Bottom supporting device for drilling of Internet of Things communication equipment
By designing movable support and drive components, the problem of low drilling efficiency in fiber optic communication equipment was solved, enabling the support components to move to any position under the fiber optic communication equipment, thereby improving drilling efficiency and adaptability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 湖南和为通信有限公司
- Filing Date
- 2025-04-16
- Publication Date
- 2026-04-10
AI Technical Summary
The existing bottom support frame of fiber optic communication equipment is inefficient during drilling, and the fixed position of the support point cannot be moved, which requires adjustment after each drilling, affecting work efficiency.
Design a device including a bottom fixing frame and a top support frame. Support component one and support component two move within the top support frame via a drive component. Support component one is used for single-point support, and support component two is used for multi-point support to adapt to different drilling requirements.
It enables the support components to move to any position under the fiber optic communication equipment, improving drilling efficiency. It is suitable for single-point support during fixing and marking, and multi-point support during wiring, solving the problem of low drilling efficiency in existing technologies.
Smart Images

Figure CN224101884U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to communication equipment drilling technical field especially relates to a bottom support device for internet of things communication equipment drilling. BACKGROUND
[0002] Optical fiber communication equipment is an important part of modern communication network, they play a key role in signal transmission, data exchange and equipment management, etc., optical fiber communication equipment in use, in order to meet the heat dissipation, wiring, installation and fixation and identification and other needs, need to drill on its top, and optical fiber communication equipment due to the large number of optical fibers, in order to ensure that the optical fibers will not be chaotic, optical fiber communication equipment will drill out multiple arranged holes to meet the placement of optical fibers, on this basis, optical fiber communication equipment will increase the hole according to the heat dissipation and installation and other aspects of the needs, in the prior art, optical fiber communication equipment is basically thin metal material, in order to prevent the bottom plate from deformation when drilling, and its bottom will be provided with support point, and the setting of support point will lead to the contact between drilling tool and optical fiber communication equipment when drilling, and collision will occur, so the matching hole for the drilling tool to pass through will be set on the support point, but the position of the hole on the support point used for optical fiber communication equipment drilling is relatively fixed, and it cannot be moved according to the drilling needs, which will lead to the need to move the optical fiber communication equipment on the support point after each drilling to fix the position of the hole, and the position of the hole needed to be drilled on the optical fiber communication equipment is more, which will undoubtedly lead to the reduction of work efficiency, so a bottom support device for optical fiber communication equipment drilling needs to be designed. SUMMARY
[0003] The utility model discloses a bottom support device for internet of things communication equipment drilling to solve the problem in the background art.
[0004] The utility model discloses the following technical scheme: a bottom support device for internet of things communication equipment drilling, including bottom fixed frame and top support frame, the top support frame sets up at the top of bottom fixed frame, between bottom fixed frame and top support frame is hollow state, the left and right sides symmetry of top support frame top is set up and places the groove, two the support assembly no. 1 and support assembly no. 2 are placed respectively in two the place grooves, the inside of top support frame front and back two sides symmetry is set up two groups of drive assembly no. 1, the below of one side of top support frame is equipped with drive assembly no. 2, one group drive assembly no. 1's working end is connected with support assembly no. 1, another group drive assembly no. 1's working end is connected with support assembly no. 2, drive assembly no. 2's working end is connected with support assembly no. 1, solve the problem of low drilling efficiency of the bottom support frame for optical fiber communication equipment in prior art when using.
[0005] Further, the upper part of the middle position of the bottom fixing frame is provided as an inclined surface. The upper part of the middle position of the bottom fixing frame is provided as an inclined surface, which is more convenient for cleaning the debris.
[0006] Further, two sliding fitting grooves one and two are symmetrically arranged on the top support frame, two sliding fitting grooves one are arranged on the front and back sides of the top support frame for connecting two groups of driving assemblies one and support assemblies one and two, two sliding fitting grooves two are arranged on the left and right sides of the top support frame for connecting driving assembly two and support assembly one, and the two sliding fitting grooves two are below the two sliding fitting grooves one. The two sliding fitting grooves one and two are used for connecting the driving assembly one, the driving assembly two, the support assembly one and the support assembly two.
[0007] Further, the support assembly one comprises a fixed mounting frame one, a moving connecting rod one, a support block and a bottom connecting frame, the fixed mounting frame one is provided with two, two fixed mounting frames one are arranged in the two sliding fitting grooves one, one of the fixed mounting frames one is connected with the working end of one group of driving assemblies one, the moving connecting rod is arranged between the two fixed mounting frames one, the support block is slidingly installed on the moving connecting rod, a hole for passing through the drilling equipment is arranged at the middle position of the support block, the bottom connecting frame is arranged on the bottom end of the support block, and the support block is connected with the working end of the driving assembly two through the bottom connecting frame. The support block is moved to any position below the optical fiber communication equipment during the drilling operation of the optical fiber communication equipment, and is suitable for single-point drilling of multiple positions of the optical fiber communication equipment.
[0008] Further, the support assembly two comprises a fixed mounting frame two and a support plate, the fixed mounting frame two is provided with two, two fixed mounting frames two are arranged in the two sliding fitting grooves one, one of the fixed mounting frames two is connected with the working end of the other group of driving assemblies one, the support plate is arranged between the two fixed mounting frames two, and a plurality of holes are arranged on the support plate. The support plate is mainly used for the multiple holes required by the optical fiber communication equipment during optical fiber wiring, and the holes are arranged in a row to facilitate the placement of the optical fiber.
[0009] Further, each group of driving assemblies one comprises a lead screw sliding table one and an assembly frame, the lead screw sliding table one is arranged inside one side of the top support frame, the assembly frame is arranged in one sliding fitting groove one and connected with the fixed mounting frame one or the fixed mounting frame two, a clamping groove is arranged in the assembly frame, and the assembly frame is connected with the fixed mounting frame one or the fixed mounting frame two through the clamping groove. Two groups of driving assemblies one can drive the support assembly one and the support assembly two to move in the two sliding fitting grooves one.
[0010] Further, the driving assembly two comprises a screw rod sliding table two, two sliding connecting plates and a moving connecting rod two, the screw rod sliding table two is arranged below one side of the top support frame, the two sliding connecting plates are arranged, and the two sliding connecting plates are located in two sliding fit grooves two respectively, one of the sliding connecting plates is connected with the working end of the screw rod sliding table two, the moving connecting rod two is arranged between the two sliding connecting plates, and the moving connecting rod two is slidably connected with the bottom connecting frame. The driving assembly two is used for driving the support assembly one to move in the longitudinal front and back direction in the top support frame.
[0011] The above at least one technical scheme adopted by the embodiment of the utility model can achieve the following beneficial effects:
[0012] In the application, the support assembly one and the support assembly two can be moved to any position below the fiber optical communication equipment on the top support frame under the operation of the driving assembly one and the driving assembly two, and the fiber optical communication equipment can be drilled in cooperation with the drilling equipment, and the support assembly one can realize single-point supporting, and the support assembly one can be moved to any position below the fiber optical communication equipment through the operation of the driving assembly one and the driving assembly two, which is mainly used for supporting when different positions need to be drilled in the fiber optical communication equipment, and is generally applicable to the fiber optical communication equipment used for fixing and marking, and the support assembly two is multi-point supporting, and is generally used for arranging holes required when the fiber optical communication equipment is drilled for fiber optical wiring, so that the problem that the bottom support frame for the fiber optical communication equipment in the prior art causes low drilling efficiency when in use is solved. BRIEF DESCRIPTION OF DRAWINGS
[0013] The accompanying drawings, which are included to provide a further understanding of the utility model, form a part of the utility model and are used to explain the utility model together with the specification, but do not constitute improper limitations on the utility model. In the drawings:
[0014] Figure 1 It is a three-dimensional structure schematic of the utility model Figure 1 ;
[0015] Figure 2 It is a three-dimensional structure schematic of the utility model Figure 2 ;
[0016] Figure 3 It is a three-dimensional structure schematic of the utility model Figure 3 ;
[0017] Figure 4 It is Figure 3 the enlarged view of A in the utility model
[0018] Figure 5 isFigure 3 An enlarged view at B;
[0019] Figure 6 It is a schematic view of the inside of the side of the top support frame in the utility model;
[0020] Figure 7 It is Figure 6 An enlarged view at C.
[0021] The drawings are as follows: bottom fixing frame 1, top support frame 2, placing groove 21, sliding fit groove one 22, sliding fit groove two 23, support assembly one 3, fixed mounting frame one 31, moving connecting rod one 32, support block 33, bottom connecting frame 34, support assembly two 4, fixed mounting frame two 41, support plate 42, drive assembly one 5, lead screw sliding table one 51, assembly frame 52, drive assembly two 6, lead screw sliding table two 61, moving connecting rod two 62, sliding connecting plate 63. DETAILED DESCRIPTION
[0022] To make the purpose, technical scheme and advantages of the utility model clearer, the following will combine the specific embodiments of the utility model and the corresponding drawings to clearly and completely describe the technical scheme of the utility model. Obviously, the described embodiments are only a part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the utility model.
[0023] The following will combine the drawings to specifically describe the technical scheme provided by each embodiment of the utility model.
[0024] With reference to Figures 1-7 The utility model embodiment provides a kind of bottom support device for Internet of Things communication equipment drilling, including bottom fixing frame 1 and top support frame 2, the top support frame 2 is set in the top of bottom fixing frame 1, and the hollow state between bottom fixing frame 1 and top support frame 2;Left and right sides of the top of top support frame 2 are symmetrically provided with placing groove 21, and support assembly one 3 and support assembly two 4 are respectively placed in two placing grooves 21, two groups of drive assembly one 5 are symmetrically provided in the front and back of the inside of top support frame 2, and drive assembly two 6 is equipped in the side of top support frame 2 below;The working end of one group of drive assembly one 5 is connected with support assembly one 3, the working end of another group of drive assembly one 5 is connected with support assembly two 4, and the working end of drive assembly two 6 is connected with support assembly one 3.
[0025] In the application, a device for supporting fiber-optic communication equipment drilling is provided. In the application, support assembly one 3 and support assembly two 4 are provided, which are respectively used for single-point support drilling and multi-point support drilling of fiber-optic communication equipment. Both are located in the top support frame 2, and are respectively connected with two groups of driving assembly one 5 and one group of driving assembly two 6. When the two groups of driving assembly one 5 are running, the support assembly one 3 and the support assembly two 4 can move horizontally left and right in the top support frame 2. When the fiber-optic communication equipment is placed on the top support frame 2, the support assembly one 3 and the support assembly two 4 will be located at the bottom position of the fiber-optic communication equipment to be drilled. In this way, the support assembly one 3 and the support assembly two 4 can ensure that the drilling position of the fiber-optic communication equipment will not deform due to the thin material when the drilling equipment is drilling. The reason for providing the support assembly one 3 and the support assembly two 4 is to adapt to different drilling conditions of the fiber-optic communication equipment. The driving assembly two 6 provided in the application is used to drive the support assembly one 3 to move longitudinally forward and backward in the top support frame 2. In this way, the support assembly one 3 can switch to any position below the fiber-optic communication equipment.
[0026] In the application, the support assembly one 3 and the support assembly two 4 can move to any position below the fiber-optic communication equipment on the top support frame 2 under the operation of the driving assembly one 5 and the driving assembly two 6. The fiber-optic communication equipment can be drilled in cooperation with the drilling equipment, and the support assembly one 3 can realize single-point support. The support assembly one 3 can move to any position below the fiber-optic communication equipment through the operation of the driving assembly one 5 and the driving assembly two 6. This is mainly used for supporting different positions when drilling. It is generally used for drilling for fixing and marking. The support assembly two 4 is a multi-point support, which is generally used for arranging holes when drilling fiber-optic wiring. In this way, the problem of low drilling efficiency caused by the bottom support frame for the fiber-optic communication equipment in the prior art is solved.
[0027] Preferably, the top of the middle position of the bottom fixed frame 1 is provided as an inclined surface.
[0028] Since the support assembly one 3 and the support assembly two 4 are located at the middle position of the bottom fixed frame 1 and the top support frame 2 when supporting the fiber-optic communication equipment for drilling, the debris generated during drilling will fall on the middle position of the bottom fixed frame 1. Therefore, the middle position is provided as an inclined surface to facilitate cleaning of the debris.
[0029] Preferably, two sliding fit grooves one 22 and two sliding fit grooves two 23 are symmetrically arranged on the top support frame 2, the two sliding fit grooves one 22 are respectively arranged on the front and back sides of the top support frame 2 for connecting the two groups of driving assemblies one 5 with the support assembly one 3 and the support assembly two 4, and the two sliding fit grooves two 23 are respectively arranged on the left and right sides of the top support frame 2 for connecting the driving assembly two 6 with the support assembly one 3, and the two sliding fit grooves two 23 are below the two sliding fit grooves one 22.
[0030] The two sliding fit grooves one 22 and the two sliding fit grooves two 23 are used for connecting the driving assembly one 5, the driving assembly two 6 with the support assembly one 3 and the support assembly two 4, and at the same time, the support assembly one 3 and the support assembly two 4 can be limited when moving to prevent deviation during movement.
[0031] Preferably, the support assembly one 3 comprises a fixed mounting frame one 31, a moving connecting rod one 32, a support block 33 and a bottom connecting frame 34, the fixed mounting frame one 31 is provided with two, the two fixed mounting frame one 31 is respectively located in the two sliding fit grooves one 22, one of the fixed mounting frame one 31 is connected with the working end of a group of driving assemblies one 5, the moving connecting rod one 32 is arranged between the two fixed mounting frame one 31, the support block 33 is slidably installed on the moving connecting rod one 32, a hole for passing through the drilling equipment is arranged at the middle position of the support block 33, the bottom connecting frame 34 is arranged on the bottom end of the support block 33, and the support block 33 is connected with the working end of the driving assembly two 6 through the bottom connecting frame 34.
[0032] In this application, the support block 33 is slidably installed on the moving connecting rod one 32 and connected with the driving assembly two 6 through the bottom connecting frame 34, so that the support block 33 can be located at the middle position of the top support frame 2, and when the driving assembly one 5 operates, the two fixed mounting frame one 31 can slide left and right in the two sliding fit grooves one 22 through the cooperation of the moving connecting rod one 32, so that the support block 33 can move at the middle position of the top support frame 2, and the driving assembly two 6 can make the support block 33 move longitudinally forward and backward in the top support frame 2, through such cooperation, the support block 33 can be moved to any place below the fiber communication equipment when cooperating with the fiber communication equipment to drill, which is suitable for single-point drilling of multiple places of the fiber communication equipment, and when the support block 33 is not used, it can also be moved to the placing groove 21 arranged on one side of the top support frame 2, so that the support block 33 will not affect the use of the support assembly two 4.
[0033] Preferably, the support assembly two 4 comprises a fixed mounting frame two 41 and a support plate 42, the fixed mounting frame two 41 is provided with two, two fixed mounting frame two 41 is located in the two sliding fit groove one 22 respectively, one of the fixed mounting frame two 41 and the working end of the other group of drive assembly one 5 is connected, the support plate 42 is arranged between the two fixed mounting frame two 41, the support plate 42 is provided with a plurality of spaced holes.
[0034] In the application, the support plate 42 is a rectangular long strip plate, and the support plate 42 is provided with a plurality of spaced holes. When a group of drive assembly one 5 is running, the two fixed mounting frames can move left and right in the top support frame 2 through the connection of the support plate 42. The support plate 42 is mainly used for the plurality of holes required by the optical fiber communication equipment when drilling, and these holes will be arranged in a row to facilitate the placement of optical fiber. The support plate 42 can also be moved to the placing groove 21 for placement when not in use.
[0035] Preferably, each group of drive assembly one 5 comprises a lead screw sliding table one 51 and an assembly frame 52, the lead screw sliding table one 51 is arranged inside one side of the top support frame 2, the assembly frame 52 is located in one sliding fit groove one and is connected with the fixed mounting frame one 31 or the fixed mounting frame two 41, the assembly frame 52 is provided with a clamping groove, and the assembly frame 52 is connected with the fixed mounting frame one 31 or the fixed mounting frame two 41 through the clamping groove.
[0036] In the application, the lead screw sliding table one 51 is used to drive one assembly frame 52 to move in the sliding fit groove one 22, and the assembly frame 52 can drive the fixed mounting frame one 31 or the fixed mounting frame two 41 to move synchronously through the clamping fit when moving. In this way, the fixed mounting frame one 31 can drive the support block or 33 to move, and the fixed mounting frame two 41 can drive the support plate 42 to move.
[0037] Preferably, the drive assembly two 6 comprises a lead screw sliding table two 61, a sliding connection plate 63 and a moving connecting rod two 62, the lead screw sliding table two 61 is arranged below one side of the top support frame 2, the sliding connection plate 63 is provided with two, two sliding connection plates 63 are located in two sliding fit grooves two 23 respectively, one of the sliding connection plates 63 is connected with the working end of the lead screw sliding table two 61, the moving connecting rod two 62 is arranged between the two sliding connection plates 63, and the moving connecting rod two 62 is connected with the bottom connecting frame 34.
[0038] In the application, the screw slide table two 61 is used to drive a sliding connecting plate 63 to move, and the two sliding connecting plates 63 can be longitudinally moved forward and backward between the top support frames 2 through the connection of the moving connecting rod two 62, and the moving connecting rod two 62 can drive the support block 33 to move synchronously through the bottom connecting frame 34 when moving.
[0039] The above merely describes the embodiments of the present application and is not intended to limit the present application. The present application can be variously changed and modified by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the scope of the claims of the present application.
Claims
1. A bottom support device for drilling of Internet of Things communication equipment, characterized in that, It includes bottom fixed frame (1) and top support frame (2), top support frame (2) is arranged above bottom fixed frame (1), and bottom fixed frame (1) and top support frame (2) are hollow state between; The left and right sides of the top support frame (2) are symmetrically provided with a placing groove (21) above, two placing grooves (21) are respectively placed with support assembly one (3) and support assembly two (4), and two groups of drive assembly one (5) are symmetrically provided in the front and rear sides of the inside of the top support frame (2), and the lower side of the one side of the top support frame (2) is provided with drive assembly two (6); The working end of one group of drive assembly one (5) is connected with support assembly one (3), the working end of the other group of drive assembly one (5) is connected with support assembly two (4), and the working end of drive assembly two (6) is connected with support assembly one (3).
2. A bottom support device for drilling of communication equipment for the Internet of Things according to claim 1, characterized in that, The upper side of the middle position of the bottom fixed frame (1) is provided with a slope.
3. A bottom support device for drilling of communication equipment for the Internet of Things according to claim 1, characterized in that, Two sliding fit grooves one (22) and two sliding fit grooves two (23) are symmetrically provided on the top of the top support frame (2), two sliding fit grooves one (22) are respectively arranged in the front and rear sides of the top support frame (2) for the connection of two groups of drive assembly one (5) and support assembly one (3) and support assembly two (4), two sliding fit grooves two (23) are respectively arranged in the left and right sides of the top support frame (2) for the connection of drive assembly two (6) and support assembly one (3), and two sliding fit grooves two (23) are below two sliding fit grooves one (22).
4. A bottom support device for drilling of communication equipment for the Internet of Things according to claim 3, characterized in that, The support assembly one (3) includes fixed mounting frame one (31), movable connecting rod one (32), support block (33) and bottom connecting frame (34), the fixed mounting frame one (31) is provided with two, two fixed mounting frame one (31) is respectively located in two sliding fit grooves one (22), one of the fixed mounting frame one (31) is connected with the working end of one group of drive assembly one (5), the movable connecting rod is arranged between two fixed mounting frame one (31), the support block (33) is slidably installed on the movable connecting rod, the middle position of the support block (33) is provided with a hole for passing through the drilling equipment, the bottom connecting frame (34) is arranged on the bottom end of the support block (33), and the support block (33) is connected with the working end of drive assembly two (6) through the bottom connecting frame (34).
5. A bottom support device for drilling of communication equipment for the Internet of Things according to claim 3, characterized in that, The support assembly two (4) includes fixed mounting frame two (41) and support plate (42), the fixed mounting frame two (41) is provided with two, two fixed mounting frame two (41) is respectively located in two sliding fit grooves one (22), one of the fixed mounting frame two (41) is connected with the working end of the other group of drive assembly one (5), the support plate (42) is arranged between two fixed mounting frame two (41), and a plurality of spaced holes are arranged on the support plate (42).
6. A bottom support device for drilling of communication equipment for the Internet of Things according to claim 5, characterized in that, Each of the driving assemblies (5) comprises a lead screw sliding table (51) and an assembling frame (52), the lead screw sliding table (51) is arranged inside one side of the top support frame (2), the assembling frame (52) is connected with the fixed mounting frame (31) or the fixed mounting frame (41) in one sliding fitting groove (21), the assembling frame (52) is provided with a clamping groove, and the assembling frame (52) is clamped and matched with the fixed mounting frame (31) or the fixed mounting frame (41) through the clamping groove.
7. A bottom support device for drilling of communication equipment for the Internet of Things according to claim 4, characterized in that, The driving assembly (6) comprises a lead screw sliding table (61), a sliding connecting plate (63) and a moving connecting rod (62), the lead screw sliding table (61) is arranged below one side of the top support frame (2), the sliding connecting plate (63) is provided with two, the two sliding connecting plates (63) are respectively arranged in two sliding fitting grooves (23), one of the sliding connecting plates (63) is connected with the working end of the lead screw sliding table (61), the moving connecting rod (62) is arranged between the two sliding connecting plates (63), and the moving connecting rod (62) is slidably connected with the bottom connecting frame (34).