CN217867722U - Flexible overturning and transplanting device for new energy motor stator - Google Patents

Flexible overturning and transplanting device for new energy motor stator Download PDF

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Publication number
CN217867722U
CN217867722U CN202222031337.1U CN202222031337U CN217867722U CN 217867722 U CN217867722 U CN 217867722U CN 202222031337 U CN202222031337 U CN 202222031337U CN 217867722 U CN217867722 U CN 217867722U
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China
Prior art keywords
clamping arm
connecting plate
horizontal transverse
transverse connecting
stator
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CN202222031337.1U
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Chinese (zh)
Inventor
李磊
苏心征
贾丽红
仲大权
罗雄
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Suzhou Lvkon New Energy Technology Co ltd
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Suzhou Lvkon New Energy Technology Co ltd
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Priority to CN202222031337.1U priority Critical patent/CN217867722U/en
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Publication of CN217867722U publication Critical patent/CN217867722U/en
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Abstract

The utility model provides a flexible upset transplanting device of new forms of energy motor stator, it makes the outer wall lifting hook increase tilting mechanism, accomplishes the upset operation of centre gripping stator, and its commonality is good, has reduced equipment cost. It includes: the first clamping arm comprises a first vertical clamping arm and a first horizontal transverse connecting plate; the second clamping arm comprises a second vertical clamping arm and a second horizontal transverse connecting plate; the cambered surfaces of the two flexible pressing blocks are oppositely arranged and are used for clamping the outer circular surface area of the stator; and a drive upright; the stator clamping device comprises a first horizontal transverse connecting plate, a second horizontal transverse connecting plate and a fastener, wherein a plurality of positioning holes are arranged at intervals on the horizontal parts of the first horizontal transverse connecting plate and the second horizontal transverse connecting plate, the first horizontal transverse connecting plate and the second horizontal transverse connecting plate are fixedly connected with a group of positioning holes which are arranged in an aligned mode through the fastener, and a space between the first vertical clamping arm and the second vertical clamping arm is used for clamping a stator.

Description

Flexible overturning and transplanting device for new energy motor stator
Technical Field
The utility model relates to a motor stator moves the technical field that carries, specifically is a flexible upset transplanting device of new forms of energy motor stator.
Background
In the new energy motor industry, stator hoisting in the prior art includes that outer wall centre gripping, inside support cooperate the robot arm to help accomplish two steps of upset, and its cost is higher, and the outer wall fixture of stator hoisting, it can not compatible different model stators, leads to the stator of every model size all to need make different stator hoisting machine and constructs, leads to equipment cost height.
Disclosure of Invention
To the problem, the utility model provides a flexible upset transplanting device of new forms of energy motor stator, it makes the outer wall lifting hook increase tilting mechanism, accomplishes the upset operation of centre gripping stator, and its commonality is good, has reduced equipment cost.
The utility model provides a flexible upset transplanting device of new forms of energy motor stator which characterized in that, it includes:
the first clamping arm comprises a first vertical clamping arm and a first horizontal transverse connecting plate;
the second clamping arm comprises a second vertical clamping arm and a second horizontal transverse connecting plate;
the cambered surface parts of the two flexible pressing blocks are oppositely arranged and are used for clamping the outer circular surface area of the stator;
and a drive upright;
a plurality of positioning holes are arranged at intervals on the horizontal parts of the first horizontal transverse connecting plate and the second horizontal transverse connecting plate, the first horizontal transverse connecting plate and the second horizontal transverse connecting plate are fixedly connected with a group of positioning holes which are arranged in an alignment way through fasteners, and a space between the first vertical clamping arm and the second vertical clamping arm is used for clamping a stator;
the non-cambered surface part of each flexible pressure attachment block is laterally protruded to form a connecting shaft, the opposite inner surface areas of the lower parts of the first clamping arm and the second clamping arm are respectively and fixedly provided with a turnover mechanism, the connecting shafts on the corresponding sides are respectively and correspondingly inserted into the turnover mechanisms on the corresponding positions, the connecting shafts are turned over relative to the clamping arms, at least one connecting shaft is externally connected with a driving vertical rod, and the driving vertical rod drives the corresponding flexible pressure attachment block to drive the stator to turn over.
It is further characterized in that:
the tail end of the first horizontal transverse connecting plate, which is far away from the first vertical clamping arm, is provided with a first lifting hook hole, the tail end of the second horizontal transverse connecting plate, which is far away from the second vertical clamping arm, is provided with a second lifting hook hole, and the first lifting hook hole and the second lifting hook hole are convenient for the lifting operation of the whole structure;
the turnover mechanism is specifically a bearing seat and a bearing, the bearing seat is fixedly arranged on the inner wall of the lower end of the corresponding clamping arm, the bearing is embedded in the bearing seat, and the connecting shaft is inserted in the bearing inner ring for positioning arrangement;
one of the connecting shafts is fixedly provided with the driving upright rod relative to the exposed part of the bearing;
the length tail end of the driving vertical rod is positioned above the clamping arm under the initial position of the driving vertical rod, so that the subsequent operation is convenient and reliable.
Adopt the utility model discloses afterwards, confirm to state first horizontal transverse connection board based on the excircle diameter of stator, the horizontal part of the horizontal transverse connection board of second is used for the staggered arrangement position of fixed orifices, hoist and mount horizontal transverse connection board, make the cambered surface part laminating of flexible pressure attaching piece press the outer anchor ring that attaches the stator, under the effect of the swinging boom that the mounting formed, a pair of flexible pressure attaches the piece fastening and presses and attach the stator, the flexible pressure that the drive pole setting drive corresponds attaches the piece and drives stator upset operation, it is according to the staggered arrangement position of stator size adjustment fixed orifices, and its commonality is good, it makes the outer wall lifting hook increase tilting mechanism, accomplish the upset operation of centre gripping stator, the equipment cost is reduced.
Drawings
Fig. 1 is a perspective view of the structure of the present invention (clamping the motor stator);
fig. 2 is a schematic sectional front view of the turnover mechanism of the present invention;
the names corresponding to the sequence numbers in the figure are as follows:
the flexible clamping device comprises a first clamping arm 10, a first vertical clamping arm 11, a first horizontal transverse connecting plate 12, a first hook hole 13, a second clamping arm 20, a second vertical clamping arm 21, a second horizontal transverse connecting plate 22, a second hook hole 23, a flexible pressing block 30, an arc surface part 31, a connecting shaft 32, a driving vertical rod 40, a positioning hole 50, a turnover mechanism 60, a bearing seat 61, a bearing 62 and a stator 100.
Detailed Description
A new energy motor stator flexible overturning and transplanting device is shown in figures 1 and 2 and comprises a first clamping arm 10, a second clamping arm 20, a pair of flexible pressing blocks 30 and a driving vertical rod 40; the first clamping arm 10 comprises a first vertical clamping arm 11 and a first horizontal transverse connecting plate 12; the second clamping arm 20 comprises a second vertical clamping arm 21 and a second horizontal transverse connecting plate 22;
the cambered surface parts 31 of the two flexible pressing blocks 30 are oppositely arranged and used for clamping the outer annular surface area of the stator 100;
a plurality of positioning holes 50 are arranged at intervals on the horizontal parts of the first horizontal transverse connecting plate 12 and the second horizontal transverse connecting plate 22, the first horizontal transverse connecting plate 12 and the second horizontal transverse connecting plate 22 are fixedly connected with a group of positioning holes 50 which are arranged in an alignment way through fasteners to form a pivoting rotating shaft structure, and a space between the first vertical clamping arm 11 and the second vertical clamping arm 21 is used for clamping the stator 100;
the non-arc part side of each flexible pressure attachment block 30 is protruded to form a connecting shaft 32, the opposite inner surface areas of the lower positions of the first clamping arm 10 and the second clamping arm 20 are respectively and fixedly provided with a turnover mechanism 60, the connecting shafts 32 on the corresponding sides are respectively inserted into the turnover mechanisms 60 on the corresponding positions correspondingly, the connecting shafts 32 are turned over relative to the clamping arms, at least one connecting shaft 32 is externally connected with a driving upright rod 40, and the driving upright rod 40 drives the corresponding flexible pressure attachment block 30 to drive the stator 100 to turn over.
In the specific embodiment, five groups of fixing holes are respectively arranged on the horizontal positions of the first horizontal transverse connecting plate and the second horizontal transverse connecting plate at equal intervals, so that the relatively large adjusting distance is ensured, and the universality is good.
The tail end of the first horizontal transverse connecting plate 12, which is far away from the first vertical clamping arm 11, is obliquely and obliquely arranged upwards and is provided with a first hook hole 13, the tail end of the second horizontal transverse connecting plate 22, which is far away from the second vertical clamping arm 21, is obliquely and obliquely arranged upwards and is provided with a second hook hole 23, and the first hook hole 13 and the second hook hole 23 are convenient for hoisting the whole structure;
the turnover mechanism 60 is specifically a bearing seat 61 and a bearing 62, the bearing seat 61 is fixedly arranged on the inner wall of the lower end of the corresponding clamping arm, the bearing 62 is embedded in the bearing seat 61, and the connecting shaft 32 is inserted in the inner ring of the bearing 62 for positioning;
one of the connecting shafts 32 is fixedly provided with a driving upright rod 40 relative to the exposed part of the bearing 62;
the driving upright rod 40 is arranged at the position below the initial position and above the clamping arm at the tail end of the length thereof, so that the subsequent operation is convenient and reliable.
The working principle is as follows: confirm to state first horizontal transverse connection board based on the excircle diameter of stator, the staggered arrangement position that the horizontal part of the horizontal transverse connection board of second is used for the fixed orifices, hoist horizontal transverse connection board, make the cambered surface part laminating of flexible pressure attaching piece press the outer anchor ring that attaches the stator, under the effect of the swinging boom that the mounting formed, a pair of flexible pressure attaching piece fastening is pressed and is attached the stator, the flexible pressure attaching piece that the drive pole setting drive corresponds drives stator upset operation, its staggered arrangement position according to stator size adjustment fixed orifices, and its commonality is good, it makes the outer wall lifting hook increase tilting mechanism, accomplish the upset operation of centre gripping stator, equipment cost has been reduced.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (5)

1. The utility model provides a flexible upset transplanting device of new forms of energy motor stator which characterized in that, it includes:
the first clamping arm comprises a first vertical clamping arm and a first horizontal transverse connecting plate;
the second clamping arm comprises a second vertical clamping arm and a second horizontal transverse connecting plate;
the cambered surfaces of the two flexible pressing blocks are oppositely arranged and are used for clamping the outer circular surface area of the stator;
and a drive upright;
the horizontal parts of the first horizontal transverse connecting plate and the second horizontal transverse connecting plate are provided with a plurality of positioning holes at intervals, the first horizontal transverse connecting plate and the second horizontal transverse connecting plate are fixedly connected with a group of positioning holes which are arranged in an aligned mode through fasteners, and a space between the first vertical clamping arm and the second vertical clamping arm is used for clamping a stator;
the non-cambered surface part of each flexible pressing attachment block is laterally protruded to form a connecting shaft, the opposite inner surface areas of the lower positions of the first clamping arm and the second clamping arm are respectively and fixedly provided with a turnover mechanism, the connecting shafts on the corresponding sides are respectively and correspondingly inserted into the turnover mechanisms on the corresponding positions, the connecting shafts perform turnover operation relative to the clamping arms, at least one connecting shaft is externally connected with a driving upright rod, and the driving upright rod drives the corresponding flexible pressing attachment block to drive the stator to perform turnover operation.
2. The flexible overturning and transplanting device for the new energy motor stator as claimed in claim 1, characterized in that: the tail end of the first horizontal transverse connecting plate, which is far away from the first vertical clamping arm, is provided with a first lifting hook hole, and the tail end of the second horizontal transverse connecting plate, which is far away from the second vertical clamping arm, is provided with a second lifting hook hole.
3. The flexible overturning and transplanting device for the new energy motor stator as claimed in claim 1, characterized in that: the turnover mechanism is specifically a bearing seat and a bearing, the bearing seat is fixedly arranged on the inner wall of the lower end of the corresponding clamping arm, the bearing is embedded in the bearing seat, and the connecting shaft is inserted in the bearing inner ring for positioning.
4. The flexible overturning and transplanting device for the new energy motor stator as claimed in claim 1, characterized in that: one of the connecting shafts is fixedly provided with the driving upright rod relative to the exposed part of the bearing.
5. The flexible overturning and transplanting device for the new energy motor stator as claimed in claim 1, characterized in that: and the length tail end of the driving vertical rod is positioned above the clamping arm under the initial position of the driving vertical rod.
CN202222031337.1U 2022-08-03 2022-08-03 Flexible overturning and transplanting device for new energy motor stator Active CN217867722U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222031337.1U CN217867722U (en) 2022-08-03 2022-08-03 Flexible overturning and transplanting device for new energy motor stator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222031337.1U CN217867722U (en) 2022-08-03 2022-08-03 Flexible overturning and transplanting device for new energy motor stator

Publications (1)

Publication Number Publication Date
CN217867722U true CN217867722U (en) 2022-11-22

Family

ID=84056551

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222031337.1U Active CN217867722U (en) 2022-08-03 2022-08-03 Flexible overturning and transplanting device for new energy motor stator

Country Status (1)

Country Link
CN (1) CN217867722U (en)

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