CN216178092U - Motor stator feeding mechanism for motor rotor shaft pressing system - Google Patents

Motor stator feeding mechanism for motor rotor shaft pressing system Download PDF

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Publication number
CN216178092U
CN216178092U CN202122311628.1U CN202122311628U CN216178092U CN 216178092 U CN216178092 U CN 216178092U CN 202122311628 U CN202122311628 U CN 202122311628U CN 216178092 U CN216178092 U CN 216178092U
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Prior art keywords
motor stator
cylinder
motor
stator
operation cabinet
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CN202122311628.1U
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Chinese (zh)
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徐峰
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Tianjin Tuoda Vehicle Parts Co ltd
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Tianjin Tuoda Vehicle Parts Co ltd
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Abstract

The utility model relates to a motor stator feeding mechanism for a motor rotor shaft pressing system, which comprises an operation cabinet, wherein a discharge port is formed in one side of the surface of the operation cabinet, a temporary storage mechanism is arranged in the other side of the surface of the operation cabinet, a feeding assembly is arranged in the operation cabinet corresponding to the discharge port, a clamping support assembly and a supporting assembly are symmetrically arranged at the discharge port respectively, a pushing mechanism is further arranged on the operation cabinet at one side of the discharge port, and the pushing mechanism is matched with the supporting mechanism to realize the transfer of a motor stator to the temporary storage mechanism. The rotor pressing shaft taking device is reasonable in structure and convenient to operate, manual stooping and taking are replaced by mechanical cooperation, the labor intensity of workers is effectively reduced, the taking working efficiency is improved, and the whole working efficiency of production and transmission of the rotor pressing shaft is greatly improved.

Description

Motor stator feeding mechanism for motor rotor shaft pressing system
Technical Field
The utility model belongs to the technical field of motor processing equipment, and particularly relates to a motor stator feeding mechanism for a motor rotor shaft pressing system.
Background
The rotor is an important component of the motor, the motor rotor is formed by a rotating shaft and a stator, and the rotating shaft of the motor needs to be pressed into the stator in production; in prior art, the enterprise can use the last item machine to come the last item, and before the last item, can carry the operating panel with accumulational stator, then go the last item from the stator of taking in the pile-up frame again, but because stator core's edge is sharper, and the winding group sets up makes the iron core more complicated, the stator that piles up together is taken with the hand and is difficult for the separation and very easily by the fish tail, and it is lower to take a stator efficiency from numerous stators, and the stator tiling is deposited and is taken the operation mesa, consequently need one kind promptly and be convenient for the workman and take one by one, the stator efficiency of taking is provided, the motor stator feed mechanism who sparingly takes the operation mesa.
No patent documents relevant to the present application were found by search.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects of the prior art and provides the motor stator feeding mechanism for the motor rotor shaft pressing system, which reduces the personnel operation, reduces the physical labor and improves the automation intensity.
The technical problem to be solved by the utility model is realized by adopting the following technical scheme:
a motor stator feeding mechanism for a motor rotor shaft pressing system comprises an operation cabinet, a pushing mechanism, a feeding assembly, a clamping and supporting assembly, a supporting and jacking assembly and a temporary storage mechanism, wherein a discharge hole is formed in one side of the surface of a counter of the operation cabinet, the temporary storage mechanism is arranged on the other side of the surface of the counter, a feeding component is arranged in the operating cabinet corresponding to the discharge hole, the feeding component comprises a slide rail, an electric cylinder and a tray, the slide rail is arranged on the side wall in the operation cabinet, the feeding slide rail is provided with a tray through an electric cylinder, the tray is used for stacking the motor stators, the discharge port is also symmetrically provided with a clamping support component and a supporting top component respectively, the clamping and supporting component is used for positioning and clamping the stator, the supporting and supporting component is used for supporting and supporting the stator, still be provided with push mechanism on the operation cabinet of discharge gate one side, push mechanism realizes with the cooperation of top supporting mechanism that the motor stator shifts to temporary storage mechanism.
Moreover, press from both sides and hold in the palm the subassembly including holding up the cylinder, pressing from both sides and getting the cylinder and press from both sides and get the arc, the telescopic link that holds up the cylinder is vertical upwards, and installs on it and presss from both sides and get the cylinder, press from both sides and get cylinder horizontal output piston one side and still be provided with to press from both sides and get the arc.
And, the top supporting assembly comprises an advancing cylinder, a bearing row seat and a row wheel, wherein the piston of the advancing cylinder is horizontally arranged, the end part of the advancing cylinder is vertically provided with the bearing row seat, and the row wheel is arranged on the bearing row seat.
And, push mechanism includes propelling movement slide rail, propelling movement electric jar and propelling movement board, the operation cabinet surface at discharge gate one side is installed to the propelling movement slide rail, slidable mounting promotes the electric jar on the propelling movement slide rail, it is close to discharge gate one end still horizontal to be provided with a propelling movement board to promote the electric jar.
And, temporary storage mechanism includes baffle, mounting panel, follows driving wheel, pivot and belt, mounting panel symmetry interval is installed on the operation cabinet, connects jointly between two mounting panel one sides and installs the pivot, and the mounting panel opposite side all installs from the driving wheel, install the belt between follow driving wheel and the pivot, keep away from still to install the baffle on the mounting panel of discharge gate one side for spacing block the motor stator that the conveying was come.
Moreover, the row wheel is a rubber wheel.
Furthermore, the mounting plates are spaced apart by a distance that is adapted to the diameter of the stator.
Moreover, the discharge hole is a circular hole.
And a sensor for detecting whether the stator exists on the belt of the temporary storage mechanism is also arranged on the baffle.
The utility model has the advantages and positive effects that:
the stator automatic transfer device is reasonable in structure and convenient to operate, manual stooping and taking are replaced by matching the feeding assembly, the clamping support assembly and the jacking assembly, automatic transfer of the stator is realized by matching the pushing mechanism, the temporary storage mechanism and the row wheels of the jacking assembly, the labor intensity of workers is effectively reduced, the taking work efficiency is improved, and the whole work efficiency of production and transmission of the rotor pressing shaft is greatly improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a perspective view of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the following embodiments, which are illustrative only and not limiting, and the scope of the present invention is not limited thereby.
A motor stator feeding mechanism for a motor rotor shaft pressing system comprises an operation cabinet 4, a pushing mechanism, a feeding assembly, a clamping and supporting assembly, a supporting and jacking assembly 5 and a temporary storage mechanism, wherein a discharge hole is formed in one side of the surface of a counter of the operation cabinet, the temporary storage mechanism is arranged on the other side of the surface of the counter, a feeding component is arranged in the operating cabinet corresponding to the discharge hole, the feeding component comprises a slide rail 2, an electric cylinder 1 and a tray 3, the slide rail is arranged on the side wall in the operation cabinet, the feeding slide rail is provided with a tray through an electric cylinder, the tray is used for stacking the motor stators 17, the discharge port is also symmetrically provided with a clamping support component and a supporting top component respectively, the clamping and supporting component is used for positioning and clamping the stator, the supporting and supporting component is used for supporting and supporting the stator, the pushing mechanism is arranged on the operating cabinet on one side of the discharge port and matched with the jacking mechanism to realize the transfer of the motor stator to the temporary storage mechanism;
the clamping and supporting assembly comprises a supporting cylinder 7, a clamping cylinder and a clamping arc-shaped plate 6, a telescopic rod of the supporting cylinder is vertically upward and provided with the clamping cylinder, and the clamping arc-shaped plate is arranged on one side of a horizontal output piston of the clamping cylinder;
the jacking assembly comprises an advancing cylinder, a bearing row seat 11 and a row wheel 12, wherein a piston of the advancing cylinder is horizontally arranged, the end part of the advancing cylinder is vertically provided with the bearing row seat, the bearing row seat is provided with the row wheel, and the row wheel is a rubber wheel;
the pushing mechanism comprises a pushing slide rail 10, a pushing electric cylinder 9 and a pushing plate 8, the pushing slide rail is installed on the surface of the operation cabinet on one side of the discharge port, the pushing electric cylinder is installed on the pushing slide rail in a sliding mode and is pushed, the pushing electric cylinder is arranged close to one end of the discharge port and is horizontally provided with the pushing plate, and the pushing electric cylinder drives the pushing plate to push the stator arranged on the row wheel.
The temporary storage mechanism comprises a baffle 16, a mounting plate 13, a driven wheel, a rotating shaft 15 and a belt 14, the mounting plates are symmetrically mounted on the operating cabinet, the rotating shaft is connected and mounted between one sides of the two mounting plates, the driven wheel is mounted on the other side of the mounting plates, the belt is mounted between the driven wheel and the rotating shaft, and the baffle is further mounted on the mounting plate on one side far away from the discharge port and used for limiting and blocking the conveyed motor stator; the distance between the mounting plates is matched with the diameter of the stator;
in the specific implementation of the utility model, the discharge hole is a circular hole.
In the specific implementation of the utility model, a sensor is further arranged on the baffle plate and used for detecting whether a stator exists on a belt of the temporary storage mechanism.
The specific operation process of the utility model is as follows:
the workman will at first put the motor stator that stacks on the tray, then start the electric jar, the electric jar drives the stator and rises, when the stator rises to the discharge gate position, the clamp of upper portion holds in the palm the subassembly presss from both sides to get the cylinder and stretches out to the stator and clip the stator, then start to press from both sides the support cylinder that holds in the palm the subassembly and lift on the stator, the electric jar descends this moment, the advancing cylinder that holds in the palm the top subassembly drives the bearing row seat and stretches out to the stator lower surface and play the support to the stator, pushing mechanism's propelling movement electric jar pushes the stator to temporary storage mechanism, and realize better transmission through temporary storage mechanism's cooperation.
The stator automatic transfer device is reasonable in structure and convenient to operate, manual stooping and taking are replaced by matching the feeding assembly, the clamping support assembly and the jacking assembly, automatic transfer of the stator is realized by matching the pushing mechanism, the temporary storage mechanism and the row wheels of the jacking assembly, the labor intensity of workers is effectively reduced, the taking work efficiency is improved, and the whole work efficiency of production and transmission of the rotor pressing shaft is greatly improved.
Although the embodiments of the present invention and the accompanying drawings are disclosed for illustrative purposes, those skilled in the art will appreciate that: various substitutions, changes and modifications are possible without departing from the spirit and scope of the utility model and the appended claims, and therefore the scope of the utility model is not limited to the disclosure of the embodiments and the accompanying drawings.

Claims (9)

1. The utility model provides a motor stator feed mechanism for electric motor rotor last item system which characterized in that: including operation cabinet, push mechanism, material loading subassembly, clamp support subassembly, support subassembly and temporary storage mechanism, sales counter surface one side system of operation cabinet has the discharge gate, and the opposite side sets up temporary storage mechanism, corresponds to be provided with material loading subassembly in this discharge gate position operation cabinet, material loading subassembly includes slide rail, electric jar and tray, the slide rail is installed on the lateral wall in the operation cabinet, install the tray through the electric jar on the slide rail, the tray is used for stacking motor stator, discharge gate department still symmetry respectively is provided with presss from both sides support subassembly and support subassembly, it is used for clamping the stator location to press from both sides the support subassembly, support the subassembly and be used for holding in the palm the stator and live, still be provided with push mechanism on the operation cabinet of discharge gate one side, push mechanism realizes motor stator to temporary storage mechanism's transfer with the cooperation of support top mechanism.
2. The motor stator feeding mechanism for the motor rotor shaft pressing system according to claim 1, wherein: the clamping support assembly comprises a supporting cylinder, a clamping cylinder and a clamping arc-shaped plate, a telescopic rod of the supporting cylinder is vertically upward and is provided with the clamping cylinder, and the clamping cylinder is arranged on the clamping cylinder, and the clamping arc-shaped plate is arranged on one side of a horizontal output piston of the clamping cylinder.
3. The motor stator feeding mechanism for the motor rotor shaft pressing system according to claim 1, wherein: the jacking assembly comprises an advancing cylinder, a bearing row seat and a row wheel, a piston of the advancing cylinder is horizontally arranged, the bearing row seat is vertically installed at the end of the advancing cylinder, and the row wheel is installed on the bearing row seat.
4. The motor stator feeding mechanism for the motor rotor shaft pressing system according to claim 1, wherein: the pushing mechanism comprises a pushing slide rail, a pushing electric cylinder and a pushing plate, the pushing slide rail is installed on the surface of the operation cabinet on one side of the discharge port, the pushing electric cylinder is installed on the pushing slide rail in a sliding mode, and the pushing electric cylinder is close to one end of the discharge port and is horizontally provided with the pushing plate.
5. The motor stator feeding mechanism for the motor rotor shaft pressing system according to claim 1, wherein: temporary storage mechanism includes baffle, mounting panel, follows driving wheel, pivot and belt, mounting panel symmetry interval is installed on the operation cabinet, connects jointly between two mounting panel one sides and installs the pivot, and the mounting panel opposite side all installs from the driving wheel, install the belt between follow driving wheel and the pivot, keep away from still installing the baffle on the mounting panel of discharge gate one side for spacing block the motor stator that the conveying was come.
6. The motor stator feeding mechanism for the motor rotor shaft pressing system according to claim 3, wherein: the row wheel is a rubber wheel.
7. The motor stator feeding mechanism for the motor rotor shaft pressing system according to claim 5, wherein: the spacing distance of the mounting plates is matched with the diameter of the stator.
8. The motor stator feeding mechanism for the motor rotor shaft pressing system according to claim 1, wherein: the discharge hole is a circular hole.
9. The motor stator feeding mechanism for the motor rotor shaft pressing system according to claim 5, wherein: and a sensor for detecting whether a stator exists on a belt of the temporary storage mechanism is also arranged on the baffle.
CN202122311628.1U 2021-09-06 2021-09-24 Motor stator feeding mechanism for motor rotor shaft pressing system Active CN216178092U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN2021221330276 2021-09-06
CN202122133027 2021-09-06

Publications (1)

Publication Number Publication Date
CN216178092U true CN216178092U (en) 2022-04-05

Family

ID=80920933

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122311628.1U Active CN216178092U (en) 2021-09-06 2021-09-24 Motor stator feeding mechanism for motor rotor shaft pressing system

Country Status (1)

Country Link
CN (1) CN216178092U (en)

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