CN212145173U - Automatic water nozzle machining structure - Google Patents

Automatic water nozzle machining structure Download PDF

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Publication number
CN212145173U
CN212145173U CN202020603182.2U CN202020603182U CN212145173U CN 212145173 U CN212145173 U CN 212145173U CN 202020603182 U CN202020603182 U CN 202020603182U CN 212145173 U CN212145173 U CN 212145173U
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fixed
sliding
turntable
oil cylinder
block
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CN202020603182.2U
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Chinese (zh)
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李飞
冯仁军
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Hangzhou Panasia Sanitary Ware Co Ltd
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Hangzhou Panasia Sanitary Ware Co Ltd
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Abstract

The utility model discloses a water injection well choke automatic processing structure aims at providing one kind and only needs to carry out a clamping, and the location is accurate, water injection well choke automatic processing structure that production efficiency is high. The automatic milling machine comprises a base, wherein a turntable is connected to the base in a rotating mode, a plurality of clamping assemblies are uniformly distributed at the edge of the upper end face of the turntable, fixed plates are arranged on two sides of the turntable, a rough milling assembly is mounted on one fixed plate, a finish milling assembly is mounted on the other fixed plate, a fixed column is fixed on the base and is arranged on the side face of the turntable, and a flanging assembly is fixed at the top of the fixed column. The utility model has the advantages that: the clamping is carried out once, so that inaccurate positioning of multiple times of clamping is avoided, and middle transfer, collision, clamping and scratching are reduced; the manufacturing cost is obviously reduced, and the production efficiency is obviously improved; and each oil cylinder is controlled by the oil separator to work, so that the operation is simple and convenient.

Description

Automatic water nozzle machining structure
Technical Field
The utility model belongs to the technical field of the relevant technique of tap and specifically relates to indicate a water injection well choke automatic processing structure.
Background
The bathroom is a space and articles for daily public health activities such as defecation, bathing and washing of residents, and various bathroom equipment such as water nozzles are arranged in the bathroom. The traditional water nozzle processing always adopts a processing mode of dividing a plurality of machines into working procedures, and has the defects of more occupied equipment, more occupied manpower, more occupied factory area, more transfer, bruising, friction and the like between the working procedures, so that the manufacturing cost is high and the efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model relates to an it is many to overcome among the prior art many times the clamping and lead to transporting between the process to bump the flower of wiping, and the location is inaccurate, and production efficiency is low not enough, provides one kind and only needs to carry out a clamping, fixes a position accurately, the water injection well choke automatic processing structure that production efficiency is high.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a water injection well choke automatic processing structure, includes the base, it is connected with the carousel to rotate on the base, the edge evenly distributed of carousel up end has a plurality of clamping components, clamping components and carousel fixed connection, the both sides of carousel all are equipped with the fixed plate, the fixed plate is fixed on the base, installs the rough milling subassembly on one of them fixed plate, installs the finish milling subassembly on another fixed plate, the rough milling subassembly is located the top of carousel both sides edge respectively with the finish milling subassembly, be fixed with the fixed column on the base, the side of carousel is arranged in to the fixed column, the top of fixed column is fixed with the turn-ups subassembly, the top of carousel edge is arranged in to the turn-ups subassembly.
The base is rotatably connected with a turntable, a plurality of clamping assemblies are uniformly distributed at the edge of the upper end surface of the turntable, the clamping assemblies are fixedly connected with the turntable, fixed plates are arranged on two sides of the turntable and fixed on the base, a rough milling assembly is mounted on one fixed plate, a finish milling assembly is mounted on the other fixed plate, the rough milling assembly and the finish milling assembly are respectively positioned above the edges of two sides of the turntable, a fixed column is fixed on the base and arranged on the side surface of the turntable, a flanging assembly is fixed at the top of the fixed column and arranged above the edge of the turntable, the clamping assemblies are used for clamping workpieces, then the turntable rotates, the clamped workpieces are sequentially rotated to the positions below the rough milling assembly, the flanging assembly and the finish milling assembly to respectively perform rough milling, flanging and finish milling, and finally blanking are completed by integrating three procedures of rough milling, flanging and finish milling on one machine, only need alone operation, a clamping has avoided the inaccurate problem in location that many times clamping brought, has reduced middle transportation and has hindered, press from both sides and hinder and wipe the flower problem, occupies the factory building area and reduces more than half, has reduced operating personnel, and manufacturing cost is showing and is reducing, and production efficiency obviously improves.
Preferably, the clamping assembly comprises a fixed block, the fixed block is fixed at the edge of the upper end face of the rotary table, a fixed block chute is arranged on the outer side face of the fixed block, two sliding clamping plates are connected in the fixed block chute in a sliding manner, a first oil cylinder is fixed at both ends in the fixed block chute, the two sliding clamping plates are respectively fixed on the first oil cylinders, grippers are arranged on the side faces of the two sliding clamping plates, a rotating motor is fixed in each sliding clamping plate, the grippers are mounted on the rotating motor and are rotatably connected with the sliding clamping plates, a button is mounted on the side face of the fixed block and is connected with the first oil cylinder, the button controls the first oil cylinder to act and further controls the sliding, the workpiece is clamped between the two grippers, and the rotation of the grippers and the sliding clamping plate enables the workpiece to be subjected to all-dimensional rough milling, flanging and finish milling.
Preferably, a fixed plate chute is arranged on the side surface of the fixed plate, a sliding block is connected to the fixed plate chute in a sliding manner, a second oil cylinder is fixed in the fixed plate chute, the sliding block is fixedly connected with the second oil cylinder, the rough milling assembly comprises a rough milling power head which is fixed on the sliding block of one of the fixed plates, a rough milling cutter is installed at the bottom of the rough milling power head, the finish milling assembly comprises a finish milling power head which is fixed on the sliding block of the other fixed plate, a finish milling cutter is installed at the bottom of the finish milling power head, water outlet nozzles are installed on the side surface of the fixed plate, the two water outlet nozzles are respectively arranged under the rough milling assembly and the finish milling assembly, the water outlet nozzles and the clamping assembly are arranged on the same horizontal plane, the water outlet nozzles face the edge of the rotary table, when a workpiece rotates to the lower side of the rough milling assembly, the rough milling cutter is driven by, when the rough milling cutter works, the water outlet spray nozzles on the side face regularly spray water to the machining position to cool down and prevent machining sparks from being generated, when a workpiece rotates to the position below the finish milling assembly, the finish milling power head drives the finish milling cutter to work, finish milling machining is conducted on the workpiece back and forth under the action of the oil cylinder II, when the finish milling cutter works, the water outlet spray nozzles on the side face regularly spray water to the machining position to cool down and prevent the machining sparks from being generated.
Preferably, the flanging assembly comprises a flanging oil cylinder, the flanging oil cylinder is fixedly connected with the fixed column, a flanging knife block is installed at the bottom of the flanging oil cylinder, a third oil cylinder is fixed at the bottom of the fixed column, a force bearing sliding plate is fixed on the third oil cylinder and is arranged between the fixed column and the rotary table, a force bearing seat is fixed on the force bearing sliding plate, a force bearing block is fixed on the base and is arranged between the force bearing sliding plate and the rotary table, the force bearing block is located right below the flanging assembly, a force bearing groove matched with the force bearing seat is formed in the force bearing block, the force bearing seat is used for bearing the force applied by the flanging knife block to a workpiece during flanging, and the force bearing seat can be flanged only by being pushed into the force bearing groove of the force bearing block, wherein the third oil cylinder controls the force bearing sliding plate to move so as to push or push the force bearing seat on the force bearing sliding plate into.
Preferably, an oil separator is fixed in the middle of the upper end face of the rotary table, the first oil cylinder, the second oil cylinder, the third oil cylinder and the flanging oil cylinder are all connected with the oil separator, a water tank is arranged in the base and is connected with the water outlet spray head, pressure oil in the oil cylinders is distributed through the oil separator to control the oil cylinders to work, and cooling water is filled in the water tank and used for cooling the workpiece.
The utility model has the advantages that: three procedures of rough milling, flanging and finish milling are integrated on one machine, only one person is needed to operate, one-time clamping is adopted, the problem of inaccurate positioning caused by multiple times of clamping is avoided, and the problems of middle transfer, collision, clamping and scratching are reduced; the occupied plant area is small, the number of operators is reduced, the manufacturing cost is obviously reduced, and the production efficiency is obviously improved; the added water outlet spray head can spray water for cooling when a workpiece is machined, so that sparks are prevented from being generated; the pressure oil in the oil cylinder is distributed through the oil distributor, and each oil cylinder is controlled to work, so that the operation is simple and convenient.
Drawings
Fig. 1 is a front view of the present invention;
fig. 2 is a top view of the present invention;
fig. 3 is a left side view of the present invention;
fig. 4 is an enlarged view at a in fig. 1.
In the figure: 1. the milling device comprises a rough milling assembly, a rough milling power head, a rough milling cutter, a fixing column, a flanging assembly, a fine milling power head, a fine milling cutter, a rotary table, a base, a clamping assembly, a fixing plate, a water outlet spray head, a fixing plate sliding groove, a sliding block, an oil distributor, a flanging oil cylinder, a flanging cutter block, a bearing groove, a bearing sliding plate, a cylinder III, a bearing seat, a fixing block 25, a fixing block sliding groove, a button, a gripper 27 and a sliding clamp plate, wherein the rough milling assembly comprises a rough milling assembly, a rough milling cutter.
Detailed Description
The invention is further described with reference to the accompanying drawings and the detailed description.
In the embodiment shown in fig. 1 and 2, an automatic water nozzle processing structure comprises a base 10, wherein a turntable 9 is rotatably connected to the base 10, a plurality of clamping assemblies 11 are uniformly distributed at the edge of the upper end surface of the turntable 9, and the clamping assemblies 11 are fixedly connected with the turntable 9.
As shown in fig. 1 and 2, fixing plates 12 are arranged on two sides of a turntable 9, the fixing plates 12 are fixed on a base 10, a rough milling assembly 1 is mounted on one fixing plate 12, a finish milling assembly 6 is mounted on the other fixing plate 12, the rough milling assembly 1 and the finish milling assembly 6 are respectively located above edges of two sides of the turntable 9, fixing columns 4 are fixed on the base 10, the fixing columns 4 are arranged on the side face of the turntable 9, flanging assemblies 5 are fixed at the tops of the fixing columns 4, and the flanging assemblies 5 are arranged above edges of the turntable 9.
As shown in fig. 1 and 4, the clamping assembly 11 includes a fixing block 24, the fixing block 24 is fixed at the edge of the upper end surface of the turntable 9, a fixing block sliding groove 25 is formed in the outer side surface of the fixing block 24, two sliding clamping plates 28 are slidably connected in the fixing block sliding groove 25, first oil cylinders are fixed at two ends of the fixing block sliding groove 25, the two sliding clamping plates 28 are respectively fixed on the first oil cylinders, grippers 27 are arranged on the side surfaces of the two sliding clamping plates 28, a rotating motor is fixed inside the sliding clamping plates 28, the grippers 27 are installed on the rotating motor and rotatably connected with the sliding clamping plates 28, buttons 26 are installed on the side surfaces of the fixing block 24, and the buttons 26 are connected.
As shown in fig. 1 and 2, a fixing plate sliding groove 14 is formed in a side surface of the fixing plate 12, a sliding block 15 is connected to the fixing plate sliding groove 14 in a sliding manner, a second oil cylinder is fixed in the fixing plate sliding groove 14, the sliding block 15 is fixedly connected with the second oil cylinder, the rough milling assembly 1 comprises a rough milling power head 2, the rough milling power head 2 is fixed to the sliding block 15 of one of the fixing plates 12, and a rough milling cutter 3 is installed at the bottom of the rough milling power head 2.
As shown in fig. 1 and 2, the finish milling assembly 6 includes a finish milling power head 7, the finish milling power head 7 is fixed on a slide block 15 of another fixing plate 12, a finish milling cutter 8 is installed at the bottom of the finish milling power head 7, a water outlet nozzle 13 is installed on a side surface of the fixing plate 12, the two water outlet nozzles 13 are respectively arranged under the finish milling assembly 6 and the rough milling assembly 1, the water outlet nozzle 13 and the clamping assembly 11 are arranged on the same horizontal plane, and the water outlet nozzle 13 faces the edge of the rotary table 9.
As shown in fig. 3, the flanging assembly 5 includes a flanging oil cylinder 17, the flanging oil cylinder 17 is fixedly connected with a fixed column 4, a flanging knife block 18 is installed at the bottom of the flanging oil cylinder 17, an oil cylinder three 22 is fixed at the bottom of the fixed column 4, a force bearing slide plate 21 is fixed on the oil cylinder three 22, the force bearing slide plate 21 is arranged between the fixed column 4 and the turntable 9, a force bearing seat 23 is fixed on the force bearing slide plate 21, a force bearing block 19 is fixed on the base 10, the force bearing block 19 is arranged between the force bearing slide plate 21 and the turntable 9, the force bearing block 19 is positioned under the flanging assembly 5, and a force bearing groove 20 matched with the force bearing seat 23 is arranged on the force bearing block 19.
As shown in fig. 1, 2 and 3, an oil separator 16 is fixed at the middle position of the upper end surface of the rotary table 9, the first oil cylinder, the second oil cylinder, the third oil cylinder 22 and the flanging oil cylinder 17 are all connected with the oil separator 16, a water tank is arranged in the base 10, and the water tank is connected with a water outlet spray head 13.
During processing, the control console is started, buttons corresponding to the types of the water nozzles to be processed, such as a round water nozzle button, a flat water nozzle button and the like, are selected on the control console, and feed data of the preprocessed water nozzles are transmitted to the rough milling power head 2, the flanging oil cylinder 17 and the finish milling power head 7.
The processing steps of the flat water nozzle are as follows:
firstly, a workpiece is manually placed at a feeding station of the device, a button 26 is pressed, sliding clamping plates 28 are close to each other under the action of a first oil cylinder, the workpiece is clamped by using a gripper 27 on the two sliding clamping plates 28, and then the workpiece is turned to the lower part of the rough milling assembly 1.
Secondly, after the workpiece is rotated to the position below the rough milling assembly 1, the rough milling power head 2 drives the rough milling cutter 3 to work, and the workpiece is fed for processing; meanwhile, the second oil cylinder works to drive the rough milling power head 2 to move back and forth; meanwhile, the rotary motor works to enable the gripper 27 to rotate to drive the workpiece to rotate, so that the workpiece is machined in an all-dimensional mode by the rough milling cutter 3, most of blank allowance is removed, and the workpiece is milled into the outline shape of the flat water nozzle preliminarily. And the water outlet spray nozzles 13 on the side face regularly spray water to the machining position for cooling while roughly milling.
And thirdly, after the rough milling of the workpiece is finished, the workpiece is turned to the position below the flanging component 5, then the third oil cylinder 22 works to drive the bearing sliding plate 21 to move, the bearing seat 23 on the bearing sliding plate 21 is pushed into the bearing groove 20, the workpiece is placed on the bearing seat 23, then the flanging oil cylinder 17 drives the flanging knife block 18 to work to flange the workpiece on the bearing seat 23, and the curved surface edge of the flat water nozzle is formed.
Turning to the position below the finish milling assembly 6 after flanging of the workpiece is completed, and driving a finish milling cutter 8 to work by a finish milling power head 7 to feed and process the workpiece; meanwhile, the second oil cylinder works to drive the finish milling power head 7 to move back and forth; at the same time, the rotation motor works to rotate the gripper 27 and drive the workpiece to rotate. The finish milling cutter 8 is ensured to process the workpiece in all directions, and the final size control and the surface finish are finished, so that the flat water nozzle is finally formed. And the water outlet spray nozzles 13 on the side face regularly spray water to the machining position for cooling while finish milling.
Fifthly, after the workpiece is milled finely, the workpiece is transferred to a blanking station, the button 26 is pressed down, the sliding clamping plates 28 are separated from each other under the action of the first oil cylinder, and the processed flat water nozzle is taken down.

Claims (5)

1. An automatic water nozzle machining structure is characterized by comprising a base (10), wherein a turntable (9) is rotatably connected to the base (10), a plurality of clamping assemblies (11) are uniformly distributed at the edge of the upper end face of the turntable (9), the clamping assemblies (11) are fixedly connected with the turntable (9), fixing plates (12) are arranged on two sides of the turntable (9), the fixing plates (12) are fixed on the base (10), one fixing plate (12) is provided with a rough milling assembly (1), the other fixing plate (12) is provided with a finish milling assembly (6), the rough milling assembly (1) and the finish milling assembly (6) are respectively positioned above the edges of two sides of the turntable (9), a fixing column (4) is fixed on the base (10), the fixing column (4) is arranged on the side face of the turntable (9), and a flanging assembly (5) is fixed at the top of the fixing column (4), the flanging assembly (5) is arranged above the edge of the rotary disc (9).
2. An automatic processing structure for water tap according to claim 1 characterized in that said clamping assembly (11) comprises a fixing block (24), the fixed block (24) is fixed at the edge of the upper end surface of the turntable (9), a fixed block sliding groove (25) is arranged on the outer side surface of the fixed block (24), two sliding clamping plates (28) are connected in the fixed block sliding groove (25) in a sliding manner, oil cylinders I are fixed at two ends in the fixed block sliding groove (25), the two sliding clamping plates (28) are respectively fixed on the two oil cylinders I, the side faces of the two sliding clamping plates (28) are respectively provided with a gripper (27), a rotating motor is fixed in the sliding clamping plate (28), the hand grip (27) is arranged on the rotating motor and is rotationally connected with the sliding clamping plate (28), and a button (26) is arranged on the side surface of the fixed block (24), and the button (26) is connected with the first oil cylinder.
3. The automatic water nozzle machining structure as claimed in claim 1, wherein a fixing plate sliding groove (14) is formed in the side face of the fixing plate (12), a sliding block (15) is connected to the fixing plate sliding groove (14) in a sliding mode, a second oil cylinder is fixed in the fixing plate sliding groove (14), the sliding block (15) is fixedly connected with the second oil cylinder, the rough milling assembly (1) comprises a rough milling power head (2), the rough milling power head (2) is fixed to the sliding block (15) of one fixing plate (12), a rough milling cutter (3) is installed at the bottom of the rough milling power head (2), the fine milling assembly (6) comprises a fine milling power head (7), the fine milling power head (7) is fixed to the sliding block (15) of the other fixing plate (12), a fine milling cutter (8) is installed at the bottom of the fine milling power head (7), and a water outlet nozzle (13) is installed on the side face of the fixing plate (, the two water outlet spray heads (13) are respectively arranged under the finish milling assembly (6) and the rough milling assembly (1), the water outlet spray heads (13) and the clamping assembly (11) are arranged on the same horizontal plane, and the water outlet spray heads (13) face the edge of the rotary table (9).
4. An automatic processing structure of water nozzle according to claim 1, characterized in that said flanging component (5) comprises a flanging cylinder (17), the flanging oil cylinder (17) is fixedly connected with the fixing column (4), the bottom of the flanging oil cylinder (17) is provided with a flanging knife block (18), a third oil cylinder (22) is fixed at the bottom of the fixed column (4), a bearing sliding plate (21) is fixed on the third oil cylinder (22), the bearing sliding plate (21) is arranged between the fixed column (4) and the turntable (9), a bearing seat (23) is fixed on the bearing sliding plate (21), a bearing block (19) is fixed on the base (10), the bearing block (19) is arranged between the bearing slide plate (21) and the turntable (9), the bearing block (19) is positioned under the flanging component (5), and a bearing groove (20) matched with the bearing seat (23) is arranged on the bearing block (19).
5. The automatic water nozzle machining structure as claimed in claim 2, 3 or 4, wherein an oil separator (16) is fixed at the middle position of the upper end face of the rotary table (9), the first oil cylinder, the second oil cylinder, the third oil cylinder (22) and the flanging oil cylinder (17) are all connected with the oil separator (16), a water tank is arranged in the base (10), and the water tank is connected with the water outlet nozzle (13).
CN202020603182.2U 2020-04-21 2020-04-21 Automatic water nozzle machining structure Active CN212145173U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020603182.2U CN212145173U (en) 2020-04-21 2020-04-21 Automatic water nozzle machining structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020603182.2U CN212145173U (en) 2020-04-21 2020-04-21 Automatic water nozzle machining structure

Publications (1)

Publication Number Publication Date
CN212145173U true CN212145173U (en) 2020-12-15

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ID=73722685

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020603182.2U Active CN212145173U (en) 2020-04-21 2020-04-21 Automatic water nozzle machining structure

Country Status (1)

Country Link
CN (1) CN212145173U (en)

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