Tensioner connection assembly

By designing the connecting rod, hook, and positioning component of the tensioner connection assembly, the hook spacing is automatically adjusted, solving the problem of frequent manual adjustment required by existing tensioners and improving the stability and economy of the transportation process.

CN224324432UActive Publication Date: 2026-06-05NINGBO JINGTENG ZHICHENGLONG MASCH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO JINGTENG ZHICHENGLONG MASCH CO LTD
Filing Date
2025-05-14
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

The existing tensioner's connection structure is prone to changes in the connection distance between the two ends due to human factors during use, requiring frequent manual adjustments and affecting transportation efficiency.

Method used

A tensioner connection assembly was designed, including a connecting rod, a hook assembly, and a positioning assembly. The spacing of the hook assembly is automatically adjusted through the cooperation of the threaded groove and the positioning hole, achieving adjustment without manual intervention.

Benefits of technology

It eliminates the need for manual adjustment of the hook assembly spacing during multiple transport processes, improving the stability and efficiency of the transport process, and is simple in structure and economical and practical.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of goods transportation, in particular to a tensioner connecting assembly. The tensioner connecting assembly comprises a connecting rod, two hook body assemblies, two positioning assemblies and a cavity. The two hook body assemblies are respectively connected with the two ends of the connecting rod. The connecting rod is provided with a first opening, the cavity and a second opening. The first opening and the second opening are respectively arranged at the two ends of the connecting rod and are communicated with the cavity. The two hook body assemblies are respectively arranged through the first opening and the second opening and are arranged in the cavity. The two positioning assemblies are arranged on the connecting rod and are arranged to be capable of being matched with the two hook body assemblies to limit the positions of the two hook body assemblies. The tensioner connecting assembly can realize the advantages of not needing to adjust the tensioner in the process of transporting and fixing goods for multiple times by effectively utilizing the structural configuration.
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Description

Technical Field

[0001] This application relates to the field of cargo transportation, and more specifically to a tensioner connection assembly. Background Technology

[0002] In the fields of logistics transportation and cargo storage, the stability and secure fixing of goods are crucial, as they not only concern safety during transportation but also directly impact the efficiency of warehouse management. Tensioners, a commonly used cargo securing tool, function to stabilize goods by tightening straps or chains, preventing displacement or collapse during transport.

[0003] During the transportation of fixed goods, the connection distance between the two ends usually does not change significantly. However, the existing tensioner connection structure can cause significant changes in the connection distance between the two ends due to factors such as human rotation during daily use, requiring users to readjust the connection distance. Therefore, to address this issue, a structural component that can limit the connection distance between the two ends of the tensioner has been provided based on the original tensioner. This directly limits the connection distance between the two ends, allowing for direct use without adjusting the tensioner during multiple transportations of fixed goods, eliminating the need for manual adjustment. Utility Model Content

[0004] The main objective of this application is to provide a tensioner connection assembly, wherein the tensioner connection assembly can effectively utilize its own structural configuration to achieve the advantage of eliminating the need for manual adjustment of the spacing of the hook assembly of the tensioner.

[0005] Another objective of this application is to provide a tensioner connection assembly, wherein the tensioner connection assembly includes a connecting rod; two hook assemblies, the two hook assemblies being rotatably connected to both ends of the connecting rod, the connecting rod having a first opening, a cavity, and a second opening, the first opening and the second opening being connected to the cavity, and the first opening and the second opening being connected to the outside, wherein the first opening and the second opening are located at both ends of the connecting rod, and the ends of the two hook assemblies that are close to each other pass through the first opening and the second opening respectively and are placed in the cavity; and two positioning assemblies, the two positioning assemblies being disposed on the connecting rod and configured to cooperate with the two hook assemblies respectively to limit the position of the two hook assemblies, that is, the position of the two hook assemblies is limited by the two positioning assemblies so that the spacing of the hook assemblies does not need to be manually adjusted during multiple outputs of fixed goods.

[0006] Another objective of this application is to provide a tensioner connection assembly, wherein the tensioner connection assembly has a simple structure, is easy to operate, does not involve complex manufacturing processes and expensive materials, has high economic efficiency, and is easy to promote and use.

[0007] To achieve at least one of the above-mentioned objectives, this application provides a tensioner connection assembly, wherein the tensioner connection assembly includes:

[0008] Connecting rod;

[0009] Two hook assemblies are respectively rotatably connected to both ends of a connecting rod. The connecting rod has a first opening, a cavity, and a second opening. Both the first and second openings communicate with the cavity and are also connected to the outside. The first and second openings are located at both ends of the connecting rod. The ends of the two hook assemblies that are close to each other pass through the first and second openings respectively and are placed within the cavity.

[0010] Two positioning components are provided on the connecting rod and are configured to cooperate with the two hook components respectively to define the position of the two hook components.

[0011] In one or more embodiments of this application, a first threaded groove is formed on the wall surface of the cavity near the first opening, and a second threaded groove is formed on the wall surface of the cavity near the second opening.

[0012] In one or more embodiments of this application, each hook assembly includes a connecting hook, a connecting ring, and a threaded rod, wherein the two ends of the connecting ring respectively cooperate with the connecting hook and the threaded rod.

[0013] In one or more embodiments of this application, the end of the threaded rod placed in the cavity further has a first positioning hole, and the connecting rod further has two oppositely arranged second positioning holes, wherein the two first positioning holes may selectively correspond one-to-one with the two second positioning holes.

[0014] In one or more embodiments of this application, the tensioner connection assembly further includes two positioning components, each of which engages with one of the two second positioning holes. When the two first positioning holes correspond one-to-one with the two second positioning holes, the bottom of each of the two positioning components engages with the two first positioning holes to define the position of the threaded rod.

[0015] In one or more embodiments of this application, each positioning component includes a connecting sleeve, one end of which is threadedly connected to the corresponding second positioning hole, i.e., the position of the connecting sleeve is defined by rotation, and the end of the connecting sleeve facing away from the second positioning hole is also placed on the outside. The connecting sleeve has a mounting hole facing the cavity. In addition, each positioning component also includes a guide rod, which has an insertion part and a pulling part. The insertion part is connected to the pulling part, and the insertion part passes through the top of the connecting sleeve and is placed in the mounting hole.

[0016] In one or more embodiments of this application, each of the positioning components includes an elastic element and a positioning post. The elastic element is disposed in the mounting hole and sleeved on the guide rod. One end of the positioning post is fixedly connected to the guide rod and abuts against the end of the elastic element, while the other end of the positioning post is placed in the cavity. Attached Figure Description

[0017] These and / or other aspects and advantages of this application will become clearer and more readily understood from the following detailed description of embodiments of this application taken in conjunction with the accompanying drawings, wherein:

[0018] Figure 1 The figure shows a structural schematic diagram of a tensioner connection assembly.

[0019] Figure 2 The diagram shows... Figure 1 A magnified view of A in the middle. Detailed Implementation

[0020] The terms and words used in the following specification and claims are not limited to their literal meaning, but are used solely by the inventors to enable a clear and consistent understanding of this application. Therefore, it will be apparent to those skilled in the art that the following description of various embodiments of this application is provided for illustrative purposes only and not for the purpose of limiting the application as defined in the appended claims and their equivalents.

[0021] It is understood that the term "a" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple, and the term "a" should not be understood as a limitation on the number.

[0022] While ordinal numbers such as "first," "second," etc., will be used to describe various components, there is no limitation on which components are used herein. The term is used only to distinguish one component from another. For example, a first component may be referred to as a second component, and similarly, a second component may be referred to as a first component, without departing from the teachings of the utility model concept. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0023] The terminology used herein is for the purpose of describing various embodiments only and is not intended to be limiting. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. It will also be understood that the terms “comprising” and / or “having” as used in this specification specify the presence of the described features, numbers, steps, operations, components, elements or combinations thereof, without excluding the presence or addition of one or more other features, numbers, steps, operations, components, elements or groups thereof.

[0024] refer to Figures 1 to 2 According to a preferred embodiment of the present invention, the tensioner connecting assembly has the following structure: Figure 1 As shown, the tensioner connecting assembly includes a connecting rod 10 and hook assemblies 20, with the two hook assemblies 20 rotatably connected to both ends of the connecting rod 10. Specifically, the connecting rod 10 has a first opening 101, a cavity 102, and a second opening 103. Both the first opening 101 and the second opening 103 communicate with the cavity 102 and are also connected to the outside. The first opening 101 and the second opening 103 are located at both ends of the connecting rod 10, and the adjacent ends of the hook assemblies 20 pass through the first opening 101 and the second opening 103, respectively, and are placed inside the cavity 102. The user can rotate the hook assemblies 20 to make the distance between the two hook assemblies 20 smaller or larger.

[0025] Furthermore, a first threaded groove 104 is formed on the wall surface of the cavity 102 near the first opening 101, and a second threaded groove 105 is formed on the wall surface of the cavity 102 near the second opening 103.

[0026] Furthermore, each hook assembly 20 includes a connecting hook 21, a connecting ring 22, and a threaded rod 23. Both ends of the connecting ring 22 engage with the connecting hook 21 and the threaded rod 23, respectively. The connection method is shown in the figure. Specifically, both the connecting hook 21 and the threaded rod 23 have a mating hole at their ends, which are connected to both ends of the threaded rod 23, making the connecting hook 21, connecting ring 22, and threaded rod 23 a single unit. Those skilled in the art should understand that the connecting ring 22 is originally a straight rod, which is bent using an external bending machine. During the bending process, the original straight rod is bent into a ring shape, allowing the connecting ring 22 to engage with the connecting hook 21 or the threaded rod 23. The ends of the two threaded rods 23 that are close to each other engage with the first threaded groove 104 and the second threaded groove 105, respectively. That is, the distance between the two connecting parts is adjusted by rotating the two threaded rods 23.

[0027] Specifically, the end of the threaded rod 23 placed in the cavity 102 also has a first positioning hole 2301, and the connecting rod 10 also has two oppositely arranged second positioning holes 104, wherein the two first positioning holes 2301 can be selectively matched with the two second positioning holes 104 one-to-one, that is, the user can adjust the position of the threaded rod 23 so that the second positioning holes 104 cooperate with the first positioning holes 2301.

[0028] Specifically, the tensioner connection assembly further includes two positioning components 30, which respectively cooperate with two second positioning holes 104. When the two first positioning holes 2301 correspond one-to-one with the two second positioning holes 104, the bottom of the two positioning components 30 respectively cooperates with the two first positioning holes 2301 to limit the position of the threaded rod 23.

[0029] Specifically, each positioning component 30 includes a connecting sleeve 31, one end of which is threadedly connected to the corresponding second positioning hole 104, i.e., the position of the connecting sleeve 31 is defined by rotation, and the end of the connecting sleeve 31 facing away from the second positioning hole 104 is also placed on the outside. The connecting sleeve 31 has a mounting hole 3101, which is directly opposite the cavity 102. In addition, each positioning component 30 also includes a guide rod 32, which has an insertion part and a pulling part. The insertion part is connected to the pulling part. The insertion part passes through the top of the connecting sleeve 31 and is placed in the mounting hole 3101. At the same time, the pulling part is spaced a predetermined distance from the top of the connecting sleeve 31.

[0030] Furthermore, each positioning component 30 includes an elastic element 33 and a positioning post 34. The elastic element 33 is disposed within the mounting hole 3101 and sleeved on the guide rod 32. One end of the positioning post 34 is fixedly connected to the guide rod 32 and abuts against the end of the elastic element 33, while the other end of the positioning post 34 is placed within the cavity 102. Specifically, the connection between the positioning post 34 and the insertion part can be implemented as a welded connection. It should be noted that the positioning component 30 allows the user to determine that the threaded rod 23 has been retracted into place by striking the bottom wall of the first positioning hole 2301 with the positioning post 34 during the retraction of the threaded rod 23, facilitating the subsequent storage of the tensioner connection component. The first positioning hole 2301 is a blind hole, allowing the positioning post 34 to extend a predetermined distance under the force of the elastic element 33 and strike the bottom wall of the first positioning hole 2301. Furthermore, when the user uses the hook assembly 20, the user can pull the pulling part to cause the positioning post 34 to squeeze the elastic member 33. At this time, the elastic member 33 deforms, and the positioning post 34 disengages from the first positioning hole 2301, thereby enabling the threaded rod 23 to be rotated subsequently.

[0031] In summary, the tensioner connection assembly described in the embodiments of this application is explained, which provides advantages such as eliminating the need for manual adjustment of the spacing of the hook components of the tensioner.

[0032] It is worth mentioning that, in the embodiments of this application, the tensioner connection assembly has a simple structure, does not involve complex manufacturing processes or expensive materials, and is highly economical. At the same time, for manufacturers, the tensioner connection assembly provided in this application is easy to produce and inexpensive, which is more conducive to controlling production costs and further facilitates product promotion and use.

[0033] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not limit the present invention. The purpose of the present invention has been fully and effectively achieved. The function and structural principle of the present invention have been shown and explained in the embodiments, and any modifications or variations may be made to the implementation of the present invention without departing from these principles.

Claims

1. A tensioner connection assembly, characterized in that, The tensioner connection assembly includes: Connecting rod; Two hook assemblies are respectively rotatably connected to both ends of a connecting rod. The connecting rod has a first opening, a cavity, and a second opening. Both the first and second openings communicate with the cavity and are also connected to the outside. The first and second openings are located at both ends of the connecting rod. The ends of the two hook assemblies that are close to each other pass through the first and second openings respectively and are placed within the cavity. Two positioning components are provided on the connecting rod and are configured to cooperate with the two hook components respectively to define the position of the two hook components.

2. The tensioner connection assembly according to claim 1, wherein a first threaded groove is formed on the wall surface of the cavity near the first opening, and a second threaded groove is formed on the wall surface of the cavity near the second opening.

3. The tensioner connection assembly according to claim 2, wherein each hook assembly includes a connecting hook, a connecting ring and a threaded rod, and the two ends of the connecting ring respectively cooperate with the connecting hook and the threaded rod.

4. The tensioner connection assembly according to claim 3, wherein the end of the threaded rod placed in the cavity further has a first positioning hole, and the connecting rod further has two oppositely arranged second positioning holes, wherein the two first positioning holes may selectively correspond one-to-one with the two second positioning holes.

5. The tensioner connection assembly according to claim 4, wherein the tensioner connection assembly further comprises two positioning components, the two positioning components respectively cooperating with the two second positioning holes, and when the two first positioning holes correspond one-to-one with the two second positioning holes, the bottom of the two positioning components respectively cooperates with the two first positioning holes to define the position of the threaded rod.

6. The tensioner connection assembly according to claim 5, wherein each of the positioning assemblies includes a connecting sleeve, one end of which is threadedly connected to a corresponding second positioning hole, and the end of the connecting sleeve facing away from the second positioning hole is also placed externally, wherein the connecting sleeve has a mounting hole facing the cavity, and each of the positioning assemblies further includes a guide rod, the guide rod having an insertion portion and a pulling portion, the insertion portion being connected to the pulling portion, the insertion portion penetrating the top of the connecting sleeve and placed within the mounting hole.

7. The tensioner connection assembly according to claim 6, wherein each of the positioning assemblies includes an elastic element and a positioning post, the elastic element is disposed in the mounting hole and sleeved on the guide rod, one end of the positioning post is fixedly connected to the guide rod and abuts against the end of the elastic element, while the other end of the positioning post is placed in the cavity.