A cable winding reel adopting a new combined structure
Patent Information
- Application Number
- CN202420659621.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-02
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-04-02
AI Technical Summary
The existing winding trays have low space utilization during transportation and storage, high transportation and storage costs, and are prone to product damage; at the same time, the environmental protection performance of plastic materials is poor and cannot be recycled.
The winding disc is made of a mixed material of wood fiber and adhesive by molding, and a removable combination of left and right splicing is adopted. It has the function of connecting limit guidance, which improves assembly accuracy and efficiency.
It effectively reduces the cost of product use, improves environmental performance, makes the product recyclable, and significantly improves assembly accuracy and efficiency.
Smart Images

Figure CN222770396U8_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of winding drum moulds, in particular to a cable winding drum adopting a new type of combined structure. Background Art
[0002] Cables are a basic raw material in the fields of electricity, communications, etc. During the production process, the manufactured cables need to be wound on a winding drum and stored and transported by winding. The cable winding drum is a common tool for winding cables. The winding drum is generally made of plastic. In the existing winding drum manufacturing process, injection molding is generally adopted. The winding drum includes an upper drum body and a lower drum body which are spaced apart from each other. A support tube with a cylindrical structure is connected between the upper and lower drum bodies. The upper and lower drum bodies and the external space of the support tube form a winding space for winding cables. The middle part of the support tube is connected from top to bottom.
[0003] The existing manufacturing process of winding reels includes an integrated molding process and a separate manufacturing process for accessories. The integrated molding process is simple and has a low manufacturing cost, but the space utilization rate is low during later transportation and storage, the transportation and storage costs are high, and it is easy to cause product damage. If the product is damaged, the entire winding reel will be scrapped. The existing separate manufacturing process for accessories generally manufactures the three accessories of the upper disc body, the lower disc body and the support tube independently, and then combines the three accessories to form a complete winding reel. This manufacturing method is assisted by the accessory assembly process, and the assembly cost is high. The relative positions of the accessories are prone to positional displacement during use. In addition, most of the existing winding reels are made of plastic materials, which have poor environmental performance and cannot be recycled. Utility Model Content
[0004] The technical problem to be solved by the utility model is to provide a cable winding reel which is made of a mixed material of wood fiber and adhesive through molding through molding, has good environmental performance and can be recycled, effectively reduces the product use cost, and adopts a left-right splicing and detachable combination method, has a connection limit guide function, and adopts a new combination structure to improve assembly accuracy and assembly efficiency.
[0005] The technical solution adopted by the utility model is as follows: a cable winding reel adopting a new combination structure, including a first combination body and a second combination body arranged on the left and right, the first combination body and the second combination body are detachably connected to form a winding reel; a connecting guide assembly is provided on the first combination body and the second combination body; the first combination body and the second combination body are inserted into each other and limited by the connecting guide assembly and are connected as a whole.
[0006] Preferably, the first combination includes a first half-cylinder, a first half-disc and a second half-disc; the first half-cylinder is a semi-cylindrical structure, and the first half-cylinder is vertically arranged; the first half-disc and the second half-disc are semicircular structures, and the first half-disc and the second half-disc are parallelly spaced and arranged on the right side of the first half-cylinder, and extend outward in the horizontal direction respectively; the first half-cylinder, the first half-disc and the second half-disc are integrally formed; the second combination includes a second half-cylinder, a third half-disc and a fourth half-disc; the second half-cylinder is a semi-cylindrical structure, and the second half-cylinder is vertically arranged; the third half-disc and the fourth half-disc are semicircular structures, and the third half-disc and the fourth half-disc are parallelly spaced and arranged on the left side of the second half-cylinder, and extend outward in the horizontal direction respectively; the second half-cylinder, the third half-disc and the fourth half-disc are integrally formed.
[0007] Preferably, the winding reel includes a cylinder, a first reel and a second reel; the first half cylinder and the second half cylinder are spliced together to form a cylinder; the first half reel and the third half reel are spliced together to form a first reel; the second half reel and the fourth half reel are spliced together to form a second reel; the first reel and the second reel are circular disc structures and are arranged in parallel and at intervals; the space between the first reel, the second reel and the outside of the cylinder forms an annular winding space for winding cables.
[0008] Preferably, the first combination also includes a first half partition plate, which is horizontally arranged between the first half plate and the second half plate, and connected to the right side wall of the first half cylinder, and the first half cylinder, the first half plate, the second half plate and the first half partition plate are integrally formed; the second combination also includes a second half partition plate, which is horizontally arranged between the third half plate and the fourth half plate, and connected to the left side wall of the second half cylinder, and the second half cylinder, the third half plate, the fourth half plate and the second half partition plate are integrally formed; the first half partition plate and the second half partition plate are spliced together to form a partition plate; the partition plate divides the winding space into two independent sub-winding spaces up and down; a wire threading groove is opened on the partition plate for connecting the two independent sub-winding spaces.
[0009] Preferably, the connection guide assembly includes an insert block and a slot block; the insert block is arranged on the right side wall of the first assembly and / or the left side wall of the second assembly; the slot block is arranged on the left side wall of the second assembly and / or the right side wall of the first assembly; the insert block is inserted into the slot block, and is used for guiding and limiting the first assembly and the second assembly when they are spliced together, and for connecting and fixing the first assembly and the second assembly.
[0010] Preferably, the plug-in block comprises a first plug-in block, a second plug-in block and a third plug-in block; the first plug-in block comprises at least two blocks, at least two of which are respectively arranged on the right side end wall of the second half-cylinder in the vertical direction and are respectively located on the front and rear sides; the second plug-in block comprises at least two blocks, at least two of which are respectively arranged horizontally on the right side end wall of the third half-disc and are respectively located on the front and rear sides; the third plug-in block comprises at least two blocks, at least two of which are respectively arranged horizontally on the right side end wall of the fourth half-disc and are respectively located on the front and rear sides.
[0011] Preferably, the slot component includes a first slot, a second slot and a third slot; the first slot includes at least two pieces, at least two first slots are respectively arranged on the left end wall of the first half-cylinder in the vertical direction, and are respectively located on the front and rear sides; the first insertion block is detachably inserted in the first slot; the second slot includes at least two pieces, at least two second slots are respectively horizontally arranged on the left end side wall of the first half disk, and are respectively located on the front and rear sides; the second insertion block is detachably inserted in the second slot; the third slot includes at least two pieces, at least two third slots are respectively horizontally arranged on the left end side wall of the second half disk, and are respectively located on the front and rear sides; the second insertion block is detachably inserted in the third slot.
[0012] Preferably, the connecting guide assembly includes a screw seat and a screw, wherein the screw seat includes at least two, at least two screw seats are horizontally arranged on the inner side walls of the first half-cylinder and the second half-cylinder, and are spaced apart in the vertical direction; the screw seat is provided with an open screw hole on the left end surface close to the first half-cylinder or the right end surface close to the second half-cylinder; when the first half-cylinder and the second half-cylinder are spliced with each other, the screw seats on the first half-cylinder and the second half-cylinder are horizontally aligned; the screw includes at least two, at least two screws are horizontally inserted in the screw seats of the first half-cylinder and the second half-cylinder, for connecting and fixing the first half-cylinder and the second half-cylinder.
[0013] Preferably, a screw hole is provided on the side wall of the first half-cylinder and / or the second half-cylinder; the screw hole is horizontally aligned with the screw seat and is connected with the screw hole in the screw seat so as to insert the screw.
[0014] Preferably, the first assembly and the second assembly are made by compression molding; the raw material used for the compression molding is a mixed material of wood fiber and adhesive, and the mixed material is a solid powder structure.
[0015] Preferably, the first assembly and the second assembly are made by foaming and shaping a foaming material in a mold.
[0016] The beneficial effects of the utility model are:
[0017] In view of the defects and shortcomings of the prior art, the utility model independently developed and designed a cable winding reel which is made of a mixed material of wood fiber and adhesive through molding, has good environmental performance and is recyclable, effectively reducing the cost of product use, and adopts a left-right splicing and detachable combination method, has a connection limit guide function, and adopts a new combination structure to improve assembly accuracy and assembly efficiency.
[0018] The utility model aims to change the production principle of the existing winding reel made of plastic materials, and uses a mixed solid powder material of wood fiber and adhesive as the manufacturing material, while solving the problem of poor environmental performance of plastic materials. The material characteristics of wood fiber can be used to achieve product recycling, effectively reducing the cost of product use. In addition, compared with the traditional double-disc body and single-cylinder body assembly method, the utility model adopts a detachable connection method of left and right splicing of the first assembly and the second assembly, changing the traditional three-accessory connection to a two-accessory splicing assembly method, using multiple plug-in blocks to insert into multiple slots to ensure the guide limit during splicing, achieving fast and accurate splicing while effectively ensuring the relative position accuracy during splicing; and using the strip plug-in force-bearing method, effectively increasing the force-bearing surface during connection, and improving the bearing capacity after splicing. Specifically, the utility model includes the following advantages: 1. The product is light in weight and saves materials; 2. Saves transportation costs; 3. The mold is simple and the manufacturing cost is low; 4. Environmental protection, bamboo and wood fibers are easy to recycle. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is one of the three-dimensional structural schematic diagrams of Example 1 of the utility model.
[0020] Figure 2 This is the second schematic diagram of the three-dimensional structure of Example 1 of the utility model.
[0021] Figure 3 This is one of the schematic diagrams of the component disassembly structure of Example 1 of the utility model.
[0022] Figure 4 This is the second schematic diagram of the component disassembly structure of Example 1 of the utility model.
[0023] Figure 5 This is one of the three-dimensional structural schematic diagrams of Example 2 of the utility model.
[0024] Figure 6 This is the second schematic diagram of the three-dimensional structure of Example 2 of the utility model.
[0025] Figure 7 This is one of the schematic diagrams of the component disassembly structure of Example 2 of the utility model.
[0026] Figure 8 This is the second schematic diagram of the component disassembly structure of Example 2 of the utility model.
[0027] Fig. 9 This is one of the three-dimensional structural schematic diagrams of Example 3 of the utility model.
[0028] Fig.10 This is the second schematic diagram of the three-dimensional structure of Example 3 of the utility model.
[0029] Fig.11 This is one of the schematic diagrams of the component disassembly structure of Example 3 of the utility model.
[0030] Fig.12 This is the second schematic diagram of the component disassembly structure of Example 3 of the utility model.
[0031] Fig.13 This is one of the three-dimensional structural schematic diagrams of Example 4 of the utility model.
[0032] Fig.14 This is the second schematic diagram of the three-dimensional structure of Example 4 of the utility model.
[0033] Fig.15 This is one of the schematic diagrams of the component disassembly structure of Example 4 of the utility model.
[0034] Fig.16 This is the second schematic diagram of the component disassembly structure of Example 4 of the utility model. DETAILED DESCRIPTION
[0035] The utility model will be further described below in conjunction with the accompanying drawings:
[0036] like Figures 1 to 16 As shown, the technical solution adopted in this embodiment is as follows: a cable winding reel adopting a new combination structure, including a first combination body and a second combination body arranged on the left and right, the first combination body and the second combination body are detachably connected to form a winding reel; a connecting guide assembly is provided on the first combination body and the second combination body; the first combination body and the second combination body are inserted into each other and limited by the connecting guide assembly and are connected as a whole.
[0037] The utility model designs a cable winding drum with a new combination structure, which is made of a mixed material of wood fiber and adhesive through molding, has good environmental performance, can be recycled, effectively reduces the cost of product use, and adopts a detachable combination method of left and right splicing, has a connection limit guide function, improves assembly accuracy and assembly efficiency. The utility model aims to change the production principle of the existing winding drum made of plastic materials, and uses a mixed solid powder material of wood fiber and adhesive as a manufacturing material to solve the problem of poor environmental performance of plastic materials. The material characteristics of wood fiber can be used to achieve product recycling, effectively reducing the cost of product use. In addition, compared with the traditional double-disc body and single-cylinder body assembly method, the utility model adopts a detachable connection method of left and right splicing of the first assembly body and the second assembly body, changes the traditional three-accessory connection into a two-accessory splicing assembly method, and uses multiple plug-in pieces to insert into multiple slot pieces to ensure the guide limit during splicing, realize fast and accurate splicing, and effectively ensure the relative position accuracy during splicing; and uses a strip plug-in force-receiving method to effectively increase the force-bearing surface during connection and improve the bearing capacity after splicing. Specifically, the utility model has the following advantages: 1. The product is light in weight and saves materials; 2. It saves transportation costs; 3. The mold is simple and the manufacturing cost is low; 4. It is environmentally friendly and bamboo and wood fibers are easy to recycle. Example 1
[0038] like Figures 1 to 4 As shown, as an embodiment of the utility model, the first combination of this embodiment includes a first half cylinder 01, a first half disk 03 and a second half disk 05; the first half cylinder 01 is a semi-cylindrical structure, and the first half cylinder 01 is vertically arranged; the first half disk 03 and the second half disk 05 are semicircular structures, and the first half disk 03 and the second half disk 05 are parallel and spaced on the right side of the first half cylinder 01, and extend outward in the horizontal direction respectively; the first half cylinder 01, the first half disk 03 and the second half disk 05 are integrally formed; the second combination includes a second half cylinder 02, a third half disk 04 and a fourth half disk 06; the second half cylinder 02 is a semi-cylindrical structure, and the second half cylinder 02 is vertically arranged; the third half disk 04 and the fourth half disk 06 are semicircular structures, and the third half disk 04 and the fourth half disk 06 are parallel and spaced on the left side of the second half cylinder 02, and extend outward in the horizontal direction respectively; the second half cylinder 02, the third half disk 04 and the fourth half disk 06 are integrally formed.
[0039] The winding reel includes a cylinder 1, a first reel 2 and a second reel 3; the first half cylinder 01 and the second half cylinder 02 are spliced together to form the cylinder 1; the first half reel 03 and the third half reel 04 are spliced together to form the first reel 2; the second half reel 05 and the fourth half reel 06 are spliced together to form the second reel 3; the first reel 2 and the second reel 3 are circular disc structures and are arranged in parallel and at intervals; the space between the first reel 2, the second reel 3 and the outside of the cylinder 1 forms an annular winding space for winding cables.
[0040] The first combination also includes a first half partition plate 07, which is horizontally arranged between the first half plate 03 and the second half plate 05, and connected to the right side wall of the first half cylinder 01, and the first half cylinder 01, the first half plate 03, the second half plate 05 and the first half partition plate 07 are integrally formed; the second combination also includes a second half partition plate 08, which is horizontally arranged between the third half plate 04 and the fourth half plate 06, and connected to the left side wall of the second half cylinder 02, and the second half cylinder 02, the third half plate 04, the fourth half plate 06 and the second half partition plate 08 are integrally formed; the first half partition plate 07 and the second half partition plate 08 are spliced with each other to form a partition plate 4; the partition plate 4 divides the winding space into two independent sub-winding spaces up and down; the partition plate 4 is provided with a wire threading groove A for connecting the two independent sub-winding spaces.
[0041] The connecting guide assembly includes an insert block and a slot block; the insert block is arranged on the right side wall of the first assembly and / or the left side wall of the second assembly; the slot block is arranged on the left side wall of the second assembly and / or the right side wall of the first assembly; the insert block is inserted into the slot block, and is used for guiding and limiting the first assembly and the second assembly when they are spliced together, and connecting and fixing the first assembly and the second assembly.
[0042] The plug-in block comprises a first plug-in block 5, a second plug-in block 6 and a third plug-in block 7; the first plug-in block 5 comprises at least two pieces, at least two of which are respectively arranged on the right end wall of the second half-tube 02 in the vertical direction, and are respectively located on the front and rear sides; the second plug-in block 6 comprises at least two pieces, at least two of which are respectively arranged horizontally on the right end wall of the third half-disc 04, and are respectively located on the front and rear sides; the third plug-in block 7 comprises at least two pieces, at least two of which are respectively arranged horizontally on the right end wall of the fourth half-disc 06, and are respectively located on the front and rear sides.
[0043] The slot components include a first slot B, a second slot C and a third slot D; the first slot B includes at least two pieces, at least two of which are respectively arranged on the left end wall of the first half-cylinder 01 in the vertical direction, and are respectively located on the front and rear sides; the first insertion block 5 is detachably inserted in the first slot B; the second slot C includes at least two pieces, at least two of which are respectively arranged horizontally on the left end side wall of the first half-disc 03, and are respectively located on the front and rear sides; the second insertion block 6 is detachably inserted in the second slot C; the third slot D includes at least two pieces, at least two of which are respectively arranged horizontally on the left end side wall of the second half-disc 05, and are respectively located on the front and rear sides; the second insertion block 6 is detachably inserted in the third slot D.
[0044] When the above-mentioned insert block is inserted into the slot member, liquid glue can be coated on the surface of the insert block before insertion and assembly, so that after the insert block is inserted into the slot member, the insert block and the slot member are bonded and fixed to each other by curing the glue. Example 2
[0045] like Figures 5 to 8 As shown, as an embodiment of the utility model, compared with embodiment 1, the connection guide assembly of this embodiment also includes a screw seat 8 and a screw 9, wherein the screw seat 8 includes at least two, at least two screw seats 8 are horizontally arranged on the inner wall of the first half cylinder 01 and the second half cylinder 02, and are spaced apart in the vertical direction; the screw seat 8 is provided with an open screw hole on the left end face close to the first half cylinder 01 or on the right end face close to the second half cylinder 02; when the first half cylinder 01 and the second half cylinder 02 are spliced with each other, the screw seats 8 on the first half cylinder 01 and the second half cylinder 02 are horizontally aligned; the screw 9 includes at least two, at least two screws 9 are horizontally inserted in the screw seats 8 of the first half cylinder 01 and the second half cylinder 02, and are used to connect and fix the first half cylinder 01 and the second half cylinder 02.
[0046] A screw hole E is provided on the side wall of the first half cylinder 01 and / or the second half cylinder 02 ; the screw hole E is horizontally aligned with the screw seat 8 and is connected with the screw hole in the screw seat 8 so as to insert the screw 9 .
[0047] The screw hole E is opened on the side wall of the second half cylinder 02, and the screw rod 9 is horizontally inserted into the screw hole from the left side, and successively connects the second half cylinder 02 and the screw rod seat 8 arranged inside the first half cylinder 01, so that the first half cylinder 01 and the second half cylinder 02 are locked and fixed to each other. Example 3
[0048] like Figures 9 to 12 As shown, as an embodiment of the utility model, compared with embodiment 1, this embodiment is an I-shaped winding drum as a whole, that is, it does not include a partition plate 7; the winding space of the assembled winding drum is not divided into two independent sub-winding spaces.
[0049] In addition, the difference from Example 1 lies in that, the right end wall of the second half cylinder 02 of this embodiment is provided with both an insert block and a slot member, wherein the insert block is close to the front side and the slot member is close to the rear side; the left end wall of the first half cylinder 01 of this embodiment is provided with both an insert block and a slot member, wherein the insert block is close to the rear side and the slot member is close to the front side, and during the assembly process, the insert block and the slot member on the end walls of the first half cylinder 01 and the second half cylinder 02 are plugged into and matched with each other. Example 4
[0050] like Figures 13 to 16 As shown, as an embodiment of the utility model, the present embodiment is the same as the embodiment 3, and the whole embodiment is also an I-shaped winding drum, that is, it does not include the partition plate 7; the winding space of the assembled winding drum is not divided into two independent sub-winding spaces.
[0051] Similar to Example 3, an insert block and a slot member are provided on the right end wall of the second half cylinder 02 of this embodiment, wherein the insert block is close to the front side and the slot member is close to the rear side; an insert block and a slot member are provided on the left end wall of the first half cylinder 01 of this embodiment, wherein the insert block is close to the rear side and the slot member is close to the front side. During the assembly process, the insert block and the slot member on the end walls of the first half cylinder 01 and the second half cylinder 02 are plugged into and matched with each other.
[0052] Similar to the second embodiment, the connection guide assembly of this embodiment further includes a screw seat 8 and a screw 9, wherein the screw seat 8 includes at least two, at least two screw seats 8 are horizontally arranged on the inner side walls of the first half cylinder 01 and the second half cylinder 02, and are arranged at intervals in the vertical direction; the screw seat 8 is provided with an open screw hole on the left end surface close to the first half cylinder 01 or the right end surface close to the second half cylinder 02; when the first half cylinder 01 and the second half cylinder 02 are spliced with each other, the screw seats 8 on the first half cylinder 01 and the second half cylinder 02 are horizontally aligned; the screw 9 includes at least two, at least two screws 9 are horizontally inserted in the screw seats 8 of the first half cylinder 01 and the second half cylinder 02, and are used to connect and fix the first half cylinder 01 and the second half cylinder 02. A screw hole E is opened on the side wall of the first half cylinder 01 and / or the second half cylinder 02; the screw hole E is horizontally aligned with the screw seat 8 and communicated with the screw hole in the screw seat 8 so as to insert the screw 9.
[0053] What is different from Example 2 is that the screw hole E of this embodiment is simultaneously opened on the side walls of the first half cylinder 01 and the second half cylinder 02, the front screw rod 9 is horizontally inserted into the screw hole from the left side, and is successively connected to the screw seats 8 arranged inside the second half cylinder 02 and the first half cylinder 01, so that the first half cylinder 01 and the second half cylinder 02 are locked and fixed to each other; the rear screw rod 9 is horizontally inserted into the screw hole from the right side, and is successively connected to the screw seats 8 arranged inside the first half cylinder 01 and the second half cylinder 02, so that the first half cylinder 01 and the second half cylinder 02 are locked and fixed to each other. Example 5
[0054] As an embodiment of the utility model, the first assembly and the second assembly of this embodiment are made by compression molding; the raw material made by compression molding is a mixed material of wood fiber and adhesive, and the mixed material is a solid powder structure. Example 6
[0055] As an embodiment of the present utility model, the first assembly and the second assembly of this embodiment are made by foaming and shaping the foaming material in a mold.
[0056] The embodiments of the utility model are only to introduce its specific implementation methods and are not intended to limit its protection scope. The technicians in this industry can make some modifications inspired by the embodiments, so any equivalent changes or modifications made in accordance with the scope of the utility model patent are within the scope of the claims of the utility model patent.
Claims
1. A cable winding drum adopting a new combined structure, characterized in that: It includes a first assembly and a second assembly arranged on the left and right, and the first assembly and the second assembly are detachably connected to form a winding reel; The first assembly and the second assembly are provided with a connecting guide assembly; The first assembly and the second assembly are inserted into each other and limited and connected as one body through a connecting guide component.
2. The cable winding drum with a novel combined structure according to claim 1 is characterized in that: The first assembly comprises a first half cylinder (01), a first half disk (03) and a second half disk (05); the first half cylinder (01) is a semi-cylindrical structure, and the first half cylinder (01) is arranged vertically; the first half disk (03) and the second half disk (05) are semi-circular structures, and the first half disk (03) and the second half disk (05) are arranged in parallel and spaced apart on the right side of the first half cylinder (01), and extend outwards respectively in the horizontal direction; the first half cylinder (01), the first half disk (03) and the second half disk (05) are integrally formed; The second assembly comprises a second half cylinder (02), a third half disk (04) and a fourth half disk (06); the second half cylinder (02) is a semi-cylindrical structure, and the second half cylinder (02) is arranged vertically; the third half disk (04) and the fourth half disk (06) are semi-circular structures, and the third half disk (04) and the fourth half disk (06) are arranged in parallel and spaced apart on the left side of the second half cylinder (02), and extend outwards respectively in the horizontal direction; the second half cylinder (02), the third half disk (04) and the fourth half disk (06) are integrally formed.
3. The cable winding drum with a novel combined structure according to claim 2 is characterized in that: The winding reel comprises a cylinder (1), a first reel body (2) and a second reel body (3); The first half cylinder (01) and the second half cylinder (02) are spliced together to form a cylinder body (1); The first half plate (03) and the third half plate (04) are spliced together to form a first plate body (2); The second half plate (05) and the fourth half plate (06) are spliced together to form a second plate body (3); The first disc body (2) and the second disc body (3) are circular disc-shaped structures and are arranged in parallel and at intervals; the space between the first disc body (2), the second disc body (3) and the outside of the cylinder body (1) forms an annular winding space for winding cables.
4. The cable winding drum with a novel combined structure according to claim 2 is characterized in that: The first assembly also includes a first half partition plate (07), the first half partition plate (07) being horizontally arranged between the first half plate (03) and the second half plate (05), and being connected to the right side wall of the first half cylinder (01), the first half cylinder (01), the first half plate (03), the second half plate (05) and the first half partition plate (07) being integrally formed; The second assembly also includes a second half partition plate (08), the second half partition plate (08) being horizontally arranged between the third half plate (04) and the fourth half plate (06), and being connected to the left side wall of the second half cylinder (02), the second half cylinder (02), the third half plate (04), the fourth half plate (06) and the second half partition plate (08) being integrally formed; The first half partition plate (07) and the second half partition plate (08) are spliced together to form a partition plate (4); the partition plate (4) divides the winding space into two independent sub-winding spaces in the upper and lower parts; a wire threading groove (A) is provided on the partition plate (4) for connecting the two independent sub-winding spaces.
5. The cable winding drum with a novel combined structure according to claim 2 is characterized in that: The connecting guide assembly includes an insert block and a slot block; the insert block is arranged on the right side wall of the first assembly and / or the left side wall of the second assembly; the slot block is arranged on the left side wall of the second assembly and / or the right side wall of the first assembly; the insert block is inserted into the slot block, and is used for guiding and limiting the first assembly and the second assembly when they are spliced together, and connecting and fixing the first assembly and the second assembly.
6. The cable winding drum with a novel combined structure according to claim 5, characterized in that: The plug-in block comprises a first plug-in block (5), a second plug-in block (6) and a third plug-in block (7); The first insert blocks (5) include at least two first insert blocks (5), which are respectively arranged on the right side end wall of the second half cylinder (02) along the vertical direction and are respectively located at the front and rear sides; The second insert blocks (6) include at least two, and the at least two second insert blocks (6) are respectively arranged horizontally on the right side end wall of the third half plate (04) and are respectively located on the front and rear sides; The third insert blocks (7) include at least two blocks, and the at least two third insert blocks (7) are respectively arranged horizontally on the right side end wall of the fourth half plate (06) and are respectively located on the front and rear sides.
7. The cable winding drum with a novel combined structure according to claim 6 is characterized in that: The slot member includes a first slot (B), a second slot (C) and a third slot (D); The first slots (B) include at least two first slots (B), which are respectively arranged on the left end wall of the first half cylinder (01) along the vertical direction and are respectively located at the front and rear sides; the first inserting block (5) is detachably inserted in the first slots (B); The second slots (C) include at least two pieces, and the at least two second slots (C) are respectively arranged horizontally on the left end side wall of the first half plate (03) and are respectively located at the front and rear sides; the second inserting block (6) is detachably inserted in the second slot (C); The third slots (D) include at least two pieces, and the at least two third slots (D) are respectively arranged horizontally on the left end side wall of the second half disk (05) and are respectively located on the front and rear sides; the second insert block (6) is detachably inserted in the third slot (D).
8. The cable winding drum with a novel combined structure according to claim 2 is characterized in that: The connecting guide assembly comprises a screw seat (8) and a screw (9), wherein the screw seat (8) comprises at least two, and the at least two screw seats (8) are horizontally arranged on the inner side walls of the first half cylinder (01) and the second half cylinder (02), and are arranged at intervals in the vertical direction; the screw seat (8) is provided with an open screw hole on the left end surface close to the first half cylinder (01) or the right end surface close to the second half cylinder (02); when the first half cylinder (01) and the second half cylinder (02) are spliced together, the screw seats (8) on the first half cylinder (01) and the second half cylinder (02) are horizontally aligned; and the screw (9) comprises at least two, and the at least two screws (9) are horizontally inserted in the screw seats (8) of the first half cylinder (01) and the second half cylinder (02), and are used to connect and fix the first half cylinder (01) and the second half cylinder (02).
9. The cable winding drum with a novel combined structure according to claim 8, characterized in that: A screw hole (E) is provided on the side wall of the first half cylinder (01) and / or the second half cylinder (02); the screw hole (E) is horizontally aligned with the screw seat (8) and is connected to the screw hole in the screw seat (8) so as to allow the screw (9) to be inserted.
10. The cable winding drum with a novel combined structure according to claim 1, characterized in that: The first assembly and the second assembly are made by compression molding; the raw material used for the compression molding is a mixed material of wood fiber and adhesive, and the mixed material is a solid powder structure.
11. The cable winding drum with a novel combined structure according to claim 1, characterized in that: The first assembly and the second assembly are made by foaming and shaping the foaming material in a mold.