Tool for boring lug hole of hinge beam of diamond hydraulic machine
By designing a separation mechanism for the boring lug of the hinge beam in a diamond hydraulic press, the hinge beam is quickly separated by the thread drive of the rotating rod and the separation plate. This solves the problem of the hinge beam being stuck in the through hole of the support plate after machining, and improves the ease of operation.
Patent Information
- Application Number
- CN202422965704.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-03
AI Technical Summary
In the prior art, the hinge beam is easily stuck in the through hole of the support plate after processing, which is not convenient to transfer, making it difficult for workers to transfer it from the support plate after processing.
A tooling for boring lugs in a diamond hydraulic press hinge beam was designed, comprising a work box, a drive mechanism, a clamping mechanism, a separation mechanism, and a machining mechanism. The hinge beam is quickly separated by the separation plate driven by the thread of the rotating rod, ensuring that it can easily detach from the holding plate after machining.
This technology enables the hinge beam to be quickly and easily detached from the support plate after processing, solving the problem of inconvenient hinge beam transfer and improving operational efficiency.
Smart Images

Figure CN223531968U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of hinge beam processing technology, and in particular to a tooling for boring lugs in a diamond hydraulic press hinge beam. Background Technology
[0002] As an important component of diamond hydraulic cylinders, the machining of hinge beams is particularly critical. Existing hinge beam boring tooling typically involves fixing the hinge beam with a fixing mechanism before using a boring assembly to machine the boring holes. However, the fixing mechanism cannot fix hinge beams of different sizes.
[0003] In the prior art, patent (CN216442104U) proposes a tooling for boring lugs in a diamond hydraulic press hinge beam, including a worktable, a frame, a lug assembly, and a fixing mechanism. The frame is fixedly connected to the worktable, and the lug assembly is fixedly connected to the frame. The worktable is provided with a groove. The fixing mechanism includes two columns, two sets of clamping assemblies, and abutment assemblies. Each set of clamping assemblies includes a hydraulic press, a connecting rod, two sleeves, a connecting column, and a wedge plate. The two sleeves are fixedly connected to both ends of the connecting rod, and the two sleeves are respectively fitted onto the outer wall of the corresponding column. The abutment assembly includes two connecting blocks and an abutment plate. One end of each of the two connecting blocks is rotatably connected to the corresponding connecting rod, and the other end of each of the two connecting blocks is rotatably connected to the abutment plate. The abutment plate is provided with a through hole. With the above structural configuration, the tooling for boring lugs in a diamond hydraulic press hinge beam can perform lug hole processing on hinge beams of different sizes after fixing them.
[0004] However, in the aforementioned prior art, the hinge beam is easily stuck in the through hole of the support plate after processing, making it inconvenient to move and difficult for workers to transfer it from the support plate after processing. Utility Model Content
[0005] The purpose of this utility model is to provide a tooling for boring lugs in the hinge beam of a diamond hydraulic press, which solves the problem in the prior art that the hinge beam is easily stuck in the through hole of the support plate after processing, making it inconvenient to transfer and difficult for workers to transfer it from the support plate after processing.
[0006] To achieve the above objectives, this utility model provides a tooling for boring lugs in a diamond hydraulic press hinge beam, comprising a work box, a drive mechanism, two clamping mechanisms, a separation mechanism, and a machining mechanism. The machining mechanism is fixedly connected to the work box and located above it. The two clamping mechanisms are rotatably connected to the drive mechanism and located on opposite sides of the drive mechanism. The drive mechanism is fixedly connected to the work box and located at its inner bottom. The separation mechanism includes a positioning frame, two rotating rods, and a separation plate. The separation plate is rotatably connected to the two rotating rods and located around them. The lower ends of the two rotating rods are rotatably connected to the positioning frame and located above it. The positioning frame is fixedly connected to the work box and located above it.
[0007] The work box includes a box body, multiple legs, and a worktable. The worktable is fixedly connected to the box body and is located above the box body. Each of the legs is fixedly connected to the box body and is located below the box body.
[0008] The drive mechanism includes a mounting base, a dual-axis motor, and two threaded rods. One end of each threaded rod is fixedly connected to the output end of the dual-axis motor, and the other end of each threaded rod is rotatably connected to the housing and located on the inner side wall of the housing. The dual-axis motor is fixedly connected to the mounting base and located inside the mounting base. The mounting base is fixedly connected to the housing and located at the inner bottom of the housing.
[0009] Each clamping mechanism includes a threaded sleeve, two sliding sleeves, a vertical rod, and a mating plate. The mating plate is fixedly connected to the vertical rod and located on one side of the vertical rod. The lower end of the vertical rod is fixedly connected to the threaded sleeve and located above the threaded sleeve. The threaded sleeve is rotatably connected to the corresponding threaded rod and located on the periphery of the corresponding threaded rod. The two sliding sleeves are fixedly connected to the threaded sleeve and located on both sides of the threaded sleeve, respectively.
[0010] The machining mechanism includes a gantry frame, a machining cylinder, a machining air rod, a motor, and a boring roller. The boring roller is fixedly connected to the output end of the motor. The motor is fixedly connected to the machining air rod and is located at the lower end of the machining air rod. The upper end of the machining air rod is fixedly connected to the output end of the machining cylinder. The machining cylinder is fixedly connected to the gantry frame and is located above the gantry frame. The gantry frame is fixedly connected to the worktable and is located above the worktable.
[0011] This utility model discloses a tooling for boring lugs in a diamond hydraulic press hinge beam. The separation plate is driven by the threaded rotation of two rotating rods to move up and down, thereby achieving rapid separation of the hinge beam. This design is convenient to operate and solves the problem that the hinge beam is easily stuck in the through hole of the support plate after processing, making it inconvenient to transfer and difficult for workers to remove it from the support plate after processing. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the overall structure of a tooling for boring lugs on a diamond hydraulic press hinge beam according to this utility model.
[0014] Figure 2 This is a front view of a tooling for boring ear holes in a diamond hydraulic press hinge beam according to this utility model.
[0015] Figure 3 This is the utility model Figure 2 A sectional view along line AA.
[0016] Figure 4 This is the utility model Figure 3 BB line section view.
[0017] 101-Working box, 102-Drive mechanism, 103-Clamping mechanism, 104-Separation mechanism, 105-Machining mechanism, 106-Positioning frame, 107-Rotating rod, 108-Separation plate, 109-Box body, 110-Foot column, 111-Worktable, 112-Mounting base, 113-Dual-axis motor, 114-Threaded rod, 115-Threaded sleeve, 116-Sliding sleeve, 117-Upright pole, 118-Matching plate, 119-Gantry frame, 120-Machining cylinder, 121-Machining air rod, 122-Motor, 123-Bore hole boring roller. Detailed Implementation
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] Please see Figures 1-4 ,in Figure 1 This is a schematic diagram of the overall structure of a diamond hydraulic press hinge beam boring lug tool according to this utility model. Figure 2 This is a front view of a tooling for boring lugs in a diamond hydraulic press hinge beam according to this utility model. Figure 3 This is the utility model Figure 2 AA-line sectional view, Figure 4 This is the utility model Figure 3 BB line section view.
[0020] This utility model provides a tooling for boring lugs in a diamond hydraulic press hinge beam, including a work box 101, a drive mechanism 102, two clamping mechanisms 103, a separation mechanism 104, and a processing mechanism 105. The separation mechanism 104 includes a positioning frame 106, two rotating rods 107, and a separation plate 108. The work box 101 includes a box body 109, multiple support columns 110, and a worktable 111. The drive mechanism 102 includes a mounting base 112, a dual-axis motor 113, and two threaded rods 114. Each clamping mechanism 103 includes a threaded sleeve 115, two sliding sleeves 116, a vertical rod 117, and a mating plate 118. The processing mechanism 105 includes a gantry frame 119, a processing cylinder 120, a processing air rod 121, a motor 122, and a lug boring roller 123.
[0021] In this specific embodiment, the processing mechanism 105 is fixedly connected to the work box 101; both clamping mechanisms 103 are rotatably connected to the drive mechanism 102; the drive mechanism 102 is fixedly connected to the work box 101; the separation plate 108 is rotatably connected to two rotating rods 107; the lower ends of both rotating rods 107 are rotatably connected to the positioning frame 106; the positioning frame 106 is fixedly connected to the work box 101; the worktable 111 is fixedly connected to the box body 109; each foot post 110 is fixedly connected to the box body 109; one end of each of the two threaded rods 114 is fixedly connected to the output end of the dual-axis motor 113; the other end of each of the two threaded rods 114 is rotatably connected to the box body 109; the dual-axis motor 113 is fixedly connected to the mounting base 112; the mounting base 112 is fixedly connected to the box body 109; and the mating plate 118 is connected to the upright. The vertical rod 117 is fixedly connected to the threaded sleeve 115 at its lower end. The threaded sleeve 115 is rotatably connected to the corresponding threaded rod 114. Both sliding sleeves 116 are fixedly connected to the threaded sleeve 115. The boring roller 123 is fixedly connected to the output end of the motor 122. The motor 122 is fixedly connected to the processing air rod 121. The upper end of the processing air rod 121 is fixedly connected to the output end of the processing cylinder 120. The processing cylinder 120 is fixedly connected to the gantry frame 119. The gantry frame 119 is fixedly connected to the worktable 111. The separation plate 108 is driven up and down by the threaded rotation of the two rotating rods 107, thereby achieving rapid separation of the hinge beam. This design is convenient to operate and solves the problem that the hinge beam is easily stuck in the through hole of the support plate after processing, making it inconvenient to transfer and difficult for workers to transfer it from the support plate after processing.
[0022] The processing mechanism 105 is located above the work box 101. The two clamping mechanisms 103 are located on both sides of the driving mechanism 102, which is located at the bottom inner part of the work box 101. The separating plate 108 is located around the two rotating rods 107, with the lower ends of the two rotating rods 107 located above the positioning frame 106, which is located above the work box 101. The rotating rods 107 have threads that are compatible with the inner side of the separating plate 108. The operator can adjust the height of the separating plate 108 above the positioning frame 106 by rotating the rotating rods 107, thereby detaching the hinge beam. It should be noted that the diameter of the through hole in the separating plate 108 is larger than the diameter of the through hole in the positioning frame 106, so the hinge beam will not get stuck above the separating plate 108.
[0023] Secondly, the workbench 111 is located above the housing 109, each of the legs 110 is located below the housing 109, the other ends of the two threaded rods 114 are located on the inner side wall of the housing 109, the dual-axis motor 113 is located inside the mounting base 112, the mounting base 112 is located at the inner bottom of the housing 109, and each of the legs 110 is respectively set at the four corners of the lower side of the housing 109 to support the housing 109 and facilitate operation by the staff. Inside the housing 109, two sliding rods are also provided, and each sliding sleeve 116 is respectively fitted onto the corresponding sliding rod. When moving with the corresponding threaded sleeve 115, the sliding sleeve 116 also slides around the corresponding sliding rod. The purpose is to limit the movement of the threaded sleeve 115, prevent the threaded sleeve 115 from rotating in place, and ensure that the threaded sleeve 115 moves laterally in a horizontal position.
[0024] Meanwhile, the mating plate 118 is located on one side of the upright 117, the lower end of the upright 117 is located above the threaded sleeve 115, the threaded sleeve 115 is located on the periphery of the corresponding threaded rod 114, the two sliding sleeves 116 are respectively located on both sides of the threaded sleeve 115, the motor 122 is located at the lower end of the processing air rod 121, the processing cylinder 120 is located above the gantry frame 119, the gantry frame 119 is located above the workbench 111, and a storage bucket can also be set on the front side of the housing 109 to store some small tools required for processing. During use, the operator first rotates the two rotating rods 107 to make the separating plate 108 fit with the positioning frame 106 through threaded rotation. Each of the separating plates 108 has a through hole in the middle for placing the hinge beam. Then, the dual-axis motor 113 is started, and driven by the threads of the two threaded rods 114, the two threaded sleeves 115 move towards each other, driving the corresponding uprights 117 and the mating plates 118 to approach the hinge beam and finally clamp it. Then, the machining cylinder 120 and the motor 122 are started to bore the lugs into the hinge beam. After machining is completed, the machining cylinder 120 retracts the machining rod 121, and the dual-axis motor 113 drives in the reverse direction to disengage the two mating plates 118 from the hinge beam. At this time, the operator rotates the two rotating rods 107 in the reverse direction to raise the separating plate 108, and the hinge beam can easily disengage from the hole in the positioning frame 106, making it easier for the operator to transfer the hinge beam later.
[0025] In this embodiment, the circumference of the rotating rod 107 has threads that are compatible with the inner side of the separating plate 108. The operator adjusts the height of the separating plate 108 above the positioning frame 106 by rotating the rotating rod 107, thereby detaching the hinge beam. It should be noted that the diameter of the through hole in the separating plate 108 is larger than the diameter of the through hole in the positioning frame 106, thus preventing the hinge beam from getting stuck above the separating plate 108. Each of the foot posts 110 is respectively located on the lower side of the housing 109. At the four corners, the housing 109 is supported for easy operation by staff. Inside the housing 109, two sliding rods are also provided. Each sliding sleeve 116 is fitted onto its corresponding sliding rod. When moving with the corresponding threaded sleeve 115, the sliding sleeve 116 also slides around the corresponding sliding rod. This limits the movement of the threaded sleeve 115, preventing it from rotating in place and ensuring that the threaded sleeve 115 moves laterally in a horizontal position. A storage bin can also be installed on one side to store small tools needed for processing. During use, the operator first rotates the two rotating rods 107, using a threaded rotation to bring the separation plate 108 into contact with the positioning frame 106. Both the positioning frame 106 and the separation plate 108 have through holes for placing the hinge beam. Then, the dual-axis motor 113 is started. Driven by the threads of the two threaded rods 114, the two threaded sleeves 115 move towards each other, driving the corresponding uprights 117 and... The mating plate 118 moves closer to the hinge beam and finally clamps it. Then, the machining cylinder 120 and the motor 122 are activated to bore the lug hole in the hinge beam. After machining, the machining cylinder 120 retracts the machining air rod 121, and the dual-axis motor 113 drives in the opposite direction to disengage the two mating plates 118 from the hinge beam. At this time, the operator rotates the two rotating rods 107 in the opposite direction to raise the separating plate 108, allowing the hinge beam to easily disengage from the hole in the positioning frame 106. This makes it easier for the operator to transfer the hinge beam afterward.
[0026] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A tooling for boring lugs in a hinge beam of a diamond hydraulic press, comprising a work box, a drive mechanism, two clamping mechanisms, and a machining mechanism, wherein the machining mechanism is fixedly connected to the work box and located above the work box, the two clamping mechanisms are rotatably connected to the drive mechanism and are respectively located on both sides of the drive mechanism, and the drive mechanism is fixedly connected to the work box and located at the inner bottom of the work box, characterized in that, It also includes a separation mechanism, which includes a positioning frame, two rotating rods and a separation plate. The separation plate is rotatably connected to the two rotating rods and is located around the two rotating rods. The lower ends of the two rotating rods are rotatably connected to the positioning frame and are located above the positioning frame. The positioning frame is fixedly connected to the work box and is located above the work box.
2. The tooling for boring lugs in the hinge beam of a diamond hydraulic press as described in claim 1, characterized in that, The work box includes a box body, multiple legs, and a worktable. The worktable is fixedly connected to the box body and is located above the box body. Each of the legs is fixedly connected to the box body and is located below the box body.
3. The tooling for boring lugs in the hinge beam of a diamond hydraulic press as described in claim 2, characterized in that, The drive mechanism includes a mounting base, a dual-axis motor, and two threaded rods. One end of each threaded rod is fixedly connected to the output end of the dual-axis motor, and the other end of each threaded rod is rotatably connected to the housing and located on the inner side wall of the housing. The dual-axis motor is fixedly connected to the mounting base and located inside the mounting base. The mounting base is fixedly connected to the housing and located at the inner bottom of the housing.
4. The tooling for boring lugs on the hinge beam of a diamond hydraulic press as described in claim 3, characterized in that, Each clamping mechanism includes a threaded sleeve, two sliding sleeves, a vertical rod, and a mating plate. The mating plate is fixedly connected to the vertical rod and located on one side of the vertical rod. The lower end of the vertical rod is fixedly connected to the threaded sleeve and located above the threaded sleeve. The threaded sleeve is rotatably connected to the corresponding threaded rod and located on the periphery of the corresponding threaded rod. The two sliding sleeves are fixedly connected to the threaded sleeve and located on both sides of the threaded sleeve, respectively.
5. The tooling for boring lugs in the hinge beam of a diamond hydraulic press as described in claim 4, characterized in that, The machining mechanism includes a gantry frame, a machining cylinder, a machining air rod, a motor, and a boring roller. The boring roller is fixedly connected to the output end of the motor. The motor is fixedly connected to the machining air rod and is located at the lower end of the machining air rod. The upper end of the machining air rod is fixedly connected to the output end of the machining cylinder. The machining cylinder is fixedly connected to the gantry frame and is located above the gantry frame. The gantry frame is fixedly connected to the worktable and is located above the worktable.
Citation Information
Patent Citations
Tool for boring lug hole of hinge beam of diamond hydraulic machine
CN216442104U