Cable protection sleeve forming die and processing equipment

By using modular assembly and correction design of the cable protection sleeve forming mold, the problem of insufficient strength of the cable protection sleeve was solved, resulting in higher structural strength and a lower damage rate.

CN223507647UActive Publication Date: 2025-11-04SHENZHEN POWER GRID SMART ENERGY TECH CO LTD
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Patent Information

Application Number
CN202521973409.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-15
Publication Date
2025-11-04
Estimated Expiration
2035-09-15

AI Technical Summary

Technical Problem

Existing cable protection sleeves are not strong enough when laid underground, and are easily damaged in excavation accidents, failing to effectively protect the internal cables.

Method used

A cable protection sleeve forming mold is adopted. The module is driven to move circumferentially along the annular guide rail assembly by the driving components of the first and second forming mold assemblies. The arc grooves of the module are spliced ​​to form an annular reinforcing section. The alignment component ensures that the module is aligned, avoids misalignment, and improves the structural strength.

Benefits of technology

It significantly improves the structural strength of cable protection sleeves, reduces the damage rate, avoids stress concentration caused by torsion and deformation, and enhances the protection effect of cables.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cable protection sleeve forming die and processing equipment, and relates to the technical field of cable protection sleeve manufacturing, and the cable protection sleeve forming die comprises a first forming die assembly, a second forming die assembly and a deviation rectifying assembly, the first forming mold assembly comprises a first driving part, a first annular guide rail assembly and a plurality of first modules, the second forming mold assembly comprises a second driving part, a second annular guide rail assembly and a plurality of second modules, and the deviation rectifying assembly comprises a first deviation rectifying part and a second deviation rectifying part which are detachably connected. When the first module and the second module are spliced, the first deviation rectifying piece is connected with the second deviation rectifying piece, so that the first module is arranged right opposite to the second module, and the phenomenon that a formed annular reinforcing section is distorted and deformed due to dislocation deviation between the first module and the second module is avoided; and the damage rate of the cable protection sleeve is effectively reduced while the structural strength of the cable protection sleeve is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable protection sleeve manufacturing technical field, especially a kind of cable protection sleeve forming die and processing equipment. BACKGROUND

[0002] At present, the cable inside is protected by cable protection sleeve, for the cable of buried laying, the strength of existing cable protection sleeve is insufficient, thus when encountering excavation accident, cable protection sleeve is easy to be damaged due to insufficient strength, and then cannot effectively protect the cable inside. SUMMARY

[0003] The utility model discloses a kind of cable protection sleeve forming die and processing equipment, to reduce the damage rate of existing cable protection sleeve.

[0004] To achieve the above object, the cable protection sleeve forming die provided by the utility model comprises:

[0005] First forming die assembly, the first forming die assembly includes first driving part, first annular guide rail assembly and multiple first modules, each first module is movably installed on the first annular guide rail assembly, and multiple first modules are sequentially arranged along the circumference of the first annular guide rail assembly, the first driving part is drivingly connected with the first module, so that each first module moves along the circumference of the first annular guide rail assembly;First arc slot is formed in the end of the first module away from the first annular guide rail assembly;

[0006] Second forming die assembly, the second forming die assembly includes second driving part, second annular guide rail assembly and multiple second modules, each second module is movably installed on the second annular guide rail assembly, and multiple second modules are sequentially arranged along the circumference of the second annular guide rail assembly, the second driving part is drivingly connected with the second module, so that each second module moves along the circumference of the second annular guide rail assembly;Second arc slot is formed in the end of the second module away from the second annular guide rail assembly;

[0007] Deviation correction assembly, the deviation correction assembly includes detachably connected first deviation correction part and second deviation correction part, the first deviation correction part is consistent with the first module in number and is set one-to-one, the second deviation correction part is consistent with the second module in number and is set one-to-one.

[0008] The first and second annular guide rail assemblies are spaced apart along a first direction, the first annular guide rail assembly has a first forming section, and the second annular guide rail assembly has a second forming section, the first modules located at the first forming section and the second modules located at the second forming section are arranged in a one-to-one correspondence.

[0009] When the first modules are located at the first forming section and the second modules are located at the second forming section, the first and second deviation correcting members are connected to arrange the first modules to face the second modules, and the first and second arc-shaped grooves are combined to form a ring-shaped forming groove for forming a ring-shaped reinforcing section of a cable protection sleeve.

[0010] In an embodiment, the first deviation correcting member is arranged on the top of the first module, the first deviation correcting member comprises a mounting portion and a protruding portion connected to each other, the second deviation correcting member comprises a guide portion arranged on the top of the second module, and the guide portion is provided with a positioning groove for inserting the protruding portion; when the first modules are located at the first forming section and the second modules are located at the second forming section, the protruding portion is inserted into the positioning groove to arrange the first modules to face the second modules.

[0011] In an embodiment, the mounting portion is provided with a first adjusting hole extending along the width direction of the first module, the first module is provided with a first threaded hole corresponding to the first adjusting hole, and the first deviation correcting member further comprises a first bolt threadedly connected to the first threaded hole after passing through the first adjusting hole.

[0012] In an embodiment, the mounting portion is provided with a second adjusting hole extending along the length direction of the first module, the first module is provided with a second threaded hole corresponding to the second adjusting hole, and the first deviation correcting member further comprises a second bolt threadedly connected to the second threaded hole after passing through the second adjusting hole.

[0013] In an embodiment, the second deviation correcting member further comprises a fixing seat, a guide column and a spring, the fixing seat is fixed to the top of the second module, the fixing seat is located on the side of the guide portion facing the second annular guide rail assembly, and the fixing seat is spaced apart from the guide portion, the side of the guide portion facing the fixing seat is provided with a guide hole, one end of the guide column is connected to the fixing seat, the other end of the guide column is inserted into the guide hole and slidably connected to the hole wall of the guide hole, and the spring is arranged around the guide column, one end of the spring is connected to the fixing seat, and the other end of the spring is connected to the guide portion.

[0014] In an embodiment, the guide column comprises a limiting portion and a sliding portion, one end of the sliding portion away from the limiting portion is connected with the fixed seat, the guide hole comprises a sliding hole and an insertion hole which are in communication with each other, the bottom of the guide portion is provided with an opening in communication with the sliding hole, so that the limiting portion can enter the sliding hole through the opening, the sliding hole extends along the axial direction of the guide column, and one end of the sliding portion away from the fixed seat passes through the insertion hole and is detachably connected with the limiting portion located in the sliding hole.

[0015] And / or, the number of guide columns is at least two, the number of springs is consistent with and one-to-one corresponds to the number of guide columns, and the number of guide holes is consistent with and one-to-one corresponds to the number of guide columns.

[0016] In an embodiment, the first driving member comprises a first motor and a first sprocket, the first sprocket is arranged on the rotating shaft of the first motor, the first module is provided with a plurality of first clamping teeth on the side away from the first arc-shaped groove, the plurality of first clamping teeth extend along the height direction of the first module, and the plurality of first clamping teeth are sequentially and spaced apart along the width direction of the first module, the teeth of the first sprocket are used for meshing with the first clamping teeth, and any two adjacent first modules abut, so that the first motor can drive the plurality of first modules to move along the circumferential direction of the first annular guide rail assembly through the first sprocket.

[0017] And / or, the second driving member comprises a second motor and a second sprocket, the second sprocket is arranged on the rotating shaft of the second motor, the second module is provided with a plurality of second clamping teeth on the side away from the second arc-shaped groove, the plurality of second clamping teeth extend along the height direction of the second module, and the plurality of second clamping teeth are sequentially and spaced apart along the width direction of the second module, the teeth of the second sprocket are used for meshing with the second clamping teeth, and any two adjacent second modules abut, so that the second motor can drive the plurality of second modules to move along the circumferential direction of the second annular guide rail assembly through the second sprocket.

[0018] In an embodiment, the number of first arc-shaped grooves of each first module is a plurality, the plurality of first arc-shaped grooves are sequentially and spaced apart along the width direction of the first module, the number of second arc-shaped grooves of each second module is a plurality, the plurality of second arc-shaped grooves are sequentially and spaced apart along the width direction of the second module, and the number of first arc-shaped grooves is consistent with and one-to-one corresponds to the number of second arc-shaped grooves.

[0019] In an embodiment, the first annular guide rail assembly comprises a first annular upper guide rail, a first annular lower guide rail, and a first connecting piece connecting the first annular upper guide rail and the first annular lower guide rail, the first annular upper guide rail has the first shaped section, the first annular upper guide rail and the first annular lower guide rail are arranged in a spaced manner along the height direction of the first module, one side of the first annular upper guide rail towards the first annular lower guide rail is provided with a first upper guide groove, one side of the first annular lower guide rail towards the first annular upper guide rail is provided with a first lower guide groove, the first upper guide groove extends along the circumference of the first annular upper guide rail, and the first lower guide groove extends along the circumference of the first annular lower guide rail, the first module comprises a first block body, a first upper sliding column, and a first lower sliding column, the first block body is provided with the first arc-shaped slot, the first deviation correcting piece is arranged on the first block body, the first upper sliding column and the first lower sliding column are arranged on the upper and lower sides of the first block body respectively, the first upper sliding column extends into the first upper guide groove and is in sliding fit with the groove wall of the first upper guide groove, and the first lower sliding column extends into the first lower guide groove and is in sliding fit with the groove wall of the first lower guide groove.

[0020] The second annular guide rail assembly comprises a second annular upper guide rail, a second annular lower guide rail, and a second connecting piece connecting the second annular upper guide rail and the second annular lower guide rail, the second annular upper guide rail has the second shaped section, the second annular upper guide rail and the second annular lower guide rail are arranged in a spaced manner along the height direction of the second module, one side of the second annular upper guide rail towards the second annular lower guide rail is provided with a second upper guide groove, one side of the second annular lower guide rail towards the second annular upper guide rail is provided with a second lower guide groove, the second upper guide groove extends along the circumference of the second annular upper guide rail, and the second lower guide groove extends along the circumference of the second annular lower guide rail, the second module comprises a second block body, a second upper sliding column, and a second lower sliding column, the second block body is provided with the second arc-shaped slot, the second deviation correcting piece is arranged on the second block body, the second upper sliding column and the second lower sliding column are arranged on the upper and lower sides of the second block body respectively, the second upper sliding column extends into the second upper guide groove and is in sliding fit with the groove wall of the second upper guide groove, and the second lower sliding column extends into the second lower guide groove and is in sliding fit with the groove wall of the second lower guide groove.

[0021] In an embodiment, the first annular upper guide rail comprises two first upper long axis sections and two first upper arc sections, the first upper long axis section of the two first upper long axis sections close to the second annular guide rail assembly has the first shaped section, one end of the two first upper long axis sections is connected with two ends of a first upper arc section respectively, and the other end of the two first upper long axis sections is connected with two ends of another first upper arc section respectively; the first annular lower guide rail comprises two first lower long axis sections and two first lower arc sections, one end of the two first lower long axis sections is connected with two ends of a first lower arc section respectively, and the other end of the two first lower long axis sections is connected with two ends of another first lower arc section respectively; the first connecting piece comprises a first upper connecting section, a first lower connecting section and a first body connecting section, two ends of the first body connecting section are connected with the first upper connecting section and the first lower connecting section respectively, the first upper connecting section is located in the inner ring of the first annular upper guide rail, two ends of the first upper connecting section are connected with the two first upper long axis sections respectively, the first lower connecting section is located in the inner ring of the first annular lower guide rail, and two ends of the first lower connecting section are connected with the two first lower long axis sections respectively.

[0022] And / or, the second annular upper guide rail comprises two second upper long axis sections and two second upper arc sections, the second upper long axis section of the two second upper long axis sections close to the second annular guide rail assembly has the second shaped section, one end of the two second upper long axis sections is connected with two ends of a second upper arc section respectively, and the other end of the two second upper long axis sections is connected with two ends of another second upper arc section respectively; the second annular lower guide rail comprises two second lower long axis sections and two second lower arc sections, one end of the two second lower long axis sections is connected with two ends of a second lower arc section respectively, and the other end of the two second lower long axis sections is connected with two ends of another second lower arc section respectively; the second connecting piece comprises a second upper connecting section, a second lower connecting section and a second body connecting section, two ends of the second body connecting section are connected with the second upper connecting section and the second lower connecting section respectively, the second upper connecting section is located in the inner ring of the second annular upper guide rail, two ends of the second upper connecting section are connected with the two second upper long axis sections respectively, the second lower connecting section is located in the inner ring of the second annular lower guide rail, and two ends of the second lower connecting section are connected with the two second lower long axis sections respectively.

[0023] The utility model also proposes a cable protection sleeve processing equipment, the cable protection sleeve processing equipment includes bottom plate, feeding mechanism and above -mentioned cable protection sleeve forming die, first annular guide rail assembly, second annular guide rail assembly and feeding mechanism all set up in bottom plate, feeding mechanism is used for sending material between first forming die assembly and second forming die assembly.

[0024] The technical scheme of the utility model discloses a first driving element drives a plurality of first modules to move along the circumference of the first annular guide rail assembly, a second driving element drives a plurality of second modules to move along the circumference of the second annular guide rail assembly, the first module is provided with a first arc-shaped groove, the second module is provided with a second arc-shaped groove, when the first module is located at the first forming section and the second module is located at the second forming section, the number of the first module on the first forming section is equal to the number of the second module on the second forming section, and the first module and the second module are one-to-one corresponding, so that the first module at the position can be spliced with the second module, so that the first arc-shaped groove and the second arc-shaped groove are spliced to form an annular forming groove, thereby forming an annular reinforcing section on the outer wall of the cable protection sleeve clamped by the first module and the second module, thereby significantly improving the structural strength of the cable protection sleeve and reducing the damage rate of the cable protection sleeve. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced as follows, obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to the structure shown in these drawings without creative labor.

[0026] Figure 1 The structural schematic diagram of one embodiment of the cable protection sleeve processing equipment provided by the utility model is shown in the figure.

[0027] Figure 2 The structural schematic diagram of one embodiment of the cable protection sleeve forming die provided by the utility model is shown in the figure.

[0028] Figure 3 The top view structural schematic diagram of one embodiment of the cable protection sleeve forming die provided by the utility model is shown in the figure.

[0029] Figure 4 The structural schematic diagram of one embodiment of the utility model provided that the convex part extends into the positioning groove is shown in the figure.

[0030] Figure 5 The structural schematic diagram of one embodiment of the utility model provided that the convex part is located outside the positioning groove is shown in the figure.

[0031] Figure 6 The utility model provides a part structure cross section structure schematic drawing of one embodiment of guiding portion and guide post provided by the utility model,

[0032] Figure 7 The utility model provides a structure schematic drawing of one embodiment of first module provided by the utility model,

[0033] Figure 8 The utility model provides a cross section structure schematic drawing of one embodiment of first module and first annular upper guide rail and first annular lower guide rail provided by the utility model,

[0034] Figure 9 The utility model provides a cross section structure schematic drawing of one embodiment of second module and second annular upper guide rail and second annular lower guide rail provided by the utility model.

[0035] Explanation of figure mark number:

[0036] 100, cable protection sleeve forming die, 1, first forming die assembly, 11, first driving part, 111, first motor, 112, first sprocket, 12, first annular guide rail assembly, 121, first annular upper guide rail, 1211, first upper guide groove, 1212, first upper long shaft section, 1213, first upper arc section, 122, first annular lower guide rail, 1221, first lower guide groove, 123, first connecting piece, 124, first forming section, 13, first module, 131, first block body, 1311, first arc groove, 1312, first clamping tooth, 132, first upper sliding column, 133, first lower sliding column, 2, second forming die assembly, 21, second driving part, 211, second motor, 212, second sprocket, 22, second annular guide rail assembly, 221, second annular upper guide rail, 2211, second upper guide groove, 2212, second upper long shaft section, 2213, second upper arc section, 222, second annular lower guide rail, 2221, second lower guide groove, 223, second connecting piece, 224, second forming section, 23, second module, 231, second block body, 2311, second arc groove, 2312, second clamping tooth, 232, second upper sliding column, 233, second lower sliding column, 3, deviation rectifying assembly, 31, first deviation rectifying part, 311, mounting portion, 3111, first adjusting hole, 3112, second adjusting hole, 312, protruding portion, 313, first bolt, 314, second bolt, 32, second deviation rectifying part, 321, guiding portion, 3211, guide hole, 32111, sliding hole, 32112, insertion hole, 3212, positioning groove, 322, fixed seat, 323, guide column, 3231, limiting portion, 3232, sliding portion, 324, spring,

[0037] 200, cable protection sleeve processing equipment, 201, bottom plate, 202, feeding mechanism.

[0038] The purposes, functional features and advantages of the utility model will be further described in combination with embodiments with reference to the drawings. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0040] It should be noted that if the embodiments of the utility model involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0041] In addition, if the embodiments of the utility model involve descriptions such as "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the fact that a person skilled in the art can realize it, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist and is not within the scope of protection required by the utility model.

[0042] At present, the internal cable is protected by the cable protection sleeve, and for the buried and laid cable, the existing cable protection sleeve is insufficient in strength, so that when a digging accident occurs, the cable protection sleeve is easy to be damaged due to insufficient strength of itself, and thus cannot effectively protect the internal cable.

[0043] The inventor has found that the reason why the existing cable protection sleeve is easy to be damaged is that the outer surface of the cable protection sleeve is a smooth plane, so that the strength of the cable protection sleeve itself is not high, and thus it is easy to be damaged.

[0044] In view of this, the utility model provides a cable protection sleeve forming die, which aims to reduce the damage rate of the existing cable protection sleeve.

[0045] Please refer toFigures 1 to 3 In the embodiment of the utility model, the cable protection sleeve forming die 100 includes first forming die assembly 1, second forming die assembly 2 and deviation rectifying assembly 3, first forming die assembly 1 includes first driving part 11, first annular guide rail assembly 12 and multiple first modules 13, each first module 13 is movably installed to first annular guide rail assembly 12, and multiple first modules 13 are sequentially arranged along the circumference of first annular guide rail assembly 12, first driving part 11 is transmission connected with first module 13, so that each first module 13 moves along the circumference of first annular guide rail assembly 12;First module 13 is provided with first arc slot 1311 at the end away from first annular guide rail assembly 12;Second forming die assembly 2 includes second driving part 21, second annular guide rail assembly 22 and multiple second modules 23, each second module 23 is movably installed to second annular guide rail assembly 22, and multiple second modules 23 are sequentially arranged along the circumference of second annular guide rail assembly 22, second driving part 21 is transmission connected with second module 23, so that each second module 23 moves along the circumference of second annular guide rail assembly 22;Second module 23 is provided with second arc slot 2311 at the end away from second annular guide rail assembly 22;Deviation rectifying assembly 3 includes detachably connected first deviation rectifying part 31 and second deviation rectifying part 32, first deviation rectifying part 31 is set with first module 13 number consistent and one-to-one correspondence, second deviation rectifying part 32 is set with second module 23 number consistent and one-to-one correspondence;First annular guide rail assembly 12 and second annular guide rail assembly 22 are spaced apart along the first direction, first annular guide rail assembly 12 has first forming section 124, second annular guide rail assembly 22 has second forming section 224, first module 13 located at first forming section 124 and second module 23 located at second forming section 224 are set with number consistent and one-to-one correspondence;When first module 13 is located at first forming section 124, and second module 23 is located at second forming section 224, first deviation rectifying part 31 and second deviation rectifying part 32 are connected, so that first module 13 is set opposite to second module 23, first arc slot 1311 and second arc slot 2311 are spliced to form annular forming slot, which is used to form annular reinforcing section of cable protection sleeve on the outer surface of cable protection sleeve.

[0046] The technical scheme of the utility model discloses through adopting first drive piece 11 drive a plurality of first module 13 along the circumferential movement of first annular guide rail subassembly 12, second drive piece 21 drive a plurality of second module 23 along the circumferential movement of second annular guide rail subassembly 22, first module 13 is provided with first arc slot 1311, second module 23 is provided with second arc slot 2311, when first module 13 is located first forming section 124, second module 23 is located second forming section 224, the quantity of first module 13 on first forming section 124 is equal to the quantity of second module 23 on second forming section 224, and first module 13 and second module 23 are set up one by one, so that first module 13 in this position can splice with second module 23, so that first arc slot 1311 and second arc slot 2311 are spliced and form annular forming groove, thereby forming annular reinforcing section on the outer wall of cable protection sleeve that is clamped by first module 13 and second module 23, thereby the structural strength of cable protection sleeve is improved significantly, and the damage rate of cable protection sleeve is reduced, and simultaneously, when first module 13 and second module 23 are spliced, first deviation rectifying piece 31 and second deviation rectifying piece 32 are connected, not only can limit the relative movement of first module 13 and second module 23 to a certain extent, but also reduce the phenomenon that annular reinforcing section is distorted due to the relative movement of first module 13 and second module 23, and first module 13 is set up opposite second module 23, avoid the misplacement deviation between first module 13 in first forming section 124 and second module 23 in second forming section 224, so that first arc slot 1311 and second arc slot 2311 appear misplacement in space, and further cause the distortion of annular reinforcing section, since stress concentration is easy to appear at the distorted position, and stress concentration at this position can cause cable protection sleeve to be damaged easily, therefore, the embodiment sets up first deviation rectifying piece 31 and second deviation rectifying piece 32 to reduce the damage rate of cable protection sleeve effectively. Figure 3 The first direction is the left-right direction as shown.

[0047] The first forming die assembly 1 and the second forming die assembly 2 form a channel for the cable protection sleeve to pass through, the smooth cable protection sleeve enters from the inlet end of the channel, is clamped by the first module 13 located on the first forming section 124 close to the inlet end and the second module 23 located on the second forming section 224 close to the inlet end, so that the annular reinforcing section is formed on the outer wall of the cable protection sleeve, under the driving of the first driving member 11 and the second driving member 21, the first module 13 and the second module 23 clamping the cable protection sleeve move to the outlet end and drive the cable protection sleeve to move, in the process, the first module 13 entering the first forming section 124 from the direction close to the inlet end and the second module 23 entering the second forming section 224 will extrude the outer wall of the cable protection sleeve again, so that a second annular reinforcing section is formed on the outer wall of the cable protection sleeve at another position, and the process is continued to form multiple annular reinforcing sections on the outer wall of the cable protection sleeve, and the multiple annular reinforcing sections are arranged in sequence along the axial direction of the cable protection sleeve, so that the structural strength of the cable protection sleeve is effectively improved, and the damage rate of the cable protection sleeve is reduced.

[0048] It should be noted that the first annular guide rail assembly 12 is a first annular metal guide rail, and the second annular guide rail assembly 22 is a second annular metal guide rail, so that the first module 13 located on the first forming section 124 and the second module 23 located on the second forming section 224 can provide reliable support for the first module 13 when extruding and forming the cable protection sleeve, so that the first module 13 does not move relative to the second module 23 due to insufficient support of the first annular guide rail assembly 12; similarly, the second annular guide rail assembly 22 can also provide reliable support for the second module 23, so that the second module 23 does not move relative to the first module 13 due to insufficient support of the second annular guide rail assembly 22.

[0049] It should be further noted that the first driving member 11 and the second driving member 21 can be a stepper motor or a servo motor, which is not limited herein; the first module 13 and the second module 23 can be a rectangular block or a square block, which is not limited herein. The first module 13 and the second module 23 are arranged in a one-to-one correspondence.

[0050] Please refer to Figures 3 to 5In an embodiment, the first deviation rectifying member 31 is arranged on the top of the first module 13, the first deviation rectifying member 31 comprises a mounting portion 311 and a protruding portion 312 connected with each other, the second deviation rectifying member 32 comprises a guide portion 321 arranged on the top of the second module 23, and the guide portion 321 is provided with a positioning slot 3212 for inserting the protruding portion 312; when the first module 13 is located in the first forming section 124 and the second module 23 is located in the second forming section 224, the protruding portion 312 is inserted into the positioning slot 3212, so that the first module 13 is arranged opposite to the second module 23. In the process that the first module 13 gradually enters the first forming section 124 and the second module 23 gradually enters the second forming section 224 under the action of the first driving member 11 and the second driving member 21, the protruding portion 312 gradually slides into the positioning slot 3212; when the first module 13 moves to the first forming section 124 and the corresponding second module 23 moves to the second forming section 224, the protruding portion 312 is completely inserted into the positioning slot 3212, which not only realizes the alignment of the first module 13 and the second module 23, but also limits the swing of the first module 13 relative to the first annular guide rail assembly 12 and the swing of the second module 23 relative to the second annular guide rail assembly 22, so as to limit the movement of the first module 13 relative to the second module 23 and reduce the probability of distortion of the formed annular reinforcing section caused by the movement of the first module 13 relative to the second module 23; in the process that the first module 13 leaves the first forming section 124 and gradually moves away, and the second module 23 leaves the second forming section 224 and gradually moves away under the action of the first driving member 11 and the second driving member 21, the guide portion 321 gradually separates from the positioning slot 3212 until completely separated. It should be noted that the protruding portion 312 can be semicircular, triangular or rectangular, and the shape of the positioning slot 3212 needs to be matched with the shape of the protruding portion 312.

[0051] According to an embodiment of the utility model, the first deviation rectifying member 31 is an electric push rod, the second deviation rectifying member 32 is a boss, the electric push rod is arranged on the top of the first module 13, the boss is arranged on the top of the second module 23, one end of the boss towards the electric push rod is provided with a insertion hole for inserting the telescopic shaft of the electric push rod, when the first module 13 is located in the first forming section 124 and the second module 23 is located in the second forming section 224, the electric push rod drives the telescopic shaft to extend and insert into the insertion hole, so as to limit the movement of the first module 13 relative to the second module 23 and ensure that the first module 13 can be arranged opposite to the second module 23. The electric push rod is a prior structure.

[0052] Please refer to Figure 4 and Figure 5In an embodiment, the mounting portion 311 is provided with a first adjusting hole 3111 extending along the width direction of the first module 13, the first module 13 is provided with a first threaded hole corresponding to the first adjusting hole 3111, and the first deviation correcting member 31 further comprises a first bolt 313 which is screwed with the first threaded hole after passing through the first adjusting hole 3111. By providing the first adjusting hole 3111, the position of the mounting portion 311 in the width direction of the first module 13 can be adjusted, which provides a guarantee for the smooth insertion of the protruding portion 312 into the positioning groove 3212. After the position of the mounting portion 311 is determined, the first bolt 313 is screwed with the first threaded hole after passing through the first adjusting hole 3111, so as to fix the position of the mounting portion 311. It should be noted that the width direction of the first module 13 is the left-right direction shown in the figure. Figure 7

[0053] Please refer to Figure 4 and Figure 5 In an embodiment, the mounting portion 311 is provided with a second adjusting hole 3112 extending along the length direction of the first module 13, the first module 13 is provided with a second threaded hole corresponding to the second adjusting hole 3112, and the first deviation correcting member 31 further comprises a second bolt 314 which is screwed with the second threaded hole after passing through the second adjusting hole 3112. By providing the second adjusting hole 3112, the position of the mounting portion 311 in the length direction of the first module 13 can be adjusted, which provides a guarantee for the smooth insertion of the protruding portion 312 into the positioning groove 3212. After the position of the mounting portion 311 is determined, the second bolt 314 is screwed with the second threaded hole after passing through the second adjusting hole 3112, so as to fix the position of the mounting portion 311. It should be noted that the length direction of the first module 13 is the front-rear direction shown in the figure. Figure 7

[0054] Please refer to Figure 4 and Figure 5 ​​In an embodiment, the second deviation rectifying member 32 further comprises a fixing seat 322, a guide column 323 and a spring 324. The fixing seat 322 is fixed to the top of the second module 23. The fixing seat 322 is located at the side of the guide portion 321 facing the second annular guide rail assembly 22, and is spaced apart from the guide portion 321. A guide hole 3211 is formed in the side of the guide portion 321 facing the fixing seat 322. One end of the guide column 323 is connected with the fixing seat 322, and the other end of the guide column 323 is inserted into the guide hole 3211 and is in sliding fit with the hole wall of the guide hole 3211. The spring 324 is arranged around the outer periphery of the guide column 323. One end of the spring 324 is connected with the fixing seat 322, and the other end of the spring 324 is connected with the guide portion 321. By arranging the guide column 323 and the spring 324, the contact between the first deviation rectifying member 31 and the second deviation rectifying member 32 is changed from the original rigid contact to flexible contact, thereby reducing the wear caused by rigid collision between the two, and prolonging the service life of the two. At the same time, the spring 324 generates a spring force to push the positioning groove 3212 to move towards the protruding portion 312, so that the positioning groove 3212 abuts against the protruding portion 312, increases the maximum static friction between the two, and makes the first module 13 more difficult to move relative to the second module 23. It should be noted that due to production and manufacturing errors, in the process of the first module 13 entering the first forming section 124, the protruding portion 312 can directly and smoothly enter the guide groove, or the protruding portion 312 can abut against the outer wall of the guide groove. In this case, as the first module 13 and the second module 23 move, the protruding portion 312 is not smoothly entered into the guide groove, and the distance between the first module 13 and the second module 23 is gradually reduced. Therefore, the protruding portion 312 will extrude the guide portion 321, the guide portion 321 moves towards the fixing seat 322 under the guidance of the guide column 323, thereby avoiding the gradually approaching protruding portion 312. The spring 324 is compressed, and the spring 324 generates a spring force to move the guide portion 321 towards the protruding portion 312, thereby prompting the guide portion 321 to be guided by the arc surface of the protruding portion 312, so that the protruding portion 312 can smoothly slide into the positioning groove 3212, and the reliability of the splicing of the first module 13 and the second module 23 is improved.

[0055] See Figure 5 and Figure 6In an embodiment, the guide column 323 comprises a limiting portion 3231 and a sliding portion 3232, the end of the sliding portion 3232 away from the limiting portion 3231 is connected with the fixed seat 322, the guide hole 3211 comprises a sliding hole 32111 and an insertion hole 32112 which are in communication with each other, the bottom of the guide portion 321 is provided with an opening in communication with the sliding hole 32111, so that the limiting portion 3231 can enter the sliding hole 32111 through the opening, the sliding hole 32111 extends along the axial direction of the guide column 323, the end of the sliding portion 3232 away from the fixed seat 322 passes through the insertion hole 32112 and is detachably connected with the limiting portion 3231 located in the sliding hole 32111, the size of the limiting portion 3231 is greater than the hole diameter of the insertion hole 32112; the limiting portion 3231 enters the sliding hole 32111 through the opening, the sliding portion 3232 is connected with the limiting portion 3231 located in the sliding hole 32111 after passing through the insertion hole 32112, the sliding portion 3232 cannot leave the sliding hole 32111 from the opening due to the connection with the limiting portion 3231, thereby ensuring the reliability of the sliding fit between the guide column 323 and the guide portion 321; since the size of the limiting portion 3231 is greater than the hole diameter of the insertion hole 32112, the limiting portion 3231 also cannot leave the sliding hole 32111 through the insertion hole 32112, the sliding fit between the limiting portion 3231 and the sliding hole 32111 is set, thereby limiting the moving stroke of the guide portion 321, avoiding that the guide portion 321 is separated from the second module 23 under the elastic force of the spring 324 after the protruding portion 312 is separated from the positioning groove 3212. The limiting portion 3231 can be a limiting block, and the sliding portion 3232 can be a sliding column.

[0056] In an embodiment, the number of the guide columns 323 is at least two, the number of the springs 324 is consistent with and one-to-one corresponds to the number of the guide columns 323, and the number of the guide holes 3211 is consistent with and one-to-one corresponds to the number of the guide columns 323. By setting at least two guide columns 323, the guiding effect on the moving direction of the guide portion 321 is strengthened.

[0057] Please refer to Figure 3 and Figure 7In an embodiment, the first driving member 11 comprises a first motor 111 and a first sprocket 112, the first sprocket 112 is arranged on a rotating shaft of the first motor 111, each first module 13 is provided with a plurality of first clamping teeth 1312 on a side away from the first arc-shaped slot 1311, the plurality of first clamping teeth 1312 extend along the height direction of the first module 13, and the plurality of first clamping teeth 1312 are sequentially and spaced apart along the width direction of the first module 13, the teeth of the first sprocket 112 are used for meshing with the first clamping teeth 1312, and any two adjacent first modules 13 abut each other, so that the first motor 111 can drive the plurality of first modules 13 to move along the circumference of the first annular guide rail assembly 12 through the first sprocket 112; wherein, the first motor 111 drives the first sprocket 112 to rotate, and since the first sprocket 112 meshes with the plurality of first clamping teeth 1312 of at least one first module 13, the first module 13 is inevitably driven to move, and since any two adjacent first modules 13 abut each other, the first module 13 drives the remaining first modules 13 to move along the circumference of the first annular guide rail assembly 12. Compared with the chain transmission used to drive the plurality of first modules 13 to move, the embodiment avoids the loosening of the chain transmission that may occur after long-term use, and also avoids the additional process of tensioning the chain by a tensioning wheel due to the loosening of the chain, and the technical solution of the embodiment realizes the stable movement of the plurality of first modules 13 at a lower cost. It should be noted that the height direction of the first module 13 is the upward and downward direction shown in the figure. Figure 7

[0058] According to an embodiment of the utility model, the first driving member 11 comprises a first motor 111, a first sprocket 112 and a second sprocket 212, and a chain wound on the first sprocket 112 and the second sprocket 212, the first sprocket 112 is sleeved on the rotating shaft of the first motor 111, each first module 13 is connected with the chain, so that the first motor 111 can drive the first sprocket 112 to rotate, thereby driving the chain to move and the second sprocket 212 to rotate, and further driving the plurality of first modules 13 to move along the circumference of the first annular guide rail assembly 12.

[0059] Please refer to Figure 3 ​In an embodiment, the second driving member 21 comprises a second motor 211 and a second sprocket 212, the second sprocket 212 is arranged on the rotating shaft of the second motor 211, the second module 23 is provided with a plurality of second clamping teeth 2312 on the side away from the second arc-shaped slot 2311, the plurality of second clamping teeth 2312 extend along the height direction of the second module 23, and the plurality of second clamping teeth 2312 are sequentially and spaced apart along the width direction of the second module 23, the teeth of the second sprocket 212 are used to engage with the second clamping teeth 2312, and any two adjacent second modules 23 abut each other, so that the second motor 211 can drive the plurality of second modules 23 to move along the circumference of the second annular guide rail assembly 22 through the second sprocket 212. Among them, the second motor 211 drives the second sprocket 212 to rotate, and since the second sprocket 212 engages with the plurality of second clamping teeth 2312 of at least one second module 23, the second module 23 will be driven to move, and since any two adjacent second modules 23 abut each other, the second module 23 will drive the remaining second modules 23 to move along the circumference of the second annular guide rail assembly 22.

[0060] Please refer to Figure 7 In an embodiment, the number of the first arc-shaped slots 1311 of each first module 13 is a plurality, the plurality of first arc-shaped slots 1311 are sequentially and spaced apart along the width direction of the first module 13, the number of the second arc-shaped slots 2311 of each second module 23 is a plurality, the plurality of second arc-shaped slots 2311 are sequentially and spaced apart along the width direction of the second module 23, and the number of the first arc-shaped slots 1311 is consistent with and one-to-one corresponding to the number of the second arc-shaped slots 2311. Among them, the number of the first arc-shaped slots 1311 is a plurality, the plurality of first arc-shaped slots 1311 are sequentially and spaced apart along the width direction of the first module 13, and the number of the second arc-shaped slots 2311 on the second module 23 is consistent with and one-to-one corresponding to the number of the first arc-shaped slots 1311 of the corresponding first module 13, which makes the one-time pressing of the first module 13 and the second module 23 can form a plurality of annular reinforcing sections on the outer wall of the cable protection sleeve at one time, improves the efficiency of forming annular reinforcing sections, further improves the structural strength of the cable protection sleeve, and reduces the damage rate of the cable protection sleeve.

[0061] According to the utility model one embodiment, the bottom of the first arc-shaped groove 1311 is provided with a plurality of first protrusions, the plurality of first protrusions are sequentially arranged along the extension direction of the first arc-shaped groove 1311, the bottom of the second arc-shaped groove 2311 is provided with a plurality of second protrusions, the plurality of second protrusions are sequentially arranged along the extension direction of the arc-shaped groove, by setting the first protrusion and the second protrusion, the shape of the annular reinforcing section after forming can be rectangular, pentagonal, hexagonal or other shapes, meet the different customer for annular reinforcing section shape requirement, wherein if the annular reinforcing section is rectangular, the annular stiffness of the annular reinforcing section can be further improved, and due to the existence of the annular reinforcing section, the pipe pillow structure member can be saved when laying the cable, the labor intensity is reduced, and the cost is saved.

[0062] Please refer to Figure 2 、 Figure 8 and Figure 9In an embodiment, the first ring-shaped guide rail assembly 12 comprises a first ring-shaped upper guide rail 121, a first ring-shaped lower guide rail 122, and a first connecting piece 123 connecting the first ring-shaped upper guide rail 121 and the first ring-shaped lower guide rail 122, the first ring-shaped upper guide rail 121 has a first shaped section 124, the first ring-shaped upper guide rail 121 and the first ring-shaped lower guide rail 122 are arranged in a spaced manner along the height direction of the first module 13, the side of the first ring-shaped upper guide rail 121 facing the first ring-shaped lower guide rail 122 is provided with a first upper guide groove 1211, the side of the first ring-shaped lower guide rail 122 facing the first ring-shaped upper guide rail 121 is provided with a first lower guide groove 1221, the first upper guide groove 1211 extends along the circumference of the first ring-shaped upper guide rail 121, the first lower guide groove 1221 extends along the circumference of the first ring-shaped lower guide rail 122, the first module 13 comprises a first block body 131, a first upper sliding column 132, and a first lower sliding column 133, the first block body 131 is provided with a first arc-shaped groove 1311, the first deviation correcting piece 31 is arranged on the first block body 131, the first upper sliding column 132 and the first lower sliding column 133 are arranged on the upper and lower sides of the first block body 131 respectively, the first upper sliding column 132 extends into the first upper guide groove 1211 and is in sliding cooperation with the groove wall of the first upper guide groove 1211, and the first lower sliding column 133 extends into the first lower guide groove 1221 and is in sliding cooperation with the groove wall of the first lower guide groove 1221; the second ring-shaped guide rail assembly 22 comprises a second ring-shaped upper guide rail 221, a second ring-shaped lower guide rail 222, and a second connecting piece 223 connecting the second ring-shaped upper guide rail 221 and the second ring-shaped lower guide rail 222, the second ring-shaped upper guide rail 221 has a second shaped section 224, the second ring-shaped upper guide rail 221 and the second ring-shaped lower guide rail 222 are arranged in a spaced manner along the height direction of the second module 23, the side of the second ring-shaped upper guide rail 221 facing the second ring-shaped lower guide rail 222 is provided with a second upper guide groove 2211, the side of the second ring-shaped lower guide rail 222 facing the second ring-shaped upper guide rail 221 is provided with a second lower guide groove 2221, the second upper guide groove 2211 extends along the circumference of the second ring-shaped upper guide rail 221, the second lower guide groove 2221 extends along the circumference of the second ring-shaped lower guide rail 222, the second module 23 comprises a second block body 231, a second upper sliding column 232, and a second lower sliding column 233, the second block body 231 is provided with a second arc-shaped groove 2311, the second deviation correcting piece 32 is arranged on the second block body 231, the second upper sliding column 232 and the second lower sliding column 233 are arranged on the upper and lower sides of the second block body 231 respectively, the second upper sliding column 232 extends into the second upper guide groove 2211 and is in sliding cooperation with the groove wall of the second upper guide groove 2211, and the second lower sliding column 233 extends into the second lower guide groove 2221 and is in sliding cooperation with the groove wall of the second lower guide groove 2221.The first upper guiding groove 1211 guides the movement of the first upper sliding column 132, the first lower guiding groove 1221 guides the movement of the first lower sliding column 133, thereby ensuring the stability of the movement of the first module 13, and the second upper guiding groove 2211 guides the movement of the second upper sliding column 232, the second lower guiding groove 2221 guides the movement of the second lower sliding column 233, thereby ensuring the stability of the movement of the second module 23, and providing a guarantee for the smooth extension of the protruding part 312 into the positioning groove 3212.

[0063] Please refer to Figure 3 In an embodiment, the first annular upper guide rail 121 comprises two first upper long axis sections 1212 and two first upper arc sections 1213, the first upper long axis section 1212 close to the second annular guide rail assembly 22 has a first shaped section 124; one end of each of the two first upper long axis sections 1212 is connected to two ends of a first upper arc section 1213, and the other end of each of the two first upper long axis sections 1212 is connected to two ends of another first upper arc section 1213; the first annular lower guide rail 122 comprises two first lower long axis sections and two first lower arc sections, one end of each of the two first lower long axis sections is connected to two ends of a first lower arc section, and the other end of each of the two first lower long axis sections is connected to two ends of another first lower arc section; the first connecting piece 123 comprises a first upper connecting section, a first lower connecting section and a first body connecting section, two ends of the first body connecting section are connected to the first upper connecting section and the first lower connecting section respectively, the first upper connecting section is located at the inner ring of the first annular upper guide rail 121, and two ends of the first upper connecting section are connected to the two first upper long axis sections 1212 respectively, the first lower connecting section is located at the inner ring of the first annular lower guide rail 122, and two ends of the first lower connecting section are connected to the two first lower long axis sections respectively; the first upper connecting section is arranged to connect the two first upper long axis sections 1212 respectively, thereby strengthening the structure of the first annular upper guide rail 121, the first lower connecting section is arranged to connect the two first lower long axis sections respectively, thereby strengthening the structure of the first annular lower guide rail 122, thereby reducing the probability of movement of the first module 13 relative to the second module 23 caused by deformation of the first annular upper guide rail 121 or the first annular lower guide rail 122 due to insufficient structural strength.

[0064] Please refer to Figure 3In an embodiment, the second annular upper guide rail 221 comprises two second upper long axis segments 2212 and two second upper arc segments 2213, one of the two second upper long axis segments 2212 is provided with a second shaped segment 224 near the second upper long axis segment 2212 of the second annular guide rail assembly 22; one end of each of the two second upper long axis segments 2212 is connected with two ends of one second upper arc segment 2213 respectively, and the other end of each of the two second upper long axis segments 2212 is connected with two ends of another second upper arc segment 2213 respectively; the second annular lower guide rail 222 comprises two second lower long axis segments and two second lower arc segments, one end of each of the two second lower long axis segments is connected with two ends of one second lower arc segment respectively, and the other end of each of the two second lower long axis segments is connected with two ends of another second lower arc segment respectively; the second connecting piece 223 comprises a second upper connecting segment, a second lower connecting segment and a second body connecting segment, two ends of the second body connecting segment are connected with the second upper connecting segment and the second lower connecting segment respectively, the second upper connecting segment is located at the inner ring of the second annular upper guide rail 221, and two ends of the second upper connecting segment are connected with the two second upper long axis segments 2212 respectively, the second lower connecting segment is located at the inner ring of the second annular lower guide rail 222, and two ends of the second lower connecting segment are connected with the two second lower long axis segments respectively. By arranging the second upper connecting segment to connect the two second upper long axis segments 2212 respectively, the structure of the second annular upper guide rail 221 is strengthened, by arranging the second lower connecting segment to connect the two second lower long axis segments respectively, the structure of the second annular lower guide rail 222 is strengthened, thereby reducing the probability of the second module 23 moving relative to the first module 13 due to the deformation of the second annular upper guide rail 221 or the second annular lower guide rail 222 caused by insufficient structural strength.

[0065] According to an embodiment of the present application, the number of the first connecting pieces 123 is multiple, and the multiple first connecting pieces 123 are arranged along the extension direction of the first long axis segment in sequence and at intervals, thereby effectively improving the structural strength of the first annular guide rail assembly 12; the number of the second connecting pieces 223 is multiple, and the multiple second connecting pieces 223 are arranged along the extension direction of the second long axis segment in sequence and at intervals, thereby effectively improving the structural strength of the second annular guide rail assembly 22.

[0066] Please refer to Figure 1The utility model also proposes a kind of cable protection sleeve processing equipment 200, cable protection sleeve processing equipment 200 includes bottom plate 201, feeding mechanism 202 and above-mentioned cable protection sleeve forming die 100, first annular guide rail assembly 12, second annular guide rail assembly 22 and feeding mechanism 202 are all arranged in bottom plate 201, and feeding mechanism 202 is used to send material between first forming die assembly 1 and second forming die assembly 2.The specific structure of the cable protection sleeve forming die 100 is referred to the above embodiment, since the cable protection sleeve processing equipment 200 of the utility model adopts all technical solutions of the above all embodiments, thus at least have all beneficial effects brought by the technical solutions of the above embodiment, here will not be repeated one by one.The feeding mechanism 202 is prior art.

[0067] The above is only exemplary embodiment of the utility model, and does not limit the protection scope of the utility model, and equivalent structural transformation made by using the utility model specification and drawing contents, or direct / indirect application in other related technical fields are included in the protection scope of the utility model.

Claims

1. A cable protection sleeve forming mold characterized by, The utility model relates to a cable protective sleeve forming device, which comprises a first forming die assembly, a second forming die assembly and a deviation rectifying assembly. The first forming die assembly comprises a first driving member, a first annular guide rail assembly and a plurality of first modules. Each of the first modules is movably mounted on the first annular guide rail assembly and arranged along the circumference of the first annular guide rail assembly. The first driving member is in driving connection with the first modules so as to move each of the first modules along the circumference of the first annular guide rail assembly. The first module is provided with a first arc-shaped slot at one end away from the first annular guide rail assembly. The second forming die assembly comprises a second driving member, a second annular guide rail assembly and a plurality of second modules.

2. The cable protection sleeve forming mold of claim 1, wherein, Each of the second modules is movably mounted on the second annular guide rail assembly and arranged along the circumference of the second annular guide rail assembly.

3. The cable protection sleeve forming mold of claim 2, wherein, The second driving member is in driving connection with the second modules so as to move each of the second modules along the circumference of the second annular guide rail assembly. The second module is provided with a second arc-shaped slot at one end away from the second annular guide rail assembly. The deviation rectifying assembly comprises a first deviation rectifying member and a second deviation rectifying member which are detachably connected. The first deviation rectifying member is in one-to-one correspondence with the first modules. The second deviation rectifying member is in one-to-one correspondence with the second modules. The first annular guide rail assembly and the second annular guide rail assembly are arranged along a first direction. The first annular guide rail assembly has a first forming section. The second annular guide rail assembly has a second forming section. When the first modules are located in the first forming section and the second modules are located in the second forming section, the first deviation rectifying member and the second deviation rectifying member are connected so that the first modules are arranged opposite to the second modules. The first arc-shaped slot and the second arc-shaped slot are combined to form a ring forming slot for forming an annular reinforcing section of a cable protective sleeve. The first deviation rectifying member is arranged on the top of the first module. The first deviation rectifying member comprises a mounting portion and a protruding portion which are connected to each other. The second deviation rectifying member comprises a guide portion arranged on the top of the second module. The guide portion is provided with a positioning slot for inserting the protruding portion. When the first modules are located in the first forming section and the second modules are located in the second forming section, the protruding portion is inserted into the positioning slot so that the first modules are arranged opposite to the second modules. The mounting portion is provided with a first adjusting hole extending along the width direction of the first module. The first module is provided with a first threaded hole corresponding to the first adjusting hole. The first deviation rectifying member further comprises a first bolt which is in threaded connection with the first threaded hole after passing through the first adjusting hole. And / or, the mounting portion is provided with a second adjusting hole, the second adjusting hole extends along the length direction of the first module, the first module is provided with a second threaded hole corresponding to the second adjusting hole, and the first deviation correcting member further comprises a second bolt, the second bolt is threadedly connected with the second threaded hole after penetrating through the second adjusting hole.

4. The cable protection sleeve forming mold of claim 2, wherein, The second deviation correcting member further comprises a fixing seat, a guide column and a spring, the fixing seat is fixed to the top of the second module, the fixing seat is located on the side of the guide portion facing the second annular guide rail assembly, and the fixing seat is spaced apart from the guide portion, the guide portion is provided with a guide hole on the side facing the fixing seat, one end of the guide column is connected with the fixing seat, the other end of the guide column is inserted into the guide hole and is in sliding fit with the hole wall of the guide hole, and the spring is arranged on the periphery of the guide column, one end of the spring is connected with the fixing seat, and the other end of the spring is connected with the guide portion.

5. The cable protection sleeve forming mold of claim 4, wherein, The guide column comprises a limiting portion and a sliding portion, one end of the sliding portion away from the limiting portion is connected with the fixing seat, the guide hole comprises a sliding hole and an insertion hole in communication with each other, and the bottom of the guide portion is provided with an opening in communication with the sliding hole, so that the limiting portion can enter the sliding hole through the opening, the sliding hole extends along the axial direction of the guide column, and one end of the sliding portion away from the fixing seat penetrates through the insertion hole and is detachably connected with the limiting portion located in the sliding hole, and the size of the limiting portion is greater than the hole diameter of the insertion hole. And / or, the number of the guide columns is at least two, the number of the springs is consistent with and corresponds to the number of the guide columns, and the number of the guide holes is consistent with and corresponds to the number of the guide columns.

6. A cable protection sleeve forming mold according to any one of claims 1 to 5, characterized in that The first driving member comprises a first motor and a first sprocket, the first sprocket is arranged on the rotating shaft of the first motor, the side of the first module away from the first arc-shaped groove is provided with a plurality of first clamping teeth, the plurality of first clamping teeth extend along the height direction of the first module, and the plurality of first clamping teeth are sequentially and spaced apart along the width direction of the first module, the teeth of the first sprocket are used for meshing with the first clamping teeth, and any two adjacent first modules abut, so that the first motor can drive the plurality of first modules to move along the circumferential direction of the first annular guide rail assembly through the first sprocket. And / or, the second driving member comprises a second motor and a second sprocket, the second sprocket is arranged on the rotating shaft of the second motor, the side of the second module away from the second arc-shaped groove is provided with a plurality of second clamping teeth, the plurality of second clamping teeth extend along the height direction of the second module, and the plurality of second clamping teeth are sequentially and spaced apart along the width direction of the second module, the teeth of the second sprocket are used for meshing with the second clamping teeth, and any two adjacent second modules abut, so that the second motor can drive the plurality of second modules to move along the circumferential direction of the second annular guide rail assembly through the second sprocket.

7. A cable protection sleeve forming mold as claimed in any one of claims 1 to 5, characterized in that The number of the first arc-shaped grooves of each first module is multiple, and the multiple first arc-shaped grooves are sequentially and spacedly arranged along the width direction of the first module; the number of the second arc-shaped grooves of each second module is multiple, and the multiple second arc-shaped grooves are sequentially and spacedly arranged along the width direction of the second module; the number of the first arc-shaped grooves is consistent with and one-to-one corresponds to the number of the second arc-shaped grooves.

8. A cable protection sleeve forming mold as claimed in any one of claims 1 to 5, characterized in that The first annular guide rail assembly comprises a first annular upper guide rail, a first annular lower guide rail and a first connecting piece connecting the first annular upper guide rail and the first annular lower guide rail, the first annular upper guide rail has the first shaped section, the first annular upper guide rail and the first annular lower guide rail are spacedly arranged along the height direction of the first module, the side of the first annular upper guide rail facing the first annular lower guide rail is provided with a first upper guide groove, the side of the first annular lower guide rail facing the first annular upper guide rail is provided with a first lower guide groove, the first upper guide groove extends along the circumference of the first annular upper guide rail, the first lower guide groove extends along the circumference of the first annular lower guide rail, the first module comprises a first block body, a first upper sliding column and a first lower sliding column, the first block body is provided with the first arc-shaped groove, the first deviation correcting piece is arranged on the first block body, the first upper sliding column and the first lower sliding column are arranged on the upper and lower sides of the first block body respectively, the first upper sliding column extends into the first upper guide groove and is in sliding cooperation with the groove wall of the first upper guide groove, and the first lower sliding column extends into the first lower guide groove and is in sliding cooperation with the groove wall of the first lower guide groove. The second annular guide rail assembly comprises a second annular upper guide rail, a second annular lower guide rail and a second connecting piece connecting the second annular upper guide rail and the second annular lower guide rail, the second annular upper guide rail has the second shaped section, the second annular upper guide rail and the second annular lower guide rail are spacedly arranged along the height direction of the second module, the side of the second annular upper guide rail facing the second annular lower guide rail is provided with a second upper guide groove, the side of the second annular lower guide rail facing the second annular upper guide rail is provided with a second lower guide groove, the second upper guide groove extends along the circumference of the second annular upper guide rail, the second lower guide groove extends along the circumference of the second annular lower guide rail, the second module comprises a second block body, a second upper sliding column and a second lower sliding column, the second block body is provided with the second arc-shaped groove, the second deviation correcting piece is arranged on the second block body, the second upper sliding column and the second lower sliding column are arranged on the upper and lower sides of the second block body respectively, the second upper sliding column extends into the second upper guide groove and is in sliding cooperation with the groove wall of the second upper guide groove, and the second lower sliding column extends into the second lower guide groove and is in sliding cooperation with the groove wall of the second lower guide groove.

9. The cable protection sleeve forming mold of claim 8, wherein, The first annular upper guide rail comprises two first upper long axis segments and two first upper arc segments, one of the two first upper long axis segments has the first shaped segment near the second annular guide rail assembly, one end of each of the two first upper long axis segments is connected with two ends of one of the first upper arc segments, and the other end of each of the two first upper long axis segments is connected with two ends of another of the first upper arc segments; the first annular lower guide rail comprises two first lower long axis segments and two first lower arc segments, one end of each of the two first lower long axis segments is connected with two ends of one of the first lower arc segments, and the other end of each of the two first lower long axis segments is connected with two ends of another of the first lower arc segments; the first connecting piece comprises a first upper connecting segment, a first lower connecting segment and a first body connecting segment, two ends of the first body connecting segment are connected with the first upper connecting segment and the first lower connecting segment respectively, the first upper connecting segment is located in the inner ring of the first annular upper guide rail, two ends of the first upper connecting segment are connected with the two first upper long axis segments respectively, the first lower connecting segment is located in the inner ring of the first annular lower guide rail, and two ends of the first lower connecting segment are connected with the two first lower long axis segments respectively. And / or, the second annular upper guide rail comprises two second upper long axis segments and two second upper arc segments, one of the two second upper long axis segments has the second shaped segment near the second annular guide rail assembly, one end of each of the two second upper long axis segments is connected with two ends of one of the second upper arc segments, and the other end of each of the two second upper long axis segments is connected with two ends of another of the second upper arc segments; the second annular lower guide rail comprises two second lower long axis segments and two second lower arc segments, one end of each of the two second lower long axis segments is connected with two ends of one of the second lower arc segments, and the other end of each of the two second lower long axis segments is connected with two ends of another of the second lower arc segments; the second connecting piece comprises a second upper connecting segment, a second lower connecting segment and a second body connecting segment, two ends of the second body connecting segment are connected with the second upper connecting segment and the second lower connecting segment respectively, the second upper connecting segment is located in the inner ring of the second annular upper guide rail, two ends of the second upper connecting segment are connected with the two second upper long axis segments respectively, the second lower connecting segment is located in the inner ring of the second annular lower guide rail, and two ends of the second lower connecting segment are connected with the two second lower long axis segments respectively.

10. A cable protection sleeve processing apparatus characterized by, The cable protection sleeve processing equipment comprises a base plate, a feeding mechanism and the cable protection sleeve forming die according to any one of claims 1 to 9, the first annular guide rail assembly, the second annular guide rail assembly and the feeding mechanism are arranged on the base plate, and the feeding mechanism is used for feeding material between the first forming die assembly and the second forming die assembly.