CN211366281U - Motor vibrating feeder with lane dividing function - Google Patents

Motor vibrating feeder with lane dividing function Download PDF

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Publication number
CN211366281U
CN211366281U CN201921394850.9U CN201921394850U CN211366281U CN 211366281 U CN211366281 U CN 211366281U CN 201921394850 U CN201921394850 U CN 201921394850U CN 211366281 U CN211366281 U CN 211366281U
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China
Prior art keywords
opening
cell body
feeder
baffle
plate
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CN201921394850.9U
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Chinese (zh)
Inventor
李振亮
李胜元
吴汶高
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Guangdong Lizhi Manor Wine Industry Co ltd
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Guangdong Lizhi Manor Wine Industry Co ltd
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Priority to CN201921394850.9U priority Critical patent/CN211366281U/en
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Abstract

The utility model belongs to the feeder field relates to feeder for the particulate matter, especially a motor vibrating feeder with lane function, including a cell body, the bottom of cell body is a bottom plate, and the relative both ends of bottom plate set up respectively to feed end and discharge end, install the wave plate in the up end of bottom plate, this wave plate is extended to the discharge end direction by following the feed end, a feeder hopper is installed to the top position an organic whole of the nearly feed end one side of wave plate, and this feeder hopper can vibrate with the cell body synchronization, make an opening in the lateral wall of feeder hopper bottom and wave plate homonymy, this opening width and cell body width looks adaptation, the top that is located this opening hangs and is equipped with a baffle, forms the clearance between the trough position of tip and wave plate under the baffle, and this clearance is fit with the minimum height that the holding granule was derived.

Description

Motor vibrating feeder with lane dividing function
Technical Field
The utility model belongs to the feeder field relates to feeder for the particulate matter, especially a motor vibrating feeder with lane function.
Background
The feeder is used for the feeding end of the production line and is used for connecting the material to be processed with the production line.
The vibrating feeder is a common device, and its structure includes four supports of even interval arrangement, and a cell body is installed jointly to four support tops, install vibrating motor on the cell body, all install a main spring that shakes between this cell body and every support, be provided with the material way in the up end of cell body, the feed inlet and the feed bin of material switch on, and the leading-in back of material is derived by the discharge gate after the vibration dispersion.
The vibrating feeder has the defects in the process of having multiple channels for the downstream, and the materials are intensively introduced from the feeding hole without any channel dividing device, so that the introduced materials are normally distributed towards two sides by taking the falling position of the materials as the center. Therefore, materials led out from the material channel positioned in the middle are excessive, and materials led out from the material channel far away from the center are few, so that the processing of subsequent downstream processes is directly influenced, and the great waste of production resources is caused.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the not enough of prior art, provide a rational in infrastructure, divide the material through the wave plate, divide the more balanced motor vibrating feeder who has the lane function of material output.
The utility model adopts the technical proposal that:
the utility model provides a motor vibrating feeder with lane function, includes a cell body, the bottom of cell body is a bottom plate, and the relative both ends of bottom plate set up respectively into feed end and discharge end, its characterized in that: install the wave plate in the up end of bottom plate, this wave plate is extended to the discharge end direction by following the feed end, an integrative feeder hopper of installing in the top position of the nearly feed end one side of wave plate, this feeder hopper and cell body synchronous oscillation, make an opening in the lateral wall of feeder hopper bottom and wave plate homonymy, this opening width and cell body width looks adaptation are located the top of this opening and are hung and are equipped with a baffle, form the clearance between the trough position of tip and wave plate under the baffle, but this clearance is suitable with the minimum height that the holding granule was derived.
And the width of the corrugated plate is matched with the width of the groove body, the length of the corrugated plate is equal to the length of the groove body, and the number of the wave troughs of the corrugated plate is consistent with the number of the required channels.
And the baffle is made of flexible materials, the upper end part of the baffle is fixed with a lifting plate, and the lifting plate is fixed with the side wall above the opening of the feed inlet.
And moreover, a plurality of strip-shaped grooves are uniformly formed in the lifting plate at intervals in the vertical direction, and each strip-shaped groove is movably installed on the side wall above the opening of the feeding hole through bolts and nuts.
The utility model has the advantages that:
the utility model discloses in, divide material and guide through the wave plate of installation in the cell body, wave plate feed end installation feeder hopper, the baffle of installation is used for blockking leading-in material in this feeder hopper, prevent in its leading-in material says too fast, the material forms sand pile type after the middle part accumulation, later leading-in material can roll to both sides and fall to guarantee that the distribution of granule is even, the wave plate keeps apart through the crest, every trough switches on with the pass of follow-up process respectively, can guarantee that the material exports mutually noninterference in order.
In the utility model, the baffle is made of flexible material, when the material is guided into the material channel, the redundant material above the opening can be scraped by the baffle without damaging the material; the baffle is fixed with the lifter plate, and different heights in the strip-shaped groove are fixed through the bolts, so that the change of the fixed positions of the lifter plate and the side wall above the opening of the feeding port can be realized, namely, the adjustment of the height of the opening is realized, the adaptability of the lifter plate is improved, and the lifter plate can be applied to particles with different diameters.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a right side view of FIG. 1;
FIG. 3 is a partial cross-sectional view of the feed hopper portion of FIG. 2;
fig. 4 is a partially enlarged view of a portion a in fig. 3.
Detailed Description
The present invention is further illustrated by the following examples, which are intended to be illustrative, not limiting and are not intended to limit the scope of the invention.
A motor vibration feeder with a channel dividing function comprises four bases 4 which are evenly spaced, a groove body 6 is jointly arranged above the four bases, a vibration motor 3 is respectively arranged at two sides of the groove body, a main vibration spring 9 is respectively arranged between the groove body and each base, the bottom of the groove body is a bottom plate, two ends of the bottom plate are respectively arranged as a feeding end and a discharging end, the innovation of the utility model is that a corrugated plate 5 is arranged in the upper end surface of the bottom plate, the corrugated plate extends towards the discharging end along the feeding end, a feeding hopper 1 is integrally arranged at the upper position of one side of the corrugated plate close to the feeding end, the feeding hopper can synchronously vibrate with the groove body, an opening is made in a side wall 10 at the same side of the bottom of the feeding hopper and the corrugated plate, the opening width is matched with the groove body width, a baffle 2 is hung above the opening, and a gap 8 is formed between the lower end of the baffle and the trough 7 position of, the gap is preferably at a minimum height to accommodate the egress of particles.
In this embodiment, the width of the corrugated plate is adapted to the width of the groove body, the length of the corrugated plate is equal to the length of the groove body, and the number of the wave troughs of the corrugated plate is equal to the number of the required channels.
In this embodiment, the baffle is made of flexible material, the upper end of the baffle is fixed to a lifting plate 11, and the lifting plate is fixed to the side wall above the opening of the feed port.
In this embodiment, a plurality of strip grooves are made in the lifting plate at even intervals along the vertical direction, and each strip groove is movably installed on the side wall above the opening of the feeding port through a bolt and a nut.
The utility model discloses a working process is:
the utility model discloses during the use, the material is by the leading-in cell body installation's of feeder hopper wave plate in, the baffle of installation is used for blockking leading-in material in the feeder hopper, prevent that it from leading-in material at the excessive speed says, the material forms husky heap type after the middle part accumulation, later leading-in material can roll to both sides and fall, when leading-in material is said, the unnecessary material accessible baffle that is located the opening top is strickleed off, after the vibration guide, derive respectively to subsequent process in every trough made by the wave plate.
The utility model discloses in, divide material and guide through the wave plate of installation in the cell body, wave plate feed end installation feeder hopper, the baffle of installation is used for blockking leading-in material in this feeder hopper, prevent in its leading-in material says too fast, the material forms sand pile type after the middle part accumulation, later leading-in material can roll to both sides and fall to guarantee that the distribution of granule is even, the wave plate keeps apart through the crest, every trough switches on with the pass of follow-up process respectively, can guarantee that the material exports mutually noninterference in order.
In the utility model, the baffle is made of flexible material, when the material is guided into the material channel, the redundant material above the opening can be scraped by the baffle without damaging the material; the baffle is fixed with the lifter plate, and different heights in the strip-shaped groove are fixed through the bolts, so that the change of the fixed positions of the lifter plate and the side wall above the opening of the feeding port can be realized, namely, the adjustment of the height of the opening is realized, the adaptability of the lifter plate is improved, and the lifter plate can be applied to particles with different diameters.

Claims (4)

1. The utility model provides a motor vibrating feeder with lane function, includes a cell body, the bottom of cell body is a bottom plate, and the relative both ends of bottom plate set up respectively into feed end and discharge end, its characterized in that: install the wave form board in the up end of bottom plate, this wave form board is extended to the discharge end direction by following the feed end, an integrative feeder hopper of installing in the top position of the nearly feed end one side of wave form board, this feeder hopper can vibrate with the cell body synchronization, make an opening in the lateral wall of feeder hopper bottom and wave form board homonymy, this opening width and cell body width looks adaptation are located the top of this opening and are hung and are equipped with a baffle, form the clearance between the trough position of tip and wave form board under the baffle, but this clearance is suitable with the minimum height that the holding granule was derived.
2. A motor-driven vibrating feeder with a lane dividing function according to claim 1, characterized in that: the width of the corrugated plate is matched with the width of the groove body, the length of the corrugated plate is equal to the length of the groove body, and the number of the wave troughs of the corrugated plate is consistent with the number of the required channels.
3. A motor-driven vibrating feeder with a lane dividing function according to claim 1, characterized in that: the baffle is made of flexible materials, the upper end of the baffle is fixed with a lifting plate, and the lifting plate is fixed with the side wall above the opening of the feeding hole.
4. A motor-driven vibrating feeder with a lane dividing function according to claim 3, characterized in that: a plurality of strip grooves are uniformly formed in the lifting plate at intervals in the vertical direction, and each strip groove is movably mounted on the side wall above the opening of the feeding hole through bolts and nuts.
CN201921394850.9U 2019-08-26 2019-08-26 Motor vibrating feeder with lane dividing function Active CN211366281U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921394850.9U CN211366281U (en) 2019-08-26 2019-08-26 Motor vibrating feeder with lane dividing function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921394850.9U CN211366281U (en) 2019-08-26 2019-08-26 Motor vibrating feeder with lane dividing function

Publications (1)

Publication Number Publication Date
CN211366281U true CN211366281U (en) 2020-08-28

Family

ID=72172053

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921394850.9U Active CN211366281U (en) 2019-08-26 2019-08-26 Motor vibrating feeder with lane dividing function

Country Status (1)

Country Link
CN (1) CN211366281U (en)

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