CN218700953U - Automatic cutting device for pipe fitting water gap - Google Patents
Automatic cutting device for pipe fitting water gap Download PDFInfo
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- CN218700953U CN218700953U CN202222557385.4U CN202222557385U CN218700953U CN 218700953 U CN218700953 U CN 218700953U CN 202222557385 U CN202222557385 U CN 202222557385U CN 218700953 U CN218700953 U CN 218700953U
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- pipe fitting
- walking
- frame
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Abstract
The utility model discloses a pipe fitting mouth of a river automatic cutout device, it includes the frame, the frame includes four stands, be connected through connecting the crossbeam between four stands, the connection crossbeam middle part at both ends is connected with two short stands respectively around being located, be located and be connected with the top crossbeam between the top of the stand of both sides, be connected with the rack crossbeam between the top crossbeam, the up end of rack crossbeam is provided with the rack, the outside of rack crossbeam is provided with walking slider A, the outside of rack crossbeam is provided with walking slider B, walking slider A's upper end is connected with walking motor A, walking motor A's output passes walking slider A inboard and meshes with the rack through the gear structure mutually, the utility model discloses an automatic injection molding of taking of arm, the automatic mouth of a river that amputates distinguishes the mouth of a river, pipe fitting blanking, avoids the function that artifical cutting operation saved artifical consumption.
Description
Technical Field
The utility model discloses the application relates to mouth of a river cutting device technical field, specific pipe fitting mouth of a river automatic cutout device that says so.
Background
The pipe fitting can remain mouth of a river, runner material in the main part of pipe fitting in injection moulding, and the injection molding of this type can carry out cutting off, the shearing clearance of unnecessary mouth of a river material after the completion of moulding plastics, and traditional clearance mode is that the manual injection molding machine of squatting is other, and the mouth of a river is cut off with the injection molding of automatic drawing of patterns to the completion of once moulding plastics, and this type of operating efficiency is low, and the manual work that needs is also very much, and each injection molding machine just need be equipped with a workman and operates.
The center of the prior art also has a part of devices which can automatically cut off and cut off a water gap, wherein the solution mentioned in the prior art with the patent number of 202110510856.3 adopts a base which can horizontally move to support a pipe fitting, then the water gap at the designated position is cut off by the cooperation of an air cylinder and the positioning of the base under a cutter, but the device also needs to manually place the pipe fitting and operate equipment to cut off, and the position of water gap blanking and pipe fitting blanking is relatively close to easily generate a wrong casting phenomenon due to external factors; the same technical scheme of moving the pipe fitting adopted in the prior art with the patent number of 202121321283.1 also can not avoid the need of manually placing the workpiece.
Consequently design the automatic injection molding of taking of arm, the mouth of a river is amputated automatically, distinguishes mouth of a river, pipe fitting blanking, avoids the manual work to cut off the device that the operation saved artifical consumption, is exactly the problem that the people of utility model will solve.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a pipe fitting mouth of a river automatic cutout device can realize the automatic injection molding of taking of arm, and the mouth of a river is amputated automatically, distinguishes mouth of a river, pipe fitting blanking, avoids artifical cutting-off operation and saves the function of artifical consumption.
The utility model discloses the technical scheme that the device adopted is: an automatic pipe nozzle cutting device comprises a frame, wherein the frame comprises four stand columns, the four stand columns are connected through connecting beams, the middle parts of the connecting beams at the front end and the rear end are respectively connected with two short stand columns, a top beam is connected between the tops of the stand columns at the two sides, a rack beam is connected between the top beams, a rack is arranged on the upper end face of the rack beam, a walking slider A is arranged on the outer side of the rack beam, a walking slider B is arranged on the outer side of the rack beam, the upper end of the walking slider A is connected with a walking motor A, the output end of the walking motor A penetrates through the inner side of the walking slider A and is meshed with the rack through a gear structure, the upper end of the walking slider B is connected with a walking motor B, the output end of the walking motor B penetrates through the inner side of the walking slider B and is meshed with the rack through the gear structure, the side face of the walking slider B is connected with a sliding sleeve, the upper end of the walking slider B is connected with a lifting motor, the inner side of the sliding sleeve is provided with a lifting upright post in a sliding manner, the surface of the lifting upright post is provided with a rack structure, the output end of the lifting motor is meshed with the rack structure arranged on the surface of the lifting upright post through a gear structure, the lower end of the lifting upright post is connected with a rotating support, the outer side of the rotating support is connected with a rotating motor, the output end of the rotating motor penetrates through the rotating support and is connected with a connecting rod, the cross section of the connecting rod is square, the connecting rod penetrates through an overturning mounting frame which is arranged on the inner side of the rotating support, the inner side of the overturning mounting frame is provided with a pneumatic clamping jaw, the lower end of the walking slider A is provided with a connecting plate, and the walking slider A is connected with the connecting plate through four connecting rods, the utility model discloses a workpiece support device, including connecting plate, lifter cylinder, guide plate, guide pin, guide way, opening and opening inboard, the upper end of connecting plate is provided with the lifter cylinder, the output of lifter cylinder passes the connecting plate and is connected with the connecting rod, the lower extreme of connecting rod is connected with the lifter plate, four edges of lifter plate are provided with four guide arms respectively, the guide arm pass the connecting plate and be provided with the guide pin bushing between the connecting plate, the lower extreme of lifter plate is provided with the compact heap, the quantity of compact heap is four and equidistant rectangular distribution, be provided with the cutter in the middle of the compact heap, the inboard of frame is connected with mounting platform, the last opening of having seted up of mounting platform and opening inboard are provided with the feed opening, the lower extreme of workpiece support frame is provided with down the feed cylinder, the lower extreme of guide channel is provided with the finished product containing box, it is provided with the mouth of a river collecting box to go down the feed cylinder below.
Further, the lower extreme of compact heap is connected with the silica gel layer, set up the arc recess of upwards sunken in the middle of the silica gel layer, the through-hole has been seted up in the middle of the arc recess.
Furthermore, vacuum holes are formed in the positions, corresponding to the through holes formed in the silica gel layer, of the compression blocks.
Further, the vacuum hole is connected with a vacuum tube, and the vacuum tube penetrates through the lifting plate.
Further, the vacuum tube is connected with a vacuum pump.
Furthermore, four corners of the mounting platform are connected with the upright posts and the short upright posts of the frame.
Further, an injection molding machine is arranged on the inner side of the frame, penetrates through the inner side of the frame and is located on the right side of the mounting platform.
Further, the discharge end of the upper die of the injection molding machine is arranged on the motion track of the pneumatic clamping jaw.
The utility model discloses device beneficial effect is:
1. the utility model discloses a direct pipe fitting that finishes of moulding plastics of taking of arm, with the mouth of a river on the pipe fitting is directly cut off on the base and through the shutdown mechanism of horizontal slip, the negative sucker who sets up on cutting off after finishing adsorbs the pipe fitting and transversely shifts to the finished product blanking mouth and throws down for the pipe fitting is retrieved with the mouth of a river blanking subregion respectively, realized the automatic injection molding of taking of arm, the automatic mouth of a river that amputates, distinguish the mouth of a river, the pipe fitting blanking, avoid the manual work to cut off the function that the operation saved artifical consumption.
Drawings
Fig. 1 is a structural view of the present invention.
Description of the reference numerals: 1-a frame; 2-mounting a platform; 3-a feed opening; 4-a guide channel; 5-finished product storage box; 6-a workpiece support frame; 7-discharging the material barrel; 8-water gap collection box; 9-connecting the cross beam; 10-a lifting plate; 11-a compression block; 12-a nozzle cutter; 13-negative pressure adsorption joint; 14-a guide rod; 15-a lifting cylinder; 16-a connecting rod; 17-a connecting plate; 18-a walking motor a; 19-a walking slider a; 20-rack beam; 21-a traveling motor B; 22-a walking slider B; 23-a lifting motor; 24-a sliding sleeve; 25-lifting upright columns; 26-a rotating support; 27-a rotating electrical machine; 28-turning over the mounting rack; 29-pneumatic gripper.
Detailed Description
The present invention will be further described with reference to specific embodiments, which are only used to illustrate the present invention and are not intended to limit the scope of the present invention. Furthermore, it should be understood that various changes and modifications can be made by those skilled in the art after reading the teachings of the present invention, and such equivalents also fall within the scope of the appended claims.
Referring to fig. 1, which is a structural view of the present invention, an automatic pipe nozzle cutting device includes a frame 1, the frame 1 includes four columns, the four columns are connected through a connecting beam 9, the middle portions of the connecting beams 9 at the front and rear ends are respectively connected with two short columns, a top beam is connected between the tops of the columns at both sides, a rack beam 20 is connected between the top beams, the upper end surface of the rack beam 20 is provided with a rack, the outer side of the rack beam 20 is provided with a walking slider a19, the outer side of the rack beam 20 is provided with a walking slider B22, the upper end of the walking slider a19 is connected with a walking motor a18, the output end of the walking motor a18 passes through the inner side of the walking slider a19 and is engaged with the rack through a gear structure, the upper end of the walking slider B22 is connected with a lifting motor 23, the inner side of the sliding sleeve B22 is connected with a lifting column 25, the surface of the lifting column 25 is provided with a lifting structure, the output end surface of the lifting motor B23 is engaged with a rack structure, the lifting slider B22 is connected with a lifting motor 26, the lower end surface of a rotary support 16, the lifting support is connected with a rotary support 16, the lower end of the lifting support 16, the rotary support 16 is connected with a rotary support 16, the lower end of the rotary support 16, the rotary support is connected with a rotary support 16, the upper end of connecting plate 17 is provided with lift cylinder 15, the output of lift cylinder 15 passes connecting plate 17 and is connected with the connecting rod, the lower extreme of connecting rod is connected with lifter plate 10, four edges of lifter plate 10 are provided with four guide arms 14 respectively, guide arm 14 pass connecting plate 17 and be provided with the guide pin bushing between the connecting plate 17, the lower extreme of lifter plate 10 is provided with compact heap 11, the quantity of compact heap 11 is four and equidistant rectangle distribution, be provided with the cutter in the middle of compact heap 11, the inboard of frame 1 is connected with mounting platform 2, the opening has been seted up on mounting platform 2 and the opening inboard is provided with feed opening 3, feed opening 3 lower extreme is connected with guide way 4, the opening has been seted up on mounting platform 2 and the opening inboard is provided with work piece support frame 6, the lower extreme of work piece support frame 6 is provided with feed cylinder 7, guide way 4's lower extreme is provided with finished product containing box 5, feed cylinder 7 below is provided with mouth collecting box 8.
The lower extreme of compact heap 11 is connected with the silica gel layer, sets up the arc recess of upwards sinking in the middle of the silica gel layer, and the through-hole has been seted up to the centre of arc recess, and the vacuum hole has been seted up with the position that the through-hole that sets up on the silica gel layer corresponds on compact heap 11, and the vacuum hole is connected with the vacuum tube, and the vacuum tube passes lifter plate 10, and the vacuum tube is connected with the vacuum pump.
Four corners of the mounting platform 2 are connected with the upright post and the short upright post of the frame 1, the inner side of the frame 1 is provided with an injection molding machine, the injection molding machine penetrates through the inner side of the frame 1 and is positioned on the right side of the mounting platform 2, and the discharge end of the upper mold of the injection molding machine is arranged on the motion track of the pneumatic clamping jaw 29.
The utility model adopts the pneumatic clamping jaw 29 to clamp the pipe fittings after the injection molding, the rotating motor 27 can drive the overturning mounting frame 28 and the pneumatic clamping jaw 29 to rotate, thereby adjusting the angle, the rack arranged on the side surface of the lifting upright post 25 is meshed with the gear at the output end of the lifting motor 23, the lifting motor 23 rotates to drive the lifting upright post 25 to change the vertical position, the walking motor B21 and the walking motor A18 both drive the walking slider A19 and the walking slider B22 to move horizontally by the principle that the gear and the rack are meshed, after the pipe fittings are clamped by the pneumatic clamping jaw 29, the horizontal position is moved to the position of the workpiece supporting frame 6, the height of the lifting upright post 25 is adjusted, and the workpiece is placed at the position of the workpiece supporting frame 6 to wait for cutting by cooperating with the action of the pneumatic clamping jaw 29, the cutter, the lifting cylinder 15 and other components are driven by the walking slider A19 to move to the workpiece support frame 6, the lifting cylinder 15 moves and extends to drive the lifting plate 10, the pressing block 11, the water gap cutter 12 and the negative pressure adsorption joint 13 to descend together, a silica gel layer under the pressing block 11 has elasticity after descending, the water gap cutter 12 cuts off the water gap while the pressing block 11 presses the pipe under the assistance of the silica gel layer in the continuous descending process, the cut water gap falls from the blanking barrel 7, the cut pipe is adsorbed by the continuous negative pressure on the negative pressure adsorption joint 13 and is horizontally driven to the blanking port 3 by the walking slider A19 to relieve the negative pressure, and the pipe can enter the two finished product containing boxes 5 from the guide channel 4.
The utility model discloses a direct pipe fitting that finishes of moulding plastics of taking of arm, with the mouth of a river on the pipe fitting is directly cut off on the base and through the shutdown mechanism of horizontal slip, the negative sucker who sets up on cutting off after finishing adsorbs the pipe fitting and transversely shifts to the finished product blanking mouth and throws down for the pipe fitting is retrieved with the mouth of a river blanking subregion respectively, realized the automatic injection molding of taking of arm, the automatic mouth of a river that amputates, distinguish the mouth of a river, the pipe fitting blanking, avoid the manual work to cut off the function that the operation saved artifical consumption.
Claims (8)
1. The utility model provides a pipe fitting mouth of a river automatic cutting device which characterized in that: the turnover device comprises a frame, wherein the frame comprises four stand columns, the four stand columns are connected through connecting beams, the middle parts of the connecting beams at the front end and the rear end are respectively connected with two short stand columns, a top beam is connected between the tops of the stand columns at the two sides, a rack beam is connected between the top beams, a rack is arranged on the upper end face of the rack beam, a walking slider A is arranged on the outer side of the rack beam, a walking slider B is arranged on the outer side of the rack beam, a walking motor A is connected to the upper end of the walking slider A, the output end of the walking motor A penetrates through the inner side of the walking slider A and is meshed with the rack through a gear structure, a sliding sleeve is connected to the side face of the walking slider B, a lifting motor is connected to the upper end of the walking slider B, a lifting stand column is arranged on the inner side of the sliding sleeve in a sliding manner, a rack structure is arranged on the surface of the lifting stand column, a rotary support is arranged on the outer side of the sliding sleeve, a rotary support is connected with a connecting rod, a turnover connecting rod A penetrates through the inner side face of the rotary support, a square rotary support is arranged on the inner side of the rotary support, and a turnover connecting rod, a turnover connecting rack is arranged on the inner side of the square support, and a square rotary support, a connecting rack is arranged on the lower end of the rotary support, and a connecting rod, and a turnover support, a turnover support is arranged on the connecting rack, and a square connecting rack, a square connecting rack is arranged on the connecting rack connected with a turnover support, the upper end of connecting plate is provided with the lift cylinder, the output of lift cylinder passes the connecting plate and is connected with the connecting rod, the lower extreme of connecting rod is connected with the lifter plate, four edges of lifter plate are provided with four guide arms respectively, the guide arm pass the connecting plate and with the connecting plate between be provided with the guide pin bushing, the lower extreme of lifter plate is provided with the compact heap, the quantity of compact heap is four and equidistant rectangle distribution, be provided with the cutter in the middle of the compact heap, the inboard of frame is connected with mounting platform, the last opening of having seted up of mounting platform and opening inboard are provided with the feed opening, the feed opening lower extreme is connected with guide channel, the last opening of having seted up of mounting platform and opening inboard are provided with the work piece support frame, the lower extreme of work piece support frame is provided with down the feed cylinder, guide channel's lower extreme is provided with the finished product containing box, the feed cylinder below is provided with the mouth of a river collecting box.
2. The automatic pipe fitting gate cutting device according to claim 1, wherein: the lower extreme of compact heap is connected with the silica gel layer, set up the arc recess of upwards sunken in the middle of the silica gel layer, the through-hole has been seted up in the middle of the arc recess.
3. The automatic cutting device for the water gap of the pipe fitting of claim 2, wherein: and vacuum holes are formed in the positions, corresponding to the through holes formed in the silica gel layer, of the compression blocks.
4. The automatic pipe fitting gate cutting device according to claim 3, wherein: the vacuum hole is connected with a vacuum tube, and the vacuum tube penetrates through the lifting plate.
5. The automatic pipe fitting gate cutting device according to claim 4, wherein: the vacuum tube is connected with a vacuum pump.
6. The automatic pipe fitting gate cutting device according to claim 1, wherein: four corners of the mounting platform are connected with the upright posts and the short upright posts of the frame.
7. The automatic cutting device for the water gap of the pipe fitting of claim 1, wherein: the injection molding machine is arranged on the inner side of the frame, penetrates through the inner side of the frame and is located on the right side of the mounting platform.
8. The automatic pipe fitting gate cutting device according to claim 7, wherein: and the discharge end of the upper die of the injection molding machine is arranged on the motion track of the pneumatic clamping jaw.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222557385.4U CN218700953U (en) | 2022-09-27 | 2022-09-27 | Automatic cutting device for pipe fitting water gap |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222557385.4U CN218700953U (en) | 2022-09-27 | 2022-09-27 | Automatic cutting device for pipe fitting water gap |
Publications (1)
Publication Number | Publication Date |
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CN218700953U true CN218700953U (en) | 2023-03-24 |
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ID=85638064
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202222557385.4U Active CN218700953U (en) | 2022-09-27 | 2022-09-27 | Automatic cutting device for pipe fitting water gap |
Country Status (1)
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CN (1) | CN218700953U (en) |
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2022
- 2022-09-27 CN CN202222557385.4U patent/CN218700953U/en active Active
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