Construction engineering steel pipe body equidistant cutting equipment with protective structure
Through innovative designs such as limiters, motor threaded blocks, and water spraying systems, high-precision equidistant cutting of building steel pipes has been achieved, solving the problems of complex operation and serious pollution of traditional equipment, and improving cutting efficiency and environmental protection.
Patent Information
- Application Number
- CN202520083779.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-14
AI Technical Summary
Traditional steel pipe cutting equipment is complex to operate, and it is difficult to make precise cutting dimensions, which affects the quality of construction and construction efficiency. In addition, the equipment has high maintenance costs and causes serious pollution.
The length of the steel pipe is adjusted by a limit switch, and the threaded block is moved by a motor to achieve equidistant cutting. A water spray system is set to cool the cutting blades, a support wheel assembly supports the steel pipe, and a sewage purification structure filters out dirt, thus achieving precise cutting and resource recycling.
It improves cutting precision and efficiency, reduces the labor intensity of operators, extends the life of cutting components, reduces material waste and pollution, and meets green and environmental protection requirements.
Smart Images

Figure CN223718397U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of building engineering, concretely is a kind of building engineering steel pipe body equidistance cutting equipment with protective structure. BACKGROUND
[0002] In the traditional steel pipe cutting process, the operator usually needs to adjust the length of the steel pipe according to personal experience. However, due to the experience, skill and cognitive differences of the operator, the cutting size is often difficult to meet the precise requirements. In the cutting process, the error of the length of the steel pipe is large, which cannot meet the strict standards of high-precision size in modern building engineering. This not only affects the overall quality and appearance of the building, but also may have an adverse effect on the subsequent construction links. Secondly, the traditional cutting equipment has a complex structure and a cumbersome operation process, which requires the operator to spend a lot of time and effort in cutting operation. This inefficient cutting method not only reduces the overall construction progress, but also increases the labor intensity of the operator, making him prone to fatigue in long-time work. SUMMARY
[0003] The utility model aims to provide a kind of building engineering steel pipe body equidistance cutting equipment with protective structure to solve the problems raised in the above background.
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a kind of building engineering steel pipe body equidistance cutting equipment with protective structure, including support table and bottom plate being set at the bottom of support table by support frame, still including
[0005] Adjusting box structure is arranged at one end of the top of the support table, and a screw rod two is arranged in the adjusting box structure by a motor three, a clamp for equidistantly conveying the steel pipe body is arranged on the screw rod two by a threaded block, and a limit stop is also equidistantly arranged on one side of the adjusting box structure.
[0006] Protective cutting box is arranged at the other end of the top of the support table, and a cutting assembly is arranged in the protective cutting box by a screw rod one near the adjusting box structure, the cutting assembly includes a movable seat connected with the screw rod one, a motor two and a cutting disc mounted on the output end of the motor two; a clean water tank is further arranged on the top of the bottom plate below the support table, a water pump is mounted in the clean water tank, and the output end of the water pump extends to the inside of the protective cutting box through a water pipe and is connected with a spring pipe, the output end of the spring pipe is connected with a nozzle, and the nozzle is arranged on one side of the cutting disc.
[0007] Further, the inner side of the clamp is paved with a non-slip mat, and an adjustable telescopic rod is arranged between the two handles of the clamp, the height of the clamp and the inlet of the adjusting box structure arranged at one end are in a horizontal state, and an inlet roller is arranged at the bottom of the inlet.
[0008] Further, the protective cutting box is provided with a motor one connected with a lead screw, and support wheel assemblies are arranged on the inner walls of the two sides of the lead screw one through electric telescopic rods, and the support wheel assemblies are in the same horizontal line with the steel pipe body.
[0009] Further, the bottom of the protective cutting box is provided with a sewage tank communicated with a clean water tank, and a filter screen and filter cotton are arranged at the connection between the sewage tank and the clean water tank.
[0010] Further, one side of the support frame is provided with a conveyor, one end of the conveyor extends to the inside of the protective cutting box, and a stacking frame is arranged on the conveyor.
[0011] Further, a slide rod is further arranged in the protective cutting box on one side of the lead screw one, a support rod is arranged between the slide rod and the lead screw one, and the cutting assembly is arranged at the middle position of the support rod.
[0012] Compared with the prior art, the utility model has the beneficial effects that:
[0013] Firstly, the length of the steel pipe body to be cut is adjusted through the positioner, the cutting size can be accurately controlled, the cutting precision is improved, the actual needs of building engineering can be met for each cut steel pipe, and the rework and material waste caused by size inconsistency are effectively avoided.
[0014] Secondly, the principle that the motor three drives the threaded block to move back and forth is adopted, the equidistance cutting of the steel pipe body is realized, the operation process is simplified, the work efficiency is improved, the labor intensity of the operator is reduced, and the demand of the modern building industry for automatic and intelligent equipment is met.
[0015] Thirdly, the effective water spraying system is arranged in the equipment, the water spraying system can cool the cutting blade in time when the cutting assembly works, the cutting blade is effectively prevented from being abraded due to overheating, the service life of the cutting assembly is significantly improved, and the maintenance cost of the equipment is reduced.
[0016] In addition, the support wheel assemblies are arranged in the equipment for supporting the steel pipe body, the steel pipe body is prevented from falling in the cutting process, the oblique cut is avoided, the cutting quality of the steel pipe body is ensured, and the overall quality of the product is improved.
[0017] More importantly, the sewage purification structure is arranged in the equipment. The filter screen can effectively filter large particles of dirt, the filter cotton can filter small particles of dirt, and the purification effect is stronger. The design not only helps to protect the environment and reduce pollution, but also realizes the recycling of water resources, reduces the consumption of water resources, and meets the development trend of green environmental protection. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the front view structural schematic diagram of the utility model;
[0019] Figure 2 It is the side view structural schematic diagram of the utility model;
[0020] Figure 3 It is the inside structure schematic diagram of the adjusting box structure of the utility model;
[0021] Figure 4 It is the side view schematic diagram of the cutting device of the utility model
[0022] Figure 5 It is the overhead view schematic diagram of the supporting wheel assembly of the utility model;
[0023] Figure 6 It is the schematic diagram of the clamp structure of the utility model;
[0024] In the figure: 1, bottom plate; 2, clean water tank; 3, sewage tank; 4, support frame; 5, protective cutting box; 6, water pump; 7, water pipe; 8, spring pipe; 9, nozzle; 10, filter screen; 11, filter cotton; 12, adjusting box structure; 13, feed inlet; 14, motor one; 15, screw one; 16, motor two; 161, cutting disc; 17, cutting assembly; 18, supporting wheel assembly; 19, stopper; 20, stacking frame; 21, conveyor; 22, supporting table; 23, steel pipe body; 24, feed roller; 25, motor three; 26, screw two; 27, threaded block; 271, adjusting telescopic rod; 272, clamp; 28, electric telescopic rod; 29, movable seat; 30, sliding rod; 31, supporting rod. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0026] Please refer to Figures 1-6 The utility model provides an embodiment: a kind of building engineering steel pipe body equidistance cutting equipment with protective structure, including supporting table 22 and bottom plate 1 being set in the bottom of supporting table 22 by support frame 4, still include
[0027] The adjusting box structure 12 is arranged at one end of the top of the support table 22, and the inside of the adjusting box structure 12 is provided with a screw rod 26 through a motor 25, the screw rod 26 is provided with a clamp 272 for equidistant conveying of the steel pipe body 23 through a threaded block 27, the inside of the clamp 272 is paved with a non-slip pad, and an adjusting telescopic rod 271 is arranged between the two handles of the clamp 272, the height of the clamp 272 is in a horizontal state with the feeding port 13 arranged at one end of the adjusting box structure 12, and the bottom of the feeding port 13 is provided with a feeding roller 24.
[0028] The clamp 272 is designed for equidistant conveying of the steel pipe body 23. The inside of the clamp 272 is uniformly paved with a non-slip pad to increase the friction with the steel pipe body 23 and prevent the steel pipe body 23 from slipping during conveying. An adjusting telescopic rod 271 is arranged between the two handles of the clamp 272, which is used to adjust the opening size of the clamp 272 to adapt to steel pipe bodies 23 of different diameters.
[0029] The height of the clamp 272 is in a horizontal state with the feeding port 13 arranged at one end of the adjusting box structure 12. This design ensures that the steel pipe body 23 can be smoothly placed on the clamp 272 when entering the adjusting box structure 12, avoiding collision or damage caused by height difference.
[0030] The bottom of the feeding port 13 is provided with a feeding roller 24, which helps the smooth entry of the steel pipe body 23 into the adjusting box structure 12. The diameter and rotational speed of the feeding roller 24 are carefully designed to ensure the stability and continuity of the steel pipe body 23 during conveying.
[0031] A limit stop 19 is also arranged at equal intervals on one side of the adjusting box structure 12.
[0032] The limit stop 19 is mainly composed of a sliding groove 20 and a sliding rod 21.
[0033] The sliding groove 20 is arranged on the main structure of the adjusting box structure 12 and is used to accommodate the sliding rod 21.
[0034] The sliding rod 21 is provided with a limit screw 22, and the limit screw 22 is fixedly connected with the sliding rod 21.
[0035] Specifically, the sliding groove 20 is a long strip structure with a smooth interior to ensure smooth movement of the sliding rod 21 inside.
[0036] The diameter of the sliding rod 21 matches the internal size of the sliding groove 20, so that the sliding rod 21 can move up and down stably inside the sliding groove 20 without shaking.
[0037] When the sliding rod 21 moves to the top end of the sliding groove 20, the limiting screw 22 on the sliding rod 21 can block the travel path of the threaded block 27. At this time, the limiting screw 22 is in close contact with the threaded block 27, effectively preventing the threaded block 27 from continuing to advance, thereby achieving the limiting function.
[0038] The protective cutting box 5 is arranged at the other end of the top of the support table 22, and the inside of the protective cutting box 5 near the adjusting box structure 12 is provided with a cutting assembly 17 through a lead screw one 15. The cutting assembly 17 includes a movable seat 29 connected with the lead screw one 15, a motor two 16, and a cutting disc 161 installed at the output end of the motor two 16. The inside of the protective cutting box 5 on one side of the lead screw one 15 is also provided with a sliding rod 30. The sliding rod 30 and the lead screw one 15 are provided with a support rod 31 therebetween. The cutting assembly 17 is arranged at the middle position of the support rod 31.
[0039] The cutting assembly 17 includes the following parts:
[0040] The movable seat 29 is connected with the lead screw one 15 and can move axially along the lead screw one 15.
[0041] The motor two 16 is installed on the movable seat 29 and is used to drive the cutting disc 161 to rotate.
[0042] The cutting disc 161 is installed at the output end of the motor two 16 and is used to cut materials.
[0043] The inside of the protective cutting box 5 on one side of the lead screw one 15 is also provided with a sliding rod 30. The sliding rod 30 and the lead screw one 15 are connected through a support rod 31 to maintain the stability and support force of the cutting assembly 17. The cutting assembly 17 is arranged at the middle position of the support rod 31 to ensure the accuracy and efficiency of the cutting operation.
[0044] In actual operation, the movable seat 29 moves axially along the lead screw one 15 by adjusting the lead screw one 15, thereby changing the position of the cutting assembly 17. After the motor two 16 is started, the cutting disc 161 begins to rotate and cuts the materials placed on the support table 22. At the same time, the sliding rod 30 and the support rod 31 work together to ensure the stability of the cutting assembly 17 during the cutting process.
[0045] The top of the bottom plate 1 below the support table 22 is also provided with a clean water tank 2. The inside of the clean water tank 2 is installed with a water pump 6. The output end of the water pump 6 extends to the inside of the protective cutting box 5 through a water pipe 7 and is connected with a spring pipe 8. The output end of the spring pipe 8 is connected with a nozzle 9, which is arranged on one side of the cutting disc 161.
[0046] The design of the water pipe 7 ensures that the water flow can be smoothly delivered into the protective cutting box 5, providing the necessary water source for the cutting process.
[0047] At the end of the water pipe 7 inside the protective cutting box 5, a spring pipe 8 is connected. The spring pipe 8 has good elasticity and can maintain its shape under water pressure while also adapting to the complex spatial structure inside the cutting box 5.
[0048] The output end of the spring pipe 8 is connected with a nozzle 9, which is arranged on one side of the cutting disc 161. The design of the nozzle 9 allows the water flow to be sprayed out at a certain pressure and angle, effectively cooling and cleaning the cutting material.
[0049] The protective cutting box 5 is provided with a motor 14 connected with a lead screw 15, and on both sides of the protective cutting box 5 on one side of the lead screw 15, support wheel assemblies 18 are installed through electric telescopic rods 28, and the support wheel assemblies 18 are on the same horizontal line as the steel pipe body 23.
[0050] The support wheel assembly 18 is composed of a support plate and multiple rollers.
[0051] The support plate is made of high-strength wear-resistant material and has sufficient strength and stability to withstand various forces generated during the movement of the assembly. The support plate A is rectangular in shape and its size can be customized according to actual application requirements.
[0052] The rollers are made of high-quality rubber or plastic materials and have good wear resistance and impact resistance. The outer diameter and width of the rollers B match the support plate A to ensure stable rolling during movement. The rollers B are internally provided with bearings to reduce friction resistance during movement.
[0053] The rollers are in close contact with the steel pipe body, providing stable support to prevent the steel pipe from sagging during cutting.
[0054] The support plate fixes the support rollers to ensure their stability during cutting, supports the steel pipe body 23 to prevent it from sagging during cutting, thereby avoiding the generation of bevel cuts and ensuring the cutting quality of the steel pipe body 23, improving the overall quality of the product.
[0055] The bottom of the protective cutting box 5 is provided with a sewage tank 3 connected with the clean water tank 2, and a filter screen 10 and filter cotton 11 are arranged at the connection between the sewage tank 3 and the clean water tank 2.
[0056] The filter screen 10 can effectively filter large particles of dirt, and the filter cotton 11 can filter small particles of dirt, with stronger purification effect. This design not only helps to protect the environment and reduce pollution, but also realizes the recycling of water resources, reduces water consumption, and conforms to the development trend of green environmental protection.
[0057] One side of the support frame 4 is provided with a conveyor 21, one end of which extends to the inside of the protective cutting box 5, and a stacking rack 20 is arranged on the conveyor 21.
[0058] The support frame 4 is made of high-strength steel material, is stable in structure, and has strong load-bearing capacity.
[0059] The specific structure of the conveyor 21 is as follows:
[0060] The conveyor 21 comprises a driving motor, a conveying belt, and a support frame. The driving motor is installed on the support frame, and the conveying belt is driven to realize the conveying of the material.
[0061] The structure of the stacking frame 20 is a multi-layer metal frame, and gaps are arranged between the frames.
[0062] The specific operation steps are as follows:
[0063] The cut-off steel pipe body 23 naturally falls into the stacking frame 20 during the cutting process. When the steel pipe body 23 in the stacking frame 20 reaches a certain number, the steel pipe body 23 is discharged from the stacking frame 20 through the driving of the conveyor 21 and is conveyed to a designated position.
[0064] In use, when the steel pipe body 23 needs to be cut, the steel pipe body 23 is manually sent to the adjusting box structure 12 through the feeding port 13. Then, the electric telescopic rod 28 moves inwards and drives the electric telescopic rod 28 to move inwards until the support wheel assemblies 18 at both ends of the electric telescopic rod 28 touch and stop. Then, the motor three 25 is started, the motor three 25 in the adjusting box structure 12 reverses to drive the threaded block 27 on the lead screw two 26 to move to one end of the motor three 25. Then, the limit stop 19 is adjusted to an appropriate position. Then, the threaded block 27 clamps the steel pipe body 23. At this time, the motor three 25 is forward to drive the threaded block 27 on the lead screw two 26 to move forward until it touches the limit stop 19 and stops moving. Then, the motor two 16 is started, and the motor two 16 drives the cutting assembly 17 to rotate. At this time, the nozzle 9 on the cutting assembly 17 starts to spray clean water. Then, the motor one 14 is started, and the motor one 14 drives the lead screw one 15 and the movable seat 29 on it to move up and down. The movable seat 29 is connected with the support rod 31, and the cutting assembly 17 is installed in the middle of the support rod 31. Therefore, the motor one 14 drives the cutting assembly 17 to move up and down to cut the steel pipe body 23. When the cutting of one end of the steel pipe body 23 is completed, the electric telescopic rod 28 is opened, and the cut-off steel pipe body 23 naturally falls into the stacking frame 20. At the same time, the threaded block 27 releases the remaining steel pipe body 23, the motor three 25 reverses to drive the threaded block 27 to return to one end of the motor three 25, and the reciprocating operation is performed.
[0065] When the cut steel pipe body 23 needs to be taken, the stacking frame 20 is moved by the conveyor 21, the stacking frame 20 is conveyed to the ground by the conveyor 21, and then it is taken out.
[0066] When the steel pipe body 23 needs to be cut, the water pump 6 starts to pump the clean water in the clean water tank 2 into the water pipe 7, the water pipe 7 sends the clean water into the spring pipe 8 in the protective cutting tank 5, the spring pipe 8 is connected with the nozzle 9 under the cutting assembly 17, the nozzle 9 sprays the clean water on the surface of the steel pipe body 23 to prevent overheating when the cutting assembly 17 cuts, and then the sewage flows to the sewage tank 3 through the stacking frame 20 and the conveyor 21, and then the sewage flows through the sewage tank 3 and the clean water tank 2 through the filter screen 10 and the filter cotton 11 in the connecting part and reflows into the clean water tank 2, wherein the filter screen 10 can filter larger particle stains such as iron filings, and the filter cotton 11 can filter smaller particle stains such as sludge.
[0067] Obviously, the above-described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should belong to the protection scope of the present application.
[0068] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments in accordance with the present application. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and / or "comprising," when used in this specification, specify the presence of stated features, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or groups thereof.
[0069] It should be noted that the terms "first", "second", and the like, as used in the specification, are intended to modify any one of the features, steps, operations, devices, components, and / or elements described herein, but do not connote an order among the features, steps, operations, devices, components, and / or elements unless otherwise indicated by the context.
[0070] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A construction engineering steel pipe body equidistance cutting device with a protection structure, comprising a support table (22) and a bottom plate (1) arranged at the bottom of the support table (22) through a support frame (4), characterized in that: Also includes The regulating box structure (12) is located at one end of the top of the support platform (22), and the regulating box structure (12) is equipped with a lead screw (26) through a motor (25). The lead screw (26) is equipped with a clamp (272) for equidistantly conveying the steel pipe body (23) through a threaded block (27). Limiters (19) are also equidistantly arranged on one side of the regulating box structure (12). A protective cutting box (5) is located at the other end of the top of the support platform (22). The inner side of the protective cutting box (5) near the adjustment box structure (12) is provided with a cutting assembly (17) via a lead screw (15). The cutting assembly (17) includes a movable seat (29) connected to the lead screw (15), a motor (16), and a cutting disc (161) installed at the output end of the motor (16). A clean water tank (2) is also provided on the top of the base plate (1) below the support platform (22). A water pump (6) is installed inside the clean water tank (2). The output end of the water pump (6) extends to the inside of the protective cutting box (5) via a water pipe (7) and is connected to a spring tube (8). The output end of the spring tube (8) is connected to a nozzle (9). The nozzle (9) is located on one side of the cutting disc (161).
2. The constructional steel tube body equidistance cutting apparatus with a protection structure according to claim 1, characterized in that: The inner side of the clamp (272) is covered with anti-slip pads, and an adjustment telescopic rod (271) is provided between the two handles of the clamp (272). The height of the clamp (272) is horizontal with the feed port (13) provided at one end of the adjustment box structure (12). The bottom of the feed port (13) is provided with a feed roller (24).
3. The constructional steel tube body equidistance cutting apparatus with a protection structure according to claim 1, characterized in that: The protective cutting box (5) is connected to the motor (14) of the lead screw (15), and the inner walls of both sides of the protective cutting box (5) on the lead screw (15) are equipped with support wheel assemblies (18) by electric telescopic rods (28). The support wheel assemblies (18) and the steel pipe body (23) are on the same horizontal line.
4. The constructional steel tube body equidistance cutting apparatus with a protection structure according to claim 1, characterized in that: The bottom of the protective cutting box (5) is provided with a sewage tank (3) that communicates with the clean water tank (2), and a filter screen (10) and filter cotton (11) are provided at the connection between the sewage tank (3) and the clean water tank (2).
5. The constructional steel tube body equidistance cutting apparatus with a protection structure according to claim 1, characterized in that: A conveyor (21) is provided on one side of the support frame (4), one end of the conveyor (21) extends to the inside of the protective cutting box (5), and a stacking rack (20) is provided on the conveyor (21).
6. The constructional steel tube body equidistant cutting apparatus with a protection structure according to claim 1, characterized in that: Inside the protective cutting box (5) on one side of the lead screw (15), there is also a slide rod (30), and a support rod (31) is provided between the slide rod (30) and the lead screw (15). The cutting assembly (17) is located in the middle of the support rod (31).