CN220575584U - Material storage and feeding machine for elastic feeding machine leather roller grinding machine - Google Patents

Material storage and feeding machine for elastic feeding machine leather roller grinding machine Download PDF

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Publication number
CN220575584U
CN220575584U CN202322258214.6U CN202322258214U CN220575584U CN 220575584 U CN220575584 U CN 220575584U CN 202322258214 U CN202322258214 U CN 202322258214U CN 220575584 U CN220575584 U CN 220575584U
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storage
machine
screw
motor
roller mill
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CN202322258214.6U
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姚春盛
姚青
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Yancheng Tianye Machinery Manufacturing Co ltd
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Yancheng Tianye Machinery Manufacturing Co ltd
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Abstract

The utility model discloses a storage feeder for a rubber roller grinding machine of a elasticizer, which comprises a machine case, wherein one side of the machine case is provided with a discharge hole, a storage rack is connected in the machine case through a driving mechanism, the storage rack comprises a cubic frame body, a plurality of rows of inclined storage units are arranged in the frame body, each row of storage units comprises fixing rods which are fixed at two ends of the frame body and are arranged at the height, and storage tanks which are connected to the two fixing rods and are inclined, and the driving mechanism can drive the storage rack to horizontally move and vertically move so as to align the lower end of any storage tank with the discharge hole. The storage rack is internally provided with a plurality of rows of storage units, each row of storage units comprises a plurality of inclined storage tanks, and each storage tank can be provided with a plurality of leather rollers, so that the storage capacity of the leather rollers is greatly increased, the feeding time is shortened, and the working efficiency is improved.

Description

Material storage and feeding machine for elastic feeding machine leather roller grinding machine
Technical Field
The utility model relates to the technical field of feeding of leather roller grinding machines, in particular to a storage feeding machine for a leather roller grinding machine of a elasticizer.
Background
The texturing machine is a textile machine which can process polyester, polypropylene and other untwisted yarns into elastic yarns with middle elasticity and low elasticity through false twist texturing.
The elasticizer is provided with the leather roller, and the leather roller is required to be polished on the surface in the production and processing process, so that a special leather roller grinder is required to be used. During polishing, the leather roller is required to be fed and discharged.
The current feeding device has the following problems: (1) Or the leather rollers are placed on the grinding machine one by manpower, so that the efficiency is quite low; (2) Or the leather rollers are sequentially conveyed through the conveying groove, but the conveying groove is generally arranged singly, and only a small number of leather rollers can be placed at a time, so that the leather rollers are limited in storage quantity, and the feeding efficiency is reduced.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model provides a storage feeder for a rubber roller grinding machine of a elasticizer, which aims to solve the problems in the background art.
In order to solve the technical problems, the utility model provides the following technical scheme:
the utility model provides a add bullet machine leather roller is storage material loading machine for grinding machine, includes quick-witted case, one side of machine case is equipped with the discharge opening, the quick-witted incasement is connected with the storage frame through actuating mechanism, the storage frame is including the framework that is the cube, be equipped with the storage unit of multirow slope in the framework, every row of storage unit all is including being fixed in the dead lever that framework both ends and height set up, connect the storage tank on two dead levers and slope, can drive storage frame horizontal migration and vertical migration through actuating mechanism to make the low end and the discharge opening alignment of arbitrary storage tank.
Preferably, the driving mechanism includes a horizontal displacement mechanism and a vertical displacement mechanism.
Preferably, the horizontal displacement mechanism comprises two first guide rails connected to the lower portion of the chassis, a sliding seat is slidably connected to the two first guide rails, a transmission block is connected to the bottom surface of the sliding seat, two first bearing seats are arranged between the two first guide rails in the chassis, a first screw rod is rotatably connected to the two first bearing seats, the first screw rod is in threaded connection with the transmission block, a first motor is further arranged at the lower portion of the chassis, the first motor is in transmission connection with one end of the first screw rod, supporting rods are fixed to four corners of the sliding seat, sliding sleeves are fixed to four corners of the frame, the frame is slidably connected to the supporting rods through the sliding sleeves, a cross beam is connected to the top of the chassis, a second guide rail is connected to the bottom surface of the cross beam, rectangular frames are connected to the upper ends of the four supporting rods, and slide blocks are connected to the top of the rectangular frames and slidably connected to the second guide rails.
According to the technical scheme, when the horizontal displacement of the storage rack is required to be controlled, the first motor is started, the first motor drives the first screw rod to rotate, the sliding seat is driven to slide on the first guide rail in the first screw rod transmission process, and the sliding seat drives the storage rack to horizontally move through the support rod, so that the storage tanks of each row of storage units can be aligned with the discharge holes, and the rectangular frame on the support rod is in sliding connection with the second guide rail, so that the overall moving stability of the storage rack is improved.
Preferably, the vertical displacement mechanism comprises a shell fixed on two sides of a sliding seat, the two shells are respectively connected with a second screw rod through bearings in a rotating way, threads of the two second screw rods are reversely arranged, screw sleeves are fixed on two sides of the frame body and are respectively in threaded connection with the two second screw rods, a second motor is arranged on the sliding seat, the second motor is connected with a transmission shaft through a coupling, a driving wheel is connected on the transmission shaft, two second bearing seats are further arranged on the sliding seat, a rotating shaft is rotationally connected on the two second bearing seats, a driven wheel is connected on the rotating shaft, the driving wheel and the driven wheel are connected through a transmission belt, two ends of the rotating shaft respectively extend into the two shells, the extending ends of the rotating shaft are connected with a first conical gear, and the lower end of the second screw rod is connected with a second conical gear which is meshed with the corresponding second conical gear.
Above-mentioned technical scheme, when the vertical movement of control storage frame, start the second motor, drive the pivot through the cooperation of action wheel, drive belt and follow driving wheel and rotate, the pivot passes through the cooperation of first conical gear and second conical gear, drives two second lead screws and rotates in opposite directions in step, because the screw thread of two second lead screws sets up in opposite directions, consequently two second lead screws rotate the in-process and can drive the storage frame and go up and down to make the storage tank of different rows can align with the discharge gate.
Preferably, a photoelectric sensor is arranged at the inner side of the case close to the discharge hole.
Above-mentioned technical scheme, photoelectric sensor slope sets up, makes it can upwards shine along the stock chest, and the irradiation direction is parallel with the stock chest to the leather roller in the response stock chest, after the leather roller in the stock chest empties, photoelectric sensor is with signal transmission to total controller, in order to start first motor or second motor, thereby makes next stock chest and discharge opening align.
Preferably, the upper end of one side of the chassis far away from the discharge hole is connected with a downward extending rod, the lower end of the extending rod is provided with a tuyere, the tuyere is aligned with the discharge hole, and the tuyere is connected with a blower through a pipeline.
Above-mentioned technical scheme is bloied through the hair-dryer, and the wind blows to the stock chest to supplementary leather roller is in the roll of stock chest, makes the leather roller remove to the discharge opening department easier.
Compared with the prior art, the utility model has the beneficial effects that:
the storage rack is internally provided with a plurality of rows of storage units, each row of storage units comprises a plurality of inclined storage tanks, and each storage tank can be provided with a plurality of leather rollers, so that the storage capacity of the leather rollers is greatly increased, the feeding time is shortened, and the working efficiency is improved.
The driving mechanism drives the material storage rack to horizontally move, so that the material storage tanks in the same row are sequentially aligned with the discharge holes, and the leather rollers in the same row are sequentially discharged from the discharge holes. After the next row of leather rollers are all discharged, the storage rack is driven to ascend through the driving mechanism, so that the storage tank of the previous row is aligned with the discharge hole, and according to the method, all the leather rollers are sequentially discharged from the discharge hole, and the leather rollers can be orderly conveyed.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of another aspect of the present utility model;
FIG. 3 is an internal schematic view of the present utility model;
FIG. 4 is a schematic view of a magazine;
FIG. 5 is a schematic view of a vertical displacement mechanism;
FIG. 6 is a schematic diagram illustrating a connection relationship between a shaft and a second wire rod;
FIG. 7 is a schematic view of an extension rod;
in the figure: 1-chassis, 2-discharge hole, 3-storage rack, 301-frame, 302-dead lever, 303-storage tank, 304-sliding sleeve, 305-swivel nut, 4-horizontal displacement mechanism, 401-first guide rail, 402-sliding seat, 403-first lead screw, 404-first motor, 405-support bar, 406-crossbeam, 407-second guide rail, 408-rectangular frame, 5-vertical displacement mechanism, 501-shell, 502-second lead screw, 503-second motor, 504-second bearing seat, 505-rotating shaft, 506-driven wheel, 507-first conical gear, 508-second conical gear, 6-extension rod, 7-tuyere, 8-leather roller.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
Referring to fig. 1, fig. 2, fig. 3 and fig. 4, a storage feeder for a rubber roller grinder of a elasticizer includes a chassis 1, a discharge hole 2 is provided at one side of the chassis 1, a storage rack 3 is connected in the chassis 1 through a driving mechanism, the storage rack 3 includes a cubic frame 301, multiple rows of inclined storage units are provided in the frame 301, each row of storage units includes a fixing rod 302 fixed at two ends of the frame 301 and arranged at a height, and a storage tank 303 connected to the two fixing rods 302 and inclined, the driving mechanism includes a horizontal displacement mechanism 4 and a vertical displacement mechanism 5, the horizontal displacement mechanism 4 can drive the storage rack 3 to move horizontally, and the vertical displacement mechanism 5 can drive the storage rack 3 to move vertically, so that the lower end of any storage tank 303 is aligned with the discharge hole 2. In order to find out that the leather roller in the storage tank 303 is empty in time, a photoelectric sensor is arranged at the position, close to the discharge hole 2, on the inner side of the machine case 1, and is obliquely arranged, so that the photoelectric sensor can irradiate upwards along the storage tank 303, the irradiation direction is parallel to the storage tank 303, the leather roller in the storage tank 303 is sensed, after the leather roller in the storage tank 303 is empty, the photoelectric sensor transmits a signal to a master controller to start the horizontal displacement mechanism 4 or the vertical displacement mechanism 5 to work, so that the next storage tank 303 is aligned with the discharge hole 2, and the master controller is a controller of the grinding machine, and a control program is preset in the master controller, so that the utility model is not described in detail.
Specifically, referring to fig. 3, the horizontal displacement mechanism 4 includes two first guide rails 401 connected to the lower portion in the chassis 1, a sliding seat 402 is slidably connected to the two first guide rails 401, a transmission block is connected to the bottom surface of the sliding seat 402, two first bearing seats are disposed between the two first guide rails 401 in the chassis 1, a first screw 403 is rotatably connected to the two first bearing seats, the first screw 403 is in threaded connection with the transmission block, a first motor 404 is further disposed at the lower portion in the chassis 1, the first motor 404 is in transmission connection with one end of the first screw 403, support rods 405 are fixed to four corners of the sliding seat 402, sliding sleeves 304 are fixed to four corners of the frame 301, the frame 301 is slidably connected to the support rods 405 through the sliding sleeves 304, a cross beam 406 is connected to the top of the chassis 1, a second guide rail 407 is connected to the bottom surface of the cross beam 406, rectangular frames 408 are connected to the upper ends of the four support rods 405, and the top of the rectangular frames 408 is connected to the sliding blocks, and the sliding blocks are slidably connected to the second guide rails 407. When the horizontal displacement of the storage rack 3 needs to be controlled, the first motor 404 is started, the first motor 404 drives the first screw rod 403 to rotate, the sliding seat 402 is driven to slide on the first guide rail 401 in the rotation process of the first screw rod 403, and the sliding seat 402 drives the storage rack 3 to horizontally move through the supporting rod 405, so that the storage tanks 303 of each row of storage units can be aligned with the discharge holes 2, and the rectangular frame 408 on the supporting rod 405 is in sliding connection with the second guide rail 407, so that the overall moving stability of the storage rack 3 is improved.
Referring to fig. 3, 5 and 6, the vertical displacement mechanism 5 includes a housing 501 fixed on two sides of the sliding seat 402, two housings 501 are respectively connected with a second screw rod 502 through bearings in a rotating manner, threads of the two second screw rods 502 are reversely arranged, screw sleeves 305 are fixed on two sides of the frame 301, the two screw sleeves 305 are respectively connected with the two second screw rods 502 in a threaded manner, a second motor 503 is arranged on the sliding seat 402, the second motor 503 is connected with a transmission shaft through a coupling, a driving wheel is connected with the transmission shaft, two second bearing seats 504 are further arranged on the sliding seat 402, a rotating shaft 505 is rotationally connected with the two second bearing seats 504, a driven wheel 506 is connected with the rotating shaft 505, the driving wheel and the driven wheel 506 are connected through a transmission belt, two ends of the rotating shaft 505 respectively extend into the two housings 501, the extending ends of the rotating shaft are connected with a first conical gear 507, the lower end of the second screw rod 502 is connected with a second conical gear 508, and the first conical gear 507 is meshed with the corresponding second conical gear 508. When the storage rack 3 needs to be controlled to vertically move, the second motor 503 is started, the rotating shaft 505 is driven to rotate by the cooperation of the driving wheel, the driving belt and the driven wheel 506, the rotating shaft 505 drives the two second screw rods 502 to synchronously and reversely rotate by the cooperation of the first conical gear 507 and the second conical gear 508, and the storage racks 3 are driven to lift in the rotation process of the two second screw rods 502 due to the reverse arrangement of the threads of the two second screw rods 502, so that the storage tanks 303 in different rows can be aligned with the discharge holes 2.
In order to align the storage tank 303 with the discharge hole 2, repeated experiments can be performed first, and then the working time of the first motor 404 and the working time of the second motor 503 are set according to the experimental results, so that the first motor 404 can work to drive the sliding seat 402 to move once each time, just the next storage tank 303 in the same row can be aligned with the discharge hole 2, and the second motor 503 can work to drive the frame 301 once each time, just the storage tank 303 above can be aligned with the discharge hole 2.
The working principle of the embodiment is as follows:
the initial position of the magazine 3 is: when the material storage frame 3 is positioned at the initial position, the leather rollers 8 are manually placed in the material storage grooves 303, the leather rollers 8 slide downwards through the material storage grooves 303 and slide out of the material discharge holes 2 in sequence, whether the current material storage grooves 303 are empty or not is detected through the photoelectric sensor, after the current material storage grooves 303 are empty, the photoelectric sensor transmits signals to the master controller, the first motor 404 is started, the sliding seat 402 is driven to move horizontally through the horizontal displacement mechanism 4, the material storage grooves 303 in the same row are aligned with the material discharge holes 2 in sequence, the leather rollers 8 in the same row are sequentially discharged from the material discharge holes 2, the second motor 503 is started after all the leather rollers 8 in the row are discharged, the material storage frame 3 is driven to ascend through the vertical displacement mechanism 5, the material storage grooves 303 in the previous row are aligned with the material discharge holes 2, and according to the method, all the leather rollers are sequentially discharged from the material discharge holes, and ordered conveying of the leather rollers can be realized.
It should be noted that, a striker plate (not shown in the drawing) capable of lifting is disposed on the outer side of the chassis 1 near the discharge hole 2, and is used for opening or closing the discharge hole 2 to release the leather roller in the storage tank in sequence, when the leather roller 8 is discharged from the discharge hole 2, the leather roller will enter the next link, and how to fix and polish the leather roller after rolling out from the discharge hole does not belong to the technical problem to be solved in the application, so that the detailed description is omitted.
Example 2
On the basis of embodiment 1, referring to fig. 2 and 7, an extension rod 6 extending downward is connected to the upper end of the side of the chassis 1 away from the discharge hole 2, a tuyere 7 is arranged at the lower end of the extension rod 6, the tuyere 7 is aligned with the discharge hole 2, and the tuyere 7 is connected with a blower through a pipeline. Through the blowing of the blower, the air blows to the storage tank 303 to assist the rolling of the leather roller 8 in the storage tank 303, so that the leather roller 8 can move to the discharging hole 2 more easily.
It should be noted that the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one … …" does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises the element.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a add bullet machine leather roller mill and use storage material loading machine, its characterized in that, including quick-witted case (1), one side of machine case (1) is equipped with discharge port (2), be connected with storage rack (3) through actuating mechanism in machine case (1), storage rack (3) are including being box (301) of cube, be equipped with the storage unit of multirow slope in box (301), every row storage unit all includes dead lever (302) that are fixed in box (301) both ends and height setting, connects storage tank (303) on two dead levers (302) and slope, can drive storage rack (3) horizontal migration and vertical migration through actuating mechanism to make the low end of arbitrary storage tank (303) align with discharge port (2).
2. The storage loader for a elasticizer roller mill according to claim 1, wherein: the driving mechanism comprises a horizontal displacement mechanism (4) and a vertical displacement mechanism (5).
3. The storage loader for a elasticizer roller mill according to claim 2, wherein: the horizontal displacement mechanism (4) is including connecting two first guide rails (401) of lower part in quick-witted case (1), sliding connection has slide (402) on two first guide rails (401), the bottom surface of slide (402) is connected with the transmission piece, be equipped with two first bearing frames between two first guide rails (401) in quick-witted case (1), rotate on two first bearing frames and be connected with first lead screw (403), first lead screw (403) and transmission piece threaded connection, the lower part in quick-witted case (1) still is equipped with first motor (404), the one end transmission of first motor (404) and first lead screw (403) is connected, the four corners of slide (402) are fixed with bracing piece (405), the four corners of framework (301) are fixed with sliding sleeve (304), framework (301) are through sliding connection on bracing piece (405), the top of machine case (1) is connected with crossbeam (406), the bottom surface of crossbeam (406) is connected with second guide rail (407), four rectangle ends of bracing piece (405) are connected with rectangle (408), slider (408) are connected with slider (408).
4. A storage loader for a elasticizer roller mill as set forth in claim 3, wherein: the vertical displacement mechanism (5) comprises a shell (501) fixed on two sides of a sliding seat (402), two shells (501) are respectively connected with a second screw rod (502) through bearings in a rotating mode, threads of the two second screw rods (502) are reversely arranged, screw sleeves (305) are fixed on two sides of the frame body (301), the two screw sleeves (305) are respectively connected with the two second screw rods (502) in a threaded mode, a second motor (503) is arranged on the sliding seat (402), the second motor (503) is connected with a transmission shaft through a coupling, a driving wheel is connected on the transmission shaft, two second bearing seats (504) are further arranged on the sliding seat (402), a rotating shaft (505) is connected on the two second bearing seats (504), the driving wheel is connected with the driven wheel (506) through a transmission belt, two ends of the rotating shaft (505) are respectively extended into the two shells (501) and are connected with a first conical gear (507), the lower end of the second screw rod (502) is connected with a second conical gear (507), and the first conical gear (507) is meshed with the corresponding second conical gear (508).
5. The storage loader for a elasticizer roller mill of claim 4, wherein: a photoelectric sensor is arranged at the inner side of the case (1) close to the discharging hole (2).
6. The storage loader for a elasticizer leather roller mill according to any one of claims 1-5, wherein: the machine case (1) is connected with an extension rod (6) which extends downwards from the upper end of one side of the discharging hole (2), a tuyere (7) is arranged at the lower end of the extension rod (6), the tuyere (7) is aligned with the discharging hole (2), and the tuyere (7) is connected with a blower through a pipeline.
CN202322258214.6U 2023-08-22 2023-08-22 Material storage and feeding machine for elastic feeding machine leather roller grinding machine Active CN220575584U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322258214.6U CN220575584U (en) 2023-08-22 2023-08-22 Material storage and feeding machine for elastic feeding machine leather roller grinding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322258214.6U CN220575584U (en) 2023-08-22 2023-08-22 Material storage and feeding machine for elastic feeding machine leather roller grinding machine

Publications (1)

Publication Number Publication Date
CN220575584U true CN220575584U (en) 2024-03-12

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ID=90118214

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322258214.6U Active CN220575584U (en) 2023-08-22 2023-08-22 Material storage and feeding machine for elastic feeding machine leather roller grinding machine

Country Status (1)

Country Link
CN (1) CN220575584U (en)

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