Clamping and transporting structure used in spraying pipe drilling equipment
By introducing a clamping and transporting structure into the drilling equipment, including components such as a clamping base, guide wheels, and a hydraulic telescopic cylinder, the problems of unstable clamping and uneven transportation of traditional drilling equipment are solved, high-precision, automated workpiece clamping and transportation are achieved, and the adaptability and reliability of the equipment are improved.
Patent Information
- Application Number
- CN202422941851.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-30
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-30
AI Technical Summary
Traditional drilling equipment has an unstable clamping structure, an uneven transportation process, is difficult to adapt to workpieces of different shapes and sizes, and is complex to maintain, increasing production and repair costs.
A clamping platform is designed, which includes a clamping and transporting structure body, a clamping base, guide wheels, a clamping workbench, a transport assembly, a hydraulic telescopic cylinder and a lower support structure. Through the guide wheels, transverse wheels, vertical wheels, hydraulic telescopic cylinder and anti-slip texture mechanism, multi-directional clamping and smooth transportation of the workpiece can be achieved, which can adapt to different workpiece sizes and shapes.
It improves the clamping stability and transportation smoothness of the workpiece, reduces processing errors, simplifies the operation process, reduces labor intensity, and improves the adaptability and reliability of the equipment.
Smart Images

Figure CN223419023U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of drilling equipment, in particular to a clamping and transporting structure used in a spray pipe drilling equipment. Background Art
[0002] Workpiece clamping and transportation are crucial aspects of drilling equipment operation. Traditional drilling equipment often suffers from issues like unstable clamping, uneven transportation, and poor adaptability. These issues not only affect drilling accuracy and efficiency but can also lead to workpiece damage or equipment failure, increasing production and maintenance costs.
[0003] Specifically, traditional clamping structures often rely on simple mechanical clamping methods, lacking flexibility and adaptability to meet the clamping needs of workpieces of varying shapes and sizes. Furthermore, the lack of stable support and guide mechanisms during transportation can cause workpieces to easily wobble or shift during transport, thus impacting subsequent drilling operations.
[0004] Furthermore, traditional clamping and transporting mechanisms often fail to fully consider the maintainability and operability of the equipment during design and manufacturing. For example, the complex disassembly and replacement of clamping and transport components leads to inefficient equipment maintenance, while the unfriendly operation interface increases the operator's workload and learning costs.
[0005] Therefore, a new type of clamping and transporting structure for drilling equipment is urgently needed to solve the above problems. This structure needs to have good clamping stability and smooth transportation, and can adapt to the clamping needs of workpieces of different shapes and sizes. At the same time, it needs to be easy to maintain and operate to improve the overall performance and reliability of the equipment. Utility Model Content
[0006] In order to solve some of the problems existing in the above-mentioned prior art, the utility model provides a clamping and transporting structure for a sprinkler pipe drilling device to solve the deficiencies existing in the prior art.
[0007] To achieve the above-mentioned purpose, the utility model provides a clamping and transporting structure for use in sprinkler pipe drilling equipment, including a clamping and transporting structure body, the clamping and transporting structure body including a supporting frame, a loading plate being provided above the supporting frame, a clamping and transporting structure being provided at one end of the loading plate, and an installation hole being provided at the other end of the loading plate, and a lower supporting structure being provided in conjunction with the installation hole.
[0008] As a further improvement of the present invention, in order to enable the workpiece to be smoothly guided to the clamping position and realize multi-directional clamping of the workpiece, it is helpful to more accurately position and clamp the workpiece and improve the stability and reliability of clamping, the clamping and transportation structure includes a clamping base, a guide wheel is arranged in the clamping base, and a clamping workbench is arranged above the guide wheel. The guide wheel is arranged vertically, and the clamping workbench is respectively provided with horizontal wheels and vertical wheels. The horizontal wheels are arranged at both ends of one side of the clamping workbench, and the vertical wheels are arranged at the center position of the other side of the clamping workbench and are arranged higher than the guide wheel.
[0009] As a further improvement of the present invention, in order to achieve fast and smooth transportation of workpieces, improve work efficiency, and reduce the labor intensity of operators, the clamping and transporting structure also includes a transport component, which is arranged on one side of the load-bearing plate. The transport component includes a transport bracket, a through hole is provided above the transport bracket, and a transport cylinder is provided on the transport bracket below the through hole, and a transport connecting block is connected to the output end of the transport cylinder.
[0010] As a further improvement of the present invention, in order to enable the clamping platform to slide smoothly on the supporting plate and further improve the smoothness and accuracy of transportation, the transport connecting block is connected to the clamping platform, a fixed slide rail is provided under the clamping platform, the fixed slide rail is provided on the supporting plate, and a sliding block is provided between the clamping platform and the fixed slide rail.
[0011] As a further improvement of the present invention, in order to enable the clamping and transporting structure to be flexibly adjusted according to different workpiece sizes and shapes and to achieve precise clamping of the workpiece, a hydraulic telescopic cylinder is provided on the clamping platform, and the hydraulic telescopic cylinder is cooperated with a mounting block. The hydraulic telescopic cylinder is connected with a hydraulic telescopic rod, and the hydraulic telescopic rod is inserted through the mounting block for arrangement. The output end of the hydraulic telescopic rod is cooperated with a clamping block, and the other side of the clamping block is recessed with an anti-slip texture mechanism.
[0012] As a further improvement of the present invention, in order to achieve all-round clamping of the workpiece, make the clamping force more evenly distributed, avoid deformation or damage of the workpiece due to uneven force, and improve the quality of drilling, multiple sets of clamping wheels are provided on the mounting block, and the clamping wheels and the clamping block are arranged at the same level.
[0013] As a further improvement of the present invention, in order to firmly support the workpiece, realize the height adjustment of the lower support block, further limit the position of the workpiece, prevent the workpiece from shaking or shifting during transportation or drilling, and ensure the accuracy and stability of drilling, the lower support structure includes a lower support base arranged on the supporting plate, the lower support base is connected to a lower support connecting rib, the lower support connecting rib is cooperated with a lower support fixing block, a lower support block is arranged above the lower support fixing block, a lower support telescopic cylinder is arranged below the lower support fixing block, the output end of the lower support telescopic cylinder is connected to the lower support block, and a plurality of limit blocks are provided on the inner wall of the lower support block.
[0014] When the utility model is working, when it is necessary to clamp and transport the workpiece, the workpiece is first transported by external equipment. When it reaches the lower support structure area, after receiving the control signal, the lower support telescopic cylinder starts to work, and its output end moves upward, driving the lower support block to rise. During the rising process of the lower support block, the limit block on its inner wall gradually approaches the workpiece, and begins to perform preliminary clamping and positioning of the workpiece. The design of the limit block ensures that the workpiece will not move or deflect due to external force during the drilling process, thereby ensuring the accuracy and stability of drilling. After the lower support block and the limit block completely support the workpiece, the external equipment continues to transport the workpiece.
[0015] The external equipment drives the workpiece to move toward one end of the clamping transport structure. The guide wheels and the clamping workbench in the clamping base are in a standby state. The guide wheels, transverse wheels and vertical wheels form a channel for the workpiece to move, and the workpiece moves continuously.
[0016] The workpiece passes through the through hole of the transport bracket and moves toward one end of the clamping platform. The clamping wheel contacts the workpiece under the push of the hydraulic telescopic cylinder. The clamping wheel and the clamping block cooperate with each other to fix the workpiece. The anti-slip texture mechanism design on the clamping block increases the friction with the workpiece and improves the clamping stability until the clamping block is in close contact with the workpiece. After the workpiece is stably clamped, the other parts of the equipment begin to perform processing operations.
[0017] The transport cylinder is started and drives the clamping platform to move by pushing the transport connecting block. Under the action of the transport cylinder, the clamping platform slides on the clamping slide rail through the clamping sliding block and drives the workpiece to move toward the discharge end of the equipment.
[0018] The beneficial effects of the present invention are:
[0019] Improved stability and clamping accuracy:
[0020] The clamping and transport structure, comprising a clamping base, guide wheels, a clamping table, and horizontal and vertical wheels, ensures the stability of the clamped object during transport while improving clamping accuracy. This design is particularly suitable for drilling equipment requiring high-precision positioning, effectively reducing machining errors caused by unstable clamping or inaccurate positioning.
[0021] Enhanced shipping flexibility:
[0022] The design of the transport assembly, including the transport bracket, transport cylinder and transport connection block, enables the entire clamping transport structure to flexibly transport and position materials. The drive of the transport cylinder makes the transport process more automated and improves work efficiency.
[0023] Automated clamping and releasing:
[0024] The hydraulic telescopic cylinder and clamping block installed on the clamping platform, along with the mounting block and hydraulic telescopic rod used in conjunction, achieve automatic clamping and release of the clamped object. This design not only simplifies the operation process, but also improves work safety and reliability.
[0025] Add anti-slip and limit functions:
[0026] The anti-slip texture on the clamping block and the multiple sets of clamping wheels on the mounting block effectively increase friction during the clamping process, preventing the clamped object from slipping. At the same time, the limit blocks in the lower support structure also play an effective limiting role, further improving the stability of the clamping.
[0027] Improve adaptability and versatility:
[0028] The design of the lower support structure includes a lower support base, lower support connecting ribs, a lower support fixing block, a lower support block and a lower support telescopic cylinder. The telescopic function of the lower support telescopic cylinder enables the lower support block to adjust its position as needed, thereby improving the adaptability and versatility of the structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to facilitate understanding by those skilled in the art, the present invention is further described below with reference to the accompanying drawings:
[0030] Figure 1 This is a structural diagram of the utility model.
[0031] Figure 2 It is a side structural diagram of the utility model.
[0032] Figure 3 This is a top view of the structure of the present utility model.
[0033] Figure 4 This is a structural diagram of the clamping platform of the present invention.
[0034] Figure 5 The utility model discloses a hydraulic telescopic cylinder structure diagram.
[0035] Figure 6 The utility model discloses a lower support structure structure diagram.
[0036] Wherein, 1 support frame, 2 bearing plate, 3 clamping transport structure, 4 mounting hole, 5 lower support structure, 6 clamping base, 7 guide wheel, 8 clamping workbench, 9 transverse wheel, 10 vertical wheel, 11 transport assembly, 12 transport support, 13 through -hole, 14 transport cylinder, 15 transport connecting block, 16 clamping platform, 17 fixed slide rail, 18 sliding block, 19 hydraulic telescopic cylinder, 20 mounting block, 21 hydraulic telescopic rod, 22 clamping block, 23 antiskid texture mechanism, 24 clamping wheel, 25 lower support base, 26 lower support connecting rib, 27 lower support fixed block, 28 lower support block, 29 lower support telescopic cylinder, 30 limit block. DETAILED DESCRIPTION
[0037] In order to make the personnel in the technical field better understand the technical scheme in the present application, the following will be combined with the attached drawings Figure 1-6 Further describe the utility model, the following examples are only used to more clearly illustrate the technical scheme of the utility model, and can not limit the protection scope of the utility model by this.
[0038] As Figure 1-6 The utility model discloses a kind of clamping transport structures for spray pipe drilling equipment, including clamping transport structure body, the clamping transport structure body includes support frame 1, the upper of the support frame 1 is provided with bearing plate 2, the bearing plate 2 one end is provided with clamping transport structure 3, the other end of the bearing plate 2 is provided with mounting hole 4, the mounting hole 4 is cooperatively provided with lower support structure 5.
[0039] The clamping transport structure 3 includes clamping base 6, the clamping base 6 is provided with guide wheel 7, the upper of the guide wheel 7 is cooperatively provided with clamping workbench 8, the guide wheel 7 is vertically arranged, the clamping workbench 8 is provided with transverse wheel 9 and vertical wheel 10 respectively, the transverse wheel 9 is arranged in one side both ends of clamping workbench 8, the vertical wheel 10 is arranged in the center position of the other side of clamping workbench 8, and higher than guide wheel 7 setting.
[0040] The clamping transport structure 3 further includes transport assembly 11, the transport assembly 11 is arranged in one side of bearing plate 2, the transport assembly 11 includes transport support 12, the upper of the transport support 12 is provided with through -hole 13, the lower of the through -hole 13 is provided with transport cylinder 14 on transport support 12, and the output end of the transport cylinder 14 is connected and provided with transport connecting block 15.
[0041] The transport connection block 15 is connected to a clamping platform 16 , a fixed slide rail 17 is provided below the clamping platform 16 , the fixed slide rail 17 is provided on the carrying plate 2 , and a sliding block 18 is provided between the clamping platform 16 and the fixed slide rail 17 .
[0042] The clamping platform 16 is provided with a hydraulic telescopic cylinder 19, and the hydraulic telescopic cylinder 19 is cooperated with a mounting block 20. The hydraulic telescopic cylinder 19 is connected with a hydraulic telescopic rod 21, and the hydraulic telescopic rod 21 is inserted through the mounting block 20 for arrangement. The output end of the hydraulic telescopic rod 21 is cooperated with a clamping block 22, and the other side of the clamping block 22 is recessed with an anti-slip texture mechanism 23.
[0043] The mounting block 20 is provided with a plurality of clamping wheels 24 , and the clamping wheels 24 are arranged at the same level as the clamping block 22 .
[0044] The lower supporting structure 5 includes a lower supporting base 25 arranged on the supporting plate 2, and the lower supporting base 25 is connected to a lower supporting connecting rib 26, and the lower supporting connecting rib 26 is cooperated with a lower supporting fixing block 27, and a lower supporting block 28 is arranged above the lower supporting fixing block 27, and a lower supporting telescopic cylinder 29 is arranged below the lower supporting fixing block 27, and the output end of the lower supporting telescopic cylinder 29 is connected to the lower supporting block 28, and the inner wall of the lower supporting block 28 is provided with multiple groups of limit blocks 30.
[0045] When the present invention is working, when it is necessary to clamp and transport the workpiece, the workpiece is first transported by external equipment. When it reaches the area of the lower supporting structure 5, after receiving the control signal, the lower supporting telescopic cylinder 29 starts to work, and its output end moves upward, driving the lower supporting block 28 to rise. During the rising process of the lower supporting block 28, the limit block 30 on its inner wall gradually approaches the workpiece, and begins to perform preliminary clamping and positioning of the workpiece. The design of the limit block 30 ensures that the workpiece will not move or deflect due to external force during the drilling process, thereby ensuring the accuracy and stability of the drilling. After the lower supporting block 28 and the limit block 30 completely support the workpiece, the external equipment continues to transport the workpiece.
[0046] The external equipment drives the workpiece to move toward one end of the clamping transport structure 3. The guide wheel 7 and the clamping workbench 8 in the clamping base 6 are in a standby state. The guide wheel 7, the horizontal wheel 9 and the vertical wheel 10 form a channel for the workpiece to move, and the workpiece continues to move.
[0047] The workpiece passes through the through hole 13 of the transport bracket 12 and moves toward one end of the clamping platform 16. The clamping wheel 24 contacts the workpiece under the push of the hydraulic telescopic cylinder 19. The clamping wheel 24 and the clamping block 22 cooperate with each other to fix the workpiece. The anti-slip texture mechanism 23 on the clamping block 22 increases the friction with the workpiece and improves the clamping stability until the clamping block 22 is in close contact with the workpiece. After the workpiece is stably clamped, other parts of the equipment begin to perform processing operations.
[0048] The transport cylinder 14 is started, and by pushing the transport connecting block 15, the clamping platform 16 is driven to move. Under the action of the transport cylinder 14, the clamping platform 16 slides on the clamping slide rail through the clamping sliding block 18, and drives the workpiece to move toward the discharge end of the equipment.
[0049] The present invention is not limited to the above-mentioned embodiments. On the basis of the technical solution disclosed in the present invention, technicians in this field can make some replacements and deformations of some technical features therein according to the disclosed technical content without creative labor, and these replacements and deformations are all within the protection scope of the present invention.
Claims
1. A clamping and transporting structure for a sprinkler pipe drilling device, comprising a clamping and transporting structure body, characterized in that: The clamping transport structure body comprises a support frame (1), a bearing plate (2) is provided above the support frame (1), a clamping transport structure (3) is provided at one end of the bearing plate (2), a mounting hole (4) is provided at the other end of the bearing plate (2), and a lower supporting structure (5) is provided in conjunction with the mounting hole (4).
2. A clamping and transporting structure for a sprinkler pipe drilling device according to claim 1, characterized in that: The clamping transport structure (3) includes a clamping base (6), a guide wheel (7) is provided in the clamping base (6), a clamping workbench (8) is provided above the guide wheel (7), the guide wheel (7) is vertically arranged, and the clamping workbench (8) is respectively provided with a transverse wheel (9) and a vertical wheel (10), the transverse wheel (9) is arranged at both ends of one side of the clamping workbench (8), and the vertical wheel (10) is arranged at the center position of the other side of the clamping workbench (8) and is arranged higher than the guide wheel (7).
3. The clamping and transporting structure for a sprinkler pipe drilling device according to claim 1, characterized in that: The clamping transport structure (3) further comprises a transport component (11), the transport component (11) being arranged on one side of the carrying plate (2), the transport component (11) comprising a transport bracket (12), a through hole (13) being arranged above the transport bracket (12), a transport cylinder (14) being arranged on the transport bracket (12) below the through hole (13), and a transport connection block (15) being connected to the output end of the transport cylinder (14).
4. The clamping and transporting structure for a sprinkler pipe drilling device according to claim 3, characterized in that: The transport connection block (15) is connected to a clamping platform (16), a fixed slide rail (17) is provided below the clamping platform (16), the fixed slide rail (17) is provided on the bearing plate (2), and a sliding block (18) is provided between the clamping platform (16) and the fixed slide rail (17).
5. The clamping and transporting structure for a sprinkler pipe drilling device according to claim 4, characterized in that: The clamping platform (16) is provided with a hydraulic telescopic cylinder (19), the hydraulic telescopic cylinder (19) is provided with a mounting block (20), the hydraulic telescopic cylinder (19) is connected with a hydraulic telescopic rod (21), the hydraulic telescopic rod (21) is inserted through the mounting block (20), the output end of the hydraulic telescopic rod (21) is provided with a clamping block (22), and the other side of the clamping block (22) is recessed with an anti-slip texture mechanism (23).
6. The clamping and transporting structure for a sprinkler pipe drilling device according to claim 5, characterized in that: A plurality of groups of clamping wheels (24) are provided on the mounting block (20), and the clamping wheels (24) and the clamping block (22) are arranged at the same level.
7. The clamping and transporting structure for a sprinkler pipe drilling device according to claim 1, characterized in that: The lower supporting structure (5) includes a lower supporting base (25) arranged on the bearing plate (2), the lower supporting base (25) is connected to a lower supporting connecting rib (26), the lower supporting connecting rib (26) is matched with a lower supporting fixing block (27), a lower supporting block (28) is arranged above the lower supporting fixing block (27), a lower supporting telescopic cylinder (29) is arranged below the lower supporting fixing block (27), an output end of the lower supporting telescopic cylinder (29) is connected to the lower supporting block (28), and a plurality of limit blocks (30) are arranged on the inner wall of the lower supporting block (28).