CN215999917U - Window regulator foundry goods grinding device - Google Patents

Window regulator foundry goods grinding device Download PDF

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Publication number
CN215999917U
CN215999917U CN202120551592.1U CN202120551592U CN215999917U CN 215999917 U CN215999917 U CN 215999917U CN 202120551592 U CN202120551592 U CN 202120551592U CN 215999917 U CN215999917 U CN 215999917U
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China
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rotating shaft
plate
belt pulley
belt
rotating
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CN202120551592.1U
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Chinese (zh)
Inventor
赵林珍
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Jiangxi Dellsun Auto Motor Co ltd
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Jiangxi Dellsun Auto Motor Co ltd
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Priority to CN202120551592.1U priority Critical patent/CN215999917U/en
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Abstract

The utility model relates to a polishing device, in particular to a polishing device for a vehicle window lifter casting. The utility model provides a polishing device for a casting of a vehicle window lifter, which is simple in operation, can automatically polish and can clamp the casting. The utility model provides a window regulator casting polishing device, which comprises: the support legs are symmetrically provided with first connecting rods between the two support legs; the two first connecting rods are symmetrically provided with first supporting plates; the first rotating shaft is rotatably arranged between one sides of the two first supporting plates; and the second rotating shaft is arranged between the other sides of the first supporting plates in a rotating manner. Rotate through actuating mechanism and drive placement mechanism and move left and contact with abrasive paper, actuating mechanism rotates and drives the second pivot and rotate, and the cylinder rotates thereupon, and the cylinder rotates and drives abrasive paper and rotate and polish to door window riser foundry goods.

Description

Window regulator foundry goods grinding device
Technical Field
The utility model relates to a polishing device, in particular to a polishing device for a vehicle window lifter casting.
Background
The casting part is made by pouring liquid metal into the cavity of casting mould with shape and size corresponding to the part, cooling and solidifying to obtain blank or part, which needs to guarantee the working performance and mechanical performance requirement, considers the casting process and alloy casting performance requirement to the casting structure, whether the casting structure design is reasonable or not, has great influence on the quality, productivity and cost of the casting, and can produce parts with complex shape, especially blanks with complex inner cavity, such as heating etc.
At present, the surface of a car window lifter casting is not smooth enough, polishing treatment is needed, a common polishing mode is that a polishing wheel is manually held to polish, the efficiency of the polishing mode is low, polishing needs to be carried out one by one, the operation is complex, and the production efficiency is influenced.
Therefore, it is necessary to design a window regulator casting polishing device which is simple in operation, can automatically polish and can clamp a casting, so as to solve the above problems.
SUMMERY OF THE UTILITY MODEL
In order to overcome the mode of polishing efficiency that polishes through artifical handheld wheel of polishing lower, and need polish one by one, the operation is complicated, influences production efficiency's shortcoming, and the technical problem is: the window regulator casting polishing device is simple in operation, can polish automatically, and can clamp castings.
The technical scheme of the utility model is as follows: a window regulator casting grinding device comprising: the support legs are symmetrically provided with first connecting rods between the two support legs; the two first connecting rods are symmetrically provided with first supporting plates; the first rotating shaft is rotatably arranged between one sides of the two first supporting plates; the second rotating shaft is rotatably arranged between the other sides of the two first supporting plates; the third rotating shaft is rotatably arranged between the upper parts of the two first supporting plates; the first belt pulley assemblies are arranged at two ends of the first rotating shaft, two ends of the second rotating shaft and two ends of the third rotating shaft respectively and consist of six belt pulleys and two flat belts; the first rotating shaft, the second rotating shaft and the third rotating shaft are provided with rollers; sand paper is arranged among the three rollers; the driving mechanism is arranged on the support leg; the placing mechanism is arranged on the driving mechanism.
Further, the drive mechanism includes: a second connecting plate is arranged between one sides of the two support legs; a third connecting plate is arranged between the other sides of the two support legs; the clamping seat is arranged at the bottom of the first connecting rod on one side; a second support plate is arranged between the second connecting plate and the middle part of the third connecting plate; the rotating motor is arranged on the clamping seat, and an output shaft of the rotating motor penetrates through the second connecting plate; the supporting legs on one side are provided with a fourth rotating shaft in a rotating mode; the bevel gear component is arranged between an output shaft of the rotating motor and one end of the fourth rotating shaft and consists of two bevel gears, one bevel gear is arranged on the output shaft of the rotating motor, the other bevel gear is arranged at one end of the fourth rotating shaft, and the two bevel gears are meshed with each other; the second belt pulley assembly is arranged between the output shaft of the rotating motor and one end of a second rotating shaft and consists of two belt pulleys and a flat belt, one belt pulley is arranged on the output shaft of the rotating motor, the other belt pulley is arranged at one end of the second rotating shaft, and the flat belt is arranged between the two belt pulleys; the two ends of the two first connecting rods are respectively provided with a first supporting column; the first sliding blocks are arranged between the tops of the two first supporting columns on the same side; the bidirectional screw rod is arranged between the two first sliding blocks, and one end of the bidirectional screw rod penetrates through the first sliding block on one side; and a third belt pulley assembly is arranged between one end of the bidirectional screw rod and the other end of the fourth rotating shaft, the third belt pulley assembly consists of two belt pulleys and a flat belt, one end of the bidirectional screw rod is provided with one belt pulley, the other end of the fourth rotating shaft is provided with another belt pulley, and the flat belt is arranged between the two belt pulleys.
Further, the placement mechanism includes: the lead rods are symmetrically arranged between the two first sliding blocks; the two second sliding blocks are symmetrically arranged between the two lead rods in a sliding manner and are connected with the two-way screw rod in a sliding manner; the tops of the two second sliding blocks are symmetrically provided with second supporting columns; the fixture blocks are arranged between the two second support columns on the same side; the balance plate is arranged between the two clamping blocks; the balance plate is provided with a placing plate; the inner hexagon screws are symmetrically arranged between the placing plate and the balance plate.
Further, the method also comprises the following steps: the top of the second sliding block on one side is provided with a first fixed rod; the end part of the first fixing rod is provided with a sliding groove plate; the first guide rod is arranged in the chute plate; the third sliding block is arranged on the first guide rod in a sliding mode; the first spring is arranged between one side of the chute plate and one side of the third sliding block; a second fixing rod is arranged on one side of the third sliding block; the end part of the second fixing rod is provided with an iron ball; the side wall of the first sliding block at the other side is provided with a first connecting block; the first connecting block is provided with a first fixing shaft; the first fixing shaft is provided with a fixing plate; the two ends of the fixing plate are provided with second fixing shafts; and the iron sheet is arranged between the two second fixing shafts, and the iron ball is matched with the iron sheet.
Further, the method also comprises the following steps: the two sides of the balance plate are symmetrically provided with second fixed blocks; the four second fixed blocks are provided with third fixed blocks; the four third fixing blocks are all provided with second guide rods in a sliding mode, and the four second guide rods are connected with the two sides of the placing plate; and the second springs are arranged between one side of the four third fixed blocks and the two sides of the placing plate.
Further, the rotating motor is a servo motor.
The utility model has the beneficial effects that: 1. rotate through actuating mechanism and drive placement mechanism and move left and contact with abrasive paper, actuating mechanism rotates and drives the second pivot and rotate, and the cylinder rotates thereupon, and the cylinder rotates and drives abrasive paper and rotate and polish to door window riser foundry goods.
2. The cylinder rotates and can drive abrasive paper and rotate, realizes that the door window riser foundry goods is automatic to be polished.
3. A plurality of car window lifter castings can be placed on the placing plate, and polishing is carried out simultaneously.
4. The iron ball and the iron sheet are contacted to make a sound, so that the worker can be reminded that the car window lifter casting is polished.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the driving mechanism of the present invention.
Fig. 3 is a schematic perspective view of the control mechanism of the present invention.
FIG. 4 is a schematic view of a first partial body structure according to the present invention.
FIG. 5 is a schematic view of a second partial body structure according to the present invention.
Reference numerals: 1_ leg, 2_ first connecting rod, 3_ first supporting plate, 4_ first rotating shaft, 5_ second rotating shaft, 6_ third rotating shaft, 7_ first pulley assembly, 71_ drum, 72_ sandpaper, 8_ driving mechanism, 801_ second connecting plate, 802_ third connecting plate, 803_ cartridge, 804_ second supporting plate, 805_ rotating motor, 806_ fourth rotating shaft, 807_ bevel gear assembly, 808_ second pulley assembly, 809_ first supporting column, 810_ first slider, 811_ bidirectional screw, 812_ third pulley assembly, 9_ placing mechanism, 901_ lead rod, 902_ second slider, 903_ second supporting column, 904_ cartridge, 905_ balance plate, 906_ placing plate, 907_ hexagon socket screw, 10_ first fixing rod, 11_ chute plate, 12_ first guiding rod, 13_ first spring, 14_ third slider, 15_ second fixing rod, 16_ iron ball, 17-first connecting block, 18_ first fixing shaft, 19_ fixing plate, 20_ second fixing shaft, 21_ iron sheet, 22_ second fixing block, 23_ third fixing block, 24_ second guide rod, and 25_ second spring.
Detailed Description
The utility model is further described with reference to the following figures and detailed description.
Example 1
As shown in figure 1, a polishing device for a casting of a window regulator comprises support legs 1, first connecting rods 2, first supporting plates 3, first rotating shafts 4, second rotating shafts 5, third rotating shafts 6, first belt pulley assemblies 7, a roller 71, abrasive paper 72, a driving mechanism 8 and a placing mechanism 9, wherein the first connecting rods 2 are symmetrically arranged between the two support legs 1, the first supporting plates 3 are symmetrically arranged on the two first connecting rods 2, the first rotating shafts 4 are rotatably arranged between the left sides of the two first supporting plates 3, the second rotating shafts 5 are rotatably arranged between the right sides of the two first supporting plates 3, the third rotating shafts 6 are rotatably arranged between the upper parts of the two first supporting plates 3, the first belt pulley assemblies 7 are respectively arranged at the front and rear ends of the first rotating shafts 4 and the front and rear ends of the second rotating shafts 5 as well as at the front and rear ends of the third rotating shafts 6, and the first belt pulley assemblies 7 are composed of six belt pulleys and two flat belts, both ends are provided with a belt pulley respectively around first pivot 4, and both ends are provided with a belt pulley respectively around the second pivot 5, and the rear end is provided with a belt pulley respectively before the third pivot 6, all is provided with flat belt between the belt pulley of homonymy, be provided with cylinder 71, it is three on first pivot 4 and second pivot 5 and the third pivot 6 be provided with abrasive paper 72 between the cylinder 71, be provided with actuating mechanism 8 on the stabilizer blade 1, the last mechanism 9 of placing that is provided with of actuating mechanism 8.
When the window regulator casting needs to be polished, a worker places the window regulator casting on the placement mechanism 9, then the placement mechanism 9 is driven to move leftwards to be in contact with the abrasive paper 72 through the rotation of the driving mechanism 8, the driving mechanism 8 drives the second rotating shaft 5 to rotate, the second rotating shaft 5 drives the first rotating shaft 4 and the third rotating shaft 6 to rotate through the first belt pulley assembly 7, the roller 71 rotates along with the first rotating shaft, the roller 71 rotates to drive the abrasive paper 72 to rotate to polish the window regulator casting on the placement mechanism 9, after the window regulator casting is polished, the worker takes down the window regulator casting after polishing and collects the window regulator casting, after the polishing is completed, the placement mechanism 9 is driven to move rightwards to reset through the rotation of the driving mechanism 8, the driving mechanism 8 stops rotating to drive the second rotating shaft 5 to stop rotating, the second rotating shaft 5 stops rotating to drive the first rotating shaft 4 and the third rotating shaft 6 to stop rotating through the first belt pulley assembly 7, the rotation of the roller 71 is stopped, and the rotation of the roller 71 is stopped to drive the rotation of the sandpaper 72 to stop. The device has simple structure and convenient operation.
Example 2
As shown in fig. 2 and fig. 3, based on embodiment 1, the driving mechanism 8 includes a second connecting plate 801, a third connecting plate 802, a clamping seat 803, a second supporting plate 804, a rotating electric machine 805, a fourth rotating shaft 806, a bevel gear assembly 807, a second pulley assembly 808, a first supporting column 809, a first slider 810, a bidirectional screw 811, and a third pulley assembly 812, the second connecting plate 801 is disposed between the front sides of two legs 1, the third connecting plate 802 is disposed between the rear sides of two legs 1, the clamping seat 803 is disposed at the bottom of the first connecting rod 2 at the rear side, the second supporting plate 804 is disposed between the second connecting plate 801 and the middle portion of the third connecting plate 802, the clamping seat 803 is disposed with a rotating electric machine 805, an output shaft of the rotating electric machine 805 penetrates through the second connecting plate 801, the leg 1 at the right side is rotatably disposed with a fourth rotating shaft 806, the bevel gear assembly 807 is disposed between the output shaft of the rotating electric machine 805 and the left end of the fourth rotating shaft 806, the bevel gear assembly 807 is composed of two bevel gears, one bevel gear is arranged on the output shaft of the rotating motor 805, the other bevel gear is arranged at the left end of the fourth rotating shaft 806, the two bevel gears are meshed with each other, a second belt pulley assembly 808 is arranged between the output shaft of the rotating motor 805 and the front end of the second rotating shaft 5, the second belt pulley assembly 808 is composed of two belt pulleys and a flat belt, a belt pulley is arranged on the output shaft of the rotating motor 805, the other belt pulley is arranged at the front end of the second rotating shaft 5, a flat belt is arranged between the two belt pulleys, first supporting columns 809 are arranged at two ends of two first connecting rods 2, a first sliding block 810 is arranged between the tops of the two first supporting columns 809 at the same side, a bidirectional screw 811 is arranged between the two first sliding blocks 810, the right end of the bidirectional screw 811 penetrates through a first sliding block 810 at the right side, a third belt pulley assembly 812 is arranged between the right end of the bidirectional screw 811 and the right end of the fourth rotating shaft 806, the third belt pulley assembly 812 is composed of two belt pulleys and a flat belt, a belt pulley is arranged at the right end of the bidirectional screw 811, another belt pulley is arranged at the right end of the fourth rotating shaft 806, and the flat belt is arranged between the two belt pulleys.
When the operator finishes placing the car window lifter casting, the operator starts the rotary motor 805, the rotary motor 805 rotates to drive the bevel gear assembly 807 to be engaged, the bevel gear assembly 807 rotates to drive the fourth rotating shaft 806 to rotate, the fourth rotating shaft 806 rotates to drive the bidirectional screw 811 to rotate through the third belt pulley assembly 812, the bidirectional screw 811 rotates to drive the placing mechanism 9 to move leftwards to the position of the abrasive paper 72, the rotary motor 805 rotates to drive the second rotating shaft 5 to rotate through the second belt pulley assembly 808, the second rotating shaft 5 rotates to drive the first rotating shaft 4 and the third rotating shaft 6 to rotate through the first belt pulley assembly 7, the abrasive paper 72 rotates to polish the car window lifter casting on the placing mechanism 9, after the car window lifter casting is polished, the operator takes down the polished car window lifter casting to collect the car window lifter casting, and after the car window lifter casting is polished, the two-way screw 811 rotates to drive the placing mechanism 9 to move rightwards to reset, at this time, the worker turns off the rotating motor 805, the rotating motor 805 stops rotating to drive the bevel gear assembly 807 to stop meshing, the bevel gear assembly 807 stops rotating to drive the fourth rotating shaft 806 to stop rotating, the fourth rotating shaft 806 stops rotating to drive the bidirectional screw 811 to stop rotating through the third pulley assembly 812, the rotating motor 805 stops rotating to drive the second rotating shaft 5 to stop rotating through the second pulley assembly 808, and the second rotating shaft 5 stops rotating to drive the first rotating shaft 4 and the third rotating shaft 6 to stop rotating through the first pulley assembly 7. This device simple structure can drive abrasive paper 72 and rotate, realizes that the door window riser foundry goods is automatic to be polished.
The placing mechanism 9 comprises lead rods 901, second sliders 902, second support columns 903, fixture blocks 904, balance plates 905, a placing plate 906 and inner hexagon screws 907, the lead rods 901 are symmetrically arranged between the two first sliders 810, the second sliders 902 are symmetrically and slidably arranged between the two lead rods 901, the two second sliders 902 are slidably connected with a bidirectional screw 811, the second support columns 903 are symmetrically arranged at the tops of the two second sliders 902, the fixture blocks 904 are arranged between the two second support columns 903 on the same side, the balance plates 905 are arranged between the two fixture blocks 904, the placing plate 906 is arranged on the balance plates 905, and the inner hexagon screws 907 are symmetrically arranged between the placing plate 906 and the balance plates 905.
When needing to polish window regulator foundry goods, the staff places window regulator foundry goods on placing board 906, rotate when two-way lead screw 811 and drive second slider 902 slide left on helical pitch pole 901, second slider 902 slides left and drives balancing plate 905 and place board 906 and move left and contact with abrasive paper 72 through second support column 903 and fixture block 904, cylinder 71 rotates and drives abrasive paper 72 and rotate and polish window regulator foundry goods on placing board 906, slide left to the leftmost time when second slider 902, the staff takes off the window regulator foundry goods that finishes polishing and collects, two-way lead screw 811 rotates and drives second slider 902 slide right on helical pitch pole 901 and reset, second slider 902 slides right and drives balancing plate 905 and place board 906 and move right through second support column 903 and fixture block 904. This device simple structure can place a plurality of door window riser castings and polish simultaneously.
Example 3
As shown in fig. 4 and 5, based on embodiment 2, the sliding guide device further includes a first fixing rod 10, a sliding groove plate 11, a first guide rod 12, a first spring 13, a third sliding block 14, a second fixing rod 15, an iron ball 16, a first fixing shaft 18, a fixing plate 19, a second fixing shaft 20 and an iron sheet 21, the first fixing rod 10 is disposed on the top of the second sliding block 902 on the left side, the sliding groove plate 11 is disposed at the end of the first fixing rod 10, the first guide rod 12 is disposed in the sliding groove plate 11, the third sliding block 14 is slidably disposed on the first guide rod 12, the first spring 13 is disposed between one side of the sliding groove plate 11 and one side of the third sliding block 14, the second fixing rod 15 is disposed on the left side of the third sliding block 14, the iron ball 16 is disposed at the end of the second fixing rod 15, the first connecting block 17 is disposed on the side wall of the first sliding block 810 on the left side, the first connecting block 17 is disposed with the first fixing shaft 18, the first fixing shaft 18 is provided with a fixing plate 19, the front end and the rear end of the fixing plate 19 are provided with second fixing shafts 20, an iron sheet 21 is arranged between the two second fixing shafts 20, and the iron ball 16 is matched with the iron sheet 21.
When the second sliding block 902 slides leftwards to the leftmost side, the iron ball 16 is in contact with the iron sheet 21 to make a sound to remind a worker that the car window lifter casting is polished, the iron ball 16 is in contact with the iron sheet 21 to move rightwards, the iron ball 16 moves rightwards and drives the third sliding block 14 to slide rightwards on the first guide rod 12 through the second fixing rod 15, the first spring 13 is compressed, when the second sliding block 902 slides rightwards to reset, the iron ball 16 is separated from the iron sheet 21 to be in contact with the second sliding block, and the first spring 13 resets and drives the third sliding block 14 to slide leftwards on the first guide rod 12 to reset. The device is simple in structure, the iron ball 16 and the iron sheet 21 are contacted to make a sound, and workers can be reminded that the car window lifter casting is polished.
Still including second fixed block 22, third fixed block 23, second guide bar 24 and second spring 25, the equal symmetry in the left and right sides of balancing board 905 is provided with second fixed block 22, four all be provided with third fixed block 23, four on the second fixed block 22 all the slidingtype is provided with second guide bar 24 on the third fixed block 23, four second guide bars 24 with place the board 906 left and right sides and be connected, four third fixed block 23 one side with place and all be provided with second spring 25 between the board 906 left and right sides.
Before placing window regulator foundry goods, the staff draws and places the board 906 left and right sides and slide dorsad, second guide bar 24 slides dorsad on third fixed block 23 thereupon, second spring 25 is compressed, the window regulator foundry goods that the staff will need to polish is placed on placing board 906 afterwards, the back is accomplished, the staff loosens, second spring 25 resets and drives second guide bar 24 and resets in the sliding in opposite directions on third fixed block 23, second guide bar 24 slides in opposite directions and drives and place the board 906 left and right sides and reset in opposite directions and press from both sides tightly window regulator foundry goods. This device simple structure can press from both sides tightly the window regulator foundry goods, prevents that window regulator foundry goods from taking place the displacement at the in-process of polishing.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.

Claims (6)

1. The utility model provides a window regulator foundry goods grinding device which characterized in that includes:
the supporting legs (1), wherein first connecting rods (2) are symmetrically arranged between the two supporting legs (1);
the two first connecting rods (2) are symmetrically provided with first supporting plates (3);
the first rotating shaft (4) is rotatably arranged between one sides of the two first supporting plates (3);
the second rotating shaft (5) is rotatably arranged between the other sides of the two first supporting plates (3);
the third rotating shaft (6) is rotatably arranged between the upper parts of the two first supporting plates (3);
the belt conveyor comprises a first belt pulley assembly (7), wherein the first belt pulley assembly (7) is arranged at both ends of a first rotating shaft (4), both ends of a second rotating shaft (5) and both ends of a third rotating shaft (6), the first belt pulley assembly (7) consists of six belt pulleys and two flat belts, both ends of the first rotating shaft (4) are respectively provided with one belt pulley, both ends of the second rotating shaft (5) are respectively provided with one belt pulley, both ends of the third rotating shaft (6) are respectively provided with one belt pulley, and the flat belts are arranged between the belt pulleys on the same side;
the roller (71) is arranged on the first rotating shaft (4), the second rotating shaft (5) and the third rotating shaft (6);
sand paper (72), wherein the sand paper (72) is arranged among the three rollers (71); the driving mechanism (8) is arranged on the support leg (1);
the placing mechanism (9) is arranged on the driving mechanism (8).
2. The window regulator casting grinding apparatus as claimed in claim 1, wherein the drive mechanism (8) comprises:
a second connecting plate (801), wherein the second connecting plate (801) is arranged between one sides of the two support legs (1);
a third connecting plate (802), wherein the third connecting plate (802) is arranged between the other sides of the two support legs (1);
the clamping seat (803) is arranged at the bottom of the first connecting rod (2) on one side;
a second support plate (804), wherein the second support plate (804) is arranged between the second connecting plate (801) and the middle part of the third connecting plate (802);
the rotating motor (805) is arranged on the clamping seat (803), and an output shaft of the rotating motor (805) penetrates through the second connecting plate (801);
a fourth rotating shaft (806), wherein the supporting leg (1) on one side is rotatably provided with the fourth rotating shaft (806);
the bevel gear assembly (807) is arranged between an output shaft of the rotating motor (805) and one end of the fourth rotating shaft (806), the bevel gear assembly (807) is composed of two bevel gears, one bevel gear is arranged on the output shaft of the rotating motor (805), the other bevel gear is arranged at one end of the fourth rotating shaft (806), and the two bevel gears are meshed with each other;
a second belt pulley component (808), wherein the second belt pulley component (808) is arranged between the output shaft of the rotating motor (805) and one end of a second rotating shaft (5), the second belt pulley component (808) consists of two belt pulleys and a flat belt, one belt pulley is arranged on the output shaft of the rotating motor (805), the other belt pulley is arranged at one end of the second rotating shaft (5), and the flat belt is arranged between the two belt pulleys;
the two ends of the two first connecting rods (2) are respectively provided with a first supporting column (809);
the first sliding block (810) is arranged between the tops of the two first supporting columns (809) on the same side;
the bidirectional screw rod (811) is arranged between the two first sliding blocks (810), and one end of the bidirectional screw rod (811) penetrates through the first sliding block (810) on one side;
third pulley assembly (812), be provided with third pulley assembly (812) between two-way lead screw (811) one end and fourth pivot (806) other end, third pulley assembly (812) comprises two belt pulleys and a flat belt, and two-way lead screw (811) one end is provided with a belt pulley, and fourth pivot (806) other end is provided with another belt pulley, is provided with the flat belt between two belt pulleys.
3. The window regulator casting grinding apparatus as claimed in claim 2, wherein the placement mechanism (9) comprises:
the lead rods (901) are symmetrically arranged between the two first sliding blocks (810);
the two lead rods (901) are symmetrically and slidably provided with a second sliding block (902), and the two second sliding blocks (902) are slidably connected with a bidirectional screw rod (811); the tops of the two second sliding blocks (902) are symmetrically provided with second supporting columns (903);
the fixture block (904) is arranged between the two second support columns (903) on the same side;
the balance plate (905) is arranged between the two clamping blocks (904);
a placing plate (906), wherein the placing plate (906) is arranged on the balance plate (905);
the inner hexagon screws (907) are symmetrically arranged between the placing plate (906) and the balance plate (905).
4. The window regulator casting grinding apparatus of claim 3, further comprising:
the top of the second sliding block (902) on one side is provided with a first fixed rod (10);
the end part of the first fixing rod (10) is provided with a sliding groove plate (11);
the first guide rod (12) is arranged in the chute plate (11);
the third sliding block (14) is arranged on the first guide rod (12) in a sliding mode;
the first spring (13) is arranged between one side of the chute plate (11) and one side of the third sliding block (14);
a second fixing rod (15), wherein one side of the third sliding block (14) is provided with the second fixing rod (15);
the iron ball (16) is arranged at the end part of the second fixing rod (15);
the first connecting block (17) is arranged on the side wall of the first sliding block (810) on the other side of the first connecting block (17);
the first connecting block (17) is provided with a first fixed shaft (18);
a fixed plate (19), wherein the fixed plate (19) is arranged on the first fixed shaft (18);
the two ends of the fixed plate (19) are provided with second fixed shafts (20);
the iron sheet (21) is arranged between the two second fixing shafts (20), and the iron ball (16) is matched with the iron sheet (21).
5. The window regulator casting grinding apparatus of claim 4, further comprising:
the two sides of the balance plate (905) are symmetrically provided with the second fixed blocks (22);
the four second fixed blocks (22) are provided with the third fixed blocks (23);
the four third fixing blocks (23) are provided with second guide rods (24) in a sliding manner, and the four second guide rods (24) are connected with two sides of the placing plate (906);
and the second springs (25) are arranged between one sides of the four third fixing blocks (23) and the two sides of the placing plate (906).
6. The window regulator casting grinding apparatus of claim 2, wherein the rotary motor (805) is a servo motor.
CN202120551592.1U 2021-03-17 2021-03-17 Window regulator foundry goods grinding device Active CN215999917U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120551592.1U CN215999917U (en) 2021-03-17 2021-03-17 Window regulator foundry goods grinding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120551592.1U CN215999917U (en) 2021-03-17 2021-03-17 Window regulator foundry goods grinding device

Publications (1)

Publication Number Publication Date
CN215999917U true CN215999917U (en) 2022-03-11

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ID=80520359

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120551592.1U Active CN215999917U (en) 2021-03-17 2021-03-17 Window regulator foundry goods grinding device

Country Status (1)

Country Link
CN (1) CN215999917U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115401575A (en) * 2022-10-27 2022-11-29 江苏奥尼特电缆有限公司 Be used for rotatory grinding device of cable back copper conductor of skinning

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115401575A (en) * 2022-10-27 2022-11-29 江苏奥尼特电缆有限公司 Be used for rotatory grinding device of cable back copper conductor of skinning

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