CN209804365U - Automatic magnetizing device - Google Patents

Automatic magnetizing device Download PDF

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Publication number
CN209804365U
CN209804365U CN201920832845.5U CN201920832845U CN209804365U CN 209804365 U CN209804365 U CN 209804365U CN 201920832845 U CN201920832845 U CN 201920832845U CN 209804365 U CN209804365 U CN 209804365U
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CN
China
Prior art keywords
magnetizing
cylinder
fixed
track
automatic
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Active
Application number
CN201920832845.5U
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Chinese (zh)
Inventor
马腾江
杨明
胡鸿
陈名正
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Shenzhen Turnip Robot Co Ltd
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Shenzhen Turnip Robot Co Ltd
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Priority to CN201920832845.5U priority Critical patent/CN209804365U/en
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Abstract

The utility model provides an automatic magnetizing device, which comprises a frame, a vibrating disk and a material distributing track, magnetizing mechanism and blowpit, the frame includes supporting platform and locates the support sloping platform of supporting platform one side, the vibration dish is fixed on supporting platform, magnetizing mechanism and blowpit are fixed on supporting sloping platform, magnetizing mechanism includes the elevating platform, rotary mechanism, magnetizing cylinder and locate the magnetizing machine of magnetizing cylinder below, magnetizing cylinder fixes on rotary mechanism, rotary mechanism fixes on the elevating platform, the elevating platform is fixed on supporting sloping platform, magnetizing cylinder one side is equipped with the bar open slot, magnetizing machine includes magnetizing head, magnetizing head is equipped with the chamber of magnetizing that corresponds with magnetizing cylinder position, divide material track one end and be connected with the discharge gate of vibration dish, divide the material track other end and be connected with magnetizing cylinder's bar open slot, divide the material track to be equipped with branch material stop gear, magnetizing cylinder locates between branch material track and the blowpit. The utility model discloses can magnetize by automatic feeding, production efficiency improves greatly, has reduced the processing cost.

Description

Automatic magnetizing device
Technical Field
The utility model relates to a magnetic part field of magnetizing especially relates to an automatic magnetization device.
Background
At present, a production mode of manually placing products and then manually placing the products into a magnetizing machine for magnetizing is generally adopted for magnetizing materials of magnetic parts. The processing mode causes extremely low production efficiency, high processing cost, weak universality, poor consistency of the produced products and unstable products.
SUMMERY OF THE UTILITY MODEL
In order to solve the problems in the prior art, the utility model provides an automatic magnetizing device.
The utility model provides an automatic magnetizing device, which comprises a frame, a vibrating disk, a material distributing track, a magnetizing mechanism and a discharge chute, wherein the frame comprises a supporting platform and a supporting sloping platform arranged on one side of the supporting platform, the vibrating disk is fixed on the supporting platform, the magnetizing mechanism and the discharge chute are fixed on the supporting sloping platform, the magnetizing mechanism comprises a lifting platform, a rotating mechanism, a magnetizing cylinder and a magnetizing machine arranged below the magnetizing cylinder, the magnetizing cylinder is fixed on the rotating mechanism, the rotating mechanism is fixed on the lifting platform, the lifting platform is fixed on the supporting sloping platform, one side of the magnetizing cylinder is provided with a strip-shaped open slot, the magnetizing machine comprises a magnetizing head, the magnetizing head is provided with a magnetizing cavity corresponding to the position of the magnetizing cylinder, one end of the material distributing track is connected with a discharge port of the vibrating disk, the other end of the material distribution track is connected with a strip-shaped open slot of the magnetizing cylinder, the material distribution track is provided with a material distribution limiting mechanism, and the magnetizing cylinder is arranged between the material distribution track and the discharge chute.
As a further improvement, the material separating and limiting mechanism comprises a material separating track close to the first material separating cylinder and the second material separating cylinder of one end of the magnetizing cylinder, the first material separating cylinder and the second material separating cylinder are separated by a product distance.
As a further improvement, the elevating platform comprises an elevating bracket and a slider, the slider is further provided with a lifting driving mechanism between the elevating bracket, and the rotating mechanism is fixed on the slider.
As a further improvement, the rotary mechanism is a rotary cylinder, the upper end of the rotary cylinder is fixed on the slider, and the lower end of the rotary cylinder is fixedly connected with the magnetizing cylinder.
As a further improvement of the utility model, the lifting driving mechanism is a screw rod transmission mechanism.
As a further improvement of the utility model, the material distributing track is close to the one end of the magnetizing cylinder is also provided with a photoelectric sensor.
As a further improvement, the magnetizing cylinder upper end is equipped with the material pressing cylinder, material pressing cylinder one end with rotary mechanism connects, the material pressing cylinder other end is arranged in the magnetizing cylinder.
The utility model has the advantages that: the utility model discloses a vibration dish automatic feeding enters into branch material track through vibration dish track, magnetizes after automatic sequencing, and production efficiency improves greatly, has reduced the processing cost, fills the magnetic head simultaneously and adopts and fill the problem that product magnetic force fills not full deeply to solve, improves product quality greatly.
Drawings
Fig. 1 is a schematic structural view of an automatic magnetizing apparatus of the present invention;
Fig. 2 is a schematic mechanism diagram of a material distributing track of the automatic magnetizing device of the present invention;
Fig. 3 is a schematic view of a part of the structure of a magnetizing mechanism of an automatic magnetizing apparatus of the present invention.
Reference numerals: 11-a support platform; 12-supporting the ramp; 2-vibrating the disc; 3-a material distribution track; 4-magnetizing mechanism; 5-a discharge chute; 6-a magnetic charger head; 32-a first material separating cylinder; 33-a second material distributing cylinder; 34-a photosensor; 41-lifting support; 42-a slide block; 43-a lifting drive mechanism; 44-a rotary cylinder; 45-material pressing cylinder; 46-magnetizing cylinder.
Detailed Description
As shown in fig. 1 to 3, the utility model discloses an automatic magnetizing device, which comprises a frame, a vibrating disk 2, a material distributing track 3, a magnetizing mechanism 4 and a discharging chute 5, wherein the frame comprises a supporting platform 11 and a supporting sloping platform 12 arranged on one side of the supporting platform 11, the supporting platform 11 is arranged horizontally, the supporting sloping platform 12 is arranged at a certain angle with the horizontal direction, a discharging port of the vibrating disk 2 is higher than the magnetizing mechanism 4, so as to facilitate discharging, the vibrating disk 2 is fixed on the supporting platform 11, the magnetizing mechanism 4 and the discharging chute 5 are fixed on the supporting sloping platform 12, the magnetizing mechanism 4 comprises a lifting platform, a rotating mechanism, a magnetizing cylinder 46 and a magnetizing machine arranged below the magnetizing cylinder 46, the magnetizing cylinder 46 is fixed on the rotating mechanism, the rotating mechanism is fixed on the lifting platform, the lifting platform is fixed on the supporting sloping platform 12, magnetizing cylinder 46 one side is equipped with the bar open slot, the magnetizer is including magnetizing head 6, magnetizing head 6 be equipped with the corresponding chamber that magnetizes in a 46 position of magnetizing, divide 3 one end of material track with the discharge gate of vibration dish 2 is connected, divide the material track 3 other end with magnetizing cylinder 46's bar open slot and connect, divide material track 3 to be equipped with branch material stop gear, magnetizing cylinder 46 is located divide material track 3 with between the blowpit 5.
When the magnetic magnetizing device works, products to be magnetized in the vibrating disk 2 are sequentially fed through vibration, the magnetizing cylinder 46 is driven by the rotating mechanism to rotate to enable the strip-shaped open slot of the magnetizing cylinder 46 to be in butt joint with the material distribution rail 3, the products enter the material distribution rail 3 through the material outlet of the vibrating disk 2, the products can flow into the strip-shaped open slot of the magnetizing cylinder 46 under the action of self gravity, the magnetizing cylinder 46 can move up and down due to the fact that the magnetizing mechanism 4 is further provided with the lifting platform, the products can be enabled to sequentially flow into the strip-shaped open slot of the magnetizing cylinder 46 in a superposed mode under the action of the material distribution limiting mechanism, after the products are filled in the magnetizing cylinder 46, the magnetizing cylinder 46 descends into the punching cavity of the magnetizing head 6 to be magnetized, after the magnetizing is completed, the magnetizing cylinder 46 is driven by the lifting platform to ascend and then rotates 180 degrees under the drive of the rotating mechanism, and the strip-shaped open slot of the magnetizing cylinder 46 corresponds to the discharge slot 5, at the moment, the product falls into the discharge chute 5 under the self gravity to be discharged. The automatic magnetizing device can complete automatic feeding, automatic magnetizing and automatic discharging of products, is simple in structure, high in magnetizing efficiency and low in production cost, and meanwhile, the magnetizing head 6 adopts a deep-charging structure to solve the problem that the magnetic force of the products is not full, so that the product quality is greatly improved.
In the technical scheme, the material distribution limiting mechanism comprises a first material distribution cylinder 32 and a second material distribution cylinder 33 which are arranged at one end, close to the magnetizing cylinder 46, of the material distribution rail 3, wherein a product distance is formed between the first material distribution cylinder 32 and the second material distribution flagpole, when the material distribution limiting mechanism works, the cylinder pole of the first material distribution cylinder 32 extends out to close the rail, the cylinder pole of the second material distribution cylinder 33 retracts to open the rail, after products sequentially slide down from the material distribution rail 3, the cylinder pole of the second material distribution cylinder 33 extends out to close the rail, the cylinder pole of the second material distribution cylinder 33 retracts to open the rail, and at the moment, the products between the first material distribution cylinder 32 and the second material distribution cylinder 33 slide down and enter a strip-shaped open slot of the magnetizing cylinder 46, so that one product sliding down at each time can be ensured.
In this embodiment, the lifting driving mechanism 43 is a screw rod transmission mechanism, and the lifting of the slider 42 is controlled by a servo motor and a screw rod, so as to drive the rotating mechanism and the magnetizing cylinder 46 to move up and down, and of course, the lifting driving mechanism 43 may also be a driving mechanism such as an air cylinder or a linear motor.
In this embodiment, the rotating mechanism is a rotating cylinder 44, the upper end of the rotating cylinder 44 is fixed on the slider 42, the lower end of the rotating cylinder 44 is fixedly connected with the magnetizing cylinder 46, and since the rotating angle of the rotating cylinder 44 is fixed, the rotating cylinder 44 is used for rotation control, and the rotating cylinder is simple in structure and convenient to control, and certainly can also be used for rotation control through a stepping motor.
in this embodiment, a photoelectric sensor 34 is further disposed at one end of the material distribution rail 3 close to the magnetizing cylinder 46, so as to conveniently detect whether the product is normally loaded and count the product.
In the technical scheme, the upper end of the magnetizing cylinder 46 is further provided with a material pressing cylinder 45, one end of the material pressing cylinder 45 is connected with the rotating mechanism, and the other end of the material pressing cylinder 45 is arranged in the magnetizing cylinder 46, so that a product in the magnetizing cylinder 46 can be limited, the product is prevented from being separated randomly, and the work is more reliable.
The utility model discloses a 2 automatic feeding of vibration dish enters into branch material track 3 through 2 tracks of vibration dish, magnetizes after through automatic sequencing, and production efficiency improves greatly, has reduced the processing cost, and it adopts the dark structure of filling to solve product magnetic force to fill not full problem to fill simultaneously fill head 6, improves product quality greatly.
The foregoing is a more detailed description of the present invention, taken in conjunction with the specific preferred embodiments thereof, and it is not intended that the invention be limited to the specific embodiments shown and described. To the utility model belongs to the technical field of ordinary technical personnel, do not deviate from the utility model discloses under the prerequisite of design, can also make a plurality of simple deductions or replacement, all should regard as belonging to the utility model discloses a protection scope.

Claims (7)

1. An automatic magnetization device which is characterized in that: the device comprises a rack, a vibrating disk, a material distributing track, a magnetizing mechanism and a discharge chute, wherein the rack comprises a supporting platform and a supporting inclined table arranged on one side of the supporting platform, the vibrating disk is fixed on the supporting platform, the magnetizing mechanism and the discharge chute are fixed on the supporting inclined table, the magnetizing mechanism comprises a lifting table, a rotating mechanism, a magnetizing cylinder and a magnetizing machine arranged below the magnetizing cylinder, the magnetizing cylinder is fixed on the rotating mechanism, the rotating mechanism is fixed on the lifting table, the lifting table is fixed on the supporting inclined table, a strip-shaped open slot is arranged on one side of the magnetizing cylinder, the magnetizing machine comprises a magnetizing head, the magnetizing head is provided with a magnetizing cavity corresponding to the position of the magnetizing cylinder, one end of the material distributing track is connected with a discharge port of the vibrating disk, and the other end of the material distributing track is connected with the strip-shaped open slot of the magnetizing cylinder, the material distributing track is provided with a material distributing limiting mechanism, and the magnetizing cylinder is arranged between the material distributing track and the discharging groove.
2. The automatic magnetizing apparatus according to claim 1, wherein: the material distribution limiting mechanism comprises a first material distribution cylinder and a second material distribution cylinder which are arranged at one end, close to the magnetizing cylinder, of the material distribution track, and a product distance is reserved between the first material distribution cylinder and the second material distribution flagpole.
3. The automatic magnetizing apparatus according to claim 1, wherein: the lifting platform comprises a lifting support and a sliding block, a lifting driving mechanism is further arranged between the sliding block and the lifting support, and the rotating mechanism is fixed on the sliding block.
4. The automatic magnetizing apparatus according to claim 3, wherein: the rotating mechanism is a rotating cylinder, the upper end of the rotating cylinder is fixed on the sliding block, and the lower end of the rotating cylinder is fixedly connected with the magnetizing cylinder.
5. The automatic magnetizing apparatus according to claim 3, wherein: the lifting driving mechanism is a screw rod transmission mechanism.
6. The automatic magnetizing apparatus according to claim 1, wherein: and one end of the material distribution track, which is close to the magnetizing cylinder, is also provided with a photoelectric sensor.
7. the automatic magnetizing apparatus according to claim 1, wherein: the upper end of the magnetizing cylinder is provided with a material pressing cylinder, one end of the material pressing cylinder is connected with the rotating mechanism, and the other end of the material pressing cylinder is arranged in the magnetizing cylinder.
CN201920832845.5U 2019-06-04 2019-06-04 Automatic magnetizing device Active CN209804365U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920832845.5U CN209804365U (en) 2019-06-04 2019-06-04 Automatic magnetizing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920832845.5U CN209804365U (en) 2019-06-04 2019-06-04 Automatic magnetizing device

Publications (1)

Publication Number Publication Date
CN209804365U true CN209804365U (en) 2019-12-17

Family

ID=68833465

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920832845.5U Active CN209804365U (en) 2019-06-04 2019-06-04 Automatic magnetizing device

Country Status (1)

Country Link
CN (1) CN209804365U (en)

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