Adjustable positioning multifunctional drilling device for special-shaped aluminum alloy formwork
By designing an adjustable positionable aluminum alloy template clamping mechanism and a pressing and drilling mechanism, the problem of bulky positioning tools in the prior art and the fixed installation cannot be flexibly adjusted, and the stable clamping and flexible position adjustment of aluminum alloy templates are achieved, which improves the convenience and efficiency of the drilling process.
Patent Information
- Application Number
- CN202422152507.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-09-03
AI Technical Summary
During the drilling process of existing aluminum alloy templates, the positioning tools are bulky and laborious, and the fixed installation cannot be flexibly adjusted, resulting in inconvenient drilling.
A multi-functional drilling device for adjustable positioning of special-shaped aluminum alloy templates is designed, including an adjustment mechanism, an aluminum alloy template clamping mechanism and a pressing and drilling mechanism. The adjustment mechanism realizes the horizontal and longitudinal position adjustment of the aluminum alloy template clamping mechanism through sliding grooves and sliding rods, and the clamping mechanism realizes height adjustment through knobs and adjustment bolts to ensure the stability of the template.
It realizes flexible positioning and stable clamping of aluminum alloy templates, simplifies the drilling process, and improves operating efficiency and convenience.
Smart Images

Figure CN222999702U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of aluminum alloy template drilling, in particular to a multifunctional drilling device with adjustable positioning for special-shaped aluminum alloy templates. Background Art
[0002] Aluminum alloy formwork is mainly made of aluminum alloy profiles. It is a formwork suitable for concrete engineering made through mechanical processing and welding. It is designed according to the 50mm module and is composed of panels, ribs, main profiles, flat formwork, corner formwork, and early disassembly device. When producing aluminum alloy formwork, it is necessary to use punching equipment to drill holes. During the drilling process, the material of the aluminum alloy mold needs to be positioned to prevent deviation during the drilling process. Most of the existing methods for positioning the material of the aluminum alloy mold rely on bench vises, etc., but bench vises or other positioning tools are relatively bulky and are laborious to install and disassemble each time. At the same time, many bench vises are fixedly installed and cannot be flexibly adjusted, making drilling inconvenient. Utility Model Content
[0003] In order to solve the technical problems that most of the existing methods for positioning the materials of aluminum alloy molds rely on bench vises and the like, but bench vises or other positioning tools are relatively bulky and require a lot of effort to install and remove each time, and many bench vises are fixedly installed and cannot be flexibly adjusted in position, making drilling inconvenient, the utility model provides a multifunctional drilling device with adjustable positioning for special-shaped aluminum alloy templates.
[0004] The utility model adopts the following technical scheme to realize: a multifunctional drilling device with adjustable positioning of a special-shaped aluminum alloy template, including a drilling device body, the drilling device body includes:
[0005] An adjusting mechanism, which adjusts the position of the aluminum alloy template clamping mechanism;
[0006] Aluminum alloy template clamping mechanism: The aluminum alloy template clamping mechanism clamps and limits the aluminum alloy template, thereby limiting the position of the aluminum alloy template and facilitating punching;
[0007] A pressing punching mechanism is used to punch holes in the aluminum alloy template;
[0008] The regulatory agencies include:
[0009] A support platform, the support platform supports the main body of the adjustment mechanism;
[0010] A sliding groove, the sliding groove is provided on the surface of the support platform;
[0011] A sliding rod, the bottom end of which is provided with a block that slides inside the sliding groove;
[0012] The sliding block is sleeved on the surface of the sliding rod, and the bottom plate is connected above the sliding block.
[0013] Among them, the aluminum alloy template clamping mechanism includes:
[0014] The bottom plate is arranged at the bottom of the aluminum alloy template clamping mechanism;
[0015] The support frame is fixedly connected above the bottom plate;
[0016] The mounting plate is connected to the top of the support frame;
[0017] The adjusting bolt passes through the surface of the mounting plate;
[0018] The knob is installed at the top of the adjusting bolt;
[0019] The pressing plate is connected to the bottom end of the adjusting bolt.
[0020] Place the aluminum alloy template to be punched on the bottom plate of the aluminum alloy template clamping mechanism. The staff can adjust the horizontal position of the aluminum alloy template clamping mechanism by pulling the sliding rod to slide inside the sliding groove, which is convenient for adjusting the clamping of aluminum alloy templates of different sizes and shapes. At the same time, the bottom plate can slide through the sliding block, and the sliding block thus slides on the surface of the sliding rod to adjust the position of the sliding block, and the sliding block then drives the aluminum alloy template clamping mechanism to move synchronously to achieve position adjustment; the staff can rotate the knob, and the knob then drives the connected adjusting bolt to rotate synchronously. The adjusting bolt thus rotates on the surface of the mounting plate, and the adjusting bolt then drives the pressing plate connected below it to adjust the height. The pressing plate thus descends, and the pressing plate then contacts the bottom plate, and the pressing plate thus clamps and fixes the aluminum alloy template to ensure the stability of the aluminum alloy template and facilitate punching the aluminum alloy template.
[0021] As a further improvement of the above solution, two sets of symmetrically arranged aluminum alloy template clamping mechanisms are provided. The two sets of aluminum alloy template clamping mechanisms clamp and limit the aluminum alloy template, and the aluminum alloy template clamping mechanism adjusts the horizontal and vertical positions through the adjusting mechanism.
[0022] As a further improvement of the above solution, the pressing and punching mechanism includes:
[0023] The connecting frame supports the main body of the pressing and punching mechanism;
[0024] The handle rod;
[0025] The pressing axis is arranged at the top of the handle rod;
[0026] Connecting rod, one end of the connecting rod is connected to the pressing axis;
[0027] Tightening knob, the tightening knob passes through the top end of the connecting rod;
[0028] Deflection axis, the deflection axis is arranged on the surface of the handle rod;
[0029] Deflection rod, the deflection rod is connected to the inner side of the deflection axis;
[0030] Movable sleeve, the movable sleeve is connected to the outer side of the deflection rod;
[0031] Supporting rod, the supporting rod is connected to the movable sleeve;
[0032] Lifting sliding sleeve, the lifting sliding sleeve is sleeved on the outer surface of the connecting frame;
[0033] Bushing plate, the bushing plate is connected to the outer side of the lifting sliding sleeve;
[0034] Support plate, the support plate is fixedly connected to the outer side of the bushing plate;
[0035] Driving motor, a drill rod is connected below the driving motor, and the drill rod drills holes in the aluminum alloy template.
[0036] The staff holds the handle rod and presses the handle rod downward. There is a deflection axis on the surface of the handle rod, and the deflection axis is synchronously pressed downward accordingly. The deflection axis drives the deflection rod connected to its inner side to be synchronously pressed downward. The deflection rod then drives the movable sleeve to be synchronously pressed downward. The movable sleeve thus drives the supporting rod to be synchronously pressed downward. The bottom end of the supporting rod is connected with a lifting sliding sleeve. The lifting sliding sleeve then slides on the surface of the connecting frame. The lifting sliding sleeve thus drives the bushing plate to descend synchronously. The bushing plate thus drives the support plate connected thereto to descend, realizing height adjustment. Through the operation of the driving motor, the drill rod is driven to rotate, and the drill rod thus drills holes in the aluminum alloy template.
[0037] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0038] 1. By rotating the knob, the knob then drives the adjusting bolt connected thereto to rotate synchronously. The adjusting bolt thus rotates on the surface of the mounting plate. The adjusting bolt then drives the pressing plate connected to its lower part to adjust the height. The pressing plate thus descends. The pressing plate then contacts the bottom end plate. The pressing plate thus clamps and fixes the aluminum alloy template, ensuring the stability of the aluminum alloy template and facilitating drilling of the aluminum alloy template.
[0039] 2. By pressing the handle rod downward, the surface of the handle rod is provided with a deflection axis. The deflection axis will then be pressed downward synchronously. The deflection axis drives the deflection rod connected to its inner side to be pressed downward synchronously. The deflection rod then drives the movable sleeve to be pressed downward synchronously. The movable sleeve thus drives the receiving rod to be pressed downward synchronously. The bottom end of the receiving rod is connected with a lifting sliding sleeve. The lifting sliding sleeve then slides on the surface of the connecting frame. The lifting sliding sleeve thus drives the bushing plate to descend synchronously. The bushing plate thus drives the supporting plate connected thereto to descend, realizing height adjustment. By the operation of the driving motor, the drill rod is driven to rotate, and the drill rod thus drills holes in the aluminum alloy template. Brief Description of the Drawings
[0040] Figure 1 It is a schematic diagram of the overall structure of the present utility model;
[0041] Figure 2 It is a schematic diagram of the connection structure of the aluminum alloy template clamping mechanism of the present utility model;
[0042] Figure 3 For the present utility model Figure 2 Partial structure schematic diagram;
[0043] Figure 4 It is a schematic diagram of the connection structure of the pressing and punching mechanism of the present utility model.
[0044] Main Symbol Explanation:
[0045] 1. Main body of the drilling device; 2. Adjusting mechanism; 21. Support platform; 22. Sliding groove; 23. Sliding rod; 24. Sliding block; 3. Aluminum alloy template clamping mechanism; 31. Bottom end plate; 32. Support frame; 33. Mounting plate; 34. Adjusting bolt; 35. Knob; 36. Pressing plate; 4. Aluminum alloy template; 5. Pressing and punching mechanism; 51. Connecting frame; 52. Handle rod; 53. Pressing axis; 54. Connecting rod; 55. Tightening button; 56. Deflection axis; 57. Deflection rod; 58. Movable sleeve; 59. Receiving rod; 510. Lifting sliding sleeve; 511. Bushing plate; 512. Support plate; 513. Driving motor; 514. Drill rod. Specific Embodiment
[0046] Next, in combination with the drawings and specific embodiments, the present utility model will be further described. It should be noted that on the premise of no conflict, any combination can be formed among the following described embodiments or technical features to form new embodiments.
[0047] Embodiment 1:
[0048] Please combine Figures 1 - 4 , this embodiment proposes a special-shaped aluminum alloy template adjustable positioning multifunctional drilling device, including the main body 1 of the drilling device. The main body 1 of the drilling device includes:
[0049] Adjusting mechanism 2, the adjusting mechanism 2 adjusts the position of the aluminum alloy template clamping mechanism 3;
[0050] Aluminum alloy template clamping mechanism 3, the aluminum alloy template clamping mechanism 3 clamps and limits the aluminum alloy template 4, realizes the limiting of the aluminum alloy template 4, and facilitates punching;
[0051] Pressing and punching mechanism 5, the pressing and punching mechanism 5 punches the aluminum alloy template 4;
[0052] The adjusting mechanism 2 includes:
[0053] Support platform 21, the support platform 21 supports the main body of the adjusting mechanism 2;
[0054] Sliding groove 22, the sliding groove 22 is opened on the surface of the support platform 21;
[0055] Sliding rod 23, a clamping block is arranged at the bottom end of the sliding rod 23 and slides inside the sliding groove 22;
[0056] Slider 24, the slider 24 is sleeved on the surface of the sliding rod 23, and the bottom end plate 31 is connected above the slider 24.
[0057] Among them, the aluminum alloy template clamping mechanism 3 includes:
[0058] Bottom end plate 31, the bottom end plate 31 is arranged at the bottom of the aluminum alloy template clamping mechanism 3;
[0059] Support frame 32, the support frame 32 is fixedly connected above the bottom end plate 31;
[0060] Mounting plate 33, the mounting plate 33 is connected to the top end of the support frame 32;
[0061] Adjusting bolt 34, the adjusting bolt 34 passes through the surface of the mounting plate 33;
[0062] Knob 35, the knob 35 is installed at the top end of the adjusting bolt 34;
[0063] Pressing plate 36, the pressing plate 36 is connected to the bottom end of the adjusting bolt 34, the pressing plate 36 matches the bottom end plate 31, and when the pressing plate 36 presses down, it contacts and closes with the bottom end plate 31 to limit the aluminum alloy template 4.
[0064] The aluminum alloy template clamping mechanism 3 is provided with two groups in a symmetrical shape, the two groups of aluminum alloy template clamping mechanisms 3 clamp and limit the aluminum alloy template 4, and the aluminum alloy template clamping mechanism 3 adjusts the horizontal and vertical positions through the adjusting mechanism 2.
[0065] Place the aluminum alloy template 4 to be punched on the bottom plate 31 of the aluminum alloy template clamping mechanism 3. The operator can adjust the lateral position of the aluminum alloy template clamping mechanism 3 by pulling the sliding rod 23 to slide inside the sliding groove 22, which is convenient for adjusting the clamping of aluminum alloy templates 4 with different sizes and shapes by the aluminum alloy template clamping mechanism 3. At the same time, the bottom plate 31 can slide through the sliding block 24, and the sliding block 24 thus slides on the surface of the sliding rod 23 to adjust the position of the sliding block 24, and the sliding block 24 thus drives the aluminum alloy template clamping mechanism 3 to move synchronously to achieve position adjustment; the operator can rotate the knob 35, and the knob 35 then drives the adjusting bolt 34 connected thereto to rotate synchronously. The adjusting bolt 34 thus rotates on the surface of the mounting plate 33, and the adjusting bolt 34 then drives the pressing plate 36 connected below it to adjust the height. The pressing plate 36 thus descends, and the pressing plate 36 then contacts the bottom plate 31, and the pressing plate 36 thus clamps and fixes the aluminum alloy template 4 to ensure the stability of the aluminum alloy template 4 and facilitate punching the aluminum alloy template 4.
[0066] The pressing and punching mechanism 5 includes:
[0067] A connecting frame 51 that supports the main body of the pressing and punching mechanism 5;
[0068] A handle rod 52;
[0069] A pressing axis 53 is arranged at the top end of the handle rod 52;
[0070] A connecting rod 54, one end of which is connected to the pressing axis 53;
[0071] A tightening knob 55 is inserted through the top end of the connecting rod 54;
[0072] A deflection axis 56 is arranged on the surface of the handle rod 52;
[0073] A deflection rod 57 is connected to the inside of the deflection axis 56;
[0074] A movable sleeve 58 is connected to the outside of the deflection rod 57;
[0075] A receiving rod 59 is connected to the movable sleeve 58;
[0076] A lifting sliding sleeve 510 is sleeved on the outer surface of the connecting frame 51;
[0077] A bushing plate 511 is connected to the outside of the lifting sliding sleeve 510;
[0078] A support plate 512 is fixedly connected to the outside of the bushing plate 511;
[0079] The driving motor 513 has a drill pipe 514 connected below it, and the drill pipe 514 drills holes in the aluminum alloy template 4. Both the movable sleeve 58 and the lifting sliding sleeve 510 are sleeved on the surface of the connecting frame 51, and the movable sleeve 58 and the lifting sliding sleeve 510 slide on the surface of the connecting frame 51.
[0080] The staff holds the handle rod 52 and presses the handle rod 52 downward. A deflection axis 56 is provided on the surface of the handle rod 52, and the deflection axis 56 is synchronously pressed downward immediately. The deflection axis 56 drives the deflection rod 57 connected to its inner side to be synchronously pressed downward. The deflection rod 57 then drives the movable sleeve 58 to be synchronously pressed downward. The movable sleeve 58 thus drives the receiving rod 59 to be synchronously pressed downward. The bottom end of the receiving rod 59 is connected to the lifting sliding sleeve 510, and the lifting sliding sleeve 510 then slides on the surface of the connecting frame 51. The lifting sliding sleeve 510 thus drives the bushing plate 511 to descend synchronously. The bushing plate 511 thus drives the supporting plate 512 connected to it to descend, realizing height adjustment. Through the operation of the driving motor 513, the drill pipe 514 is driven to rotate, and the drill pipe 514 thus drills holes in the aluminum alloy template 4.
[0081] The specific implementation steps of the present utility model are as follows:
[0082] During use, the aluminum alloy template 4 to be drilled is placed on the bottom plate 31 of the aluminum alloy template clamping mechanism 3. The staff can adjust the horizontal position of the aluminum alloy template clamping mechanism 3 by pulling the sliding rod 23 to slide inside the sliding groove 22, which is convenient for adjusting the clamping of aluminum alloy templates 4 of different sizes and shapes by the aluminum alloy template clamping mechanism 3. At the same time, the bottom plate 31 can slide through the sliding block 24, and the sliding block 24 thus slides on the surface of the sliding rod 23 to adjust the position of the sliding block 24. The sliding block 24 thus drives the aluminum alloy template clamping mechanism 3 to move synchronously to achieve position adjustment. The staff can rotate the knob 35, and the knob 35 then drives the adjusting bolt 34 connected to it to rotate synchronously. The adjusting bolt 34 thus rotates on the surface of the mounting plate 33. The adjusting bolt 34 then drives the pressing plate 36 connected to its lower part to adjust the height. The pressing plate 36 thus descends, and the pressing plate 36 then contacts the bottom plate 31. The pressing plate 36 thus clamps and fixes the aluminum alloy template 4 to ensure the stability of the aluminum alloy template 4 and facilitate drilling the aluminum alloy template 4.
[0083] Subsequently, the staff holds the handle rod 52 and presses the handle rod 52 downward. The surface of the handle rod 52 is provided with a deflection axis 56, and the deflection axis 56 is synchronously pressed downward accordingly. The deflection axis 56 drives the deflection rod 57 connected to its inner side to be synchronously pressed downward. The deflection rod 57 then drives the movable sleeve 58 to be synchronously pressed downward. The movable sleeve 58 thus drives the receiving rod 59 to be synchronously pressed downward. The bottom end of the receiving rod 59 is connected with a lifting sliding sleeve 510, and the lifting sliding sleeve 510 then slides on the surface of the connecting frame 51. The lifting sliding sleeve 510 thus drives the bushing plate 511 to descend synchronously. The bushing plate 511 thus drives the supporting plate 512 connected thereto to descend, realizing height adjustment. By the operation of the driving motor 513, the drill rod 514 is driven to rotate, and the drill rod 514 thus drills holes in the aluminum alloy template 4.
[0084] The above embodiments are only the preferred embodiments of the present invention, and cannot be used to limit the scope of protection of the present invention. Any non-substantive changes and substitutions made by those skilled in the art on the basis of the present invention belong to the scope of protection required by the present invention.
Claims
1. A multifunctional drilling device with adjustable positioning for a special-shaped aluminum alloy template, comprising a drilling device body, characterized in that: The drilling device body comprises: An adjusting mechanism, wherein the adjusting mechanism adjusts the position of the aluminum alloy template clamping mechanism; Aluminum alloy template clamping mechanism, the aluminum alloy template clamping mechanism clamps and limits the aluminum alloy template, thereby limiting the aluminum alloy template and facilitating punching; A pressing and punching mechanism, wherein the pressing and punching mechanism punches holes in the aluminum alloy template; Wherein, the aluminum alloy template clamping mechanism comprises: A bottom end plate, the bottom end plate being arranged at the bottom end of the aluminum alloy template clamping mechanism; A support frame, the support frame is fixedly connected above the bottom end plate; A mounting plate connected to the top of the support frame; An adjusting bolt, wherein the adjusting bolt passes through the surface of the mounting plate; A knob, the knob being mounted on the top end of the adjusting bolt; A pressing plate is connected to the bottom end of the adjusting bolt.
2. The adjustable positioning multifunctional drilling device for special-shaped aluminum alloy template according to claim 1, characterized in that: The aluminum alloy template clamping mechanism is provided with two symmetrical groups, and the two groups of the aluminum alloy template clamping mechanisms clamp and limit the aluminum alloy template. The aluminum alloy template clamping mechanism adjusts the horizontal and vertical positions through the adjustment mechanism.
3. The adjustable positioning multifunctional drilling device for special-shaped aluminum alloy template according to claim 1, characterized in that: The regulating mechanism comprises: A support platform, the support platform supports the adjustment mechanism body; A sliding groove, the sliding groove is provided on the surface of the support platform; A sliding rod, wherein a block is provided at the bottom end of the sliding rod and slides inside the sliding groove; A sliding block is sleeved on the surface of the sliding rod, and the bottom end plate is connected above the sliding block.
4. The adjustable positioning multifunctional drilling device for special-shaped aluminum alloy template according to claim 1, characterized in that: The pressing and punching mechanism comprises: A connecting frame, the connecting frame supporting the pressing and punching mechanism body; Handlebars; A pressing axis, the pressing axis is arranged at the top end of the handle bar; A connecting rod, one end of which is connected to the pressing axis; A tension button, the tension button passing through the top end of the connecting rod; A deflection axis, the deflection axis being arranged on the surface of the handle bar; A deflection rod, the deflection rod being connected to the inner side of the deflection axis; A movable sleeve connected to the outside of the deflection rod; A receiving rod connected to the movable sleeve; A lifting sleeve, wherein the lifting sleeve is sleeved on the outer surface of the connecting frame; A bushing plate connected to the outer side of the lifting sleeve; A support plate, the support plate being fixedly connected to the outer side of the bushing plate; A driving motor is provided, wherein a drill rod is connected to the lower portion of the driving motor, and the drill rod is used to drill holes in the aluminum alloy template.
5. The adjustable positioning multifunctional drilling device for special-shaped aluminum alloy template according to claim 3, characterized in that: The bottom end plate drives the sliding block to move and adjust the position of the aluminum alloy template clamping mechanism.
6. The adjustable positioning multifunctional drilling device for special-shaped aluminum alloy template according to claim 2, characterized in that: The pressing plate matches the bottom end plate, and when the pressing plate is pressed down, it contacts and closes with the bottom end plate to limit the position of the aluminum alloy template.
7. The adjustable positioning multifunctional drilling device for special-shaped aluminum alloy template according to claim 4, characterized in that: The movable sleeve and the lifting sleeve are both sleeved on the surface of the connecting frame, and the movable sleeve and the lifting sleeve slide on the surface of the connecting frame.