High-strength bearing workbench
By using a multi-point support structure and fixing device, combined with a horizontal detection sensor and alarm, the problems of poor load-bearing capacity and low safety of existing workbenches have been solved, achieving high-strength load-bearing capacity and safe tank separation operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2026-04-03
AI Technical Summary
The existing workbench has poor load-bearing capacity, insufficient structural stability, lack of fixing devices and real-time level monitoring mechanism, posing safety hazards, especially when handling large-capacity mixing tanks, it is prone to tipping over.
A high-strength load-bearing workbench was designed, which adopts a multi-point support structure, fixing mechanism, tilt alarm component and multiple fixing methods, combined with honeycomb reinforcement structure and reinforcing rib structure, and equipped with level detection sensor and alarm to ensure platform stability and safety.
It improves the load-bearing strength and stability of the workbench, prevents the mixing tank from tipping over, ensures the safety and applicability of tank separation operations, and extends service life.
Smart Images

Figure CN224074307U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of glue dispensing devices, specifically to a high-strength load-bearing workbench. Background Technology
[0002] In the glue production process, the thoroughly mixed glue mixing tanks need to be divided into smaller containers for packaging. To ensure production efficiency, the mixing tanks need to be moved to workbenches for packaging. However, existing workbenches often suffer from insufficient load-bearing capacity and poor structural stability. Especially when handling the unloading and packaging of large-capacity mixing tanks, traditional platforms, lacking specific reinforcement structures, are prone to deformation or even tipping over. Existing load-bearing workbenches generally have the following problems: 1. The existing workbench support structure is simple and cannot withstand the long-term load of heavy mixing tanks; 2. The existing workbench is only used for placement but lacks a fixing device, posing a certain safety risk and lacking a centering function; 3. The existing workbench lacks a real-time level monitoring mechanism and a stabilizing protection mechanism, posing a tilting hazard and affecting safety; 4. The overall stabilization method is rudimentary, relying on a single fixed point. Utility Model Content
[0003] This utility model addresses the shortcomings of current technology by providing a high-strength load-bearing workbench, aiming to solve the technical problems of poor load-bearing performance and low safety in the use of existing workbenches.
[0004] The technical solution adopted by this utility model to achieve the above objectives is as follows:
[0005] A high-strength load-bearing workbench includes a placement platform and a base. The placement platform is disposed on the base, and a strength-reinforcing structure is provided between the base and the placement platform. The placement platform is provided with a notch, a fixing mechanism, a tilt alarm component, and a hanging hole group. The fixing mechanism is disposed on the outside of the notch.
[0006] As a further improvement, the base includes multiple support feet, and the strength-enhancing structure includes two sets of reinforcing uprights and one set of reinforcing uprights. The two sets of reinforcing uprights are respectively located at both ends of the placement platform, and the two sets of reinforcing uprights are located between the two sets of reinforcing uprights, and the two sets of reinforcing uprights are located at the rear bottom of the recess; the multiple support feet are respectively located at the bottom of the reinforcing uprights and the reinforcing uprights.
[0007] As a further improvement, both the first and second reinforced pole groups include two poles, and each pole is equipped with a reinforcing structure.
[0008] As a further improvement, the reinforcing structure includes a honeycomb reinforcing structure and a reinforcing rib structure, wherein the honeycomb reinforcing structure is disposed on the outer side of the upright, and the reinforcing rib structure is disposed on the inner side of the upright.
[0009] As a further improvement, the honeycomb reinforcement structure is composed of multiple hexagonal frames; the reinforcing rib structure includes multiple reinforcing ribs, which are arranged in an array on the inner wall of the upright.
[0010] As a further improvement, a support rod is provided between each of the two uprights, and a support rod one is also provided between each of the two uprights located at the rear; the support rod and the upright, and the support rod one and the upright are connected by a threaded structure.
[0011] As a further improvement, the notch is an arc-shaped notch; the fixing mechanism includes two clamping components, which are arranged on both sides of the notch in a mirror-like manner; each clamping component includes a cylinder, each cylinder is provided with a drive rod, and each drive rod is provided with an arc-shaped clamping block.
[0012] As a further improvement, the tilt alarm component includes a processing controller and multiple level detection sensors. The multiple level detection sensors are respectively located in the four corners of the placement platform. The processing controller is located at the rear of the placement platform. The multiple level detection sensors are all electrically connected to the processing controller. The processing controller is equipped with control buttons, an alarm, and a power supply.
[0013] As a further improvement, the placement platform is also equipped with a guardrail; the hanging hole group is located at the rear of the placement platform, the hanging hole group includes multiple hanging holes arranged in an array, and each hanging hole is equipped with a steel wire rope; each support foot is also equipped with a buckle groove.
[0014] Compared with the prior art, the high-strength load-bearing workbench provided in this embodiment of the present invention has at least one of the following technical effects:
[0015] 1. This utility model reduces the overall weight of the high-strength load-bearing workbench by incorporating a strength-enhancing structure, while simultaneously increasing its supporting load-bearing capacity. This allows for stable support of large-tonnage mixing tanks, improving the workbench's performance and lifespan, and enhancing its applicability in tank separation operations. The recessed design allows for the extension of the mixing tank's outlet, facilitating subsequent glue separation operations.
[0016] 2. The fixing mechanism is used to fix and center the mixing tank placed on the notch, preventing movement during the tank splitting operation, ensuring the safety of subsequent tank splitting operations, and facilitating the alignment of the rear liquid outlet; the fixing mechanism can be used to fix mixing tanks of different sizes, improving applicability;
[0017] 3. By setting up four-corner distributed level detection sensors combined with a processing controller with alarm function, the tilt of the platform is monitored in real time, improving safety and effectively preventing overturning accidents caused by uneven tank loading; by setting up a base with locking slots, the locking slots are used to fix the high-strength load-bearing workbench to the ground with snap screws, and the steel wire ropes on the hanging hole group are used to achieve multiple fixation, thereby achieving stable fixation of the high-strength load-bearing workbench and preventing the high-strength load-bearing workbench from tilting and tipping over due to the placed mixing tank, thus improving the safety of subsequent tank splitting operations;
[0018] 4. By setting up two sets of reinforced uprights (Group 1) and one set of reinforced uprights (Group 2) to provide multi-point support, the overall stability is ensured, and the support performance and service life are improved. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of the overall structure of the high-strength load-bearing workbench in this embodiment;
[0021] Figure 2 This is a rear view schematic diagram of the high-strength load-bearing workbench in this embodiment;
[0022] Figure 3 This is a cross-sectional view of the pole in this embodiment. Detailed Implementation
[0023] The following description is only a preferred embodiment of the present invention and does not limit the scope of protection of the present invention.
[0024] For examples, see the appendix. Figures 1-3 A high-strength load-bearing workbench 1 includes a placement platform 2 and a base 3. The placement platform 2 is disposed on the base 3, and a strength-reinforcing structure 4 is provided between the base 3 and the placement platform 2. The placement platform 2 is provided with a notch 5, a fixing mechanism 6, a tilt alarm component 7, and a hanging hole group 8. The fixing mechanism 6 is disposed on the outside of the notch 5.
[0025] The base 3 includes multiple support feet, and the strength-enhancing structure 4 includes two sets of reinforcing uprights 40 and one set of reinforcing uprights 41. The two sets of reinforcing uprights 40 are respectively located at both ends of the placement platform 2, and the two sets of reinforcing uprights 41 are located between the two sets of reinforcing uprights 41 and at the rear bottom of the recess 5. The multiple support feet are respectively located at the bottom of the reinforcing uprights 40 and the two sets of reinforcing uprights 41. The strength-enhancing structure 4 is used to reduce the overall weight of the high-strength load-bearing workbench 1 while increasing the load-bearing strength of the high-strength load-bearing workbench 1, so that the high-strength load-bearing workbench 1 can support heavy mixing tanks and improve the applicability of tank separation operations. The recess 5 is used for the extension of the liquid outlet of the mixing tank, thereby facilitating the subsequent glue separation operation.
[0026] Both the first reinforced upright assembly 40 and the second reinforced upright assembly 41 include two uprights 400, and each upright 400 is provided with a reinforcing structure 401. The reinforcing structure 401 includes a honeycomb reinforcing structure 401a and a reinforcing rib structure 401b. The honeycomb reinforcing structure 401a is disposed on the outer surface of the upright 400, and the reinforcing rib structure 401b is disposed on the inner surface of the upright 400. The honeycomb reinforcing structure 401a is composed of multiple hexagonal frames. The reinforcing rib structure 401b includes multiple reinforcing ribs, which are arranged in an array on the inner wall of the upright 400. The reinforcing structure 401 is used to increase the strength of the upright 400, thereby ensuring the load-bearing performance of the high-strength load-bearing workbench 1.
[0027] A support rod 402 is provided between each of the two uprights 400, and a support rod 403 is also provided between each of the two rear uprights 400. The support rod 402 and the upright 400, and the support rod 403 and the upright 400 are connected by a threaded structure. The threaded connection structure includes multiple corner blocks, which are respectively provided at the ends of the support rod 402, the ends of the support rod 403, and the outer side wall of the upright 400. Each corner block is provided with a through hole, which is fixed with a bolt. The support rod 402 and the support rod 403 are used for support to ensure the stability of the support between the uprights 400.
[0028] The recess 5 is an arc-shaped recess; the fixing mechanism 6 includes two clamping components 60, which are arranged in a mirror image on both sides of the recess 5; each clamping component 60 includes a cylinder 600, each cylinder 600 is provided with a drive rod, each drive rod is provided with an arc-shaped clamping block 601, and each cylinder 600 is also provided with an air nozzle interface for connecting to an external air compressor. The fixing mechanism 6 is used to fix the mixing tank placed on the recess 5 to prevent movement during tank separation operations, ensuring the safety of subsequent tank separation operations. The fixing mechanism 6 can also be used to fix mixing tanks of different sizes, improving applicability.
[0029] The tilt alarm component 7 includes a processing controller 70 and multiple level detection sensors 71. The multiple level detection sensors 71 are respectively located in the four corners of the placement platform 2. The processing controller 70 is located at the rear of the placement platform 2. The multiple level detection sensors 71 are all electrically connected to the processing controller 70. The processing controller 70 is equipped with a control button, an alarm, and a power supply. The tilt alarm component 7 is used to monitor the level of the placement platform 2 and provide a timely alarm when the mixing tank tilts, thereby improving the safety of subsequent tank separation operations.
[0030] The placement platform 2 is also equipped with a guardrail 20; the hanging hole group 8 is located at the rear of the placement platform 2, and the hanging hole group 8 includes multiple hanging holes arranged in an array. Each hanging hole is equipped with a steel wire rope, which is used to bind the counterweight or the fixing nails on the bottom surface; each support foot is also equipped with a buckle groove, which is used to fix the high-strength load-bearing workbench 1 to the buckle screws on the ground. In conjunction with the steel wire rope on the hanging hole, multiple fixation is achieved, thereby achieving a stable fixation of the high-strength load-bearing workbench 1 and preventing the high-strength load-bearing workbench 1 from tilting or tipping over due to the placement of the mixing tank, thus improving the safety of subsequent tank filling operations.
[0031] This invention reduces the overall weight of the high-strength load-bearing workbench by incorporating a strength-enhancing structure, while simultaneously increasing its supporting load-bearing capacity. This allows for stable support of large-tonnage mixing tanks, improving the workbench's performance and lifespan, and enhancing the applicability of tank separation operations. A recessed opening allows the mixing tank's outlet to extend, facilitating subsequent glue separation operations. A fixing mechanism securely centers the mixing tank placed in the recess, preventing movement during tank separation and ensuring safety, while also facilitating the alignment of the outlet. This fixing mechanism can be used to secure mixing tanks of different sizes, further enhancing its applicability. The four corners are also designed with... A horizontal detection sensor, combined with a processing controller featuring an alarm function, monitors the platform's tilt in real time, enhancing safety and effectively preventing overturning accidents caused by uneven tank loading. A base with locking slots secures the high-strength load-bearing workbench to the ground using locking screws, further reinforced by steel wire ropes attached to hanging holes. This ensures stable fixation of the workbench, preventing it from tilting or tipping over due to the placement of the mixing tank, thus improving the safety of subsequent tank separation operations. Two sets of reinforcing uprights and one set of reinforcing uprights provide multi-point support, ensuring overall stability and improving support performance and service life.
[0032] This utility model is not limited to the above-described embodiments. Other high-strength load-bearing workbenches obtained by using the same or similar structures or devices as the above-described embodiments of this utility model are all within the protection scope of this utility model.
Claims
1. A high strength load bearing workbench characterized by: The high-strength load-bearing workbench comprises a placing platform and a base, the placing platform is arranged on the base, and a strength reinforcing structure is arranged between the base and the placing platform; the placing platform is provided with a notch, a fixing mechanism, an inclination alarm assembly and a hanging hole group, and the fixing mechanism is arranged outside the notch.
2. The high strength load bearing table of claim 1, wherein: The base comprises a plurality of supporting legs, the strength reinforcing structure comprises two groups of reinforcing vertical rod groups I and one group of reinforcing vertical rod group II, the two groups of reinforcing vertical rod groups I are arranged at two ends of the placing platform respectively, the reinforcing vertical rod group II is arranged between the two groups of reinforcing vertical rod groups II, and the reinforcing vertical rod group II is arranged at the back bottom of the notch; and the plurality of supporting legs are arranged at the bottoms of the reinforcing vertical rod groups I and II.
3. The high strength load bearing table of claim 2, wherein: The reinforcing vertical rod groups I and II each comprise two vertical rods, and the vertical rods are each provided with a reinforcing structure.
4. The high strength load bearing table of claim 3, wherein: The reinforcing structure comprises a honeycomb reinforcing structure and a reinforcing rib structure, the honeycomb reinforcing structure is arranged on the outer side surface of the vertical rod, and the reinforcing rib structure is arranged on the inner side surface of the vertical rod.
5. The high strength load bearing table of claim 4, wherein: The honeycomb reinforcing structure is composed of a plurality of hexagonal frames; the reinforcing rib structure comprises a plurality of reinforcing ribs, and the plurality of reinforcing ribs are arranged on the inner wall of the vertical rod in an array.
6. The high strength load bearing table of claim 5, wherein: Supporting rods are arranged between the two vertical rods, and supporting rods I are further arranged between the two vertical rods arranged at the back; the supporting rods and the vertical rods, and the supporting rods I and the vertical rods are in threaded connection.
7. The high strength load bearing table of claim 6, wherein: The notch is a circular arc structure notch; the fixing mechanism comprises two clamping assemblies, the two clamping assemblies are arranged on the two sides of the notch in a mirror image opposite manner; the clamping assemblies each comprise a gas cylinder, the gas cylinder is provided with a driving rod, and the driving rod is provided with an arc-shaped clamping block.
8. The high strength load bearing table of claim 7, wherein: The inclination alarm assembly comprises a processing controller and a plurality of horizontal detection sensors, the plurality of horizontal detection sensors are arranged in the four corner portions of the placing platform respectively, the processing controller is arranged at the back of the placing platform, the plurality of horizontal detection sensors are each electrically connected with the processing controller; and the processing controller is provided with a control button, an alarm and a power supply.
9. The high strength load bearing table of claim 8, wherein: The placing platform is further provided with a protective fence; the hanging hole group is arranged at the back of the placing platform, the hanging hole group comprises a plurality of array-arranged hanging holes, the hanging holes are each provided with a steel wire rope; and the supporting legs are each further provided with a buckle slot.