CN114802915A - Combined delivery device - Google Patents

Combined delivery device Download PDF

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Publication number
CN114802915A
CN114802915A CN202210368708.7A CN202210368708A CN114802915A CN 114802915 A CN114802915 A CN 114802915A CN 202210368708 A CN202210368708 A CN 202210368708A CN 114802915 A CN114802915 A CN 114802915A
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CN
China
Prior art keywords
assembly
seat
conveying
roller
milk products
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Granted
Application number
CN202210368708.7A
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Chinese (zh)
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CN114802915B (en
Inventor
刘祯祥
王旭斌
朱玲丽
王顺军
李国平
李博胜
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Hebi Liziyuan Food Co ltd
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Hebi Liziyuan Food Co ltd
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Priority to CN202210368708.7A priority Critical patent/CN114802915B/en
Publication of CN114802915A publication Critical patent/CN114802915A/en
Application granted granted Critical
Publication of CN114802915B publication Critical patent/CN114802915B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/30Arranging and feeding articles in groups
    • B65B35/44Arranging and feeding articles in groups by endless belts or chains
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/30Arranging and feeding articles in groups
    • B65B35/32Arranging and feeding articles in groups by gravity
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/30Arranging and feeding articles in groups
    • B65B35/40Arranging and feeding articles in groups by reciprocating or oscillatory pushers

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Branching, Merging, And Special Transfer Between Conveyors (AREA)

Abstract

The invention relates to a combined delivery device, which is used for placing single-bottle milk products or other sales promotion products and finished milk products together and then pushing the single-bottle milk products or other sales promotion products and the finished milk products into a next procedure for binding. The milk products in the box are conveyed to the tail end of the conveying component through the conveying component, the single bottle of milk products enter from the conveying feeding channel and then are designed to be discharged in the process that the discharging pushing mechanism pushes the milk products in the box to the next station, so that the speed of conversion between the two stations is high, and the conveying channel of the single bottle of milk products is attached to the discharging pushing mechanism, therefore, the assembly line is compact in structure on the whole, small in occupied space and low in layout cost.

Description

Combined delivery device
Technical Field
The invention belongs to the technical field of milk product binding and packaging, and particularly relates to a combined distribution device for distributing a finished box of milk products and a single bottle of milk products together.
Background
In addition, in addition to the new products, the production enterprises can sometimes combine some gift products with the products sold in boxes, and the promotion becomes an important mode that the new products are successfully promoted to the market, and is considered to be simple and effective, not only milk but also other products, such as new taste of fun potato chips and old taste products known by consumers are usually bundled together for sale, and buds bundle shampoo and shower gel together into a suit for sale, and the like.
The long distance that its transport of packing of milk product is each process is the pipelining to guarantee health and raise the efficiency, need erect two assembly lines with two kinds of different product combinations together now, and the area and the space that occupies of assembly line are all great usually. Yet another problem to be solved is how to stably and quickly place individual bottles of naked milk onto a finished box of milk.
Disclosure of Invention
In view of the above-mentioned drawbacks of the prior art, the technical problem to be solved by the present invention is to provide a combined dispensing device which shares a part of two lines and pushes the two products into the next station while they are placed together, thus being optimized in terms of space and cost, without affecting the production rate.
The invention aims to be realized by the following technical scheme: a combined delivery device is mainly used for placing single-bottle milk products or other sales promotion products and finished milk products together and then pushing the single-bottle milk products or other sales promotion products and finished milk products into a next procedure for binding.
Preferably, the conveying assembly comprises a conveying belt and guard plates which are arranged on two sides of the conveying belt and can adjust the distance. The guard plate prevents the milk products in the box from falling off in the conveying process.
Preferably, the linear drive assembly includes a drive portion located above the conveyor assembly; the driving part comprises a driving motor for driving and a screw rod sleeve; the driving part is used for installing the loading and unloading pushing mechanism to enable the loading and unloading pushing mechanism to move linearly so as to complete pushing to the next station.
Preferably, the discharging pushing mechanism comprises a sliding seat arranged in the driving part, a lifting cylinder obliquely and fixedly arranged below the sliding seat, a discharging component with one end penetrating through the sliding seat and the other end being a free end, and a pushing component arranged below one side of the free end of the discharging component; the upper part of the sliding seat is connected with the screw rod suite and is set to be driven to move linearly by a driving motor, and the lower part of the sliding seat is inclined towards the conveying direction of the conveying assembly; the seat body of the lifting cylinder is fixedly arranged at the lower part of the sliding seat. The lifting cylinder is designed to be inclined, the bottom plate of the sliding seat is correspondingly inclined, and the inclined plane is reused to design a channel for single-bottle milk product circulation, so that part of basic components for distributing and transmitting single-bottle milk products are saved while the space is saved.
Preferably, the pushing assembly comprises a switching block, one end of the switching block is fixedly connected with the telescopic end of the lifting cylinder, the other end of the switching block is provided with a square fixed pushing seat, four movable push rods are connected near four corners of the fixed pushing seat in a sliding manner, a push block is fixedly arranged on the movable push rod far away from one side of the fixed pushing seat, a reset spring is arranged on the periphery of each movable push rod between the push block and the fixed pushing seat, and the reset spring enables the push block to be in a set distance relative to the fixed pushing seat under the condition of no external force (the set distance refers to the situation that the push block is in a stable relative position under a normal state, so that the push block is always in a set range in contact with the bottom surface of the reversible slideway on the upper portion). The whole switching block has a transition from an inclined plane to a horizontal plane between two end surfaces, and the transition section is a longitudinal plate arranged in the middle, so that the movable push rod has a movable space when extending outwards.
Preferably, the unloading assembly comprises a top seat fixedly arranged at the front end of the fixed push seat, a trigger part with one end hinged to the other end of the top seat and the other end being a free end, a telescopic roller carrier arranged in front of the top seat and with one end being lapped on the trigger part and the other end penetrating through the push block, a reset baffle with one end fixed to the lower part of the telescopic roller carrier and the other end extending downwards, an elastic part with one end hinged to the push block and the other end capable of sliding up and down and abutting on the reset baffle, a fixed slideway abutting on the inner surface of the inclined surface of the slide seat, and a reversible slideway with a certain turnover angle and hinged to the fixed slideway. The discharging assembly enables the telescopic roller frame to act by arranging the trigger piece, so that the single bottle of milk products on the upper part of the telescopic roller frame is switched from being blocked by the telescopic roller frame to being capable of rolling along the upper part of the telescopic roller frame, and the single bottle of milk products naturally slide to the upper part of the finished box of milk products by utilizing the natural principle that the inclined plane and the self-weight are downward.
Preferably, the telescopic roller carrier is substantially plate-shaped, is made of bendable materials, is arranged at one end of the trigger piece and is provided with a bending extension section with an acute angle, the end part of the bending extension section is provided with an arc-shaped recess, the center of the bending extension section is provided with a long strip-shaped notch in the longitudinal direction, the other end of the telescopic roller carrier is provided with an upward bending section, and the end part of the bending section is provided with a conveying roller; the end part of one end of the free end of the trigger part is provided with a roller which passes through the notch and abuts against the lower part of the plate body of the telescopic roller frame, in addition, the position of the top seat corresponding to the installation of the trigger part is provided with a groove, a compression spring is arranged in the groove and used for keeping the trigger part at an upward position with a set inclination, and the upper edge of one side of the top seat close to the bending extension section is provided with a convex arc section matched with the recess; the structural design (finger bending extension section, arc-shaped recess, elongated notch, warping bending section, conveying roller and the like) of the telescopic roller frame aims to utilize the push block to enable the trigger to change the telescopic roller frame into a roller way from a barrier when the push block pushes the boxed milk products, and simultaneously, the convex arc section of the jacking seat is matched with the arc-shaped recess when the trigger lifts the telescopic roller frame upwards so as to enable the telescopic roller frame to extend outwards in the process of further pushing by the push block, thereby conveying the single bottle of milk products far away. The setting of gyro wheel lies in improving the smoothness of mutual removal when the contact, is equipped with compression spring in the recess and the purpose of non-fixed setting for give both to keep certain degree of freedom variable when conflicting emergence removal, improves the reliability of action.
As the preferred, the elastic component is equipped with the gyro wheel on being close to the one side that resets the baffle to the gyro wheel is elastic to support pressing on the baffle that resets, and the position that resets the baffle and the gyro wheel supported mutually and is pressed is equipped with the guide of cladding gyro wheel, and this guide provides the direction of shift position degree of freedom for the gyro wheel of elastic component.
Preferably, the pushing block is provided with a passing notch for the telescopic roller frame to pass through, the upper side and the lower side of the passing notch are respectively provided with a roller, and a distance larger than the plate thickness of the telescopic roller frame is reserved between the two rollers. The rollers on the upper side and the lower side provide rolling fit for the movement of the telescopic roller frame, and the telescopic roller frame can move more smoothly.
In conclusion, compared with the prior art, the invention has the following advantages:
the present invention is mainly used for placing single bottled milk products or other sales promotion products and boxed milk products together and then pushing them into the next procedure for binding, the components of the device mainly use common mechanical components, and the components which mutually act after combination also mainly use mechanical structures, so that the stability of the use is ensured, in addition, the components of two assembly line parts of the device are shared, so that the space and the cost are optimized, and the two products are combined while the work positions are switched, and the production rate is not influenced. The main components of the device comprise a conveying assembly for conveying the milk products in boxes, a linear driving assembly which is arranged above the conveying assembly and is collinear with the center of the advancing direction of a conveying working section, a discharging pushing mechanism which is arranged between the linear driving assembly and the conveying assembly and can move along the linear driving assembly, and a conveying feeding channel which is arranged on one side of the discharging pushing mechanism and is used for conveying single bottles of milk products; the milk products in the box are conveyed to the tail end of the conveying component through the conveying component, the single bottle of milk products enter from the conveying feeding channel and are designed to be discharged in the process that the discharging pushing mechanism pushes the milk products in the box to the next station, so that the speed of conversion between the two stations is high, and the conveying channel of the single bottle of milk products is attached to the discharging pushing mechanism, therefore, the structure of the assembly line is very compact on the whole, the occupied space of arrangement is small, and the arrangement cost is low.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of a driving portion and a discharge pushing mechanism portion;
FIG. 3 is an enlarged view taken at A in FIG. 2;
FIG. 4 is a schematic structural view of a discharge pushing mechanism portion;
FIG. 5 is a first schematic view of a part of action simulation of the discharging pushing mechanism during discharging pushing;
FIG. 6 is an enlarged view at B in FIG. 5;
FIG. 7 is a second schematic view of a partial motion simulation of the discharge pushing mechanism during discharge pushing.
The labels in the figure are:
milk product 01; a boxed milk product 02; the next station 03; a delivery assembly 100; a conveyor belt 110; a guard 120; a linear drive assembly 300; a driving portion 310; a drive motor 311; a lead screw kit 312; a discharge pushing mechanism 400; a sliding seat 410; a lift cylinder 420; a discharge assembly 430; a top seat 431; convex arc segment 431 a; a trigger 432; a telescopic roller frame 433; a bent extension 433 a; a recess 433 b; a notch 433 c; a transfer roller 433 d; reset flapper 434; an elastic member 435; a guide 435 a; a fixed slide 436; a reversible chute 437; a pushing assembly 440; a transfer block 441; a fixed push seat 442; a movable push rod 443; a push block 444; through the notch 444 a; the feed channel 600 is conveyed.
Detailed Description
The invention will be further described with reference to examples of embodiments shown in the drawings to which:
example 1
As shown in fig. 1-7, a combined dispensing device, mainly used for placing single-bottle milk product 01 and boxed milk product 02 together for subsequent binding sale, comprises a conveying assembly 100 for conveying boxed milk product, a linear driving assembly 300 arranged above the conveying assembly 100 and collinear with the central line of the conveying work advancing direction, a discharging pushing mechanism 400 arranged between the linear driving assembly 300 and the conveying assembly 100 and capable of moving along the linear driving assembly 300, and a conveying feeding channel 600 arranged at one side of the discharging pushing mechanism 400 and used for conveying single-bottle milk product.
The conveying assembly 100 is used for conveying boxed milk products and comprises a conveying belt 110 and guard plates 120 which are arranged on two sides of the conveying belt 110 and can adjust the space; in practice, the length of the conveying assembly 100 is usually long, and the distance is reduced in a large range for the convenience of observation in fig. 1;
the linear driving assembly 300 is used for driving the movement of the discharge pushing mechanism 400, and includes a driving portion 310 located above the conveying assembly 100; the driving part 310 includes a driving motor 311 for driving, a lead screw kit 312;
the discharging pushing mechanism 400 has two functions, one is to convey and place the single-bottled milk product on the upper part of the finished milk product, and the other is to push the finished milk product together with the single-bottled milk product on the upper part to the next station 03, and comprises a sliding seat 410 arranged in the driving part 310, a lifting cylinder 420 obliquely and fixedly arranged below the sliding seat 410, a discharging component 430 with one end penetrating through the sliding seat 410 and the other end being a free end, and a pushing component 440 arranged below one side of the free end of the discharging component 430;
the upper part of the sliding seat 410 is connected with the screw rod suite 312 and is driven to move linearly by the driving motor 311, and the lower part of the sliding seat 410 is inclined towards the conveying direction of the conveying assembly 100;
the seat body of the lifting cylinder 420 is fixedly arranged at the lower part of the sliding seat 410;
the pushing assembly 440 includes an adapting block 441 having one end fixedly connected with the telescopic end of the lifting cylinder 420, the other end of the adapting block 441 is provided with a square fixed pushing seat 442, four movable push rods 443 are slidably connected near four corners of the fixed pushing seat 442, a push block 444 is fixedly arranged on the movable push rod 443 on the side far away from the fixed pushing seat 442, and a return spring is arranged on the periphery of each movable push rod 443 between the push block 444 and the fixed pushing seat 442, and the return spring makes the push block 444 be at a set distance relative to the fixed pushing seat 442 without external force; the whole body of the switching block 441 has a transition from an inclined plane to a horizontal plane between two end surfaces, and the transition section is a longitudinal plate arranged in the middle, so that the movable push rod 443 has a movable space when extending outwards;
the unloading assembly 430 comprises a top seat 431 fixedly arranged at the front end of a fixed push seat 442, a trigger part 432, a telescopic roller frame 433, a reset baffle 434, an elastic part 435, a fixed slideway 436 and a reversible slideway 437, wherein one end of the trigger part 432 is hinged at the front end of the top seat 431, the other end of the trigger part 433 is a free end, one end of the telescopic roller frame 433 is arranged in front of the top seat 431 and is arranged on the trigger part 432 in a lapping way, the other end of the telescopic roller frame 433 penetrates through a push block 444, one end of the reset baffle 434 is fixed at the lower part of the telescopic roller frame 433, the other end of the elastic part 435 is hinged on the push block 444, can slide up and down and is pressed on the reset baffle 434, the fixed slideway 436 is attached to the inner surface of the inclined surface of the slide seat 410, and the reversible slideway 437 with a certain turnover angle is hinged with the fixed slideway 436;
the telescopic roller frame 433 is substantially plate-shaped, is made of bendable materials, is arranged at one end of the trigger part 432 in a lapping mode and is provided with a bending extension section 433a with an acute angle, the end part of the bending extension section 433a is provided with an arc-shaped recess 433b, the center of the bending extension section 433a is longitudinally provided with a strip-shaped notch 433c, one end of the other end of the telescopic roller frame 433 is provided with an upward warping bending section, and the end part of the bending section is provided with a far-end conveying roller 433d for conveying a single bottle of milk; the end part of one end of the free end of the trigger 432 is provided with a roller which passes through the gap 433c and abuts against the lower part of the plate body of the telescopic roller frame 433, in addition, a groove is arranged at the position of the top seat 431 corresponding to the position of installing the trigger 432, a compression spring is arranged in the groove, and the compression spring is used for keeping the trigger 432 at an upward position with a set inclination;
the upper edge of the top seat 431 close to one side of the bent extension 433a is provided with a convex arc section 431a matched with the recess 433 b;
a roller is arranged on one side of the elastic member 435 close to the reset baffle 434, the roller is elastically pressed on the reset baffle 434, a guide member 435a for coating the roller is arranged at the part where the reset baffle 434 and the roller are pressed, and the guide member 435a is used as the roller of the elastic member 435 for providing the guidance of the freedom degree of the moving position;
a passing notch 444a for the telescopic roller frame 433 to pass through is arranged in the push block 444, two rollers are respectively arranged at the upper part and the lower part of the passing notch, and a distance larger than the plate thickness of the telescopic roller frame 433 is reserved between the two rollers;
under the normal state, the telescopic roller frame 433 clings to the upper edge of the passing notch 444a by the conveying roller 433d under the action of the elastic element 435;
the upper edge of the pushing block 444 shown in fig. 4 is provided with a chamfer, the maximum descending stroke of the lifting cylinder 420 is set such that the farthest end surface of the pushing block 444 without external force is flush with the farthest end surface of the reversible slideway 437, so that the reversible slideway 437 is always located above the pushing block 444, when the lifting cylinder 420 ascends, the pushing assembly 440 is driven to retract integrally, the conveying roller 433d also retracts synchronously, at this time, the conveying roller 433d is in rolling contact with the lower bottom surface of the reversible slideway 437, so that the reversible slideway 437 overturns upwards, and the lowest position of the whole discharging pushing mechanism 400 is higher than that of the conveying assembly 100, so that the finished milk products conveyed from the rear direction are not blocked after one-time pushing is completed, and the whole distribution efficiency is improved;
the working principle of the discharge pushing mechanism 400 is as follows:
firstly, the lifting cylinder 420 is in a rising state, that is, the lowest position is higher than the conveying assembly 100, the conveying assembly 100 conveys the boxed milk to the end of the conveying assembly 100 and then stops, the lifting cylinder 420 descends to the set lowest position (the height of the position is also the height that the push block 444 can push the boxed milk, and the conveying roller 433d needs to be higher than the height of the boxed milk), the bottom of the turnover slideway 437 abuts against the upper edge chamfer of the push block 444, the conveying roller 433d is higher than the slideway surface of the turnover slideway 437 at the moment, then the single bottle milk is released from the conveying feed channel 600, and the single bottle milk slides down along the fixed slideway 436 and the turnover slideway 437 until colliding with the conveying roller 433d and stops;
then, as shown in the first and second figures, the driving motor 311 is started, the discharging pushing mechanism 400 moves to one side of the milk in the box in the conveying assembly 100, when the pushing block 444 is moved to collide with the milk in the box, the pushing block 444 is forced to overcome the pressure of the compression spring outside the movable pushing rod 443, so that the pushing block 444 remains stationary under the condition of moving forward integrally, at this time, the fixed pushing seat 442 continues to move forward, the trigger 432 pushes against the lower part of the telescopic roller frame 433 to lift it upward, the other end of the corresponding telescopic roller frame 433, i.e. the transfer roller 433d, moves downward (the moving fulcrum is the upper and lower rollers passing through the gap 444 a), the telescopic roller frame 433 lifts upward until the recess 433b is matched with the convex arc section 431a, and at this time, the transfer roller 433d moves downward to a position lower than the surface of the slideway of the turnable slideway 437, so that the single bottle of milk will slide to the upper part of the milk in the box along the turnable slideway 437 and the transfer roller 433d, at this time, the fixed pushing seat 442 moves forward to the top seat 431, the telescopic roller frame 433 is pushed forward (the elastic member 435 is compressed during pushing) by the contact of the recess 433b and the convex arc section 431a, the compression spring outside the movable pushing rod 443 is compressed to the maximum extent (that is, no compression margin is used up) to push the entire boxed milk product forward, the conveying roller 433d also extends forward to the farthest end, so that the single bottle of milk product on the conveying roller 433d can be conveyed far (when the conveying roller 433d is used, the single bottle of milk product is discharged from the conveying roller 433d to the boxed milk product), that is, conveyed to the more central position of the boxed milk product, and thus the pushing stopped inertia is not easy to drop the single bottle of milk product;
finally, the discharge pushing mechanism 400 continues to move, the milk in the box and the single bottle of milk placed on the upper portion are pushed to the next station, the driving portion 310 performs retraction, the pushing block 444 loses the forward power in the retraction, the movable push rod 443 returns to the original initial position under the action of the compression spring, and after the forward force disappears: the recess 433b and the convex arc section 431a are also separated and restored to the original initial position, and after the recess 433b and the convex arc section 431a are separated, the elastic force of the elastic element 435 is released to press the reset baffle 434 to push the telescopic roller frame 433 back to the original initial position; and the lifting cylinder 420 also performs lifting to enable the reversible slideway 437 to be turned upwards so as not to block the finished milk products conveyed from the rear, thereby completing one-time distribution, and repeatedly and continuously performing transmission.
When the whole assembly line is used, according to the above description of the components and the position relationship, a sensor and a corresponding device combining a human machine are specifically needed, and details are not described herein for those skilled in the art to easily think and realize.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications or additions may be made to the described embodiments or alternatives may be employed by those skilled in the art without departing from the spirit or ambit of the invention as defined in the appended claims.

Claims (9)

1. A combined delivery device is mainly used for placing single-bottle milk products or other promotional products and box milk products together and then pushing the single-bottle milk products and the box milk products into a next procedure for binding, and is characterized by comprising a conveying assembly (100) for conveying the box milk products, a linear driving assembly (300) which is arranged above the conveying assembly (100) and is collinear with the central line of the advancing direction of conveying work, a discharging pushing mechanism (400) which is arranged between the linear driving assembly (300) and the conveying assembly (100) and can move along the linear driving assembly (300), and a conveying feeding channel (600) which is arranged on one side of the discharging pushing mechanism (400) and is used for conveying the single-bottle milk products.
2. A modular dispensing assembly according to claim 1 wherein the conveyor assembly (100) comprises a conveyor belt (110) and guard plates (120) arranged on either side of the conveyor belt (110) with an adjustable spacing.
3. The modular dispensing apparatus of claim 1 wherein the linear drive assembly (300) comprises a drive portion (310) located above the conveyor assembly (100); the driving part (310) comprises a driving motor (311) for driving and a screw rod assembly (312).
4. The modular dispensing apparatus of claim 3 wherein the discharge pushing mechanism (400) comprises a slide mount (410) disposed in the driving portion (310), a lifting cylinder (420) obliquely and fixedly disposed below the slide mount (410), a discharge assembly (430) having one end passing through the slide mount (410) and the other end being a free end, and a pushing assembly (440) disposed below a side of the free end of the discharge assembly (430); the upper part of the sliding seat (410) is connected with the screw rod suite (312) and is set to be driven to move linearly by the driving motor (311), and the lower part of the sliding seat (410) is set to incline towards the conveying direction of the conveying assembly (100); the seat body of the lifting cylinder (420) is fixedly arranged at the lower part of the sliding seat (410).
5. The modular dispensing device of claim 4 wherein the pushing assembly (440) comprises an adaptor block (441) having one end fixedly connected to the telescopic end of the lift cylinder (420), the other end of the adaptor block (441) is provided with a square fixed push seat (442), four movable push rods (443) slidably connected to the fixed push seat (442) near the four corners of the fixed push seat (442), a push block (444) is fixedly disposed on the movable push rod (443) at a side away from the fixed push seat (442), and a return spring is disposed around the outer circumference of each movable push rod (443) between the push block (444) and the fixed push seat (442) and keeps the push block (444) at a set distance from the fixed push seat (442) without external force.
6. The combined delivery device according to claim 5, wherein the discharge assembly (430) comprises a top seat (431) fixedly disposed at the front end of the fixed push seat (442), a trigger member (432) having one end hinged to the top seat (431) and the other end being a free end, a telescopic roller frame (433) disposed in front of the top seat (431) and having one end overlapping the trigger member (432) and the other end passing through the push block (444), a return baffle (434) having one end fixed to the lower portion of the telescopic roller frame (433) and the other end extending downward, an elastic member (435) having one end hinged to the push block (444) and the other end slidably moving up and down and pressing against the return baffle (434), a fixed slide (436) attached to the inner surface of the inclined surface of the slide seat (410), and a reversible slide (437) hinged to the fixed slide (436) and having a certain turnover angle.
7. A modular dispensing assembly according to claim 6, wherein the telescopic roller carriage (433) is substantially plate-shaped, made of bendable material, and has an acute angled bend extension (433 a) at one end thereof overlapping the trigger member (432), the bend extension (433 a) having an end with an arcuate recess (433 b), the bend extension (433 a) having a longitudinal elongated notch (433 c) at a center thereof, the telescopic roller carriage (433) having an upwardly bent bend at the other end thereof, the bend having a transfer roller (433 d) at an end thereof; the end part of one end of the free end of the trigger piece (432) is provided with a roller, the roller passes through the notch (433 c) and abuts against the lower part of the plate body of the telescopic roller frame (433), in addition, a groove is arranged at the position of the top seat (431) corresponding to the trigger piece (432), a compression spring is arranged in the groove and used for keeping the trigger piece (432) at an upward position with a set inclination, and a convex arc section (431 a) matched with the concave part (433 b) is arranged on the upper edge of one side, close to the bending extension section (433 a), of the top seat (431).
8. A combined dispensing device according to claim 6, characterised in that the resilient member (435) is provided with a roller on the side thereof adjacent to the return stop (434), and the roller is resiliently urged against the return stop (434), and a guide member (435 a) surrounding the roller is provided at the location where the return stop (434) is urged against the roller, the guide member (435 a) providing a guide for the roller of the resilient member (435) with freedom of movement.
9. The combination dispensing device of claim 5 wherein the push block (444) has a through-cut (444 a) for the telescopic roller frame (433) to pass through, and one roller is provided on each of the upper and lower sides of the through-cut, and a distance larger than the thickness of the telescopic roller frame (433) is left between the two rollers.
CN202210368708.7A 2022-04-08 2022-04-08 Combined distribution device Active CN114802915B (en)

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CN202210368708.7A CN114802915B (en) 2022-04-08 2022-04-08 Combined distribution device

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CN114802915A true CN114802915A (en) 2022-07-29
CN114802915B CN114802915B (en) 2023-12-01

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