Novel splicing type screen wire duct

Through the spliced screen trough design, the installation process of the screen trough is simplified by using adapter beams and limiting components, solving the problems of complex installation and inconsistent appearance in the existing technology, and achieving efficient and beautiful fixed trough connection.

CN223206763UActive Publication Date: 2025-08-08GUANGDONG KELE INTELLIGENT FURNITURE CO LTD
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Patent Information

Application Number
CN202422387461.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-08-08
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

In the prior art, the installation process of the screen trough is complicated and requires multiple connectors, resulting in low production efficiency, inconsistent appearance and affecting aesthetics, and poor connection reliability.

Method used

The spliced screen trough design is adopted, and the removable connection between the wire trough assembly and the screen is achieved through the adapter beam and the limit assembly, simplifying the installation process, ensuring the consistency and aesthetics of the appearance, and using the limit assembly and bayonet structure to achieve stable connection.

Benefits of technology

Improves the production efficiency of the screen, ensures the simplicity and efficiency of the installation process, improves the appearance consistency and connection reliability, and avoids line chaos.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel splicing type screen trunking which comprises trunking components and an adapter beam, the trunking components and the adapter beam are connected to form a whole, the upper end face of the adapter beam is provided with two or more first limiting components in the vertical axis direction of the adapter beam, the two sides of the lower end of the adapter beam are provided with second limiting components, and the second limiting components are connected with the adapter beam. The transfer beam, the first limiting assembly and the second limiting assembly are integrally formed, the lower end of the wire groove assembly is detachably connected with the first limiting assembly, the second limiting assembly is detachably connected with the screen and the office table panel, and the upper end of the transfer beam protrudes out of the upper end face of the office table panel. The utility model discloses can satisfy the height of slot setting, adopts the fixed connection of splicing mode simultaneously, easy to install to improve the production efficiency of screen, simple structure, practical beautiful appearance.
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Description

Technical Field

[0001] The utility model relates to the technical field of office desks, in particular to a novel spliced screen wire trough. Background Art

[0002] In office spaces, desks are often separated by screens to form independent personal work areas. However, with the development of office electronicization, computers, printers and other electronic devices have become daily office tools. The wiring of these electronic devices is numerous and messy, which can easily disrupt the office area and even affect work. Therefore, it is necessary to set up wire troughs on the screens to place the wiring of electronic devices.

[0003] like Figure 1 As shown in the figure, it is the existing technology for setting a wire trough in the screen module. When the wire trough 1' is set on the screen module 2', since the wire trough 1' needs to be set above the office desktop 3', another screen module 2' needs to be added at the lower end of the wire trough 1'. Since the two screens 2' need to be connected by a connector 4', during the installation process, the connector 4' needs to be connected to the lower screen 2' and the table board 3' first, and then the upper screen 2' needs to be connected to the wire trough 1' through a connector (not shown in the figure). This requires the additional setting of two connectors 1' and 4', which increases the working hours, processes and installation steps and reduces production efficiency. At the same time, since the connector is set between the two screens after production, the overall color and flatness cannot be ensured to be consistent, making the whole thing scattered and trivial, affecting the external appearance. In addition, the upper and lower screens are connected by a connector. If there is looseness between the screen and the connector, it will affect the reliability of the connection of the entire screen. Utility Model Content

[0004] The purpose of this utility model is to provide a new type of spliced screen wire trough, which can meet the height of the wire trough setting, and is fixedly connected by splicing. It is easy to install to improve the production efficiency of the screen, has good structural reliability, and is practical and beautiful.

[0005] The utility model provides the following technical solutions: a new type of spliced screen wire trough, connected to the screen module and the office desk panel, including a wire trough component and a transfer beam, the wire trough component is connected to the transfer beam to form an integral body, the upper end face of the transfer beam is provided with more than two limit components one along the vertical axis direction of the transfer beam, and limit components two are provided on both sides of the lower end of the transfer beam. The transfer beam and the limit components one and two are integrally formed, the lower end of the wire trough component is detachably connected to the limit component one, the limit component two is detachably connected to the screen and the office desk panel, and the upper end of the transfer beam protrudes from the upper end face of the office desk panel.

[0006] In the above arrangement, a limit component 1 and a limit component 2 connected to the transfer beam as a whole are set at the upper end of the transfer beam, and then the wire trough component is detachably connected through the limit component 1, and then the screen at the lower end and the office desk panel are connected through the limit component 1, so that only one transfer beam needs to be set between the wire trough component and the lower screen to achieve connection, so there is no need to set a screen at the position of the transfer beam to provide the height of the screen, and the transfer beam can be connected to the lower screen and the wire trough component, so that the middle screen and the connector need to be set to achieve an integrated connection. During the installation process, it is only necessary to connect the transfer beam to the lower screen, and then connect the upper end of the transfer beam to the wire trough component, and then connect the wire trough component to the upper screen to achieve assembly. The installation efficiency is high, and the wire trough component and the transfer beam can be connected as a whole, thereby ensuring consistency in appearance and beautiful appearance.

[0007] Furthermore, the limiting component 1 includes a limiting part 1 and a limiting part 2, and a limiting opening matching the wire trough component is formed between the limiting part 1. The limiting component 2 includes a slot and a limiting part 3. The two sides of the lower end of the transfer beam are recessed inward to form a slot, and the limiting part 3 is provided in the slot. The lower end surface of the transfer beam is provided with more than two limiting parts 4 along the vertical axis direction of the transfer beam, and a bayonet matching the screen module is formed between the limiting parts 4.

[0008] The above arrangement forms a limiting opening by setting a limiting portion, so that the wire trough assembly can be connected to the transfer beam through the limiting opening, and the wire trough assembly is limited, so that one end of the transfer beam is connected to the wire trough assembly; by setting a slot and setting a limiting portion in the slot, the office desktop can be connected to the side of the transfer beam; and by setting a bayonet, the other end of the transfer beam can be connected to the screen module, so that the wire trough assembly can be connected to the screen module through the transfer beam to form a whole, while meeting the height of the wire trough setting, and fixedly connected by splicing. The simple structure makes installation easy, thereby improving the production efficiency of the screen.

[0009] Furthermore, the wire trough assembly includes a wire trough top plate, two or more support members, and a wire trough cover plate. The wire trough top plate is arranged on the top of the support member, and the wire trough cover plates are arranged on both sides of the support member. The upper end surface of the wire trough top plate is provided with two or more protrusions one cut along and extending upward perpendicular to the upper end surface, and a bayonet one matching the screen module is formed between the protrusions one. The lower end surface of the wire trough top plate is provided with two or more protrusions two cut along and extending downward perpendicular to the lower end surface, and a bayonet two matching the support member is formed between the protrusions two.

[0010] The above arrangement facilitates the connection of the support member with the screen module through the top plate of the wire trough to form an integral whole, and the second bayonet can limit the movement of the support member along the vertical axis.

[0011] Furthermore, two or more slots are provided at both ends of the support member. The slot at one end of the support member is recessed from the outer wall of the support member in a direction perpendicular to the vertical axis. The slots are symmetrically arranged about the vertical axis, and a side of the slot close to the outer wall of the support member is protruded into the slot to form a clamping portion.

[0012] The above arrangement facilitates the insertion of the wire trough cover into the card slot from both sides of the support member, and the wire trough cover is fixedly clamped into the card slot by the clamping portion, thereby forming a wire trough.

[0013] Furthermore, the support member is configured as a hollow structure, in which a distribution board is fixed.

[0014] The above settings can layer the lines placed in the cable duct to avoid line confusion and facilitate identification during maintenance.

[0015] Furthermore, the inner side of the wire trough cover is provided with a retaining piece arranged along a direction perpendicular to the wire trough cover, one end of the retaining piece is fixedly connected to the inner side of the wire trough cover, and the other end of the retaining piece is set as a free end matching the clamping portion.

[0016] The above arrangement facilitates the cable trough cover to be clamped on both sides of the support member through the clamping member.

[0017] Furthermore, the limiting portion is symmetrically arranged with respect to the vertical axis of the transfer beam, and the width of the limiting opening matches the width of the lower end of the support member.

[0018] The above arrangement enables the wire duct assembly to be placed exactly on the transfer beam.

[0019] Furthermore, the second limiting portion is arranged in the limiting opening and is symmetrically arranged about the vertical axis of the transfer beam, and the height of the first limiting portion is greater than the height of the second limiting portion.

[0020] With the above arrangement, after the support member is placed in the limiting opening, the limiting portion 2 can support the support member, and the limiting portion 1 can limit the horizontal movement of the support member in the limiting opening.

[0021] Furthermore, the transfer beam is configured as a hollow structure, one end of the limiting part three is fixedly connected to the side of the slot away from the screen module, and the other end of the limiting part three is configured to protrude into the slot, and the limiting part three and the vertical inner side surface of the slot form a snap-fit opening that matches the snap-fit support member.

[0022] The above arrangement facilitates the embedding of the clip support member into the clip opening to support the desk panel.

[0023] Furthermore, the height of the transfer beam is greater than the thickness of the desk panel, and a power socket is fixedly provided on the outer side of the wire trough cover.

[0024] The above arrangement facilitates the power socket to provide power to the electronic devices placed on the desk panel. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic diagram of the local structure of the prior art.

[0026] Figure 2 It is a partial cross-sectional schematic diagram of the present invention.

[0027] Figure 3 It is a partial exploded view of the utility model.

[0028] Figure 4 This is a schematic diagram of the utility model after splicing and assembly.

[0029] Figure 5 for Figure 2 Enlarged view of point A in the middle.

[0030] Figure 6 for Figure 4 Enlarged view of point B in the middle. DETAILED DESCRIPTION

[0031] The present invention will be described in detail below with reference to the accompanying drawings and specific implementation methods.

[0032] like Figure 1-6 As shown, the utility model provides a new type of splicing screen trough, including a trough component and a transfer beam 1, the trough component and the transfer beam 1 are connected to form a whole, the transfer beam 1 is set to a hollow structure, the upper end surface 11 of the transfer beam 1 is provided with more than two limit components 1 along the vertical axis 12 of the transfer beam 1, the limit component 1 includes a limit part 13 and a limit part 2 14. In this embodiment, as shown in FIG. Figure 2 As shown, both the limiting part 1 13 and the limiting part 2 14 are provided in two, and a limiting opening 15 matching the wire trough assembly is formed between the two limiting parts 13, so that the wire trough assembly can be placed just on the transfer beam 1, and the limiting part 2 14 is provided in the limiting opening 15, and the limiting part 1 13 and the limiting part 2 14 are symmetrically provided about the vertical axis 12 of the transfer beam 1, and the height of the limiting part 1 13 is greater than the height of the limiting part 2 14, so that after the support member is placed in the limiting opening 15, the limiting part 2 14 can support the support member, and at the same time, the limiting part 1 13 can limit the horizontal movement of the support member in the limiting opening 15.

[0033] like Figure 2 and 5As shown in 6, a limiting component 2 is provided at the lower end of the transfer beam, and the limiting component 2 includes a slot 16 and a limiting portion 3 17. The transfer beam 1 is integrally formed with the limiting component 1 and the limiting component 2. Both sides of the lower end of the transfer beam 1 are recessed inward to form a slot 16, and a limiting portion 3 17 is provided in the slot 16. Specifically, one end of the limiting portion 3 17 is fixedly connected to a side of the slot 16 away from the screen module 2, and the other end of the limiting portion 3 17 is protruded into the slot 16. The limiting portion 3 17 and the vertical inner side surface 161 of the slot 16 form a snap-fit opening 162 that matches the snap-fit support member 3. The lower end surface 18 of the transfer beam 1 is provided with more than two limiting portions along the vertical axis 12 direction of the transfer beam 1. Part four 19 and the limiting part four 19 form a bayonet 20 that matches the screen module 2. In this embodiment, two limiting parts four 19 are provided. One end of the clamping support member 3 is embedded in the slot 16 and clamped with the clamping opening 162. The other end of the clamping support member 3 extends outward perpendicular to the adapter beam 1 to support the office desk panel 4. The height of the adapter beam 1 is greater than the thickness of the office desk panel 4 to meet the requirement that the wire trough assembly is set above the office desk panel 4. A supporting part 31 is provided at the bottom of the clamping support member 3, and the supporting part 31 abuts against the limiting part four 19, thereby limiting the horizontal movement of the clamping support member 3 through the limiting part four 19, so that the clamping support member 3 can stably support the office desk panel 4.

[0034] like Figure 2-6 As shown, the wire trough assembly includes a wire trough top plate 5, two or more support members 6, and a wire trough cover plate 7. The wire trough top plate 5 is arranged on the top of the support member 6, and the width of the limit opening 15 matches the width of the lower end of the support member 6. The wire trough cover plate 7 is arranged on both sides of the support member 6. The upper end surface 71 of the wire trough top plate 5 is provided with two or more protrusions 72 extending upward perpendicular to the upper end surface 71, and a bayonet 73 matching the screen module 2 is formed between the protrusions 72. The lower end surface 74 of the wire trough top plate 5 is provided with two or more protrusions 75 extending downward perpendicular to the lower end surface 74, and a bayonet 76 matching the support member 6 is formed between the protrusions 75, so that the support member 6 is connected to the screen module 2 through the wire trough top plate 5 to form a whole, and the bayonet 76 can limit the movement of the support member 6 along the vertical axis 12. The wire trough top plate 5, the support member 6, the screen module 2 and the transfer beam 1 are all on the same vertical axis 12.

[0035] like Figure 5-6As shown, the support member 6 is configured as a hollow structure, in which a branching plate 61 is fixedly provided. Two or more card slots 63 are provided at both ends of the support member 6. The card slot at one end of the support member 6 is formed by being recessed from the outer wall 62 of the support member 6 in a direction perpendicular to the vertical axis 12. In this embodiment, there are four card slots 63, and the card slots 63 are symmetrically arranged about the vertical axis 12. A side 64 of the card slot 63 close to the outer wall 62 of the support member 6 is protruded into the card slot 63 to form a card connection portion 65. In this embodiment, the card connection portion 65 is configured as an arc shape, which facilitates the insertion of the wire slot cover plate 7 into the card slot 63 from both sides of the support member 6, and the wire slot cover plate 7 is fixedly clamped in the card slot 63 by the card connection portion 65, thereby forming a wire slot.

[0036] like Figure 2 and 5 As shown, the inner side of the wire trough cover 7 is provided with a locking member 51 arranged in a direction perpendicular to the wire trough cover 7, one end of the locking member 51 is fixedly connected to the inner side of the wire trough cover 7, and the other end of the locking member 51 is set to a free end 52 matching the clamping portion 65. In this embodiment, the free end 52 is provided with a guide portion 53 arranged upwardly inclined with the free end 52, so that the locking member 51 can be easily inserted into the clamping slot 63 through the guide portion 53. The locking member 51 is set as an elastic member, and the elastic member is a spring, which facilitates the disassembly and assembly of the wire trough cover 7 without damaging the support member 6. A power socket 54 is fixedly provided on the outer side of the wire trough cover 7, so that the power socket 54 can provide power to the electronic equipment placed on the office desk panel 4.

[0037] The installation process of the present invention is as follows: slide the screen module 2 along the length direction of the transfer beam 1 so that the screen module 2 slides into the snap-in of the transfer beam 1, and then slide the upper end of the support member 6 into the snap-in one of the wire trough top plate 5, so that the support member 3 and the wire trough top plate 5 are connected to form a whole, then place the lower end of the support member 6 into the limiting opening 15 at the upper end of the transfer beam 1, and then clip the wire trough cover plate 7 into the snap-in groove 63 of the support member 6 from both sides of the support member 6 to achieve fixation, finally embed the snap-in support member 6 into the slot 16 of the transfer beam 1 and snap-in with the snap-in opening 162, and install the office desk panel 4 on the snap-in support member 6 to complete the splicing and assembly.

Claims

1. A new type of spliced screen cable duct, connected to the screen module and the office desk panel, including a cable duct assembly and a transfer beam, characterized by: The wire trough assembly is connected to the transfer beam to form an integral body. The upper end surface of the transfer beam is provided with more than two limit components 1 along the vertical axis direction of the transfer beam. The lower end of the transfer beam is provided with a limit component 2. The transfer beam and the limit component 1 and the limit component 2 are integrally formed. The lower end of the wire trough assembly is detachably connected to the limit component 1, and the limit component 2 is detachably connected to the screen and the office desk panel. The upper end of the transfer beam protrudes from the upper end surface of the office desk panel.

2. The novel spliced screen cable duct according to claim 1 is characterized in that: The limiting component 1 includes a limiting part 1 and a limiting part 2, and a limiting opening matching the wire trough component is formed between the limiting part 1. The limiting component 2 includes a slot and a limiting part 3. The two sides of the lower end of the transfer beam are recessed inward to form a slot, and the limiting part 3 is provided in the slot. The lower end surface of the transfer beam is provided with more than two limiting parts 4 along the vertical axis direction of the transfer beam, and a slot matching the screen module is formed between the limiting parts 4.

3. The novel spliced screen cable duct according to claim 2 is characterized in that: The wire trough assembly includes a wire trough top plate, two or more support members, and a wire trough cover plate. The wire trough top plate is arranged on the top of the support member, and the wire trough cover plates are arranged on both sides of the support member. The upper end surface of the wire trough top plate is provided with two or more protrusions that are cut and extended upward perpendicularly to the upper end surface, and a bayonet one that matches the screen module is formed between the protrusions. The lower end surface of the wire trough top plate is provided with two or more protrusions that are cut and extended downward perpendicularly to the lower end surface, and a bayonet two that matches the support member is formed between the protrusions.

4. The novel spliced screen cable duct according to claim 3 is characterized by: There are more than two card slots at both ends of the support member. The card slot at one end of the support member is formed by being recessed from the outer wall of the support member in a direction perpendicular to the vertical axis. The card slot is symmetrically arranged about the vertical axis, and a side of the card slot close to the outer wall of the support member is raised in the card slot to form a card connection portion.

5. The novel spliced screen cable duct according to claim 3 is characterized by: The support member is configured as a hollow structure, in which a distribution board is fixedly provided.

6. The novel spliced screen cable duct according to claim 3 is characterized by: The inner side of the wire trough cover is provided with a clamping piece arranged along a direction perpendicular to the wire trough cover, one end of the clamping piece is fixedly connected to the inner side of the wire trough cover, and the other end of the clamping piece is set as a free end matching the clamping portion.

7. The novel spliced screen cable duct according to claim 3 is characterized by: The limiting portion 1 is symmetrically arranged about the vertical axis of the transfer beam, and the width of the limiting opening matches the width of the lower end of the support member.

8. The novel spliced screen cable duct according to claim 2 is characterized by: The second limiting portion is arranged in the limiting opening and is symmetrically arranged about the vertical axis of the transfer beam. The height of the first limiting portion is greater than the height of the second limiting portion.

9. The novel spliced screen cable duct according to claim 3 is characterized by: The transfer beam is configured as a hollow structure, one end of the limiting part three is fixedly connected to the side of the slot away from the screen module, and the other end of the limiting part three is protruded into the slot, and the limiting part three and the vertical inner side surface of the slot form a snap-fit opening that matches the snap-fit support member.

10. The novel spliced screen cable duct according to claim 3 is characterized by: The height of the transfer beam is greater than the thickness of the desk panel, and a power socket is fixedly provided on the outer side of the wire trough cover.