A partition module

By designing clamping components and spacing adjustment structures for the partition module, the problems of high labor costs and inconvenient wire harness disassembly in the fireproof mud sealing method of the Huacheng self-insulating integrated machine were solved, achieving efficient sealing and convenient wire harness maintenance, and enhancing safety and heat insulation effect.

CN224683150UActive Publication Date: 2026-08-25ZHUHAI TITANS NEW POWER ELECTRONICS CO LTD
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Patent Information

Application Number
CN202521983836.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-15
Publication Date
2026-08-25
Estimated Expiration
2035-09-15

AI Technical Summary

Technical Problem

In existing technologies, the connection between the high-temperature zone and the normal-temperature zone of the wiring harness is sealed by sealing the wire hole with fireproof putty in the integrated heat insulation machine. This results in high labor costs and inconvenience in disassembling the wiring harness.

Method used

Design a partition module that includes clamping components and a spacing adjustment structure. By adjusting the spacing of the clamping components, they can be made to abut or separate, forming a sealed wire hole, achieving a sealed fit of the wire harness, and avoiding the use of fireproof putty.

Benefits of technology

It reduces labor costs, simplifies the wire harness removal process, improves maintenance convenience, and enhances safety and heat insulation through insulating and flame-retardant materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a partition module, which comprises a partition body, clamping pieces and a distance adjusting structure. The clamping pieces are arranged on the partition body and sequentially arranged along a first direction. At least one of the two adjacent clamping pieces is movably arranged along the first direction, and one of the two clamping pieces has a first side, and the other has a second side. A plurality of first threading grooves are arranged on the first side, and a plurality of second threading grooves are arranged on the second side. The plurality of second threading grooves are arranged in one-to-one correspondence with the plurality of first threading grooves. The distance adjusting structure is used for adjusting the distance between the two adjacent clamping pieces along the first direction, so that the first side and the second side are in abutment or separation. When the first side and the second side are in abutment, the first threading grooves and the second threading grooves arranged correspondingly jointly enclose a threading hole for the wire harness to pass through. The threading hole is configured to be in sealing cooperation with the wire harness. The application is beneficial to reducing labor cost and improving the convenience of wire harness maintenance in the later period.
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Description

Technical Field

[0001] This application relates to the field of chemical formation equipment technology, and more particularly to a partition wall module. Background Technology

[0002] In lithium-ion battery production, the self-insulating formation machine is a core specialized piece of equipment used to complete the battery formation process. In the self-insulating formation machine, the high-temperature zone and the normal-temperature zone are separated by a partition wall. Since the control module in the normal-temperature zone and the actuator in the high-temperature zone need to be connected through a wiring harness, the partition wall is provided with wiring holes for the wiring harness to pass through.

[0003] Furthermore, since a sealing and heat insulation system is required between the high-temperature zone and the normal-temperature zone, fireproof putty is typically used to seal the wire holes in related technologies. However, this sealing method has significant drawbacks: firstly, it relies on manual filling, resulting in high labor costs; secondly, because the fireproof putty is difficult to peel off, it makes subsequent maintenance and wire harness removal inconvenient. Utility Model Content

[0004] In view of the above-mentioned shortcomings in the related technologies, this application provides a partition wall module to solve the problems of high labor costs and inconvenience in disassembling wiring harnesses when using fireproof sealant in the related technologies.

[0005] To address the aforementioned technical problems, in a first aspect, this application provides a partition wall module applied to a self-insulating integrated forming machine, wherein the self-insulating integrated forming machine has a high-temperature zone and a normal-temperature zone, and the partition wall module is used to separate the high-temperature zone and the normal-temperature zone, and the partition wall module comprises:

[0006] Main body of the partition wall;

[0007] Clamping members are disposed on the partition wall body, and multiple clamping members are arranged sequentially along the first direction; among two adjacent clamping members, at least one is movably disposed along the first direction, and one has a first side portion and the other has a second side portion opposite to the first side portion; multiple first wire-passing grooves are provided on the first side portion, and multiple second wire-passing grooves are provided on the second side portion, and the multiple second wire-passing grooves are arranged in a one-to-one correspondence with the multiple first wire-passing grooves;

[0008] A spacing adjustment structure is provided in at least one of the partition wall body and the clamping member. The spacing adjustment structure is used to adjust the spacing between two adjacent clamping members in the first direction so that the first side and the second side abut or separate. When the first side and the second side abut, the correspondingly arranged first wire-passing groove and second wire-passing groove together form a wire-passing hole for the wire harness to pass through. The wire-passing hole is configured to seal with the wire harness that passes through.

[0009] In a possible implementation of the first aspect, among the plurality of clamping members, the clamping member located on the outermost side in the first direction is provided with a threaded hole, and the remaining clamping members are provided with a first through hole, the axes of the first through hole and the threaded hole both extending along the first direction.

[0010] The spacing adjustment structure includes:

[0011] An adjusting bolt includes a threaded rod and a bolt head connected to each other. The threaded rod passes through a plurality of first through holes in sequence along the positive direction of the first direction and is threadedly connected to the threaded holes. The bolt head is located on the opposite side of the plurality of clamping members in the first direction to restrict the reverse movement of the plurality of clamping members along the first direction.

[0012] In one possible implementation of the first aspect, the partition wall body is provided with a second through hole, the second through hole being located on the opposite side of the first direction of the plurality of clamping members, and the axis of the second through hole extending along the first direction;

[0013] The threaded rod passes sequentially through the second through hole and multiple first through holes along the positive direction of the first direction, and the bolt head is located on the opposite side of the first direction of the partition wall body.

[0014] In a possible implementation of the first aspect, a plurality of the first threading grooves on the first side are arranged sequentially along a second direction, the second direction being different from the first direction;

[0015] The adjusting bolts are arranged at intervals along the second direction.

[0016] In one possible implementation of the first aspect, the side of the partition wall body in the first direction is recessed with a mounting groove, and the plurality of clamping members are disposed in the mounting groove;

[0017] The extension direction of the axis of the wire hole is a third direction. On both sides of the third direction of the partition wall body, there are clearance holes. The clearance holes are connected to the mounting groove and are arranged opposite to the wire hole in the third direction to allow the wire harness to pass through. The third direction is different from the first direction.

[0018] In a possible implementation of the first aspect, a plurality of first threading grooves and corresponding plurality of second threading grooves respectively form a plurality of threading holes, and the projections of the plurality of threading holes in the third direction are all located within the same clearance hole.

[0019] In a possible implementation of the first aspect, a plurality of the first threading grooves on the first side are arranged sequentially along a second direction, the second direction being different from the first direction and the third direction;

[0020] The inner wall of the mounting groove includes two first groove inner walls arranged opposite to each other in the second direction, and the inner wall of the clearance hole includes two first hole inner walls arranged opposite to each other in the second direction; the two first groove inner walls are respectively aligned with the two first hole inner walls in the third direction, or located between the two first hole inner walls in the second direction; the size of the clamping member in the first direction is smaller than the size of the clearance hole in the first direction;

[0021] The clearance hole is configured to allow the clamping member to exit the mounting groove.

[0022] In one possible implementation of the first aspect, the partition module further includes:

[0023] The first limiting member is detachably mounted on the partition wall body;

[0024] The second limiting member is detachably disposed on the partition wall body. The second limiting member and the first limiting member are respectively placed on opposite sides of the partition wall body in the third direction, and both are arranged opposite to the clearance hole in the third direction to restrict the clamping member from leaving the mounting groove through the clearance hole.

[0025] In one possible implementation of the first aspect, two first limiting members are provided, and the two first limiting members are respectively arranged opposite to the two ends of the clamping member in the second direction; and / or,

[0026] There are two second limiting members, which are respectively arranged opposite to the two ends of the clamping member in the second direction.

[0027] In one possible implementation of the first aspect, the clamping element is an insulating, flame-retardant, and heat-insulating element.

[0028] Compared with related technologies, this application has at least the following beneficial effects:

[0029] In this application, when using the partition wall module, since multiple clamping members are arranged sequentially along the first direction, and since the spacing adjustment structure is used to adjust the spacing between two adjacent clamping members in the first direction, the spacing adjustment structure can adjust the spacing between two adjacent clamping members, so that the two adjacent clamping members can abut or separate, and thus the opposing first and second sides on the two adjacent clamping members can abut or separate.

[0030] Furthermore, when the first side and the second side abut each other, the first wire-passing groove on the first side and the corresponding second wire-passing groove on the second side together form a wire-passing hole for the wire harness to pass through. Since the wire-passing hole is configured to seal with the wire harness passing through, the formed wire-passing hole can not only allow the wire harness connecting the control module in the normal temperature zone and the actuator in the high temperature zone to pass through, but also seal with the wire harness. This is beneficial for achieving a sealed isolation between the normal temperature zone and the high temperature zone. Thus, compared with related technologies, it is not necessary to use fireproof putty to seal the wire-passing hole to achieve a seal.

[0031] In this way, there is no need to manually fill the fireproof putty, which helps to reduce labor costs. On the other hand, when removing the wire harness for later maintenance, you only need to adjust the spacing of the adjacent clamping parts by adjusting the spacing adjustment structure to separate the first side from the second side, and the wire hole will open accordingly. At this time, the wire harness can be easily removed, avoiding the problem of difficult wire removal caused by fireproof putty sticking, which greatly improves the convenience of removing the wire harness for later maintenance. Attached Figure Description

[0032] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0033] Figure 1 This is a three-dimensional structural diagram of the partition wall module provided in the embodiments of this application;

[0034] Figure 2 This is a front view of the partition wall module provided in an embodiment of this application;

[0035] Figure 3 A side view of the partition wall module provided in the embodiments of this application;

[0036] Figure 4 for Figure 3 Sectional view along the middle AA direction;

[0037] Figure 5 This is a three-dimensional structural diagram of the partition wall body provided in an embodiment of this application.

[0038] Explanation of reference numerals in the attached figures:

[0039] 1-Partition wall main body; 11-Second through hole; 12-Mounting groove; 121-Inner wall of the first groove; 13-Avoidance hole; 131-Inner wall of the first hole;

[0040] 2-Clamping element; 21-First side; 211-First wire-passing groove; 22-Second side; 221-Second wire-passing groove; 23-Fixed clamping element; 24-First movable clamping element; 25-Second movable clamping element; 26-Threaded hole; 27-First through hole;

[0041] 3- Spacing adjustment structure; 31- Adjusting bolt; 311- Threaded rod; 312- Bolt head;

[0042] 4-Threading hole; 5-First limiting component; 6-Second limiting component. Detailed Implementation

[0043] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0044] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0045] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0046] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0047] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.

[0048] As described in the background section of this application, in lithium-ion battery production, the self-insulating formation machine is a core specialized piece of equipment used to complete the battery formation process. In the self-insulating formation machine, the high-temperature zone and the normal-temperature zone are separated by a partition wall, and since the control module in the normal-temperature zone and the actuator in the high-temperature zone need to be connected via wiring harnesses, the partition wall is provided with wiring holes for the wiring harnesses to pass through.

[0049] Furthermore, since a sealing and heat insulation system is required between the high-temperature zone and the normal-temperature zone, fireproof putty is typically used to seal the wire holes in related technologies. However, this sealing method has significant drawbacks: firstly, it relies on manual filling, resulting in high labor costs; secondly, because the fireproof putty is difficult to peel off, it makes subsequent maintenance and wire harness removal inconvenient.

[0050] In view of the above-mentioned problems, this application provides a partition wall module to solve the problems of high labor costs and inconvenience in disassembling wiring harnesses when using fireproof sealant in related technologies.

[0051] The technical solution of this application will be further described below with reference to specific embodiments and accompanying drawings:

[0052] The partition wall module is used in the self-insulating integrated forming machine, which has a high-temperature zone and a normal-temperature zone. The partition wall module is used to separate the high-temperature zone and the normal-temperature zone, and, as... Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the partition module includes a partition body 1, a clamping component 2, and a spacing adjustment structure 3.

[0053] Among them, such as Figure 1 , Figure 2 as well as Figure 4 As shown, the clamping member 2 is disposed on the partition wall body 1, and along the first direction (e.g. Figure 1 Multiple clamping members 2 are sequentially arranged in the X direction, and at least one of two adjacent clamping members 2 is movable along the first direction, and one has a first side 21, while the other has a second side 22 opposite to the first side 21. The first side 21 is provided with multiple first wire-passing grooves 211, and the second side 22 is provided with multiple second wire-passing grooves 221, with the multiple second wire-passing grooves 221 arranged in a one-to-one correspondence with the multiple first wire-passing grooves 211.

[0054] like Figure 1 and Figure 4As shown, the spacing adjustment structure 3 is disposed in at least one of the partition wall body 1 and the clamping member 2. The spacing adjustment structure 3 is used to adjust the spacing between two adjacent clamping members 2 in a first direction so that the first side 21 abuts or separates from the second side 22. Figure 1 , Figure 2 as well as Figure 4 As shown, when the first side 21 and the second side 22 abut against each other, the corresponding first wire groove 211 and the second wire groove 221 together form a wire hole 4 for the wire harness to pass through, and the wire hole 4 is configured to seal with the wire harness that passes through.

[0055] In this application, when using the partition wall module, since multiple clamping members 2 are arranged sequentially along the first direction, and since the spacing adjustment structure 3 is used to adjust the spacing between two adjacent clamping members 2 in the first direction, the spacing between two adjacent clamping members 2 can be adjusted by the spacing adjustment structure 3, so that the two adjacent clamping members 2 can abut or separate, and thus the opposing first side 21 and second side 22 on the two adjacent clamping members 2 can abut or separate.

[0056] Furthermore, when the first side 21 and the second side 22 abut against each other, the first wire-passing groove 211 on the first side 21 and the corresponding second wire-passing groove 221 on the second side 22 together form a wire-passing hole 4 for the wire harness to pass through. Since the wire-passing hole 4 is configured to seal with the wire harness, the formed wire-passing hole 4 can not only allow the wire harness connecting the control module in the normal temperature zone and the actuator in the high temperature zone to pass through, but also seal with the wire harness, which is conducive to achieving a sealed isolation between the normal temperature zone and the high temperature zone. Thus, compared with related technologies, it is not necessary to use fireproof putty to seal the wire-passing hole 4 to achieve sealing.

[0057] In this way, there is no need to manually fill the fireproof putty, which helps to reduce labor costs. On the other hand, when removing the wire harness for later maintenance, you only need to adjust the spacing of the adjacent clamping parts 2 through the spacing adjustment structure to separate the first side 21 from the second side 22, and the wire hole 4 will open accordingly. At this time, the wire harness can be easily taken out, avoiding the problem of difficult wire removal caused by the fireproof putty sticking, which greatly improves the convenience of removing the wire harness for later maintenance.

[0058] In addition, it should be noted that the partition wall module in this application can be applied not only to the Huacheng self-insulating integrated machine, but also to any other scenario where wire harnesses need to pass through walls. This application embodiment does not specifically limit this.

[0059] Regarding the sealing fit between the threading hole 4 and the wire harness, in some optional embodiments, when the first side 21 and the second side 22 abut against each other, the inner wall of the first threading groove 211 and the inner wall of the second threading groove 221 will jointly clamp the wire harness passing through the threading hole 4, and a certain squeezing and fitting effect will be formed between them and the outer peripheral surface of the wire harness.

[0060] This design, through compression and bonding, helps eliminate tiny gaps between the inner wall of the wire passage and the outer circumference of the wire harness, thereby facilitating a sealed fit between the wire passage hole 4 and the wire harness. Consequently, there is no need to install a seal on the inner wall of the wire passage, which simplifies the structural design of the clamping member 2 and facilitates its manufacturing.

[0061] In some alternative embodiments, sealing elements may be provided on the inner walls of both the first wire-passing groove 211 and the second wire-passing groove 221, such as a rubber layer or a plastic layer pasted on the inner wall of the wire-passing groove. In this way, when the first wire-passing groove 211 and the second wire-passing groove 221 form a wire-passing hole 4, the wire-passing hole 4 can achieve a sealed fit with the wire harness through the sealing elements on its inner wall.

[0062] This design, through the sealing element, can enhance the sealing performance between the wire hole 4 and the wire harness, thereby facilitating a reliable seal between the wire hole 4 and the wire harness and meeting the thermal insulation and sealing requirements of both high-temperature and normal-temperature zones.

[0063] In other embodiments, the threading hole 4 and the wire harness can also achieve a sealed fit in any other way, and this application embodiment does not specifically limit this.

[0064] For clamping element 2, in some alternative embodiments, such as Figure 1 , Figure 2 as well as Figure 4 As shown, there are three clamping members 2, namely a fixed clamping member 23, a first movable clamping member 24, and a second movable clamping member 25 arranged sequentially along the first direction. The fixed clamping member 23 is fixedly mounted on the partition wall body 1, while the first movable clamping member 24 and the second movable clamping member 25 are movably mounted on the partition wall body 1 along the first direction. Both the fixed clamping member 23 and the second movable clamping member 25 have multiple wire-passing grooves on the side closest to the first movable clamping member 24, and the first movable clamping member 24 has multiple wire-passing grooves on both opposite sides of the first movable clamping member 24 closest to the fixed clamping member 23 and the second movable clamping member 25.

[0065] With this configuration, on the one hand, the fixed clamping member 23 can provide a stable reference, which can ensure the positional accuracy of each clamping member 2 after contact, and can avoid positional deviation caused by the mobility of all clamping members 2, thereby ensuring the positional accuracy of the enclosed threading hole 4.

[0066] On the other hand, the first movable clamping member 24, located between the fixed clamping member 23 and the second movable clamping member 25, can separate the wire harnesses on both sides in the first direction, thereby avoiding the problem of heat accumulation caused by the concentration of wire harnesses.

[0067] In this embodiment, the fixing clamp 23 can be fixed to the partition wall body 1 by means of adhesive, bolts, screws, snap-fit ​​buckles and slots, etc. The fixing method of the fixing clamp 23 on the partition wall body 1 is relatively flexible. Specifically, it can be selected according to actual needs. This embodiment does not make specific limitations in this regard.

[0068] In some alternative embodiments, there may be two, four or more clamping members 2. The number of clamping members 2 is flexible and can be set according to actual needs. This application does not impose specific limitations on this.

[0069] In some alternative embodiments, all clamping members 2 may be movable clamping members; or, in at least two groups of adjacent clamping members 2, one clamping member 2 may be a fixed clamping member. The number of fixed clamping members can be set flexibly, and can be set according to actual needs. This application embodiment does not impose a specific limitation on this.

[0070] Furthermore, in some optional embodiments, the clamping member 2 is an insulating, flame-retardant, and heat-insulating component.

[0071] With this configuration, it can be seen that the clamping component 2 is made of insulating, flame-retardant, and heat-insulating materials, such as ceramic matrix composites and modified engineering plastics. Therefore, it can be seen that the clamping component 2 has insulation, flame-retardant, and heat-insulating properties.

[0072] The insulation properties can effectively block the risk of current conduction that may be generated by the wire harness or clamping parts 2 in the high temperature zone and the normal temperature zone, and avoid the control module in the normal temperature zone from being damaged by leakage or causing safety accidents. It is especially suitable for the electrical environment that may exist in the battery formation process.

[0073] The flame-retardant properties can prevent the fire from spreading to the normal temperature zone through the clamping part 2 when abnormal high temperature or local fire occurs in the high temperature zone, reducing the risk of fire expansion and providing dual protection for equipment and personnel safety.

[0074] The thermal insulation properties can reduce the diffusion of heat from the high-temperature zone to the normal-temperature zone through the clamping member 2, thereby enhancing the thermal insulation effect between the high-temperature zone and the normal-temperature zone. This prevents the control module in the normal-temperature zone from being affected by high temperature, thus reducing the overall energy consumption loss of the equipment and maintaining the temperature environment required for the formation process more stably.

[0075] In some alternative embodiments, such as Figure 4 As shown, among the multiple clamping members 2, the one located in the positive direction of the first direction (e.g.) Figure 4 The outermost clamping member 2 (such as the second movable clamping member 25) in the X1 direction is provided with a threaded hole 26, and the other clamping members 2 (such as the fixed clamping member 23 and the first movable clamping member 24) are all provided with a first through hole 27. The axes of the first through hole 27 and the threaded hole 26 extend along the first direction.

[0076] like Figure 1 and Figure 4 As shown, the spacing adjustment structure 3 includes an adjusting bolt 31, which includes a threaded rod 311 and a bolt head 312 connected to each other. The threaded rod 311 passes through a plurality of first through holes 27 sequentially along the positive direction of the first direction and is threadedly connected to the threaded hole 26. The bolt head 312 is located in the opposite direction of the first direction of the plurality of clamping members 2 (e.g., ...). Figure 4 On one side of the X2 direction, to restrict the reverse movement of multiple clamping members 2 along the first direction.

[0077] With this configuration, when the adjusting bolt 31 is rotated, for example, the second movable clamping member 25 can move relative to the threaded rod 311 along the first direction, thereby changing the distance between it and the first movable clamping member 24. Furthermore, by moving the first movable clamping member 24 along the first direction, the distance between the first movable clamping member 24 and the fixed clamping member 23 can also be changed. Thus, rotating the adjusting bolt 31 facilitates the adjustment of the distance between two adjacent clamping members 2.

[0078] In addition, the self-locking characteristic of the threaded connection between the threaded rod 311 and the threaded hole 26, as well as the reverse limiting effect of the bolt head 312 on the clamping member 2, can effectively prevent the clamping member 2 from moving against each other due to factors such as vibration and temperature changes during equipment operation. This can improve the overall structural reliability and stability of the partition module, and thus ensure that the wire hole 4 and the wire harness always maintain a stable sealed fit.

[0079] In some alternative embodiments, the spacing adjustment structure 3 may further include a handwheel, a lead screw, and a nut, wherein the nut is fixedly connected to at least one movable clamping member 2, the lead screw extends along a first direction and is threadedly engaged with the nut, and the handwheel is fixedly connected to the lead screw.

[0080] With this configuration, turning the handwheel drives the lead screw to rotate, and the rotational motion is converted into the linear motion of the nut through the threaded engagement. This, in turn, drives the clamping member 2 to move along the first direction, allowing adjustment of the distance between adjacent clamping members 2. The self-locking characteristic of the lead screw enables stable locking of the distance, thus ensuring that the wire hole 4 and the wire harness always maintain a stable sealed fit.

[0081] In other embodiments, the spacing adjustment structure 3 can also be any other structure, and this application does not specifically limit it.

[0082] Furthermore, in some alternative embodiments, such as Figure 4 As shown, a second through hole 11 is provided on the partition wall body 1. The second through hole 11 is located on the opposite side of the first direction of the plurality of clamping members 2, and the axis of the second through hole 11 extends along the first direction.

[0083] like Figure 4 As shown, the threaded rod 311 passes through the second through hole 11 and multiple first through holes 27 in sequence along the positive direction of the first direction, and the bolt head 312 is located on the opposite side of the first direction of the partition wall body 1.

[0084] With this configuration, the partition wall body 1 serves as a fixed foundation, and the second through hole 11 bears part of the radial force when the threaded rod 311 is adjusted, reducing the wear or deformation of the first through hole 27 on the clamping member 2 due to long-term stress and extending the service life of the clamping member 2. At the same time, this layout makes the entire spacing adjustment structure 3, the partition wall body 1, and the clamping member 2 form a compact and stable whole, further improving the overall structural reliability of the partition wall module and better adapting to the long-term operation requirements of the Huacheng self-insulating integrated machine.

[0085] Furthermore, in some alternative embodiments, such as Figure 1 , Figure 2 and Figure 4 As shown, the plurality of first threading grooves 211 on the first side 21 are along the second direction (e.g. Figure 1 and Figure 4 Arranged sequentially along the Z direction, with the second direction differing from the first, such as... Figure 1 and Figure 4 As shown, multiple adjusting bolts 31 are spaced apart along the second direction.

[0086] With this configuration, multiple adjusting bolts 31 can apply uniform and distributed clamping force to the clamping member 2, which can prevent the clamping member 2 from being deformed due to concentrated force from a single adjusting bolt 31. At the same time, it can also ensure that each set of wire grooves arranged along the second direction can fit tightly and be precisely assembled into wire holes 4 that meet the sealing requirements, thereby effectively preventing the problem of sealing gaps due to insufficient local clamping force.

[0087] In some alternative embodiments, an adjusting bolt 31 may also be provided. This arrangement simplifies the structural composition of the spacing adjustment structure 3, thereby facilitating its assembly.

[0088] In some alternative embodiments, such as Figure 5 As shown, the side of the partition wall body 1 in the first direction is recessed with an installation groove 12, such as... Figure 4 As shown, multiple clamping elements 2 are all disposed within the mounting groove 12.

[0089] The axis of the thread hole 4 extends in a third direction (e.g., Figure 1 and Figure 5 (in the Y direction), such as Figure 2 and Figure 5As shown, the partition wall body 1 has clearance holes 13 on both sides of the third direction. The clearance holes 13 are connected to the mounting grooves 12 and are arranged opposite to the wire holes 4 in the third direction to allow the wire harness to pass through. The third direction is different from the first direction.

[0090] With this configuration, on the one hand, the mounting groove 12 can limit the clamping member 2, preventing the clamping member 2 from shifting along the second or third direction, ensuring that the clamping member 2 only moves along the first direction, thereby ensuring the splicing accuracy of the wire channel, and at the same time, it can make the clamping member 2 and the partition wall body 1 form a compact whole, reducing space occupation.

[0091] On the other hand, the clearance hole 13 can provide clearance for the wire harness. This not only makes it convenient for the wire harness to pass through the clearance hole 13 into the mounting groove 12 and then into the wire hole 4, but also makes it convenient for the wire harness to pass through the wire hole 4 and then through the clearance hole 13 to exit the mounting groove 12.

[0092] In some alternative embodiments, a T-slot is provided on the partition wall body 1, and the clamping member 2 is slidably connected to the T-slot along the first direction via a T-block.

[0093] This configuration, through the cooperation of the T-block and the T-slot, not only facilitates the installation and removal of the clamping member 2 on the partition wall body 1, but also ensures the stability of the movement of the clamping member 2 in the first direction, and prevents the clamping member 2 from shifting in the second direction or the third direction.

[0094] In other embodiments, other arbitrary structures can be provided on the partition wall body 1 to install the clamping member 2, and this application embodiment does not specifically limit this.

[0095] Furthermore, in some alternative embodiments, such as Figure 1 , Figure 2 and Figure 4 As shown, multiple first threading grooves 211 and corresponding multiple second threading grooves 221 form multiple threading holes 4, as follows. Figure 2 As shown, multiple threading holes 4 are in a third direction (such as...) Figure 2 The projections on the paper (in the direction perpendicular to the paper) are all located within the same clearance hole 13.

[0096] With this design, it is not necessary to open multiple clearance holes 13 on one side of the partition wall body 1 in the third direction, each corresponding to one of the multiple wire holes 4. Multiple wire bundles passing through multiple wire holes 4 can be avoided by a single clearance hole 13, which greatly reduces the number of openings on the partition wall body 1. This simplifies the processing technology of the partition wall body, reduces manufacturing costs, and avoids the weakening of the structural strength and thermal insulation performance of the partition wall body due to too many openings.

[0097] Furthermore, in some optional embodiments, the second direction differs from the first direction and the third direction, such as... Figure 5 As shown, the inner wall of the mounting groove 12 includes two first groove inner walls 121 arranged opposite each other in the second direction, and the inner wall of the clearance hole 13 includes two first hole inner walls 131 arranged opposite each other in the second direction; the two first groove inner walls 121 in the third direction (e.g., Figure 5 Arranged in the Y direction (as in the middle) aligned with the inner walls 131 of the two first holes respectively, or in the second direction (such as Figure 5 Located between the inner walls 131 of the two first holes in the Z direction; the size of the clamping member 2 in the first direction is smaller than the size of the clearance hole 13 in the first direction, and the clearance hole 13 is configured to allow the clamping member 2 to leave the mounting groove 12.

[0098] With this configuration, when it is necessary to replace or repair the clamping part 2, the clamping part 2 can be removed and placed in the mounting groove 12 through the slot of the mounting groove 12. Moreover, if the partition wall body 1 is not disassembled, since it is not possible to remove and place the clamping part 2 through the slot of the mounting groove 12, the clamping part 2 can be removed and placed in the mounting groove 12 through the clearance hole 13. This greatly simplifies the disassembly and assembly process and makes it easier to remove and place the clamping part 2 in the mounting groove 12.

[0099] In some alternative embodiments, the two first hole inner walls 131 may be located between the two first groove inner walls 121 in the second direction.

[0100] With this configuration, the structure between the inner wall 131 of the first hole and the inner wall 121 of the first groove can guide the movement of the clamping member 2 along the first direction, thereby enhancing the stability of the movement of the clamping member 2 along the first direction.

[0101] Furthermore, in some alternative embodiments, such as Figure 1 , Figure 2 and Figure 3 As shown, the partition module also includes a first limiting member 5 and a second limiting member 6. The first limiting member 5 and the second limiting member 6 are detachably disposed on the partition body 1. The first limiting member 5 and the second limiting member 6 are respectively placed on opposite sides of the partition body 1 in the third direction, and are both arranged opposite to the clearance hole 13 in the third direction to restrict the clamping member 2 from leaving the mounting groove 12 through the clearance hole 13.

[0102] With this configuration, after the clamping member 2 is installed in the mounting groove 12, the first limiting member 5 and the second limiting member 6 can form a bidirectional limiting on the clamping member 2 from the third direction, which can effectively prevent the clamping member 2 from accidentally dislodging from the mounting groove 12 through the clearance hole 13 during normal operation of the equipment, thereby ensuring that the clamping member 2 is always in the preset installation position.

[0103] When it is necessary to remove the clamping part 2, simply remove the first limiting part 5 and the second limiting part 6 from the partition wall body 1 to release the limiting of the clamping part 2, so that the clamping part 2 can be smoothly removed from the mounting groove 12 through the clearance hole 13 without disassembling the partition wall body 1, which greatly simplifies the disassembly and assembly process and makes it convenient to put the clamping part 2 into and out of the mounting groove 12.

[0104] In this embodiment, the first limiting member 5 and the second limiting member 6 can be detachably mounted on the partition wall body 1 by means of bolts, screws, snap-fit ​​buckles and slots, etc. The detachable mounting method of the first limiting member 5 and the second limiting member 6 on the partition wall body 1 is relatively flexible. Specifically, it can be selected according to actual needs. This embodiment does not make specific limitations in this regard.

[0105] Furthermore, in some alternative embodiments, such as Figure 1 , Figure 2 and Figure 3 As shown, there are two first limiting members 5, and the two first limiting members 5 are respectively arranged opposite to the two ends of the clamping member 2 in the second direction; and / or, as shown Figure 3 As shown, there are two second limiting members 6, and the two second limiting members 6 are respectively arranged opposite to the two ends of the clamping member 2 in the second direction.

[0106] With this configuration, compared to a single limiting component that only limits a portion of the clamping component 2 in the second direction, two limiting components act on both ends of the clamping component 2 in the second direction, forming a symmetrical limiting from both sides of the second direction. This effectively prevents the clamping component 2 from tilting or even flipping due to vibration or other factors during equipment operation, ensuring that the clamping component 2 always maintains the correct installation posture.

[0107] In some alternative embodiments, one of the first limiting member 5 and the second limiting member 6 may be provided. In this case, the first limiting member 5 and the second limiting member 6 may be arranged relative to any position of the clamping member 2 in the second direction. This arrangement not only enables bidirectional limiting of the clamping member 2 from a third direction through the first limiting member 5 and the second limiting member 6, but also simplifies the structural composition of the partition module, which is beneficial for the manufacturing and assembly of the partition module.

[0108] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A partition wall module, applied to a self-insulating integrated forming machine, the self-insulating integrated forming machine having a high-temperature zone and a normal-temperature zone, the partition wall module being used to separate the high-temperature zone and the normal-temperature zone, characterized in that, The partition wall module includes: Partition wall main body (1); Clamping members (2) are disposed on the partition wall body (1), and a plurality of clamping members are disposed sequentially along the first direction; among two adjacent clamping members (2), at least one is movably disposed along the first direction, and one has a first side (21), and the other has a second side (22) opposite to the first side (21); a plurality of first wire grooves (211) are disposed on the first side (21), and a plurality of second wire grooves (221) are disposed on the second side (22), and the plurality of second wire grooves (221) are arranged in a one-to-one correspondence with the plurality of first wire grooves (211); A spacing adjustment structure (3) is provided in at least one of the partition wall body (1) and the clamping member (2). The spacing adjustment structure (3) is used to adjust the spacing between two adjacent clamping members (2) in the first direction so that the first side (21) abuts or separates from the second side (22). When the first side (21) abuts with the second side (22), the correspondingly arranged first wire groove (211) and second wire groove (221) together form a wire hole (4) for the wire harness to pass through. The wire hole (4) is configured to seal with the wire harness that passes through.

2. The partition wall module according to claim 1, characterized in that, Among the plurality of clamping members (2), the clamping member (2) located on the outermost side in the first direction is provided with a threaded hole (26), and the remaining clamping members (2) are provided with a first through hole (27). The axes of the first through hole (27) and the threaded hole (26) extend along the first direction. The spacing adjustment structure (3) includes: An adjusting bolt (31) includes a threaded rod (311) and a bolt head (312) connected to each other. The threaded rod (311) passes through a plurality of first through holes (27) in sequence along the positive direction of the first direction and is threadedly connected to the threaded hole (26). The bolt head (312) is located on the opposite side of the plurality of clamping members (2) in the first direction to restrict the reverse movement of the plurality of clamping members (2) along the first direction.

3. The partition wall module according to claim 2, characterized in that, The partition wall body (1) is provided with a second through hole (11), the second through hole (11) is located on the opposite side of the first direction of the plurality of clamping members (2), and the axis of the second through hole (11) extends along the first direction; The threaded rod (311) passes through the second through hole (11) and a plurality of the first through holes (27) in sequence along the positive direction of the first direction, and the bolt head (312) is located on the opposite side of the first direction of the partition wall body (1).

4. The partition wall module according to claim 2 or 3, characterized in that, The plurality of first threading grooves (211) on the first side (21) are arranged sequentially along a second direction, which is different from the first direction; The adjusting bolts (31) are provided at intervals along the second direction.

5. The partition wall module according to any one of claims 1-3, characterized in that, The partition wall body (1) has a mounting groove (12) recessed on the side in the first direction, and a plurality of clamping members (2) are disposed in the mounting groove (12); The extension direction of the axis of the wire hole (4) is a third direction. Both sides of the partition wall body (1) on the third direction are provided with clearance holes (13). The clearance holes (13) are connected to the mounting groove (12) and are arranged opposite to the wire hole (4) on the third direction so that the wire harness can pass through. The third direction is different from the first direction.

6. The partition wall module according to claim 5, characterized in that, The plurality of first threading grooves (211) and the corresponding plurality of second threading grooves (221) form a plurality of threading holes (4), and the projections of the plurality of threading holes (4) in the third direction are all located within the same clearance hole (13).

7. The partition wall module according to claim 6, characterized in that, The plurality of first threading grooves (211) on the first side (21) are arranged sequentially along a second direction, which is different from the first direction and the third direction; The inner wall of the mounting groove (12) includes two first groove inner walls (121) arranged opposite to each other in the second direction, and the inner wall of the clearance hole (13) includes two first hole inner walls (131) arranged opposite to each other in the second direction; the two first groove inner walls (121) are respectively aligned with the two first hole inner walls (131) in the third direction, or are located between the two first hole inner walls (131) in the second direction; the size of the clamping member (2) in the first direction is smaller than the size of the clearance hole (13) in the first direction; The clearance hole (13) is configured to allow the clamping member (2) to exit the mounting groove (12).

8. The partition wall module according to claim 7, characterized in that, The partition module also includes: The first limiting member (5) is detachably disposed on the partition wall body (1); The second limiting member (6) is detachably disposed on the partition wall body (1). The second limiting member (6) and the first limiting member (5) are respectively placed on opposite sides of the partition wall body (1) in the third direction, and are both arranged opposite to the clearance hole (13) in the third direction to restrict the clamping member (2) from leaving the mounting groove (12) through the clearance hole (13).

9. The partition wall module according to claim 8, characterized in that, Two first limiting members (5) are provided, and the two first limiting members (5) are respectively arranged opposite to the two ends of the clamping member (2) in the second direction; and / or, There are two second limiting members (6), and the two second limiting members (6) are respectively arranged opposite to the two ends of the clamping member (2) in the second direction.

10. The partition wall module according to any one of claims 1-3, characterized in that, The clamping component (2) is an insulating, flame-retardant, and heat-insulating component.