CN222347911U - Spare part feeding mechanism for machining electromechanical equipment - Google Patents
Spare part feeding mechanism for machining electromechanical equipment Download PDFInfo
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- CN222347911U CN222347911U CN202421276086.6U CN202421276086U CN222347911U CN 222347911 U CN222347911 U CN 222347911U CN 202421276086 U CN202421276086 U CN 202421276086U CN 222347911 U CN222347911 U CN 222347911U
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- rotating
- belt
- sliding frame
- lifting slide
- frame
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- 238000003754 machining Methods 0.000 title abstract description 7
- 230000005540 biological transmission Effects 0.000 claims 2
- 230000000694 effects Effects 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000000149 penetrating effect Effects 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000005266 casting Methods 0.000 description 1
- 230000005674 electromagnetic induction Effects 0.000 description 1
- 238000001125 extrusion Methods 0.000 description 1
- 238000005192 partition Methods 0.000 description 1
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Abstract
The utility model discloses a part feeding mechanism for machining electromechanical equipment, which comprises a supporting part, a belt and a limiting part, wherein the supporting part comprises two rotating plates, two rotating plates are horizontally and symmetrically arranged along the vertical direction, a belt roller is vertically and rotationally connected between the two rotating plates, the belt is arranged on the belt roller in a tensioning mode, a plurality of limiting parts are transversely arranged on the vertical end face of the outer side of the belt, the limiting part comprises a first lifting sliding frame, a second lifting sliding frame and a rotating frame, the first lifting sliding frame is vertically fixed on the outer end face of the belt, the first lifting sliding frame is vertically and slidingly assembled with the second lifting sliding frame, two rotating frames are horizontally and symmetrically arranged on the second lifting sliding frame, and the two rotating frames are vertically and slidingly assembled on the second lifting sliding frame and are transversely and rotationally connected with a plurality of rotating wheels. The utility model solves the problem that the stability of the motor shell is poor in transportation because the motor shell lacks a limit supporting structure in the prior transportation and is influenced by the start-stop inertia of a conveyer belt in the transportation.
Description
Technical Field
The utility model relates to the technical field of feeding equipment, in particular to a part feeding mechanism for machining electromechanical equipment.
Background
The motor is an electromagnetic device for converting or transmitting electric energy according to the law of electromagnetic induction, and has the main function of generating driving torque, and is used as a power source of an electric appliance or various machines, wherein the shell of the motor is one part of the motor, the shell of the motor is generally formed by casting, and the shell of the motor needs to be transported to a processing point for processing by using feeding equipment after the shell of the motor is formed.
The utility model provides a current bulletin number is CN220282496U, the name is spare part processing material feeding unit, which comprises a frame, a plurality of baffle and four sets of landing legs, install the conveyer belt on the frame, conveyer belt surface connection a plurality of evenly arranges the locating strip, be equipped with the fixed orifices on the locating strip, install on the baffle with fixed orifices joint complex joint spare, the articulated seat is connected to the frame bottom, articulated seat articulates the extension rod, be equipped with the sliding chamber that is used for sliding storage extension rod in the landing leg, be connected with the mounting that is used for fixed extension rod position on the landing leg, the baffle can play the partition effect, spare part is arranged in between the baffle, can carry one by one, the distance between the baffle can be adjusted in advance according to the size of spare part, the baffle accessible joint spare is fixed on the locating strip.
But above-mentioned vertical fixed baffle is used for separating a plurality of motor housing of transportation on the conveyer belt, but motor housing lacks limit support structure during the transportation, and motor housing receives the conveyer belt to start and stop inertial effect during the transportation, has led to the stability to become poor in the motor housing transportation.
Disclosure of utility model
The utility model aims to provide a part feeding mechanism for machining electromechanical equipment, and aims to solve the problems.
The utility model is realized in the following way:
The component feeding mechanism for machining electromechanical equipment comprises a supporting piece, a belt and limiting pieces, wherein the supporting piece comprises two rotating plates which are horizontally and symmetrically arranged along the vertical direction, a belt roller is vertically and rotationally connected between the two rotating plates, the belt is arranged on the belt roller in a tensioning manner, a plurality of limiting pieces are transversely arranged on the vertical end face of the outer side of the belt, the locating part includes first lift sliding frame, second lift sliding frame and commentaries on classics frame, and first lift sliding frame is vertical to be fixed on the outer terminal surface of belt, and vertical slip group has the second lift sliding frame on the first lift sliding frame, and horizontal symmetry is provided with two commentaries on classics frames on the second lift sliding frame, and two commentaries on classics frames vertical slip group is on the second lift sliding frame, and horizontal rotation is connected with a plurality of runners in the commentaries on classics frame.
Further, the top of the second lifting sliding frame is horizontally fixed with a sliding block, and the sliding block is vertically and slidably assembled on the first lifting sliding frame.
Further, an electric telescopic rod is vertically fixed on the top surface of the first lifting sliding frame, and the output end of the electric telescopic rod is fixed on the top surface of the second lifting sliding frame.
Further, the end part of the rotating frame is fixed with a sliding seat, and the sliding seat is vertically and slidingly assembled on the second lifting sliding frame.
Further, springs are vertically arranged between two adjacent sliding seats of the two rotating frames of the second lifting sliding frame, and two ends of each spring are respectively fixed on the end faces of the adjacent sliding seats.
Further, two continuous frames are vertically fixed on the rear end faces of the two rotating plates, one of the two rotating plates is vertically fixed with a conveying motor, and the output end of the conveying motor is fixed on the rotating shaft of the belt roller.
Further, a bottom plate is vertically fixed on the bottom surface of one of the two rotating plates, and a plurality of fixing screws are assembled on the bottom plate in a penetrating manner through vertical threads.
Compared with the prior art, the utility model has the beneficial effects that the conveying motor on the upper rotating plate of the supporting piece is started in use, the belt roller is driven to rotate, the belt is driven to move, the limiting piece is driven to operate, the electromechanical shell to be transported is sequentially inserted into the two rotating frames of the limiting piece, the moving belt drives the electromechanical shell to reach a proper position, the second lifting sliding frame is started to vertically slide downwards on the first lifting sliding frame, and then the electromechanical shell is pulled out of the two rotating frames, so that the electromechanical shell is limited to clamp and fix the electromechanical shell during transportation, the electromechanical shell is prevented from being influenced by inertia during transportation, and the transportation stability of the electromechanical shell is improved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed in the embodiments will be briefly described below, it being understood that the following drawings only illustrate some examples of the present utility model and therefore should not be considered as limiting the scope, and other related drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic exploded view of the present utility model;
FIG. 3 is a schematic view of the support in an exploded state in an embodiment of the present utility model;
FIG. 4 is a schematic illustration of the belt and stop member in an exploded configuration in accordance with an embodiment of the present utility model;
fig. 5 is a schematic view of the structure of the stopper in an exploded state according to the embodiment of the present utility model.
In the figure, 1, a supporting piece, 11, a rotating plate, 12, a connecting frame, 13, a belt roller, 14, a conveying motor, 15, a bottom plate, 16, a fixing screw, 2, a belt, 3, a limiting piece, 31, a first lifting sliding frame, 32, a second lifting sliding frame, 321, a sliding block, 33, an electric telescopic rod, 34, a rotating frame, 35, a sliding seat, 36, a spring, 37 and a rotating wheel.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are some embodiments of the present utility model, but not all embodiments. All other embodiments, based on the embodiments of the utility model, which are apparent to those of ordinary skill in the art without inventive faculty, are intended to be within the scope of the utility model. Thus, the following detailed description of the embodiments of the utility model, as presented in the figures, is not intended to limit the scope of the utility model, as claimed, but is merely representative of selected embodiments of the utility model. All other embodiments, based on the embodiments of the utility model, which are apparent to those of ordinary skill in the art without inventive faculty, are intended to be within the scope of the utility model.
Referring to fig. 1, 2, 3, 4 and 5, a feeding mechanism for parts for machining electromechanical equipment comprises a supporting member 1, a belt 2 and a limiting member 3, wherein the supporting member 1 comprises a rotating plate 11, the rotating plate 11 is horizontally and symmetrically provided with two rotating plates along the vertical direction, a belt roller 13 is vertically and rotatably connected between the two rotating plates 11, the belt 2 is arranged on the belt roller 13 in a tensioning manner, a plurality of limiting members 3 are transversely arranged on the vertical end surface of the outer side of the belt 2, the limiting member 3 comprises a first lifting sliding frame 31, a second lifting sliding frame 32 and a rotating frame 34, the first lifting sliding frame 31 is vertically fixed on the outer end surface of the belt 2, the first lifting sliding frame 31 is vertically and slidably assembled with the second lifting sliding frame 32, the second lifting sliding frame 32 is horizontally and symmetrically provided with two rotating frames 34, the two rotating frames 34 are vertically and slidably assembled on the second lifting sliding frame 32, a plurality of rotating wheels 37 are transversely connected in the rotating frames 34 in a rotating mode, the conveying motor 14 on the rotating plate 11 on the supporting piece 1 is started in use, the belt roller 13 is driven to rotate, the belt 2 is driven to move, the limiting piece 3 is driven to operate, the electromechanical shells to be transported are sequentially inserted into the two rotating frames 34 of the limiting piece 3, the moving belt 2 drives the electromechanical shells to reach a proper position, the second lifting sliding frame 32 is started to vertically slide on the first lifting sliding frame 31, then the electromechanical shells are pulled out of the two rotating frames 34, the electromechanical shells are limited and clamped, the electromechanical shells are prevented from being affected by inertia when being conveyed, and the transportation stability of the electromechanical shells is improved.
Referring to fig. 5, a sliding block 321 is horizontally fixed at the top of the second lifting sliding frame 32, the sliding block 321 is vertically and slidably assembled on the first lifting sliding frame 31, an electric telescopic rod 33 is vertically fixed on the top surface of the first lifting sliding frame 31, and the output end of the electric telescopic rod 33 is fixed on the top surface of the second lifting sliding frame 32, and when in use, the electric telescopic rod 33 is started to push the second lifting sliding frame 32 to vertically slide on the first lifting sliding frame 31, so that the feeding height is convenient to vertically adjust.
Referring to fig. 5, the end portions of the rotating frames 34 are fixed with sliding bases 35, the sliding bases 35 are vertically and slidably assembled on the second lifting sliding frame 32, springs 36 are vertically arranged between the adjacent sliding bases 35 of the two rotating frames 34 of the second lifting sliding frame 32, two ends of each spring 36 are respectively fixed on the end faces of the adjacent sliding bases 35, when the two rotating frames 34 are inserted into the electromechanical housing in use, the two rotating frames 34 are extruded to vertically move on the second lifting sliding frame 32, the extrusion springs 36 deform, and then the two rotating frames 34 are pushed to clamp the electromechanical housing by utilizing the deformation force of the springs 36.
Referring to fig. 3, two connecting frames 12 are vertically fixed on the rear end faces of the two rotating plates 11, one of the two rotating plates 11 is vertically fixed with a conveying motor 14, the output end of the conveying motor 14 is fixed on the rotating shaft of the belt roller 13, a bottom plate 15 is vertically fixed on the bottom face of one of the two rotating plates 11, a plurality of fixing screws 16 are vertically threaded on the bottom plate 15 in a penetrating manner, and in use, the conveying motor 14 is started to drive the belt roller 13 on the two rotating plates 11 to rotate, so that the belt 2 is tensioned to carry out the outer shell of the conveying machine.
The operating principle is that in use, the conveying motor 14 on the upper rotating plate 11 of the supporting piece 1 is started to drive the belt roller 13 to rotate, the belt 2 is driven to move, the limiting piece 3 is driven to operate, the electromechanical shell to be transported is sequentially inserted into the two rotating frames 34 of the limiting piece 3, the moving belt 2 drives the electromechanical shell to reach a proper position, the second lifting sliding frame 32 is started to vertically slide down on the first lifting sliding frame 31, and then the electromechanical shell is pulled out of the two rotating frames 34, so that the electromechanical shell is limited to clamp and fix the electromechanical shell during transportation.
The above description is only of the preferred embodiments of the present utility model and is not intended to limit the present utility model, and various modifications and variations may be made to the present utility model by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.
Claims (7)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421276086.6U CN222347911U (en) | 2024-06-05 | 2024-06-05 | Spare part feeding mechanism for machining electromechanical equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421276086.6U CN222347911U (en) | 2024-06-05 | 2024-06-05 | Spare part feeding mechanism for machining electromechanical equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222347911U true CN222347911U (en) | 2025-01-14 |
Family
ID=94193621
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421276086.6U Active CN222347911U (en) | 2024-06-05 | 2024-06-05 | Spare part feeding mechanism for machining electromechanical equipment |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222347911U (en) |
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2024
- 2024-06-05 CN CN202421276086.6U patent/CN222347911U/en active Active
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