CN120080181A - A drilling device for processing steel structure components - Google Patents
A drilling device for processing steel structure components Download PDFInfo
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- CN120080181A CN120080181A CN202510581805.8A CN202510581805A CN120080181A CN 120080181 A CN120080181 A CN 120080181A CN 202510581805 A CN202510581805 A CN 202510581805A CN 120080181 A CN120080181 A CN 120080181A
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q3/00—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
- B23Q3/02—Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine for mounting on a work-table, tool-slide, or analogous part
- B23Q3/06—Work-clamping means
- B23Q3/08—Work-clamping means other than mechanically-actuated
- B23Q3/082—Work-clamping means other than mechanically-actuated hydraulically actuated
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q1/00—Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
- B23Q1/25—Movable or adjustable work or tool supports
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q11/00—Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling work; Safety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
- B23Q11/0042—Devices for removing chips
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Machine Tool Units (AREA)
- Drilling And Boring (AREA)
Abstract
The invention discloses a drilling device for machining steel structural members, which belongs to the technical field of steel structural member machining and comprises a base, wherein four corner positions at the bottom end of the base are rotationally connected with a plurality of universal rollers, a first sliding chute is arranged in the middle of the base, a moving platform is slidingly connected to the inner side of the first sliding chute, a fixed overturning assembly is rotationally connected to the top end of the moving platform, machining members are slidingly connected to the inner side of the fixed overturning assembly, two vertex angle positions at one side of the base are fixedly connected with a machining frame, and a puncher and a clamp assembly are respectively arranged in the middle of the machining frame. According to the invention, through the design of the two sets of clamp assemblies, the positioning precision and the clamping stability in the processing process are improved, so that the processing precision and the quality of a processed component are ensured, the clamp assemblies can adapt to the processed components with various shapes and sizes, meanwhile, the shaking in the processing process is obviously reduced, and the processing efficiency and the processing quality are improved.
Description
Technical Field
The invention belongs to the technical field of steel structure machining, and particularly relates to a drilling device for machining a steel structure member.
Background
The steel structural member is a main bearing structure used in a building structure and is made of steel, has the characteristics of high strength, light dead weight, high construction speed, good plasticity and the like, the common steel structural member comprises steel beams, steel columns, trusses, supports and the like, the steel beams and the steel columns are basic elements forming a frame structure, the trusses are commonly used for roof and bridge structures, the supports are used for enhancing the stability of the structure, the connection modes of the steel structural member are various, and the steel structural member comprises welding, bolting, riveting and the like.
In use, the steel structural member needs to be precisely drilled to ensure the stability of connection and the reliability of the whole structure, and the traditional drilling method often needs multiple procedures and manual operation, so that the efficiency is low, errors are easy to generate, the steel structural member is large in size, when the multiple surfaces need to be drilled, the turnover is difficult, the operation difficulty is high, the technical requirements on operators and related equipment are high, and the method is not suitable for modern processing requirements.
Disclosure of Invention
The technical problem to be solved by the invention is to overcome the defects in the prior art and provide a drilling device for processing a steel structural member.
The drilling device for processing the steel structural member comprises a base, a plurality of universal rollers are rotatably connected at four corner positions at the bottom end of the base, a first sliding groove is formed in the middle of the base, a moving platform is slidably connected to the inner side of the first sliding groove, a fixed overturning assembly is rotatably connected to the top end of the moving platform, a processing member is slidably connected to the inner side of the fixed overturning assembly, a processing frame is fixedly connected to two corner positions at one side of the base, a puncher and a clamp assembly are respectively installed in the middle of the processing frame, and a scrap collecting groove is installed at one side, far away from the fixed overturning assembly, of the bottom end of the processing frame.
Further, fixed upset subassembly is both ends open-ended tubular construction, fixed upset subassembly middle part opening runs through respectively and rotates to be connected with the inside casing, two inside casing is located the inboard one end fixed surface of fixed upset subassembly and is connected with the gear circle, gear circle one side meshing transmission is connected with drive gear, the drive gear middle part runs through the rotation with fixed upset subassembly and is connected, drive gear runs through the end and rotates and be connected with servo motor, servo motor power take off end and drive gear fixed connection, drive gear and fixed upset subassembly fixed surface are connected.
Through the technical scheme, the machining precision and efficiency of the steel structural member can be effectively improved, the cylindrical structural design of the fixed overturning assembly is matched with the transmission mechanism of the inner frame and the gear ring, so that the machined member can be conveniently overturned and positioned, and the complexity and the labor intensity of manual operation are greatly reduced.
Further, two fixedly connected with straight board is connected to the piece between the inside casing, and a plurality of connect straight board and be the cross array and arrange, a plurality of connect straight board both sides and rotate and be connected with a plurality of folded plate, a plurality of folded plate dog-ear is in and connects straight board rotation, and a plurality of folded plate is the symmetry setting, wherein is close to the inside casing two fixedly connected with spliced pole between the folded plate, the spliced pole is installed in the folded plate and is close to the one end of fixed upset subassembly inner wall, folded plate keeps away from spliced pole one end and rotates and be connected with electronic gyro wheel, electronic gyro wheel rotates the laminating with the processing component surface.
Through above-mentioned technical scheme, connect the cross array design of straight board and folded plate, not only strengthened the stability of structure, still allow under the condition that does not change whole overall arrangement, carry out multi-angle upset and location to the processing component, can realize the accurate control and the steady support to the processing component to according to the shape and the size automatic adjustment of processing component, with the different processing demands of adaptation, improved the flexibility and the application scope of device greatly, make this drilling equipment can satisfy the processing demand of various complicated steel structural members.
Further, a plurality of install in same connection straight board both sides be provided with first hydraulic push rod between the folded plate, first hydraulic push rod flexible end rotates with the spliced pole to be connected, the first hydraulic push rod other end runs through with another spliced pole and rotates to be connected, installs two in same one side folded plate middle part and top surface fixedly connected with first stand and second stand respectively, first stand and second stand surface rotate respectively and are connected with the lantern ring, fixedly connected with connecting rod between the lantern ring.
According to the technical scheme, the telescopic movement of the first hydraulic push rod can drive the four folded plates to synchronously perform telescopic movement, so that accurate clamping and positioning of a processing member are achieved, when the first hydraulic push rod stretches, the connecting columns and the folded plates can move inwards, the processing member is firmly clamped between the folded plates, when the first hydraulic push rod contracts, the connecting columns and the folded plates move outwards, the processing member is released, in addition, the arrangement of the first upright columns and the second upright columns are matched with the linkage of the lantern rings and the connecting rods, the stability and the clamping force of the folded plates are further enhanced, the members are ensured not to displace or deform in the processing process, the clamping precision of the device is improved, the capability of adapting to members with different sizes and shapes is enhanced, and the drilling device is more flexible and efficient in practical application.
Further, the base middle part is provided with first spout, first spout inboard and moving platform meshing sliding connection, moving platform top fixedly connected with roating seat, roating seat top and fixed upset subassembly cylinder surface middle part fixed connection.
Through above-mentioned technical scheme, moving platform can follow sharp direction in first spout and remove, realizes the quick location to the processing component, and the setting of roating seat makes fixed upset subassembly can rotate around its axis to adjust the angle of processing component, with the different processing demands of adaptation, not only improved the flexibility of device, can also reduce the auxiliary time in the course of working, promote holistic machining efficiency.
Further, the processing frame includes two support columns, two the support column is located base top corner position, sweeps collecting vat passes through bolt structure and installs in two support columns and keep away from one side of fixed upset subassembly, two support column top is fixedly connected with second slide rail respectively, two second slide rail top fixedly connected with C type frame.
Through above-mentioned technical scheme, the structural stability of whole device has been strengthened in the setting of spliced pole, has ensured the steadiness of processing equipment, and the setting of sweeps collecting vat is convenient for the collection and the cleanness of iron fillings, has prolonged the life of device.
Further, driving motor is fixedly connected with at the middle part at the top of the support column, the threaded rod is connected with the middle part of the second sliding rail in a penetrating and rotating mode, the penetrating end at the bottom of the threaded rod is fixedly connected with the power output end of the driving motor, the sliding block is connected with the inner side of the second sliding rail in a sliding mode, and the middle part of the sliding block is connected with the threaded rod in a penetrating and threaded mode.
Through the technical scheme, the sliding block can move along the axial direction of the threaded rod, the accurate positioning of processing equipment to processing components is realized, the driving motor is added, the automation degree of the whole device is improved, an operator can accurately control the position of the sliding block by controlling the starting and stopping speed and the rotating speed of the driving motor, and further fine adjustment of processing parts is realized, the processing precision is improved, the complexity of manual operation is reduced, and the whole processing process is more efficient and convenient.
Further, two sliding block one side surface is through bolt structure fixedly connected with tripod, the tripod is kept away from sliding block one end and is passed through bolt structure fixedly connected with mounting bracket, two the mounting bracket respectively with puncher and anchor clamps subassembly fixed connection.
Through above-mentioned technical scheme for puncher and anchor clamps subassembly can carry out accurate location and adjustment according to the processing demand, and the design of tripod has not only increased the stability of device simultaneously, and through the triangle structure moreover, can disperse the power in the course of working effectively, reduce the influence to the device because of the vibration that processing produced.
Further, the fixture assembly comprises a fixed block, the fixed block is fixedly connected with one of the installation racks, the middle part of the fixed block is penetrated and slidably connected with a limiting slide column, one penetrating end of the limiting slide column is fixedly connected with a two-way sliding rail, the upper end and the lower end of the fixed block are fixedly connected with second hydraulic push rods, the telescopic end of each second hydraulic push rod is fixedly connected with the surface of the two-way sliding rail, and the sliding end of the two-way sliding rail is slidably connected with two sliding seats.
Through the technical scheme, accurate positioning and stable clamping of the clamp assembly in the machining process are realized, and the bidirectional sliding rail and the sliding seat are matched for use, so that the flexibility of the device is improved, and the clamp assembly is allowed to be finely adjusted in different directions so as to adapt to machining components with different shapes and sizes.
Further, two the slide middle part rotates respectively and is connected with splint, splint are T type structure, two splint are close to one side surface and processing component surface laminating each other, two splint keep away from one side fixed surface each other and are connected with two strengthening ribs, two the strengthening rib inboard is provided with the third hydraulic push rod, the flexible end of third hydraulic push rod and strengthening rib fixed connection, the one end that the flexible end was kept away from to the third hydraulic push rod rotates with the slide to be connected.
Through the technical scheme, the accurate positioning and stable clamping of the clamp assembly in the machining process are realized, meanwhile, the rigidity of the clamping plate is enhanced through the arrangement of the reinforcing ribs, the stability and the accuracy of the machining components in the machining process are ensured, and the third hydraulic push rod is used, so that the clamping plate can be subjected to secondary clamping operation, and the shaking degree of the steel structure in the machining process is reduced.
The beneficial effects of the invention are as follows:
1. according to the invention, through the design of the two sets of clamp assemblies, the positioning precision and the clamping stability in the machining process are improved, so that the machining precision and the quality of a machined component are ensured, in addition, through the matched use of the bidirectional sliding rail on the machining frame and the sliding seat, the flexibility of the device is obviously improved, the clamp assemblies can adapt to machined components with various shapes and sizes, the rigidity of the clamping plate is further enhanced through the arrangement of the reinforcing ribs, the deformation and the vibration in the machining process are effectively prevented, the secondary clamping capability is provided for the clamping plate through the introduction of the third hydraulic push rod, the shaking in the machining process is obviously reduced, and the machining efficiency and the machining quality of the components are improved.
2. The four folded plates can be driven to synchronously stretch and retract through the stretching and retracting movement of the first hydraulic push rod, so that accurate clamping and positioning of a processing member are achieved, when the first hydraulic push rod stretches, the connecting columns and the folded plates move inwards, the processing member is firmly clamped between the folded plates, when the first hydraulic push rod contracts, the connecting columns and the folded plates move outwards, the processing member is released, in addition, the arrangement of the first upright columns and the second upright columns is matched with the linkage of the lantern rings and the connecting rods, the stability and the clamping force of the folded plates are further enhanced, the members are prevented from displacement or deformation in the processing process, the clamping precision of the device is improved, the capability of adapting to members with different sizes and shapes is enhanced, and the drilling device is more flexible and efficient in practical application.
Drawings
FIG. 1 is a schematic view of a first view angle structure of the present invention;
FIG. 2 is a schematic view of a second view angle structure of the present invention;
FIG. 3 is a schematic view of a third view angle structure of the present invention;
FIG. 4 is a first view schematic of the stationary flip assembly of the present invention;
FIG. 5 is a second perspective schematic view of the stationary flip assembly of the present invention;
FIG. 6 is a first cross-sectional schematic view of the overall structure of the present invention;
FIG. 7 is a second cross-sectional schematic view of the overall structure of the present invention;
FIG. 8 is a perspective view of the base and processing rack structure of the present invention;
FIG. 9 is a schematic diagram of the structure of the punch of the present invention;
Fig. 10 is a schematic view of the clamp assembly of the present invention.
The device comprises the following components of 1, a base, 101, a first sliding chute, 2, a universal roller, 3, a processing member, 4, a moving platform, 401, a rotating seat, 5, a fixed overturning assembly, 501, an inner frame, 502, a servo motor, 503, a gear ring, 504, a connecting straight plate, 505, a folded plate, 506, a connecting column, 507, a first upright column, 508, a connecting rod, 509, an electric roller, 510, a second upright column, 511, a lantern ring, 512, a first hydraulic push rod, 513, a driving gear, 6, a processing frame, 601, a support column, 602, a driving motor, 603, a second sliding rail, 604, a C-shaped frame, 605, a threaded rod, 606, a sliding block, 607, a tripod, 608, a mounting frame, 7, a puncher, 8, a sweeps collecting groove, 9, a clamp assembly, 901, a fixed block, 902, a second hydraulic push rod, 904, a limit sliding column, 904, a bidirectional sliding rail, 905, a sliding seat, 906, a clamping plate, 907, a reinforcing rib, 908 and a third hydraulic push rod.
Detailed Description
The present invention will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present invention more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the invention.
As shown in fig. 1 to 10, the drilling device for processing steel structural members of this embodiment comprises a base 1, four corner positions at the bottom end of the base 1 are rotationally connected with a plurality of universal rollers 2, flexible movement is realized by utilizing the universal rollers 2 on the base 1, the operation is convenient to be performed at different positions, the middle part of the base 1 is provided with a first sliding groove 101, the inner side of the first sliding groove 101 is slidingly connected with a moving platform 4, the top end of the moving platform 4 is rotationally connected with a fixed overturning assembly 5, the inside of the fixed overturning assembly 5 is slidingly connected with a processing member 3, two corner positions at one side of the base 1 are fixedly connected with a processing frame 6, a puncher 7 and a clamp assembly 9 are respectively installed in the middle part of the processing frame 6, one side of the bottom end of the processing frame 6, away from the fixed overturning assembly 5, is provided with a scrap collecting groove 8, the cleanliness of a working environment is improved, and time and labor required for cleaning scraps are reduced.
As shown in fig. 4 to 5, the fixed turnover assembly 5 is a cylindrical structure with two open ends, the openings in the middle of the fixed turnover assembly 5 are respectively connected with inner frames 501 in a penetrating and rotating manner, two inner frames 501 are fixedly connected with a gear ring 503 on one side of the inner side of the fixed turnover assembly 5, one side of the gear ring 503 is in meshed transmission connection with a driving gear 513, the middle of the driving gear 513 is connected with the fixed turnover assembly 5 in a penetrating and rotating manner, the penetrating end of the driving gear 513 is rotationally connected with a servo motor 502, the power output end of the servo motor 502 is fixedly connected with the driving gear 513, the driving gear 513 is fixedly connected with the surface of the fixed turnover assembly 5, and the driving mechanism of the inner frames 501 and the gear ring 503 is matched, so that the processing member 3 can be turned and positioned conveniently, and the complexity and labor intensity of manual operation are greatly reduced.
As shown in fig. 4 to 5, a plurality of connecting straight plates 504 are fixedly connected between two inner frames 501, the plurality of connecting straight plates 504 are arranged in a cross array, two sides of the plurality of connecting straight plates 504 are rotationally connected with a plurality of folded plates 505, the folded angles of the plurality of folded plates 505 are rotationally connected with the connecting straight plates 504, the plurality of folded plates 505 are symmetrically arranged, a connecting column 506 is fixedly connected between two folded plates 505 close to the inner frames 501, the connecting column 506 is arranged at one end of the folded plates 505 close to the inner wall of the fixed overturning assembly 5, one end of the folded plates 505 far away from the connecting column 506 is rotationally connected with an electric roller 509, the electric roller 509 is rotationally attached to the surface of the processing member 3, the processing member 3 is overturned and positioned in multiple angles under the condition of not changing the whole layout, the accurate control and stable support of the processing member 3 can be realized, and the shape and the size of the processing member 3 are automatically adjusted according to different processing requirements.
As shown in fig. 4 to 5, a first hydraulic push rod 512 is disposed between a plurality of folded plates 505 mounted on two sides of the same connecting straight plate 504, a telescopic end of the first hydraulic push rod 512 is rotatably connected with a connecting column 506, the other end of the first hydraulic push rod 512 is rotatably connected with another connecting column 506 in a penetrating manner, a first upright 507 and a second upright 510 are fixedly connected with the middle portion and the top surface of two folded plates 505 mounted on the same side respectively, collars 511 are rotatably connected with the surfaces of the first upright 507 and the second upright 510 respectively, connecting rods 508 are fixedly connected between the collars 511, and telescopic movement of the first hydraulic push rod 512 can drive the four folded plates 505 to perform synchronous telescopic movement, so that accurate clamping and positioning of a processing member 3 are realized.
As shown in fig. 6 to 8, the middle part of the base 1 is provided with a first chute 101, the inner side of the first chute 101 is in meshed sliding connection with a moving platform 4, the moving platform 4 can move in the first chute 101 along the linear direction, the quick positioning of the processing component 3 is realized, the top end of the moving platform 4 is fixedly connected with a rotating seat 401, the top end of the rotating seat 401 is fixedly connected with the middle part of the cylindrical surface of the fixed turnover component 5, the fixed turnover component 5 can rotate around the axis of the rotating seat 401, and therefore the angle of the processing component 3 is adjusted to adapt to different processing requirements.
As shown in fig. 6 to 8, the processing rack 6 includes two support columns 601, two support columns 601 are located the corner position of the top end of the base 1, the sweeps collecting tank 8 is installed on one side of the two support columns 601 away from the fixed turnover assembly 5 through a bolt structure, the top ends of the two support columns 601 are fixedly connected with second slide rails 603 respectively, the top ends of the two second slide rails 603 are fixedly connected with C-shaped frames 604, the structural stability of the whole device is enhanced, and the stability of processing equipment is ensured.
As shown in fig. 8 to 9, a driving motor 602 is fixedly connected to the middle part of the top of the supporting column 601, a threaded rod 605 is rotatably connected to the middle part of the second sliding rail 603 in a penetrating manner, the penetrating end of the bottom of the threaded rod 605 is fixedly connected with the power output end of the driving motor 602, a sliding block 606 is slidably connected to the inner side of the second sliding rail 603, the middle part of the sliding block 606 is in threaded connection with the threaded rod 605 in a penetrating manner, and the sliding block 606 can move along the axial direction of the threaded rod 605 to accurately position the processing member 3 by processing equipment.
As shown in fig. 9, two sliding blocks 606 are fixedly connected with a tripod 607 on one side surface through a bolt structure, one end of the tripod 607, which is far away from the sliding blocks 606, is fixedly connected with a mounting frame 608 through the bolt structure, and the two mounting frames 608 are respectively fixedly connected with a punch 7 and a clamp assembly 9, so that the punch 7 and the clamp assembly 9 can be accurately positioned and adjusted according to processing requirements, and meanwhile, the tripod 607 is designed to not only increase the stability of the device, but also effectively disperse the force in the processing process through the tripod structure, and reduce the influence of vibration generated by processing on the device.
As shown in fig. 10, the fixture assembly 9 includes a fixed block 901, the fixed block 901 is fixedly connected with one of the installation frames 608, the middle part of the fixed block 901 is penetrated and slidably connected with a limiting slide post 903, a penetrating end of the limiting slide post 903 is fixedly connected with a bidirectional slide rail 904, the upper end and the lower end of the fixed block 901 are fixedly connected with a second hydraulic push rod 902, the telescopic end of the second hydraulic push rod 902 is fixedly connected with the surface of the bidirectional slide rail 904, the sliding end of the bidirectional slide rail 904 is slidably connected with two slide carriages 905, the accurate positioning and stable clamping of the fixture assembly 9 in the machining process are realized, the bidirectional slide rail 904 and the slide carriages 905 are matched for use, the flexibility of the device is increased, and the fixture assembly 9 is allowed to be finely adjusted in different directions so as to adapt to machining members 3 with different shapes and sizes.
As shown in fig. 10, the middle parts of the two sliding seats 905 are respectively connected with a clamping plate 906 in a rotating manner, the clamping plates 906 are in a T-shaped structure, the two clamping plates 906 are close to each other, one side surfaces of the clamping plates 906 are mutually far away from each other, two reinforcing ribs 907 are fixedly connected with one side surfaces of the clamping plates 906, the inner sides of the two reinforcing ribs 907 are provided with a third hydraulic push rod 908, the telescopic end of the third hydraulic push rod 908 is fixedly connected with the reinforcing ribs 907, one end of the third hydraulic push rod 908 far away from the telescopic end is rotationally connected with the sliding seat 905, and the third hydraulic push rod 908 is used, so that the clamping plates 906 can perform secondary clamping operation, and the shaking degree of the machining component 3 in the machining process is reduced.
The working principle of this embodiment is as follows:
Before a user moves the device to a steel structure processing member 3 to be processed through the universal roller 2 at the bottom of the base 1, the processing member 3 is generally placed on an overhead for storage, so that the opening in the middle of the fixed overturning assembly 5 is only required to be aligned with the processing member 3, then the device is moved to move the processing member 3 to the middle of the fixed overturning assembly 5, then the first hydraulic push rod 512 is started, the first hydraulic push rod 512 stretches out and draws back to push the two connecting columns 506 away from each other, because the connecting columns 506 are fixedly connected with one ends of the two folding plates 505, and meanwhile, the middle of the folding plates 505 is rotationally connected with the connecting straight plate 504, the electric roller 509 at the other end of the folding plates 505 rotates inwards, and performs fixing operation by contacting and extruding on the surface of the processing member 3, after the fixing is completed, as the rotating seat 401 is arranged between the moving platform 4 and the fixed overturning assembly 5, the rotating operation can be performed according to the requirement, one end of the processing member 3 to be processed is aligned to the processing frame 6, then one end of the processing member 3 is moved to the position to be processed through the sliding of the moving platform 4 in the first sliding groove 101, then the driving motor 602 at the top ends of the two supporting columns 601 drives the threaded rod 605 in the middle of the second sliding rail 603 to rotate, an operator can precisely control the position of the sliding block 606 by controlling the start and stop and the rotation speed of the driving motor 602, the sliding block 606 of the clamp assembly 9 on one sliding block 606 is started, the two clamping plates 906 move towards the processing member 3 under the pushing of the second hydraulic pushing rod 902, and simultaneously, under the driving of the bidirectional sliding rail 904, two clamp plates 906 are close to each other, in the process, two clamp plates 906 are attached to the surface of a processing member 3, fixing of the processing member 3 processing section is achieved, rigidity of the clamp plates 906 is enhanced through the arrangement of the reinforcing ribs 907, stability and accuracy of the processing member 3 in the processing process are guaranteed, the clamp plates 906 can be subjected to secondary clamping operation, shaking degree of a steel structure in the processing process is reduced, after fixing is completed, an operator uses the puncher 7 on the other sliding block 606 to carry out punching operation, the moving platform 4 drives the processing member 3 to move forwards and backwards, the sliding block 606 drives the puncher 7 to move up and down, required holes can be drilled in the processing member 3 accurately, convenience of operation and accuracy of processing are fully considered through the design of the whole device, and processing efficiency and quality of the steel structure member are greatly improved.
The foregoing description is only of the preferred embodiments of the present invention, and is not intended to limit the scope of the present invention.
Claims (9)
1. The drilling device for machining the steel structural member comprises a base (1) and is characterized in that a plurality of universal rollers (2) are rotatably connected to four corner positions of the bottom end of the base (1), a first sliding groove (101) is formed in the middle of the base (1), a movable platform (4) is slidably connected to the inner side of the first sliding groove (101), a fixed overturning assembly (5) is rotatably connected to the top end of the movable platform (4), and a machining member (3) is slidably connected to the inside of the fixed overturning assembly (5);
The fixed overturning assembly (5) is of a cylindrical structure with two open ends, an inner frame (501) is respectively and rotatably connected with the opening in the middle of the fixed overturning assembly (5), and a gear ring (503) is fixedly connected with the surface of one end of the inner side of the fixed overturning assembly (5) at two inner frames (501);
Two fixedly connected with straight board (504) between inside casing (501), a plurality of connect straight board (504) are cross array and arrange, a plurality of connect straight board (504) both sides and rotate and be connected with a plurality of folded plate (505), a plurality of folded plate (505) dog-ear is in and connects straight board (504) rotation, a plurality of folded plate (505) are symmetrical setting, wherein be close to inside casing (501) two fixedly connected with spliced pole (506) between folded plate (505), spliced pole (506) are installed in folded plate (505) and are close to the one end of fixed upset subassembly (5) inner wall, a plurality of install in same connection straight board (504) both sides folded plate (505) between be provided with first hydraulic push rod (512), folded plate (505) are kept away from spliced pole (506) one end rotation and are connected with electric roller (509), electric roller (509) and processing component (3) surface rotation laminating.
2. The drilling device for machining steel structural members according to claim 1, wherein two vertex angle positions on one side of the base (1) are fixedly connected with a machining frame (6), a puncher (7) and a clamp assembly (9) are respectively installed in the middle of the machining frame (6), a scrap collecting tank (8) is installed on one side, far away from the fixed overturning assembly (5), of the bottom end of the machining frame (6), a first sliding groove (101) is formed in the middle of the base (1), the inner side of the first sliding groove (101) is in meshed sliding connection with a movable platform (4), a rotating seat (401) is fixedly connected to the top end of the movable platform (4), and the top end of the rotating seat (401) is fixedly connected with the middle of the cylindrical surface of the fixed overturning assembly (5).
3. The drilling device for machining steel structural members according to claim 2, wherein the machining frame (6) comprises two support columns (601), the two support columns (601) are located at the corner positions of the top ends of the base (1), the waste chip collecting tank (8) is installed on one side, far away from the fixed overturning assembly (5), of the two support columns (601) through a bolt structure, the top ends of the two support columns (601) are respectively fixedly connected with a second sliding rail (603), and the top ends of the two second sliding rails (603) are fixedly connected with a C-shaped frame (604).
4. The drilling device for machining the steel structural member according to claim 3, wherein a driving motor (602) is fixedly connected to the middle part of the top of the supporting column (601), a threaded rod (605) is rotatably connected to the middle part of the second sliding rail (603), the bottom penetrating end of the threaded rod (605) is fixedly connected with the power output end of the driving motor (602), a sliding block (606) is slidably connected to the inner side of the second sliding rail (603), and the middle part of the sliding block (606) is in penetrating threaded connection with the threaded rod (605).
5. The drilling device for machining steel structural members according to claim 4, wherein two sliding blocks (606) are fixedly connected with a tripod (607) on one side surface through a bolt structure, one end, far away from the sliding blocks (606), of the tripod (607) is fixedly connected with a mounting frame (608) through a bolt structure, and the two mounting frames (608) are respectively fixedly connected with a puncher (7) and a clamp assembly (9).
6. The drilling device for machining the steel structural member according to claim 2, wherein the fixture assembly (9) comprises a fixed block (901), the fixed block (901) is fixedly connected with one of the installation frames (608), a limiting slide column (903) is fixedly connected with the middle of the fixed block (901) in a penetrating and sliding manner, one penetrating end of the limiting slide column (903) is fixedly connected with a bidirectional slide rail (904), the upper end and the lower end of the fixed block (901) are fixedly connected with second hydraulic pushing rods (902), the telescopic ends of the second hydraulic pushing rods (902) are fixedly connected with the surface of the bidirectional slide rail (904), and the sliding ends of the bidirectional slide rail (904) are slidably connected with two sliding seats (905).
7. The drilling device for machining steel structural members according to claim 6, wherein two clamping plates (906) are respectively connected to the middle parts of the sliding seats (905) in a rotating mode, the clamping plates (906) are of a T-shaped structure, one side surface, close to each other, of each clamping plate (906) is attached to the surface of the machining member (3), two reinforcing ribs (907) are fixedly connected to one side surface, far away from each other, of each clamping plate (906), a third hydraulic push rod (908) is arranged on the inner side of each reinforcing rib (907), the telescopic ends of the third hydraulic push rods (908) are fixedly connected with the corresponding reinforcing ribs (907), and one end, far away from the telescopic ends, of the third hydraulic push rods (908) is connected with the sliding seats (905) in a rotating mode.
8. The drilling device for machining the steel structural member according to claim 1, wherein a driving gear (513) is connected to one side of the gear ring (503) in a meshed transmission manner, the middle of the driving gear (513) is connected with the fixed overturning assembly (5) in a penetrating and rotating manner, a servo motor (502) is connected to the penetrating end of the driving gear (513) in a rotating manner, the power output end of the servo motor (502) is fixedly connected with the driving gear (513), and the driving gear (513) is fixedly connected with the surface of the fixed overturning assembly (5).
9. The drilling device for machining steel structural members according to claim 1, wherein the telescopic end of the first hydraulic push rod (512) is rotatably connected with the connecting column (506), the other end of the first hydraulic push rod (512) is rotatably connected with the other connecting column (506) in a penetrating manner, the middle parts and the top surfaces of the two folded plates (505) arranged on the same side are fixedly connected with a first upright post (507) and a second upright post (510) respectively, the surfaces of the first upright post (507) and the second upright post (510) are rotatably connected with lantern rings (511) respectively, and connecting rods (508) are fixedly connected between the lantern rings (511).
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202510581805.8A CN120080181B (en) | 2025-05-07 | 2025-05-07 | Drilling device for machining steel structural member |
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| Application Number | Priority Date | Filing Date | Title |
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| CN202510581805.8A CN120080181B (en) | 2025-05-07 | 2025-05-07 | Drilling device for machining steel structural member |
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| CN120080181B CN120080181B (en) | 2025-08-15 |
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| CN119282203A (en) * | 2024-11-19 | 2025-01-10 | 安徽赛驰钢结构设备有限公司 | A steel structure drilling processing device and a method of using the same |
| CN222511562U (en) * | 2024-02-22 | 2025-02-21 | 安徽宏宇铝业有限公司 | Integrated structural aluminum profile processing device |
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| KR20170091807A (en) * | 2016-01-31 | 2017-08-10 | 금오공과대학교 산학협력단 | Automatic machining apparatus for metal works |
| CN211028405U (en) * | 2019-10-20 | 2020-07-17 | 株洲湘火炬机械制造有限责任公司 | Chamfering device for two ends of piston pin |
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| Publication number | Publication date |
|---|---|
| CN120080181B (en) | 2025-08-15 |
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Denomination of invention: A drilling device for processing steel structure components Granted publication date: 20250815 Pledgee: Bank of Communications Co.,Ltd. Taizhou Branch Pledgor: Jiangsu jianghaihangxiao Green Building Technology Co.,Ltd. Registration number: Y2025980048209 |