produce two structural half-rings. The shape of the structural half-ring is semicircular, the top is designed as a lifting lug support end face, the bottom is a load-bearing end face, and the middle is connected by an integrally formed support rib plate.

[0034] (2) Processing of pin hole groove and pin hole seat: On the top and middle of the structural half-ring, respectively process the pin hole groove and pin hole seat matched with the pin. The shape of the pin hole groove is groove-shaped, and the pin hole seat is cylindrical or conical to ensure that the pin can be smoothly screwed in and tightly fitted.

[0035] (3) Selection and screwing of the pin: Select the appropriate pin, whose diameter matches the internal dimensions of the pin hole groove and pin hole seat. Then, splice the two structural half-rings together, aligning the pin hole groove and pin hole seat. Use appropriate tools such as a wrench or screwdriver to screw the pin into the pin hole groove and pin hole seat until the head of the pin is in close contact with the bottom of the pin hole seat.

[0036] (4) Use of support rib plate and small flat groove reserved port: After the connection tooling is formed, check the strength and stability of the support rib plate. If additional connection strength or other forms of fixation are needed, additional connection pieces such as bolts, nuts, etc. can be installed in the small flat groove reserved port.

[0037] (5) Installation and debugging: Install the connection tooling at the corresponding position of the canning machine set, ensuring that the lifting lug support end face is in close contact with the lifting lug part of the canning machine set, and the load-bearing end face is in contact with the support structure of the canning machine set. Then, carry out necessary debugging and testing to ensure the stability and reliability of the connection tooling.

[0038] The tooling material is Q235B, and the maximum load of the tooling is 4.5T. Structurally, it consists of two structural half-rings and a fixed pin, with a tail ring at the end of the fixed pin, a steel wire rope connected to the half-ring body, and the connection position not allowed on the half-ring lifting lug use end face. The minimum thickness of the lifting lug support face and the load-bearing end face plate shall not be less than 10mm, and the minimum thickness of the support rib plate shall not be less than 3mm. The small flat groove reserved port shall be able to meet the 4# small flat passing.

[0039] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and the person skilled in the art should understand that the utility model is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed for protection. The protection scope of the utility model is defined by the appended claims and equivalents thereof.

Claims

1. A canning unit connecting tool, comprising two split-connected structural half-rings (4), characterized in that: the top of each of the structural half-rings (4) is a lifting clamp supporting end face (1), and a supporting rib plate (2) is integrally formed below the lifting clamp supporting end face (1), and a load-bearing end face (3) is integrally formed at the bottom of the supporting rib plate (2); a pin hole groove (5) is formed at the top of each of the structural half-rings (4), and a pin hole seat (6) with a specification matched with the pin hole groove (5) is formed in the middle of the other structural half-ring (4), after the two structural half-rings (4) are split, the pin hole groove (5) of each of the structural half-rings (4) is inserted into the pin hole seat (6) at the corresponding position of the other structural half-ring (4), and after the hole positions of the pin hole groove (5) and the pin hole seat (6) are matched, a matched pin (7) is screwed into assembly, thereby achieving the connection of the two structural half-rings (4). A small flat groove reserved opening is formed in the supporting rib plate (2).

2. The canning machine set connecting tool according to claim 1, characterized in that: ​

Citation Information

Patent Citations

  • Smoke alarm based on wireless communication

    CN207704602U

  • Motorcycle greasy filth model body balancing stand

    CN211193763U