Plate hydraulic processing device
By introducing a bidirectional screw and worm gear mechanism into the sheet metal hydraulic processing device, the height adjustment and alternating movement of the bearing plate can be realized, solving the problem of long waiting time in the prior art and improving the sheet metal pressing efficiency and ease of operation.
Patent Information
- Application Number
- CN202423134103.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Existing sheet metal hydraulic processing equipment requires waiting for the previous batch of sheets to be pressed before it can remove the sheet and place the next batch to be pressed, resulting in low efficiency.
The height adjustment and movement of the bearing plate are achieved by using a combination of a bidirectional screw, a first stepper motor, a traction plate, and a support plate. The alternating movement of the bearing plate is achieved through the combination of insert blocks, I-beams, slots, and worm gears, allowing the placement of subsequent plates to be pressed without waiting for the pressed plates to be removed during the pressing process.
It improves the efficiency of sheet metal pressing, reduces waiting time, and makes it easier and more convenient for workers to pick up and put down sheets on the support plate.
Smart Images

Figure CN223644448U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of plate processing, and specifically relates to a plate hydraulic processing device. BACKGROUND
[0002] The plate is a standard size flat rectangular building material plate, which is applied to the building industry and used as a component of wall, ceiling or floor. When the composite plate is processed, sometimes it needs to be stacked after being glued on multiple layers of plates, and then a pressing machine is used to press and composite the multiple layers of plates to obtain the required composite plate.
[0003] The current plate hydraulic processing device, as described in the patent with announcement number CN220262307U, includes a base, a back plate fixedly connected to the top of the back of the base, a top plate fixedly connected to the top of the back plate, hydraulic cylinders installed on both sides of the top plate, a pressing plate connected to the output end of the hydraulic cylinder, a pressing plate frame installed on the middle of the top end of the base, a first linear motor fixedly installed on the top of one side of the base, a second linear motor fixedly installed on the top of the other side of the base, a moving plate connected to the output end of the first linear motor and the output end of the second linear motor, an electric telescopic rod installed on the top of the moving plate, a horizontal rod connected between the output ends of the two electric telescopic rods, and a smearing brush provided on the bottom of the horizontal rod.
[0004] According to the related technology described above, the inventor believes that during the pressing process, the worker needs to wait until the previous batch of plates is pressed and removed from the inside of the pressing plate frame before putting the subsequent plates to be pressed into the pressing plate frame for subsequent pressing, which results in a long waiting time and low efficiency of plate pressing. UTILITY MODEL CONTENTS
[0005] The utility model aims to provide a plate hydraulic processing device to solve the problems raised in the background technology.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0007] A plate hydraulic processing device includes
[0008] A pressing mechanism, the pressing mechanism includes a support frame, the support frame is fixedly connected with an extension plate on both sides, a first hydraulic rod is fixedly connected to the outside of the two groups of extension plates, and a pressing plate is fixedly connected to the output end of each group of first hydraulic rods.
[0009] The adjusting mechanism comprises a bidirectional screw rod arranged below the support frame, side plates are arranged on both sides of the bidirectional screw rod, traction plates are symmetrically connected to the outer sides of the bidirectional screw rod, traction rods are rotatably connected to the two sides of the two groups of traction plates, rotating shafts are rotatably connected between the two groups of side plates on the same side, top plates are fixedly connected to the top portions of the two groups of rotating shafts, load bearing plates are slidably connected to the top portions of the two groups of top plates, a first stepper motor is fixedly connected to one side of one group of side plates, and the output end of the first stepper motor is fixedly connected to one end of the bidirectional screw rod.
[0010] The switching mechanism comprises a I-shaped seat slidably connected to the top portion of the support frame, the I-shaped seat is internally provided with symmetrically formed insertion grooves on both sides, the two groups of load bearing plates are symmetrically fixedly connected with insertion blocks matched with the insertion grooves, a receiving groove is formed in the middle position of the top portion of the support frame, the receiving groove is internally provided with an adjusting screw rod rotatably connected with the support frame, the I-shaped seat is threadedly connected with the adjusting screw rod, one side of the outer wall of the adjusting screw rod is fixedly connected with a worm gear, the outer side of the worm gear is meshingly connected with a worm, a second stepper motor is fixedly connected to one side of the bottom portion of the support frame, and the output end of the second stepper motor is fixedly connected with the worm.
[0011] As a further scheme of the present application: the bottom portions of the two groups of extension plates are symmetrically fixedly connected with reinforcing rib plates, and each group of reinforcing rib plates is fixedly connected with the support frame.
[0012] As a further scheme of the present application: the interiors of the two groups of traction plates are symmetrically slidably penetrated with guide rods, and the two groups of guide rods are fixedly connected with the two groups of side plates.
[0013] As a further scheme of the present application: the top portions of the two groups of top plates and the top portion of the support frame are symmetrically formed with guide grooves, the bottom portions of the two groups of load bearing plates are symmetrically fixedly connected with guide blocks matched with the guide grooves, and the bottom portions of each group of guide blocks are rotatably connected with rollers.
[0014] As a further scheme of the present application: the two sides of each group of guide blocks are movably connected with ball bearings.
[0015] As a further scheme of the present application: the opposite sides of the two groups of load bearing plates are abutted with stop blocks, and the two groups of stop blocks are fixedly connected with the two groups of top plates, respectively.
[0016] As a further scheme of the present application: the two sides of the two groups of load bearing plates are symmetrically slidably connected with sliding rods, and the bottom portions of the two sides of the sliding rods are fixedly connected with abutting beams.
[0017] Compared with the prior art, the present application has the following beneficial effects:
[0018] The utility model discloses adopt above -mentioned structure after,
[0019] 1. through the mutual cooperation of bidirectional screw, first stepper motor, traction plate and backing plate, can drive bidirectional screw to rotate when first stepper motor starts working, can drive two groups of traction plate to move oppositely or oppositely when bidirectional screw rotates, thereby through two sides traction rod respectively draws two sides rotating shaft and two sides backing plate up and down movement, to realize the adjustment of two sides bearing plate height, can facilitate worker to take and place board on the top of bearing plate when bearing plate moves to the lowest height, thereby make worker take and place board on bearing plate more labor saving and convenient.
[0020] 2. through the mutual cooperation of plug-in block, I -beam base, slot and worm wheel, can start second stepper motor after two groups of bearing plate two sides plug-in block moves up to the inside of I -beam base two sides slot, can drive worm to rotate when second stepper motor starts working, can drive worm wheel and adjusting screw to rotate when worm rotates, can drive I -beam base to slide left and right when adjusting screw rotates, thereby traction two sides bearing plate moves left and right, can alternately move two sides bearing plate to the pressing plate below and press the board and alternately take and place board, thereby do not need to wait after taking out the board that presses the completion after the completion of board pressing, can place the subsequent board to be pressed, effectively reduce the waiting time, improve the pressing efficiency of board. BRIEF DESCRIPTION OF DRAWINGS
[0021] The utility model will be further explained in detail in combination with the embodiment in the drawings, but does not constitute any limit to the utility model.
[0022] Figure 1 It is a kind of board hydraulic processing device's structural schematic diagram.
[0023] Figure 2 It is a kind of board hydraulic processing device Figure 1 A portion structural schematic diagram.
[0024] Figure 3 It is a kind of board hydraulic processing device Figure 1 B portion structural schematic diagram.
[0025] Figure 4 It is a kind of board hydraulic processing device Figure 1 C portion structural schematic diagram.
[0026] Figure 5 It is another view of a kind of board hydraulic processing device's structural schematic diagram.
[0027] In the figure: 1, pressing mechanism; 101, support frame; 102, extension plate; 103, first hydraulic rod; 104, pressing plate; 105, reinforcing rib plate; 2, adjusting mechanism; 201, bidirectional screw; 202, side plate; 203, first stepper motor; 204, traction plate; 205, guide rod; 206, traction rod; 207, rotating shaft; 208, supporting plate; 209, bearing plate; 210, sliding rod; 211, abutment beam; 3, switching mechanism; 301, guide groove; 302, guide block; 303, roller; 304, ball; 305, stop block; 306, I-beam; 307, insertion slot; 308, containing groove; 309, worm gear; 310, adjusting screw; 311, worm; 312, second stepper motor; 313, insertion block. DETAILED DESCRIPTION
[0028] The technical solutions of the patent will be further described in detail in combination with specific embodiments.
[0029] Please refer to Figures 1-5 A plate hydraulic processing device, comprising a pressing mechanism 1, the pressing mechanism 1 comprising a support frame 101, an adjusting mechanism 2, the adjusting mechanism 2 comprising a bidirectional screw 201 arranged below the support frame 101, both sides of the bidirectional screw 201 being rotatably provided with a side plate 202, the side plate 202 being arranged to provide support for the bidirectional screw 201. One side of a group of side plates 202 is fixedly connected with a first stepper motor 203, an output end of the first stepper motor 203 being fixedly connected with one end of the bidirectional screw 201, the first stepper motor 203 being arranged to drive the bidirectional screw 201 to rotate when starting to work. The outer side of the bidirectional screw 201 is symmetrically screw-connected with a traction plate 204, the bidirectional screw 201 being arranged to drive the two sides of the traction plate 204 to move towards or away from each other when rotating.
[0030] The interiors of the two groups of traction plates 204 are symmetrically slidably penetrated with a guide rod 205, both groups of guide rods 205 being fixedly connected with both groups of side plates 202, the guide rod 205 being arranged to guide the movement of the traction plate 204. Both sides of the two groups of traction plates 204 are rotatably connected with a traction rod 206, the same side of the two groups of side plates 202 being rotatably connected with a rotating shaft 207, the top of both groups of rotating shafts 207 being fixedly connected with a supporting plate 208, the traction rod 206 being arranged to drive the rotating shaft 207 and the supporting plate 208 to move up and down when the traction plate 204 moves. Both sides of both groups of bearing plates 209 are symmetrically slidably connected with a sliding rod 210, the bottom of both sides of the sliding rod 210 being fixedly connected with an abutment beam 211, the sliding rod 210 being arranged to guide the up and down movement of the supporting plate 208. The top of both groups of supporting plates 208 is slidably connected with a bearing plate 209, the bearing plate 209 being arranged to bear the plate to be pressed.
[0031] The opposite sides of the two groups of bearing plates 209 abut against stop blocks 305, the two groups of stop blocks 305 are fixedly connected with the two groups of supporting plates 208 respectively, and the stop blocks 305 are arranged to limit the bearing plates 209. The switching mechanism 3 comprises an I-beam 306 slidingly connected to the top of the support frame 101, the inside of the I-beam 306 is symmetrically provided with a slot 307, the outside of the two groups of bearing plates 209 is symmetrically fixedly connected with an insertion block 313 matched with the slot 307, and the slot 307 is arranged for the insertion block 313 to be inserted, so that when the insertion block 313 is inserted into the slot 307, the I-beam 306 can drive the insertion block 313 and the bearing plate 209 to move when moving, thereby reducing the movement of the bearing plate 209 to the top of the support frame 101.
[0032] The top of the two groups of supporting plates 208 and the top of the support frame 101 are symmetrically provided with guide grooves 301, and the bottom sides of the two groups of bearing plates 209 are symmetrically fixedly connected with guide blocks 302 matched with the guide grooves 301, and the guide blocks 302 and the guide grooves 301 are arranged to guide the movement of the bearing plates 209. The bottom of each group of guide blocks 302 is rotatably connected with a roller 303, the roller 303 is arranged to roll along the inside of the guide groove 301 when the bearing plate 209 moves, thereby reducing the friction between the bearing plate 209 and the supporting plate 208 and the support frame 101. The two sides of each group of guide blocks 302 are movably connected with a ball 304, and the ball 304 is arranged to roll along the inner wall of the guide groove 301 when the bearing plate 209 moves, thereby reducing the friction between the guide block 302 and the inner wall of the guide groove 301.
[0033] The top of the support frame 101 is provided with a receiving groove 308 at the middle position, and the receiving groove 308 is provided with an adjusting screw 310 rotatably connected with the support frame 101, and the receiving groove 308 is arranged to accommodate the adjusting screw 310. The I-beam 306 is threadedly connected with the adjusting screw 310, and the adjusting screw 310 is arranged to drive the I-beam 306 to move when rotating. The outer wall of the adjusting screw 310 is fixedly connected with a worm gear 309, and the outer side of the worm gear 309 is meshingly connected with a worm 311, and the worm 311 is arranged to drive the worm gear 309 and the adjusting screw 310 to move when rotating. The bottom side of the support frame 101 is fixedly connected with a second stepping motor 312, the output end of the second stepping motor 312 is fixedly connected with the worm 311, and the second stepping motor 312 is arranged to drive the worm 311 to rotate when starting to work.
[0034] The two sides of the support frame 101 are fixedly connected with the extension plates 102, the bottom of the two groups of extension plates 102 is fixedly connected with the reinforcing rib plates 105, each group of reinforcing rib plates 105 is fixedly connected with the support frame 101, the reinforcing rib plate 105 is arranged to further connect and fix the extension plate 102 and the support frame 101, thereby improving the connection stability of the support frame 101 and the extension plate 102. The outer side of the two groups of extension plates 102 is fixedly connected with the first hydraulic rod 103, the output end of each group of first hydraulic rods 103 is fixedly connected with the pressing plate 104, the first hydraulic rod 103 is arranged to drive the pressing plate 104 to move up and down when starting to work, thereby realizing the pressing of the plate;
[0035] In use, the to-be-pressed plate is stacked on the top of the one side bearing plate 209, then the first stepping motor 203 is started, so that the first stepping motor 203 drives the bidirectional screw rod 201 to rotate when starting to work, the bidirectional screw rod 201 can drive the two groups of traction plates 204 to move in opposite directions when rotating, thereby driving the two sides of the rotating shaft 207 and the two sides of the supporting plate 208 to move upward through the two sides of the traction rod 206, and then driving the two sides of the bearing plate 209 to move upward, until the to-be-pressed plate bearing plate 209 is placed on the two sides of the plug-in block 313 moves upward to the inside of the two groups of plug-in slots 307, then the second stepping motor 312 is started, so that the second stepping motor 312 can drive the worm 311 to rotate when starting to work, the worm 311 can drive the worm gear 309 and the adjusting screw rod 310 to rotate when rotating, the adjusting screw rod 310 can drive the adjusting screw rod 310 to move to the other side of the bearing plate 209 when rotating, while driving the one side of the bearing plate 209 to move to the top of the support frame 101, until the one side of the bearing plate 209 is separated from the top of the corresponding side of the supporting plate 208, and the plate stacked on the top of the one side of the bearing plate 209 moves to the lower side of the pressing plate 104;
[0036] After that, the first hydraulic rod 103 of each group can be started, so that the first hydraulic rod 103 can drive the pressing plate 104 to move downward during starting work, so as to realize the pressing of the stacked plate below. During the pressing of the stacked plate, the first stepping motor 203 can be started again, so that the first stepping motor 203 can drive the bidirectional screw rod 201 to rotate reversely, and when the bidirectional screw rod 201 rotates reversely, the two sides of the traction plate 204 can move away from each other, so that the two sides of the traction rod 206 can drive the two sides of the supporting plate 208 to move downward, until the supporting plate 208 moves downward to the bottom, and then the subsequent plate to be pressed can be stacked on the top of the other side of the bearing plate 209. After the plate below the pressing plate 104 is pressed, the second stepping motor 312 is started, so that the second stepping motor 312 drives the worm 311 to rotate, so as to drive the I-shaped seat 306 to move, until the two groups of insertion slots 307 on the other side of the I-shaped seat 306 move to the upper side of the other two groups of insertion blocks 313, and then the first stepping motor 203 is started, so that the first stepping motor 203 drives the bidirectional screw rod 201 to rotate, so as to drive the two sides of the supporting plate 208 to move upward, until the insertion block 313 on the other side of the bearing plate 209 moves upward to the inside of the two groups of insertion slots 307 on the other side of the I-shaped seat 306, and then the second stepping motor 312 is started again, so that the second stepping motor 312 can drive the worm 311 to rotate reversely during starting work, so as to drive the I-shaped seat 306 and the two groups of bearing plates 209 to move to the side of the supporting plate 208, until the bearing plate 209 moves to the top of the supporting plate 208, and the other side of the bearing plate 209 moves to the top of the supporting frame 101, and then the plate stacked on the top of the other side of the bearing plate 209 can be pressed, so that the two groups of bearing plates 209 can alternately take and place the plate.
[0037] The above-mentioned embodiments are the preferred embodiments of the present application, which are only used to facilitate the description of the present application, and do not limit the present application in any form. Any person skilled in the art can make partial changes or modifications to the equivalent embodiments within the scope of the technical features of the present application without departing from the technical features of the present application, and the changes or modifications still belong to the scope of the technical features of the present application.
Claims
1. A plate hydraulic working device characterized by comprising: The utility model relates to a press mechanism (1), the press mechanism (1) includes support frame (101), both sides of support frame (101) are fixedly connected with extension plate (102), and both sides of two groups of extension plate (102) are fixedly connected with first hydraulic rod (103) in turn, and the output of each group first hydraulic rod (103) is fixedly connected with pressing plate (104). Adjusting mechanism (2), adjusting mechanism (2) includes setting two-way screw (201) below support frame (101), both sides of two-way screw (201) are rotatably provided with side plate (202), and the outer side of two-way screw (201) is symmetrically connected with traction plate (204) in screw thread, both sides of two groups of traction plate (204) are rotatably connected with traction rod (206), and both sides of two groups of side plate (202) are rotatably connected with rotating shaft (207) between two groups, the top of two groups of rotating shaft (207) is fixedly connected with support plate (208), and the top of two groups of support plate (208) is slidably connected with bearing plate (209), and one side of one group side plate (202) is fixedly connected with first step motor (203), and the output of first step motor (203) is fixedly connected with one end of two-way screw (201). Switching mechanism (3), switching mechanism (3) includes that the top of support frame (101) is slidably connected with I-beam (306), both sides of the inside of I-beam (306) are symmetrically provided with slot (307), and both sides of two groups of bearing plate (209) are symmetrically fixedly connected with the plug-in block (313) matched with slot (307), and the top of support frame (101) is provided with accommodating groove (308) in the middle position, and the inside of accommodating groove (308) is provided with adjusting screw (310) rotatably connected with support frame (101), and I-beam (306) is threadedly connected with adjusting screw (310), and the outer wall of adjusting screw (310) one side is fixedly connected with worm gear (309), and the outer side of worm gear (309) is meshedly connected with worm (311), and the bottom of support frame (101) one side is fixedly connected with second step motor (312), and the output of second step motor (312) is fixedly connected with worm (311). The bottom of two groups of extension plate (102) is symmetrically fixedly connected with reinforcing rib plate (105), and each group reinforcing rib plate (105) is fixedly connected with support frame (101).
2. The apparatus of claim 1, wherein The inside of two groups of traction plate (204) is symmetrically slidably penetrated with guide rod (205), and two groups of guide rod (205) are fixedly connected with two groups of side plate (202).
3. The apparatus of claim 1 wherein, The top of two groups of support plate (208) and the top of support frame (101) are symmetrically provided with guide slot (301), and both sides of the bottom of two groups of bearing plate (209) are symmetrically fixedly connected with guide block (302) matched with guide slot (301), and the bottom of each group guide block (302) is rotatably connected with gyro wheel (303).
4. The apparatus of claim 1 wherein, 5. A hydraulic plate working apparatus according to claim 4, wherein Two groups of the guide blocks (302) are movably connected with the ball (304) on both sides.
6. The apparatus of claim 1 wherein, The two groups of the bearing plates (209) are abutted with the stop block (305) on the opposite sides, and the two groups of the stop block (305) are fixedly connected with the two groups of the supporting plates (208) respectively.
7. The apparatus of claim 1 wherein, The two groups of the bearing plates (209) are symmetrically and slidably connected with the sliding rod (210) on both sides, and the bottom of the sliding rod (210) on both sides is fixedly connected with the abutting beam (211).
Citation Information
Patent Citations
Hydraulic pressing machine for plate processing
CN220262307U