CN210712296U - Glove turning machine - Google Patents

Glove turning machine Download PDF

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Publication number
CN210712296U
CN210712296U CN201921086391.8U CN201921086391U CN210712296U CN 210712296 U CN210712296 U CN 210712296U CN 201921086391 U CN201921086391 U CN 201921086391U CN 210712296 U CN210712296 U CN 210712296U
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CN
China
Prior art keywords
driving
fixed sleeve
seat
lifting seat
turn
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Expired - Fee Related
Application number
CN201921086391.8U
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Chinese (zh)
Inventor
周传英
迟凯
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Weifang Xinote Machinery Technology Co ltd
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Weifang Xinote Machinery Technology Co ltd
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Priority to CN201921086391.8U priority Critical patent/CN210712296U/en
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Publication of CN210712296U publication Critical patent/CN210712296U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model relates to a glove turning machine, which comprises a rotatable turntable, wherein a fixed sleeve fixedly connected with the turntable is arranged on the turntable, a turning driving mechanism is arranged on the fixed sleeve, and an ejector rod is arranged on the upper part of the turntable and can reciprocate towards the direction close to or far away from the fixed sleeve; the glove turnover machine has the advantages of high automation degree, time and labor saving, high turnover efficiency, safety, reliability and good turnover effect, reduces the number of workers and greatly reduces the production cost.

Description

Glove turning machine
Technical Field
The utility model relates to a device for turning over gloves, in particular to a glove turning-over machine.
Background
At present, all gloves of making up type on the market all adopt the sewing technique in the course of the processing manufacture, will join the department together, in order to make gloves reach the operation requirement and gloves pleasing to the eye, the gloves after making up will make the face of making up turn over into, make that the one side that the outward appearance is level and smooth as the front, the department of making up then hides inside.
The prior art is generally provided with manual turning, each finger is turned by matching a hard rod and a pipe one by one, then the whole arrangement is carried out, the time and labor are consumed, the efficiency is low, the labor intensity of workers is high, particularly leather gloves and cloth gloves with large thicknesses are large in turning difficulty and low in turning efficiency, the gloves can be turned by using large force when the hard rods and the pipes are turned, the labor intensity of the workers is high, the number of the gloves turned by each person every day is small, and only workers can be increased to meet the production requirements, so that the production cost is greatly increased.
SUMMERY OF THE UTILITY MODEL
The to-be-solved problem of the utility model is to above problem, provide a gloves turn-over machine of turn-over efficient, labour saving and time saving, greatly reduced manufacturing cost.
In order to solve the above problems, the utility model adopts the following technical scheme: the utility model provides a gloves turn-over machine, is including can the pivoted carousel, be provided with on the carousel with carousel fixed connection's fixed sleeve, the last turn-over actuating mechanism that is provided with of fixed sleeve, the upper portion of carousel is provided with the ejector pin, the ejector pin can be to being close to or keeping away from fixed sleeve's direction reciprocating motion.
During the use, single finger or a plurality of finger suit of gloves are on single or a plurality of fixed sleeve, finger portion location and the fixed of gloves through the ejector pin, then turn-over actuating mechanism upward movement, ejector pin downward movement pushes up into fixed sleeve after partly the turn-over of finger portion simultaneously, make the palm portion or the single finger portion of remaining gloves continue upwards to accomplish the turn-over under the combined action of turnover pole through turn-over actuating mechanism, then turn-over actuating mechanism return, the ejector pin return, gloves after the turn-over are located fixed sleeve, turn-over efficiency improves greatly, the turn-over quantity of gloves every day is far greater than the quantity of manual turn-over, the staff only need with gloves suit on fixed sleeve and from fixed sleeve take off can, greatly reduced intensity of labour, reduced the manual work, manufacturing cost has been reduced.
As an optimized scheme, the fixed sleeves are multiple groups, and the multiple groups of fixed sleeves are arranged along the circumferential direction of the rotary disc.
Through setting up multiunit fixed sleeve, can turn to the ejector pin lower part with every group fixed sleeve in proper order through the carousel, turn over the gloves on every group fixed sleeve in proper order, the staff only need with gloves suit to fixed sleeve on and take off from fixed sleeve can, improve work efficiency greatly.
As an optimization, each set of fixing sleeves comprises at least one fixing sleeve.
As an optimization scheme, the turnover driving mechanism comprises a lifting frame which is sleeved on the fixing sleeve and can axially reciprocate along the fixing sleeve, two push plates which are oppositely arranged are hinged to the lifting frame, and notches for allowing the fixing sleeve to penetrate are formed in the opposite surfaces of the two push plates.
As an optimization scheme, the lifting frame comprises a lifting plate sleeved on the fixing sleeve, vertical plates are fixedly connected to two ends of the lifting plate respectively, and the push plate is hinged to the vertical plates.
As an optimized scheme, the lifting frame is fixedly connected with a slide parallel to the fixed sleeve, the rotary table is fixedly connected with a guide seat matched with the slide rail, and the slide rail is connected with a power driving mechanism for driving the slide rail to axially reciprocate along the fixed sleeve.
As an optimized scheme, the power driving mechanism comprises a first lifting seat capable of ascending or descending, a driving seat is connected to the first lifting seat, the driving seat is connected to the sliding rail, the first lifting seat is connected to a cylinder, an oil cylinder or a motor for driving the first lifting seat to ascend or descend, and the first lifting seat is connected to a first guiding mechanism for limiting the moving direction of the first lifting seat.
As an optimized scheme, a driving plate is fixedly connected to the driving seat, a baffle is fixedly connected to the sliding rail, a gap is formed between the driving plate and the driving seat, and the baffle is located in the gap.
As an optimized scheme, the ejector rod is connected with a second lifting seat capable of ascending or descending, the second lifting seat is connected with a cylinder, an oil cylinder or a motor for driving the second lifting seat to ascend or descend, and the second lifting seat is connected with a second guide mechanism for limiting the movement direction of the second lifting seat.
As an optimization scheme, still include the support, be provided with the pivot on the support, be provided with in the pivot with carousel fixedly connected with driven gear, driven gear meshing has the driving gear, driving gear and retarder connection, the reduction gear is connected with the motor, reduction gear and motor fixed connection are on the support.
The utility model adopts the technical scheme, has following advantage:
the glove turnover machine has the advantages of high automation degree, time and labor saving, high turnover efficiency, safety, reliability and good turnover effect, reduces the number of workers and greatly reduces the production cost.
The present invention will be further explained with reference to the drawings and examples.
Drawings
Fig. 1 is a schematic structural diagram of a glove turning machine according to an embodiment of the present invention.
Fig. 2 is a left side view of fig. 1.
Fig. 3 is a top view of fig. 2.
Fig. 4 is a perspective view of a glove turning machine according to an embodiment of the present invention.
Detailed Description
Example (b): as shown in the attached drawings 1, 2, 3 and 4, the glove turning machine comprises a base 1, wherein a stand column 2 and a support 11 are arranged on the base 1, the stand column 2 is arranged at the side of the support 11, the base 1 is horizontally arranged, the stand column 2 is vertically arranged, the stand column 2 is perpendicular to the base 1, the cross section of the stand column 2 is square or rectangular, a control panel 22 is fixedly connected to the upper part of the stand column 2, the support 11 is arranged at the end part of the base 1, a rotating shaft 12 is arranged on the support 11, the rotating shaft 12 can rotate, a rotatable turntable 10 is arranged at the upper part of the rotating shaft 12, the turntable 10 is horizontally arranged, a driven gear 13 fixedly connected with the turntable 10 is arranged on the rotating shaft 12, a driving gear 15 is meshed with the driven gear 13, the driving gear 15 is connected with a speed reducer, the speed reducer is connected with a motor, and the, the motor and the speed reducer form a power device 14, the power device 14 can also adopt other structures, only if the turntable 10 can be driven to rotate, the motor and the speed reducer drive the driving gear 15 to rotate, the driving gear 15 drives the driven gear 13 to rotate, and the driven gear 13 drives the turntable 10 to rotate.
The turntable 10 is provided with a fixed sleeve 19 fixedly connected with the turntable 10, the fixed sleeve 19 is provided with a turnover driving mechanism, the upper part of the turntable 10 is provided with a mandril 23, and the mandril 23 can reciprocate towards the direction close to or far away from the fixed sleeve 19.
Fixed sleeve 19 is the multiunit, and multiunit fixed sleeve sets up to eight groups along the circumference setting of carousel 10 in this embodiment, and eight groups of fixed sleeve along the circumference equipartition of carousel 10, fixed sleeve 19 are located the position that is close to carousel 10 border, can increase or reduce fixed sleeve 19's group number as required.
Each set of fixing sleeves comprises at least one fixing sleeve 19, and in the present embodiment each set of fixing sleeves comprises four fixing sleeves 19, the number of fixing sleeves 19 in each set of fixing sleeves can be increased or decreased as required.
The fixed sleeve 19 is cylindrical, the middle of the fixed sleeve is of a hollow structure, the fixed sleeve 19 is vertically arranged, and the fixed sleeve 19 is perpendicular to the disc 10.
Through bolt and nut fixedly connected with fixing base 16 on carousel 10, be provided with the through-hole on fixing base 16, the through-hole is rectangular form, be provided with the through-hole the same with through-hole on fixing base 16 on carousel 10, fixing sleeve 19 passes through the through-hole on fixing base 16 and the through-hole on carousel 10 and passes through nut fixed connection on fixing base 16 and carousel 10, can loosen the nut and adjust the position of fixing sleeve 19, the connection of fixing sleeve 19 and nut is not shown in the figure, the shape of fixing base 16 is the platelike of rectangle
Turn-over actuating mechanism includes the suit and can follow the crane of the axial reciprocating motion of fixed sleeve 19 on fixed sleeve 19, it has two relative push pedal 21 that set up to articulate on the crane, the shape of push pedal 21 is the rectangle, all be provided with the breach 33 that holds fixed sleeve 19 and pass on two push pedal 21 relative faces, the bottom of breach 33 suits with fixed sleeve 19 for convex, the width of breach 33 is greater than the diameter of fixed sleeve 19, breach 33 shape is rectangular shape to hold many fixed sleeve 19, when two push pedal 21 are the horizontality, it has the clearance between the two, the size in clearance can set up as required.
The lifting frame comprises a lifting plate 17 sleeved on a fixing sleeve 19, the lifting plate 17 is in a horizontal state, a through hole is formed in the lifting plate 17 for allowing the fixing sleeve 19 to pass through, the lifting plate 17 is rectangular, vertical plates 18 are fixedly connected to two ends of the lifting plate 17 respectively, the vertical plates 18 are perpendicular to the lifting plate 17, the lifting plate 17 and the vertical plates 18 can be integrally formed or connected through welding, the two vertical plates 18 are arranged in parallel, the heights of the two vertical plates 18 are equal, the heights of the vertical plates 18 are smaller than that of the fixing sleeve 19, a push plate 21 is hinged to the vertical plates 18, the push plate 21 is rectangular, the push plate 21 is hinged to the vertical plates 18 through hinges 20, other rotatable connecting modes can be adopted according to needs, the hinged position of the push plate 21 and the vertical plates 18 is located on the outer sides of the upper end portions of the vertical plates 18, and when the hinge 20 is in, the vertical plate 18 can support the part of the hinge 20 connected with the push plate 21, so that the push plate 21 is limited, the push plate 21 is in a horizontal state, a limiting part can be arranged on the vertical plate 18 to limit the push plate 21, the push plate 21 can rotate towards the outer side and the inner side of the vertical plate 18 along the hinged part, and when the push plate 21 rotates towards the inner side, the push plate 21 can only rotate to the horizontal state.
The width of the push plate 21 is equal to that of the vertical plate 18, and the width of the push plate 21 is smaller than that of the lifting plate 17.
The lifting frame is fixedly connected with a sliding rail 9 parallel to the fixing sleeve 19, specifically, a lifting plate 17 and a sliding rail 9 of the lifting frame are fixedly connected, the sliding rail 9 and a rotary table 10 are vertically arranged, a through hole for accommodating the sliding rail 9 to pass is formed in the rotary table 10, a guide seat 34 matched with the sliding rail 9 is fixedly connected to the rotary table 10, a support seat 35 is fixedly connected to the rotary table 10, the guide seat 34 is fixedly connected with the support seat 35 through a bolt, and the sliding rail 9 is connected with a power driving mechanism for driving the sliding rail 9 to axially reciprocate along the fixing sleeve 19
The power driving mechanism comprises a first lifting seat 4 capable of ascending or descending, the first lifting seat 4 is sleeved on the stand column 2, a supporting plate 5 is connected onto the first lifting seat 4, a driving seat 6 is fixedly connected onto the supporting plate 5 through a bolt and a nut, the driving seat 6 is connected with a sliding rail 9, a driving plate 7 is fixedly connected onto the driving seat 6, a baffle plate 8 is fixedly connected onto the sliding rail 9, a gap is formed between the driving plate 7 and the driving seat 6, the baffle plate 8 is located in the gap, the baffle plate 8 can rotate into or out of the gap along with the sliding rail 9, the first lifting seat 4 is connected with a cylinder, an oil cylinder or a motor for driving the first lifting seat to ascend or descend, in the embodiment, the motor is used for driving, and the first lifting seat 4 is connected with a first guiding mechanism for limiting the moving direction of.
The first motor 30 of fixedly connected with on the stand 2, the first screw rod 31 of first motor 30 fixedly connected with, the first thread bush 32 of fixedly connected with on the first lift seat 4, first thread bush 32 and first screw rod 31 threaded connection, the vertical setting of first screw rod 31, first motor 30 and first screw rod 31 are located the stand 2 and keep away from the one side of carousel 10, also can set up other positions at stand 2 as required.
First guiding mechanism includes first guide rail 3 and the first slider 37 with first guide rail 3 matched with, and first guide rail 3 fixed connection is on stand 2, and first slider 37 fixed connection also can be as required with first guide rail 3 fixed connection on first lift seat 4, first slider 37 fixed connection is on stand 2.
Other configurations of the first guide mechanism are possible, such as a pulley and runner configuration.
The ejector rod 23 is cylindrical, the diameter of the ejector rod 23 is smaller than the inner diameter of the fixing sleeve 19, the ejector rod 23 can be inserted into the fixing sleeve 19 when moving towards the fixing sleeve 19, after the ejector rod 23 enters the fixing sleeve 19, a gap is formed between the ejector rod 23 and the fixing sleeve 19, and the finger part of the turned glove is located in the gap.
The ejector rod 23 is connected with a second lifting seat 26 which can be lifted or lowered, the second lifting seat 26 is sleeved on the upright post 2, the second lifting seat 26 is fixedly connected with a mounting plate 24, the mounting plate 24 is fixedly connected with the second lifting seat 26 through a nut and a bolt, the mounting plate 24 is provided with a through hole, the through hole is in a long strip shape, the ejector rod 23 passes through the through hole and is fixed on the mounting plate 24 through the nut, the nut can be loosened to adjust the position of the mandril 23, and the mandril 23 can be fixed by the nut after being adjusted, the connecting structure of the mandril 23 and the nut is not shown in the figure, four mandrils 23 are arranged on the mounting plate 24, the number of the push rods 23 can be increased or decreased as required, so that the push rods can be matched with the fixed sleeve 19 on the rotary table 10, the second lifting seat 26 is connected with an air cylinder, an oil cylinder or a motor for driving the second lifting seat to ascend or descend, in the embodiment, driven by a motor, the second lifting seat 26 is connected with a second guide mechanism for limiting the movement direction of the second lifting seat.
Fixedly connected with second motor 29 on the stand 2, second motor 29 fixedly connected with second screw rod 28, fixedly connected with second thread bush 27 on the second lift seat 26, second thread bush 27 and second screw rod 28 threaded connection, the vertical setting of second screw rod 28, second motor 29 and second screw rod 29 are located the stand 2 and keep away from the one side of carousel 10, also can set up other positions at the stand 2 as required.
The second power device can adopt other structures, such as an air cylinder, a cylinder drive and the like.
The second guide mechanism comprises a second guide rail 25 and a second sliding block 36 matched with the second guide rail 25, the second guide rail 25 is fixedly connected to the upright post 2, the second sliding block 36 is fixedly connected to the second lifting seat 26, the second guide rail 25 can also be fixedly connected to the second lifting seat 26 according to requirements, and the second sliding block 36 is fixedly connected to the upright post 2.
Other configurations of the second guide mechanism are possible, such as a pulley and runner configuration.
The push rod 23 can be a solid structure or a hollow structure, and when each group of fixed sleeves rotates to the lower part of the push rod 23 through the turntable 10, the push rod 23 coincides with the axis of the fixed sleeve 19.
The mode that the ejector rod 23 is directly connected with the air cylinder or the oil cylinder can also be adopted, as long as the ejector rod 23 can be driven to reciprocate up and down.
When in use, gloves are sleeved on the fixed sleeve 19, the turntable 10 rotates to rotate the fixed sleeve 19 to the lower part of the ejector rod 23, then the second motor 29 rotates, the second lifting seat 26 is driven to move downwards by the second screw 28 and the second threaded sleeve 27, the finger part of the glove is fixed on the fixed sleeve 19 by the ejector rod 23, then the first motor 30 rotates, the first lifting seat 4 is driven to move upwards by the first screw 31 and the first threaded sleeve 32, the slide rail 9 is driven to slide upwards by the driving seat 6, the slide rail 9 drives the lifting plate 17 to move upwards, the lifting plate 17 drives the vertical plate 18 to move upwards, the push plate 21 is driven to move upwards by the vertical plate 18, meanwhile, the ejector rod 23 can be inserted into the fixed sleeve 19 to drive the finger part of the glove to turn over and then enter the fixed sleeve 19, the length of the ejector rod 23 entering the fixed sleeve 19 is set as required, the push plate 21 turns over the glove, after the turn-over is accomplished, first motor 30 drives lifter plate 17, riser 18 and push pedal 21 reset downwards, at the in-process that resets, push pedal 21 is when touchhing gloves, can rotate to the outside in order to cross gloves, after crossing gloves, push pedal 21 rotates to the inboard under the action of gravity, make push pedal 21 be the horizontality, second motor 29 drives ejector pin 23 and resets, a gloves turn-over is accomplished, carousel 10 rotates, the below of ejector pin 23 is rotated to a next set of fixed sleeve, repeat the above-mentioned action, accomplish the gloves turn-over on each group in proper order, the gloves turn-over on each fixed sleeve is accomplished in proper order through the rotation of carousel 10, then take off gloves and drag out the turn-over that both can accomplish gloves with finger portion.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications and variations can be made in the embodiments or in part of the technical features of the embodiments without departing from the spirit and the scope of the invention.

Claims (10)

1. A glove turn-over machine which is characterized in that: including can pivoted carousel (10), be provided with on carousel (10) with carousel (10) fixed connection's fixed sleeve (19), be provided with turn-over actuating mechanism on fixed sleeve (19), the upper portion of carousel (10) is provided with ejector pin (23), ejector pin (23) can be to the direction reciprocating motion who is close to or keeps away from fixed sleeve (19).
2. The glove turn-over machine of claim 1, wherein: the fixed sleeves (19) are multiple groups, and the multiple groups of fixed sleeves are arranged along the circumferential direction of the turntable (10).
3. The glove turn-over machine of claim 2, wherein: each set of fixing sleeves comprises at least one fixing sleeve (19).
4. A glove turn-over machine according to any of claims 1 to 3, wherein: turn-over actuating mechanism includes the suit and can follow the crane of the axial reciprocating motion of fixed sleeve (19) on fixed sleeve (19), it has two relative push pedal (21) that set up to articulate on the crane, all is provided with on the face that two push pedal (21) are relative and holds breach (33) that fixed sleeve (19) passed.
5. The glove turn-over machine of claim 4, wherein: the lifting frame comprises a lifting plate (17) sleeved on a fixing sleeve (19), two ends of the lifting plate (17) are respectively and fixedly connected with a vertical plate (18), and the push plate (21) is hinged to the vertical plate (18).
6. The glove turn-over machine of claim 4, wherein: the lifting frame is fixedly connected with a sliding rail (9) parallel to the fixed sleeve (19), the turntable (10) is fixedly connected with a guide seat (34) matched with the sliding rail (9), and the sliding rail (9) is connected with a power driving mechanism for driving the sliding rail to axially reciprocate along the fixed sleeve (19).
7. The glove turn-over machine of claim 6, wherein: the power driving mechanism comprises a first lifting seat (4) capable of ascending or descending, a driving seat (6) is connected onto the first lifting seat (4), the driving seat (6) is connected with a sliding rail (9), the first lifting seat (4) is connected with a cylinder, an oil cylinder or a motor capable of driving the first lifting seat to ascend or descend, and the first lifting seat (4) is connected with a first guide mechanism capable of limiting the movement direction of the first lifting seat.
8. The glove turn-over machine of claim 7, wherein: the driving device is characterized in that a driving plate (7) is fixedly connected onto the driving seat (6), a baffle (8) is fixedly connected onto the sliding rail (9), a gap is formed between the driving plate (7) and the driving seat (6), and the baffle (8) is located in the gap.
9. A glove turn-over machine according to any of claims 1 to 3, wherein: the ejector rod (23) is connected with a second lifting seat (26) capable of ascending or descending, the second lifting seat (26) is connected with a cylinder, an oil cylinder or a motor for driving the second lifting seat to ascend or descend, and the second lifting seat (26) is connected with a second guide mechanism for limiting the movement direction of the second lifting seat.
10. A glove turn-over machine according to any of claims 1 to 3, wherein: still include support (11), be provided with pivot (12) on support (11), be provided with on pivot (12) with carousel (10) fixedly connected with driven gear (13), driven gear (13) meshing has driving gear (15), driving gear (15) and retarder connection, the reduction gear is connected with the motor, reduction gear and motor fixed connection are on support (11).
CN201921086391.8U 2019-07-11 2019-07-11 Glove turning machine Expired - Fee Related CN210712296U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921086391.8U CN210712296U (en) 2019-07-11 2019-07-11 Glove turning machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921086391.8U CN210712296U (en) 2019-07-11 2019-07-11 Glove turning machine

Publications (1)

Publication Number Publication Date
CN210712296U true CN210712296U (en) 2020-06-09

Family

ID=70931033

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921086391.8U Expired - Fee Related CN210712296U (en) 2019-07-11 2019-07-11 Glove turning machine

Country Status (1)

Country Link
CN (1) CN210712296U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110387730A (en) * 2019-07-11 2019-10-29 潍坊希诺特机械科技有限公司 Gloves turnover machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110387730A (en) * 2019-07-11 2019-10-29 潍坊希诺特机械科技有限公司 Gloves turnover machine

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Granted publication date: 20200609