CN218517798U - Device for milling piston process tower - Google Patents

Device for milling piston process tower Download PDF

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Publication number
CN218517798U
CN218517798U CN202122612117.3U CN202122612117U CN218517798U CN 218517798 U CN218517798 U CN 218517798U CN 202122612117 U CN202122612117 U CN 202122612117U CN 218517798 U CN218517798 U CN 218517798U
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China
Prior art keywords
fixed
piston
milling
support plate
servo motor
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CN202122612117.3U
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Chinese (zh)
Inventor
徐磊
王朝礼
潘向阳
李军
张文
李振
毛朋朋
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Shandong Zhenting Jinggong Piston Co ltd
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Shandong Zhenting Jinggong Piston Co ltd
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Priority to CN202122612117.3U priority Critical patent/CN218517798U/en
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Abstract

The utility model provides a device for milling piston process tower, which comprises a base, a rotary turntable is fixed above one side of the base, the rotary turntable is driven by a servo motor I, a plurality of piston fixing devices are arranged on the rotary turntable, a bracket is arranged at the other side of the base, a support plate II is fixed on the bracket by a linear guide rail, a support plate I is fixed on the support plate II by a linear guide rail, a motor base is fixed on the support plate I, a motor and a spindle head are fixed on the motor base, a milling cutter disc is fixed on the spindle head, a pressing cylinder is fixed on the support plate II by a linear guide rail, a pressing block is fixed at the lower part of the pressing cylinder by a fixing block, and the support plate I is connected with a servo motor III; the supporting plate II is connected with a servo motor II, a propelling cylinder is arranged on the inner side of the rotary turntable, the propelling direction of the propelling cylinder is opposite to the milling cutter disc, and a material pushing cylinder is arranged on the outer side of the rotary turntable. Greatly reducing the labor intensity of personnel and having high processing efficiency.

Description

Device for milling piston process tower
Technical Field
The utility model belongs to the technical field of the piston processing, more specifically says, in particular to a device for milling piston technology tower.
Background
The piston process tower is a piston top feeding bag, and the feeding bag is a process feeding bag for solving the macroscopic structure of the piston head and removing shrinkage porosity and cavities in the head.
The process tower is used as an auxiliary means in the processing process and is removed before the subsequent fine processing. The mode of getting rid of technology tower in the production at present utilizes the lathe car to fall, and one person operates two lathes, and the people makes a round trip to rush between two lathes, and artifical clamping is got in the manual work, and physical labor intensity is big, and production efficiency is low, and operating personnel need young personnel, just can not do this work by a little age, and personnel are in short supply at present, can not satisfy the production needs in finish machining workshop afterwards.
Disclosure of Invention
In order to solve the technical problem, the utility model provides a device for milling piston technology tower. Greatly reducing the labor intensity of personnel and having high processing efficiency.
The utility model relates to a be used for milling piston technology tower device reaches by following concrete technological means: the automatic milling machine comprises a base, wherein a rotary turntable is fixed above one side of the base and driven by a servo motor I, a plurality of piston fixing devices are arranged on the rotary turntable, a support is arranged on the other side of the base, a support plate II is fixed on the support through a linear guide rail, a support plate I is fixed on the support plate II through a linear guide rail, a motor base is fixed on the support plate I, a motor and a spindle head are fixed on the motor base, a milling cutter head is fixed on the spindle head, a pressing cylinder pressing block is fixed on the support plate I through a linear guide rail, and the pressing cylinder is fixed on the support plate I through a support and is parallel to the linear guide rail for fixing the pressing block; the supporting plate I is connected with a servo motor II; the supporting plate II is connected with a servo motor III, a propelling cylinder is arranged on the inner side of the rotary turntable, the propelling direction of the propelling cylinder is opposite to the milling cutter disc, a material pushing cylinder is arranged on the outer side of the rotary turntable, the propelling cylinder and the material pushing cylinder are connected with a control system through an electromagnetic valve, and the servo motor I, the servo motor II and the servo motor III are connected with the control system.
Furthermore, the piston fixing device comprises a V-shaped block and a baffle, a circle of V-shaped block is fixed on the circumference of the rotary turntable, and the baffle is arranged on the circumference of the rotary turntable on the outer side of the V-shaped block.
Furthermore, a U-shaped opening is formed in the baffle.
Furthermore, the material pushing cylinder is arranged on a semicircular arc close to the milling cutter disc.
Furthermore, a protective cover is arranged on the outer side of the upper support of the base.
Furthermore, protection door is connected through linear slide rail to protection casing one side, and when the protection door fell down, just in time kept off the piston being processed in the protection casing.
Furthermore, the milling cutter disc is provided with a circle of milling cutters, and diamond cutter heads are welded on the milling cutters.
An operator does not move in situ, the piston is directly placed on the V-shaped block, the processed piston directly enters the material frame through the discharge port without running back and forth, the labor intensity of the operator is greatly reduced, the processing efficiency is high, and only 4 seconds are needed for processing one piston; the diamond cutter is durable and the processing surface is neat. Older people can easily do this.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic diagram of the external structure of the present invention.
Fig. 3 is a side view of the present invention.
FIG. 4 is a schematic view of the baffle structure of the present invention;
FIG. 5 is a schematic view of the structure of the press block of the present invention;
fig. 6 is a schematic structural view of the milling cutter of the present invention;
FIG. 7 is a schematic view of the connection between the supporting plate I and the supporting plate II of the present invention;
FIG. 8 is a control diagram of the present invention;
1-base, 2-rotary turntable, 3-V-shaped block, 4-baffle, 5-bracket, 6-support plate II, 7-linear guide rail, 8-support plate I, 9-motor base, 10-motor, 11-main shaft head, 12-milling cutter head, 13-milling cutter, 14-compacting cylinder, 15-pressing block, 16-pushing cylinder, 17-pushing cylinder, 18-protective cover, 19-protective door, 20-linear slide rail, 21-protective door lifting cylinder 22-receiving plate, 23-discharge port, 24-piston, 25-control system, 26-pushing cylinder bracket, 27-servo motor I, 28-servo motor II, 29-servo motor III, 30-fixed block.
Detailed Description
The following describes embodiments of the present invention in further detail with reference to the accompanying drawings and examples. The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention.
Example (b):
the utility model provides a device for milling piston technology tower, includes base 1, 1 one side of base is fixed with rotation carousel 2, rotation carousel 2 passes through servo motor I27 drive, be provided with a plurality of piston fixing device on the rotation carousel 2, piston fixing device includes V type piece 3, baffle 4, fixed round V type piece 3 on the rotation carousel circumference, set up baffle 4 on the 3 outside rotation carousel circumferences of V type piece, be provided with U type opening on the baffle 4.
The 1 opposite side of base is provided with support 5, be fixed with layer board II6 through linear guide 7 on the support 5, be fixed with layer board I8 through linear guide 7 on the layer board II6, be fixed with motor cabinet 9 on the layer board I8, be fixed with motor 10 and spindle head 11 on the motor cabinet 9, be fixed with milling cutter dish 12 on the spindle head, milling cutter dish 12 is equipped with round milling cutter 13, it has diamond segments to weld on milling cutter 13. The supporting plate I6 is also fixedly provided with a pressing cylinder pressing block 15 through a linear guide rail 7, and the pressing cylinder 14 is fixed on the supporting plate I8 and is parallel to the linear guide rail for fixing the pressing block 15; the pressing block 15 is fixed at the end part of the pressing cylinder 14 through a fixing block 30, and the supporting plate I8 is connected with a servo motor II28. The supporting plate II6 is connected with a servo motor III29, a propelling cylinder 16 is arranged on the inner side of the rotary turntable 2, the propelling direction of the propelling cylinder 16 is right opposite to the milling cutter disc 12, a pushing cylinder 17 is arranged on the outer side of the rotary turntable 2, the pushing cylinder 17 is arranged on a semicircular arc close to the milling cutter disc 12, a material receiving disc 22 is arranged at the stroke end of the pushing cylinder 17, and the material receiving disc 22 is connected with a discharge hole 23 on the side portion of the base 1. The outer side of the upper bracket 5 of the base 1 is provided with a protective cover 18. One side of the protective cover 18 is connected with a protective door 19 through a linear sliding rail 20, when the protective door 19 falls down, a piston being processed is just blocked in the protective cover 19, and the protective door 19 is controlled to lift through a protective door lifting cylinder 21.
The pushing cylinder 17 and the pushing cylinder 26 are connected with the control system 25 through electromagnetic valves, and the servo motor I27, the servo motor II28 and the servo motor III29 are connected with the control system 25.
Use the utility model discloses the time, earlier with on the piston fixing device of rotation carousel fill up the piston (place from pushing away material cylinder II), the piston technology tower is placed on V type piece towards the rotation carousel outside, start each servo motor and motor, servo motor I drive rotation carousel begins to rotate, it impels the cylinder forward, carry out further fixed to the piston of milling cutter dish department, impel the cylinder to withstand the piston inner chamber, make the piston top hug closely the baffle, the piston technology tower stretches out through the U type opening on the baffle, at this moment, layer board II descends under servo motor III's drive, it descends down to drive the layer board I who compresses tightly the cylinder and be gone up, the spindle head on the layer board I descends thereupon, it withstands the piston to compress tightly V type briquetting on the cylinder, further fixed to the piston, layer board I continues down, the layer board I begins to rotate under the drive of motor is driven, it is rotatory to drive the milling cutter dish on it, milling cutter mills the piston technology tower, then servo motor III drives layer board II and goes up, each part goes up thereupon. In operation, if the milling cutter disc is at a distance from the piston process tower, the supporting plate I can be controlled to move back and forth relative to the piston by controlling the servo motor II, and the position of the supporting plate I is adjusted, so that the milling cutter disc is flush with the outer side of the baffle when falling. After the machining is finished, the rotary turntable rotates under the control of the servo motor I after the pressing block is separated from the piston by a certain distance, the next piston rotates to the milling cutter disc, and when the machined piston passes through the material pushing cylinder, the material pushing cylinder pushes the machined piston into the material receiving disc, slides out of the material outlet and is collected.

Claims (7)

1. The utility model provides a device for milling piston technology tower, includes the base, its characterized in that: a rotary turntable is fixed above one side of the base and driven by a servo motor I, a plurality of piston fixing devices are arranged on the rotary turntable, a support is arranged on the other side of the base, a support plate II is fixed on the support through a linear guide rail, a support plate I is fixed on the support plate II through a linear guide rail, a motor base is fixed on the support plate I, a motor and a spindle head are fixed on the motor base, a milling cutter head is fixed on the spindle head, a pressing cylinder pressing block is fixed on the support plate I through a linear guide rail, and the pressing cylinder is fixed on the support plate I through a support and is parallel to the linear guide rail for fixing the pressing block; the supporting plate I is connected with a servo motor II; the supporting plate II is connected with a servo motor III, a propelling cylinder is arranged on the inner side of the rotary turntable, the propelling direction of the propelling cylinder is opposite to the milling cutter disc, a material pushing cylinder is arranged on the outer side of the rotary turntable, the propelling cylinder and the material pushing cylinder are connected with a control system through an electromagnetic valve, and the servo motor I, the servo motor II and the servo motor III are connected with the control system.
2. The apparatus for milling a piston process tower of claim 1, wherein: the piston fixing device comprises a V-shaped block and a baffle, a circle of V-shaped block is fixed on the circumference of the rotary turntable, and the baffle is arranged on the circumference of the rotary turntable on the outer side of the V-shaped block.
3. The apparatus for milling a piston process tower of claim 2, wherein: the baffle is provided with a U-shaped opening.
4. The apparatus for milling a piston process tower of claim 1, wherein: the material pushing cylinder is arranged on a semicircular arc close to the milling cutter disc.
5. The apparatus for milling a piston process tower of claim 1, wherein: the base upper bracket outside is provided with the protection casing.
6. The apparatus for milling a piston process tower of claim 5, wherein: one side of the protective cover is connected with the protective door through the linear sliding rail, and when the protective door falls down, the piston which is being processed is just blocked in the protective cover.
7. The apparatus for milling a piston process tower of claim 1, wherein: the milling cutter head is provided with a circle of milling cutter, and diamond cutter heads are welded on the milling cutter.
CN202122612117.3U 2021-10-28 2021-10-28 Device for milling piston process tower Active CN218517798U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122612117.3U CN218517798U (en) 2021-10-28 2021-10-28 Device for milling piston process tower

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122612117.3U CN218517798U (en) 2021-10-28 2021-10-28 Device for milling piston process tower

Publications (1)

Publication Number Publication Date
CN218517798U true CN218517798U (en) 2023-02-24

Family

ID=85237704

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122612117.3U Active CN218517798U (en) 2021-10-28 2021-10-28 Device for milling piston process tower

Country Status (1)

Country Link
CN (1) CN218517798U (en)

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