CN209665408U - Manipulator is used in a kind of clamping of cylinder sleeve - Google Patents

Manipulator is used in a kind of clamping of cylinder sleeve Download PDF

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Publication number
CN209665408U
CN209665408U CN201920272841.6U CN201920272841U CN209665408U CN 209665408 U CN209665408 U CN 209665408U CN 201920272841 U CN201920272841 U CN 201920272841U CN 209665408 U CN209665408 U CN 209665408U
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CN
China
Prior art keywords
cylinder sleeve
claw
rotating shaft
sliding block
slide bar
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Expired - Fee Related
Application number
CN201920272841.6U
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Chinese (zh)
Inventor
张婧媛
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Individual
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Individual
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Priority to CN201920272841.6U priority Critical patent/CN209665408U/en
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Publication of CN209665408U publication Critical patent/CN209665408U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of cylinder sleeve clamping manipulator, including substrate, rotary cylinder, rotating shaft, turning cam, the protrusion of three semi-cylindricals, turning slot;Upright bar, slide bar, sliding block, claw, vertical shaft, bearing and three holddown springs being socketed on three slide bars respectively, one end of the holddown spring are connected with corresponding upright bar, and other end is connected with corresponding sliding block.The beneficial effect that the utility model obtains is: (1) structure is simple;(2) when clamping cylinder sleeve, pass through the driving of cam, it can ensure that three claw synchronous slides, and then keep three claws equal in magnitude to the chucking power of cylinder sleeve, in addition, since three claws are uniformly arranged, therefore it can preferably ensure stability of the claw when clamping cylinder sleeve, be conducive to cylinder sleeve and obtain better precision when processing, when conveying, more accurate can be delivered to designated position.

Description

Manipulator is used in a kind of clamping of cylinder sleeve
Technical field
The utility model relates to a kind of manipulator, manipulator is used in especially a kind of cylinder sleeve clamping.
Background technique
Cylinder sleeve is that a kind of precision is higher for manufacturing the components of cylinder, in order to realize the automation processing of cylinder sleeve and defeated It send, generally cylinder sleeve is clamped using manipulator at present, but existing manipulator, generally it is provided only with two claws, and nothing Method guarantees synchronism when two claw operations, therefore when clamping cylinder sleeve, the discontinuity of cylinder sleeve, and then causes to press from both sides During holding, the stability of cylinder sleeve is poor, influence cylinder sleeve processing precision and conveying accuracy, it is difficult to reach cylinder sleeve processing and The demand of conveying.
Summary of the invention
Problem to be solved in the utility model is: providing that a kind of structure is simple, claw can be run simultaneously and the clamping of claw Manipulator is used in the uniform cylinder sleeve clamping of power.
To solve the above-mentioned problems, the cylinder sleeve clamping manipulator of the utility model, comprising:
Substrate;
Rotary cylinder is fixed on substrate, and the rotary cylinder is equipped with an one rotating shaft;
Turning cam is fixed on the bottom of rotating shaft, sets the protrusion there are three semi-cylindrical on the turning cam, and three Protrusion is distributed in around the central axes of rotating shaft, is connected between three protrusions by the curved surface of smooth concave shaped, and described time The periphery of rotating cam is equipped with a turning slot;
Three upright bars, are uniformly fixed on substrate centered on the central axes of rotating shaft, and the bottom end of every upright bar is solid Surely there is a slide bar, the slide bar and upright bar are perpendicular, and the slide bar is distributed in around rotating shaft, the central axes of the slide bar Intersect with the central axes of rotating shaft;
Three pieces of sliding blocks, corresponding with three upright bars respectively, the sliding block is socketed on corresponding slide bar, every piece of sliding block Bottom is respectively and fixedly provided with one piece of claw, and the inner end of every piece of sliding block is equipped with a vertical shaft, a bearing is socketed on every vertical shaft, It is posted by turning slot on the inside of the bearing;
And it is socketed on three holddown springs on three slide bars respectively, one end of the holddown spring is stood with corresponding Bar is connected, and other end is connected with corresponding sliding block.
Further, in order to enable claw preferably to fit together when clamping cylinder sleeve with cylinder sleeve, the utility model Cylinder sleeve clamping use manipulator, claw is arc, and the radian of claw and the internal diameter of cylinder sleeve to be captured match.
The cylinder sleeve clamping manipulator of the utility model, claw are made of stainless steel material, attach on the outer surface of claw There is one layer of cushion.
The cylinder sleeve clamping manipulator of the utility model, claw can also have to be made of hard nylon.
The cylinder sleeve clamping manipulator of the utility model, in order to avoid sliding block is skidded off from the inner end of slide bar, every slide bar Inner end is respectively and fixedly provided with one piece of limited block.
For the ease of processing substrate, the cylinder sleeve clamping manipulator of the utility model, substrate is round or square.
The beneficial effect that the utility model obtains is: (1) structure is simple;(2) when clamping cylinder sleeve, pass through cam Driving, can ensure that three claw synchronous slides, and then keep three claws equal in magnitude to the chucking power of cylinder sleeve, in addition, due to three A claw is uniformly arranged, therefore can preferably ensure stability of the claw when clamping cylinder sleeve, be conducive to cylinder sleeve processing when Wait and obtain better precision, when conveying, can be more accurate be delivered to designated position.
Detailed description of the invention
Fig. 1 is the main view of the utility model.
Fig. 2 is the cross-sectional view in the face A-A in Fig. 1.
Fig. 3 is the cross-sectional view in the face B-B in Fig. 1.
Fig. 4 is cam top view.
Fig. 5 is the main view of cam.
In figure: 1, substrate, 2, rotary cylinder, 3, upright bar, 4, rotating shaft, 5, vertical shaft, 6, limited block, 7, sliding block, 8, slide bar, 9, turning slot, 10, turning cam, 11, bearing, 12, holddown spring, 13, claw, 14, cushion, 15, cylinder sleeve.
Specific embodiment
The utility model is described further with reference to the accompanying drawing.
It as shown in Figure 1, Figure 2 and Figure 3, is a kind of cylinder sleeve clamping manipulator, including substrate 1, substrate 1 is whole device Main component, other components are direct or indirect to be set on substrate 1.
In order to facilitate the processing of substrate, the cylinder sleeve clamping manipulator of the present embodiment, substrate 1 it is generally circular, When specific processing, it can be processed by lathe.
In some other embodiment, the shape of substrate 1 can also be square, and the substrate 1 is main to be carried out by milling machine Processing.
A rotary cylinder 2 is fixed on substrate 1, rotary cylinder 2 is equipped with an one rotating shaft 4, under normal circumstances, revolution Cylinder 2 is fixed at the center of substrate 1, and so, the central axes of rotating shaft 4 are intersected with the central point of substrate 1, and rotating shaft 4 perpendicular to substrate 1.
In fact, rotary cylinder 2 is the drive member of the utility model, pass through the rotation of the rotating shaft 4 on rotary cylinder 2 Turn, other execution components is driven to complete various movements.
The bottom of rotating shaft 4 is fixed with a turning cam 10, it is generally the case that rotating shaft 4 is fixed on turning cam 10 Center at.
The cylinder sleeve clamping manipulator of the present embodiment, turning cam 10 is a non-standard component, that is to say, that turning cam 10 with the structure of cam be in general sense it is entirely different, as shown in Figure 4 and Figure 5, set that there are three half on turning cam 10 Cylindrical protrusion, three protrusions are distributed in around the central axes of rotating shaft 4, pass through smooth concave shaped between three protrusions Curved surface be connected, the periphery of turning cam 10 is equipped with a turning slot 9.
When rotating shaft 4 rotates, since turning cam 10 is fixed on the bottom of rotating shaft 4, thus can be with revolution The rotation of axis 4 and rotate, in addition, being fixed on due to rotating shaft 4 at the center of turning cam 10, the axis of turning cam 10 The central axes of line and rotating shaft are located in same vertical straight line.
Three upright bars 3 are further fixed on substrate 1, three upright bars 3 are uniformly arranged centered on the central axes of rotating shaft 4, The bottom end of every upright bar 3 is respectively and fixedly provided with a slide bar 8, and slide bar 8 and upright bar 3 are perpendicular, and slide bar 8 is distributed in around rotating shaft 4, Intersect with the central axes of rotating shaft 4 central axes of the slide bar 8.
It is described by above structure it is found that upright bar 3 and slide bar 8 are all distributed in around rotating shaft 4, wherein upright bar 3 is vertical In horizontal plane, slide bar 8 is parallel to horizontal plane, and slide bar 8 and upright bar 3 correspond.
It further include three pieces of sliding blocks 7, sliding block 7 and slide bar 8 correspond, and sliding block 7 is socketed on corresponding slide bar 8, works as cunning When block 7 is by external force, it can be moved freely along slide bar 8.
The bottom of every piece of sliding block 7 is respectively and fixedly provided with one piece of claw 13, and the inner end of every piece of sliding block 7 is equipped with a vertical shaft 5, and every A bearing 11 is socketed on vertical shaft 5, the inside of the bearing 11 is posted by turning slot 9.
When turning cam 10 rotates i.e. when turning cam 10 drives sliding block 7 mobile, due to bearing 11 Inside be posted by turning slot 9, therefore, be not directly contacted between sliding block 7 and turning cam 10, turning cam 10 and sliding block 7 Between be in contact with bearing 11 by turning slot 9, due to bearing 11 the motive force by turning cam 10 and turning slot 9 when It waits, can be rotated along vertical shaft 5, therefore, when turning cam 10 drives sliding block sliding 7, sliding block 7 can be greatly reduced and revolution is convex Abrasion between wheel 10 and turning slot 9, thus the service life of turning cam 10 and sliding block 7 greatly prolonged.
In addition, turning slot 9 is a closed cyclic annular groove body, and the inside of bearing 11 is posted by turning slot 9, thus is returned Turn trough 9 also has the function of positioning, when turning cam 10 drives sliding block 7 to slide, passes through being total to for turning slot 9 and bearing 11 Same-action, moreover it is possible to sliding block 7 be positioned in the height direction, keep the sliding of sliding block 7 more stable.
Also it is socketed with a holddown spring 12 on every slide bar 8, one end of holddown spring 12 and corresponding 3 phase of upright bar Even, other end is connected with corresponding sliding block 7, due to the squeezing action of holddown spring 12, so that sliding block 7 and bearing 11 are posted by always on turning cam 10.
The cylinder sleeve clamping manipulator of the present embodiment, when specifically used, the angle of revolution of rotary cylinder 2 is set as 60 ° of rotation every time, initial position is located at turn around between the protrusion of cam 10 for sliding block 7, that is, the bearing 11 on each sliding block 7 At center between two protrusions, at this point, sliding block 7 is located at the inner terminal of slide bar 8, correspondingly, claw 13 also be located at it is most interior The position at end, therefore, there are gap between claw 13 and the inner wall of cylinder sleeve 15, claw 13 is mutually separated with the inner wall of cylinder sleeve 15.
When needing to clamp cylinder sleeve 15, start rotary cylinder 2, drives rotating shaft 4 to rotate counterclockwise by rotary cylinder 2 60 °, with the rotation of rotating shaft 4, turning cam 40 can also rotate counterclockwise 60 ° of turning cams 40 in the same of rotation with rotating shaft When, it can also drive bearing 11 and sliding block 7 to move outward along slide bar 8, and sliding block 7 is when moving outward along slide bar 8, Also will drive claw 11 to move outward, claw 11 while moving outward, then can inner wall gradually to cylinder sleeve 15 it is close, When turning cam 10 completes 60 ° of rotation counterclockwise, turning cam 10 just drives sliding block 7 and claw 13 to outermost End is posted by the inner wall of cylinder sleeve 15 at this point, claw 13 is just firm, and cylinder sleeve 15 is clamped.
The cylinder sleeve clamping manipulator of the present embodiment, is equipped with three groups of 3, three groups of upright bar, 8, three groups of slide bar sliding blocks 7 and three cards Pawl 13 is set on turning cam 10 there are three protrusion, and upright bar 3, slide bar 8, sliding block 7, claw 13 and protrusion, which correspond, to be simultaneously distributed in Around the central axes of rotating shaft 4, therefore, when turning cam 10 drives sliding block 7 and claw 13 to move along slide bar 8, energy When ensuring that three pieces of sliding blocks 7 and three claws 13 move synchronously, and then claw 13 made to clamp cylinder sleeve 15, the effect to cylinder sleeve 15 Power is equal in magnitude, in addition, due to being that three claws 13 simultaneously clamp on cylinder sleeve 15, and claw 13 is distributed on the inner wall of cylinder sleeve 15, Therefore, compared with existing manipulator, the stability that claw 13 clamps cylinder sleeve 15 is further improved, is conducive to cylinder sleeve 15 and exists Better precision is obtained when processing, when conveying, more accurate can be delivered to designated position.
When needing to unclamp cylinder sleeve 15, it is again started up rotary cylinder 2,4 up time of rotating shaft is driven by rotary cylinder 2 Needle rotates 60 °, at this point, turning cam 10 is reset to initial position, sliding block 7 and claw 13 also reset again, claw 13 and cylinder sleeve 15 inner wall mutually separates, and cylinder sleeve 15 and claw 13 are in discrete state, and claw 13 no longer clamps cylinder sleeve 15.
The cylinder sleeve clamping manipulator of the present embodiment, the claw 13 is arc, the radian of claw 13 and cylinder to be captured The internal diameter of set 15 matches, thus when clamping cylinder sleeve 15, the even closer inner wall for fitting in cylinder sleeve 15 of 13 energy of claw On, obtain better clamping effect.
The cylinder sleeve clamping manipulator of the present embodiment, claw 13 are made of stainless steel material, paste on the outer surface of claw 13 With one layer of cushion 14, so, when claw 13 clamps cylinder sleeve 15, connected by cushion 14 with the inner wall of cylinder sleeve 15 Touching, because scratching caused by without the inner wall to cylinder sleeve 15.
In some other embodiment, claw 13 can also be made of hard nylon, can be that claw 13 is protected so Good wearability is held, equally the inner wall of cylinder sleeve 15 will not be caused to scratch.
The cylinder sleeve clamping manipulator of the present embodiment, the inner end of every slide bar 8 is respectively and fixedly provided with one piece of limited block 6, thus energy The position of sliding block 7 is defined, sliding block 7 is avoided to skid off from the inner end of slide bar 8.

Claims (6)

1. a kind of cylinder sleeve clamping manipulator characterized by comprising
Substrate (1);
Rotary cylinder (2) is fixed on substrate (1), and the rotary cylinder (2) is equipped with an one rotating shaft (4);
Turning cam (10) is fixed on the bottom of rotating shaft (4), sets on the turning cam (10) convex there are three semi-cylindrical It rises, three protrusions are distributed in around the central axes of rotating shaft (4), pass through the curved surface phase of smooth concave shaped between three protrusions Even, the periphery of the turning cam (10) is equipped with a turning slot (9);
Three upright bars (3), are uniformly fixed on substrate (1) centered on the central axes of rotating shaft (4), every upright bar (3) Bottom end is respectively and fixedly provided with a slide bar (8), and the slide bar (8) and upright bar (3) are perpendicular, and the slide bar (8) is distributed in rotating shaft (4) Around, the central axes of the slide bar (8) are intersected with the central axes of rotating shaft (4);
Three pieces of sliding blocks (7), corresponding with three upright bar (3) respectively, the sliding block (7) is socketed on corresponding slide bar (8), often The bottom of block sliding block (7) is respectively and fixedly provided with one piece of claw (13), and the inner end of every piece of sliding block (7) is equipped with a vertical shaft (5), and every vertical It is socketed with a bearing (11) on axis (5), is posted by the inside of the bearing (11) in turning slot (9);
And it is socketed on three holddown springs (12) on three slide bars (8), one end of the holddown spring (12) and phase respectively Corresponding upright bar (3) is connected, and other end is connected with corresponding sliding block (7).
2. cylinder sleeve clamping manipulator according to claim 1, it is characterised in that: the claw (13) is arc, described The radian of claw (13) and the internal diameter of cylinder sleeve to be captured (15) match.
3. cylinder sleeve clamping manipulator according to claim 2, it is characterised in that: the claw (13) is by stainless steel material It is made, one layer of cushion (14) is pasted on the outer surface of the claw (13).
4. cylinder sleeve clamping manipulator according to claim 2, it is characterised in that: the claw (13) is by hard nylon system At.
5. cylinder sleeve clamping manipulator according to claim 1, it is characterised in that: the inner end of every slide bar (8) is fixed There is one piece of limited block (6).
6. cylinder sleeve clamping manipulator according to claim 1, it is characterised in that: the substrate (1) is round or square Shape.
CN201920272841.6U 2019-03-04 2019-03-04 Manipulator is used in a kind of clamping of cylinder sleeve Expired - Fee Related CN209665408U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920272841.6U CN209665408U (en) 2019-03-04 2019-03-04 Manipulator is used in a kind of clamping of cylinder sleeve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920272841.6U CN209665408U (en) 2019-03-04 2019-03-04 Manipulator is used in a kind of clamping of cylinder sleeve

Publications (1)

Publication Number Publication Date
CN209665408U true CN209665408U (en) 2019-11-22

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ID=68570313

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920272841.6U Expired - Fee Related CN209665408U (en) 2019-03-04 2019-03-04 Manipulator is used in a kind of clamping of cylinder sleeve

Country Status (1)

Country Link
CN (1) CN209665408U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116985101A (en) * 2023-09-26 2023-11-03 深圳市科扬自动化设备制造有限公司 Rubber disc grabbing manipulator of carrier tape machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116985101A (en) * 2023-09-26 2023-11-03 深圳市科扬自动化设备制造有限公司 Rubber disc grabbing manipulator of carrier tape machine
CN116985101B (en) * 2023-09-26 2023-12-15 深圳市科扬自动化设备制造有限公司 Rubber disc grabbing manipulator of carrier tape machine

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20191122

Termination date: 20200304

CF01 Termination of patent right due to non-payment of annual fee