CN211056021U - Automatic dispensing equipment blanking mechanism - Google Patents

Automatic dispensing equipment blanking mechanism Download PDF

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Publication number
CN211056021U
CN211056021U CN201921364741.2U CN201921364741U CN211056021U CN 211056021 U CN211056021 U CN 211056021U CN 201921364741 U CN201921364741 U CN 201921364741U CN 211056021 U CN211056021 U CN 211056021U
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CN
China
Prior art keywords
auger shaft
pay
feeding
auger
blanking
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CN201921364741.2U
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Chinese (zh)
Inventor
杨棋明
叶绍铿
林鸿华
杜武进
傅振宇
何政刚
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FUZHOU ASSURED BRAKE SYSTEMS CO LTD
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FUZHOU ASSURED BRAKE SYSTEMS CO LTD
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Abstract

The utility model discloses an automatic dispensing equipment blanking mechanism, which comprises a motor, the feeder hopper, the pay-off case, pay-off auger shaft and flow distribution plate, through setting up the pay-off case into cylindric structure, and set up the outside diameter of pay-off auger shaft and the inboard diameter phase-match of pay-off case, thereby make the interval reduce between pay-off auger shaft and the pay-off case, can fully reach the purpose of pay-off, can not make the raw materials at pay-off case edge pile up and the partial raw materials that appears go out not unloading, blanking mechanism card is extremely etc. unusual phenomenon, through setting up pay-off auger shaft into the three-section, and the first section auger shaft, each section of second section auger shaft and third section auger shaft twists the piece interval differently, the twist piece interval of second section auger shaft is greater than the twist piece interval of first section auger shaft, be less than the twist piece interval of; thereby make different kinds of raw materials can both be carried, and syllogic design power is stronger, and the ejection of compact is stable even, has solved not the ejection of compact, has weighed the unstable phenomenon of weight well.

Description

Automatic dispensing equipment blanking mechanism
Technical Field
The utility model relates to a supporting equipment technical field is assisted in production specifically is an automatic dispensing equipment blanking mechanism.
Background
Blanking machine wide use has in the injection molding machine raw materials transport trade, simple to operate, use easy operation, long distance transport capacity is strong, stable in production, reliable operation, at present, when the chain conveyer through having the shift fork transports the material of same quantity, often realize with the manual blowing, not only take a lot of work and waste time, still often can appear leaking put, the scheduling problem is put by mistake, high in labor strength, the frequency is high, the people is tired easily, seriously influence work efficiency and operating mass, former equipment weighing accuracy is unstable, weigh the weight deviation that often appears in-process, the unloading does not appear in partial raw materials, blanking mechanism card unusual phenomena such as dead.
The utility model discloses the raw materials kind that weighs is different, selects the pay-off auger axle of different forms according to its characteristic, with original all sizes and the axle that the specification is the same all, replaces with the axle after improving to install the raw materials additional at the discharge gate position and shunt, solved not the ejection of compact well, weighed the unstable phenomenon of weight.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic dispensing equipment blanking mechanism, including motor, feeder hopper, pay-off case, pay-off auger axle and flow distribution plate to the problem among the prior art has been solved.
In order to achieve the above object, the utility model provides a following technical scheme: a blanking mechanism of automatic batching equipment comprises a motor, a feed hopper, a feeding box, a feeding auger shaft and a splitter plate, wherein the motor is fixedly arranged on a motor fixing seat, and a dustproof baffle is additionally arranged at a transmission shaft of the motor; the transmission shaft is fixedly connected with the feeding auger shaft; the feeding auger shaft is arranged inside the feeding box; a support column is welded at the bottom of the feeding box, a feeding hole is formed in the upper portion of the front end of the feeding box, and a discharging hole is formed in the lower portion of the tail end of the feeding box; supporting columns of the feeding hopper are arranged on two sides of the feeding hole; a feed hopper is fixedly welded on the feed hopper supporting column; a discharge hopper is fixedly arranged below the discharge port; a flow distribution plate is arranged below the discharge hopper; and a splitter plate supporting column is arranged at the bottom of the splitter plate.
Preferably, the feeding box is of a cylindrical structure.
Preferably, the diameter of the outer side of the feeding auger shaft is matched with the diameter of the inner side of the feeding box.
Preferably, the feeding auger shaft comprises a first section of auger shaft, a second section of auger shaft and a third section of auger shaft; the front end of the second section of auger shaft is provided with a first section of auger shaft; the tail end of the second section of auger shaft is provided with a third section of auger shaft; the first section of packing auger shaft, the second section of packing auger shaft and the third section of packing auger shaft form a whole feeding packing auger shaft.
Preferably, the distances among the sections of the twisted pieces of the first section of auger shaft, the second section of auger shaft and the third section of auger shaft are different; the twisted piece interval of the second section of auger shaft is larger than that of the first section of auger shaft and smaller than that of the third section of auger shaft.
Preferably, the heights of the splitter plate support columns installed at the bottom of the splitter plate are different, and the height of the splitter plate support column at the front end of the splitter plate is greater than the height of the splitter plate support column at the tail end of the splitter plate.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. this automatic distribution equipment blanking mechanism sets up to cylindric structure through with the pay-off case, and sets up the outside diameter of pay-off auger axle and the inboard diameter phase-match of pay-off case to make the interval reduce between pay-off auger axle and the pay-off case, can fully reach the purpose of pay-off, can not make the raw materials at pay-off case edge pile up and the partial raw materials that appears go out not unloading, blanking mechanism card unusual phenomena such as dead, solved not the ejection of compact well, weighed the unstable phenomenon of weight.
2. The blanking mechanism of the automatic batching equipment is characterized in that a feeding auger shaft is arranged into three sections, the distances between twisted pieces of the first section of auger shaft, the second section of auger shaft and the third section of auger shaft are different, and the distance between twisted pieces of the second section of auger shaft is larger than that of the first section of auger shaft and smaller than that of the third section of auger shaft; thereby make different types of raw materials can both be carried, and syllogic design power is stronger, and the ejection of compact is stable even, has reduced the emergence of abnormal conditions, weighs the weight error that the precision can be controlled below 200KG and be 0.01 KG.
Drawings
Fig. 1 is a front view of the present invention;
fig. 2 is a top view of the present invention;
FIG. 3 is a schematic view of the feeding auger shaft of the present invention;
fig. 4 is the internal structure schematic diagram of the feeding box of the utility model.
In the figure: 1. a motor; 11. a motor fixing seat; 12. a drive shaft; 2. a dust-proof baffle plate; 3. a feed hopper; 31. a feed hopper supporting column; 4. a feeding box; 41. a support pillar; 42. a discharge hopper; 43. a feed inlet; 44. a discharge port; 5. a feeding auger shaft; 51. a first section auger shaft; 52. a second section of auger shaft; 53. a third section of auger shaft; 6. a flow distribution plate; 61. flow distribution plate support columns.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-2, a blanking mechanism of an automatic batching apparatus comprises a motor 1, a feed hopper 3, a feeding box 4, a feeding auger shaft 5 and a splitter plate 6, wherein the motor 1 is fixedly installed on a motor fixing seat 11, and a dustproof baffle 2 is additionally installed at a transmission shaft 12 of the motor 1 to prevent raw materials from entering the motor 1, so that the motor 1 is prevented from being out of order and the working efficiency is not affected; the transmission shaft 12 is fixedly connected with the feeding auger shaft 5; the feeding auger shaft 5 is arranged inside the feeding box 4; the feeding box 4 is of a cylindrical structure, the outer diameter of the feeding auger shaft 5 is matched with the inner diameter of the feeding box 4, the feeding box 4 is set to be of the cylindrical structure, and the outer diameter of the feeding auger shaft 5 is matched with the inner diameter of the feeding box 4, so that the distance between the feeding auger shaft 5 and the feeding box 4 is reduced, the feeding purpose can be fully achieved, and the abnormal phenomena that the raw materials at the edge of the feeding box 4 are accumulated, part of the raw materials are not discharged, the blanking mechanism is blocked and the like cannot occur; a support column 41 is welded at the bottom of the feeding box 4, a feeding port 43 is formed in the upper part of the front end of the feeding box 4, and a discharging port 44 is formed in the lower part of the tail end of the feeding box 4; the two sides of the feed inlet 43 are provided with a hopper supporting column 31; a feed hopper 3 is fixedly welded on the feed hopper supporting column 31; a discharge hopper 42 is fixedly arranged below the discharge hole 44; a flow distribution plate 6 is arranged below the discharge hopper 42; the bottom of the flow distribution plate 6 is provided with a flow distribution plate support column 61, the height of the flow distribution plate support column 61 arranged at the bottom of the flow distribution plate 6 is different, and the height of the flow distribution plate support column 61 at the front end of the flow distribution plate 6 is larger than that of the flow distribution plate support column 61 at the tail end of the flow distribution plate 6, so that the flow distribution plate 6 forms an inclination angle, and raw materials can automatically slide down.
Referring to fig. 3-4, a blanking mechanism of an automatic batching apparatus, a feeding auger shaft 5 includes a first section auger shaft 51, a second section auger shaft 52 and a third section auger shaft 53; the front end of the second section of auger shaft 52 is provided with a first section of auger shaft 51; the tail end of the second section of auger shaft 52 is provided with a third section of auger shaft 53; the first section of auger shaft 51, the second section of auger shaft 52 and the third section of auger shaft 53 form a feeding auger shaft 5 whole; the distances among the sections of the twisted pieces of the first section of auger shaft 51, the second section of auger shaft 52 and the third section of auger shaft 53 are different; the stranding interval of the second section of auger shaft 52 is larger than that of the first section of auger shaft 51 and smaller than that of the third section of auger shaft 53; the first section of auger shaft 51 is close to the feed port 43, the raw materials are more and have high density, the twisted piece intervals of the first section of auger shaft 51 are densely arranged, the feeding speed is high, the raw materials at the feed port 43 can be rapidly conveyed to the rear, and the phenomenon of material blockage at the feed port 43 can not occur; the distance between the twisted pieces of the second section of auger shaft 52 is moderate, so that the phenomenon of material blocking inside the feeding box 4 can be prevented; the distance between the twisted pieces of the third section of the auger shaft 53 is large, so that the discharging speed can be reduced, the discharging is uniform, and the weighing weight is more stable.
In summary, the following steps: the utility model provides an automatic dispensing equipment blanking mechanism, including motor 1, feeder hopper 3, feeding box 4, pay-off auger shaft 5 and flow distribution plate 6, through setting up feeding box 4 to cylindrical structure, and set up the outside diameter of pay-off auger shaft 5 and the inboard diameter phase-match of feeding box 4, thus make the interval between feeding auger shaft 5 and the feeding box 4 narrow, can fully reach the purpose of pay-off, can not make the raw materials of feeding box 4 edge pile up and some raw materials that appear go out not to unload, blanking mechanism card dies etc. unusual phenomenon, solved well not to unload, weigh the unstable phenomenon of weight; the feeding auger shaft 5 is provided with three sections, the distances among the sections of the first section of auger shaft 51, the second section of auger shaft 52 and the third section of auger shaft 53 are different, and the distance among the twisted pieces of the second section of auger shaft 52 is larger than that of the first section of auger shaft 51 and smaller than that of the third section of auger shaft 53; thereby make different types of raw materials can both be carried, and syllogic design power is stronger, and the ejection of compact is stable even, has reduced the emergence of abnormal conditions, weighs the weight error that the precision can be controlled below 200KG and be 0.01 KG.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, 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.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides an automatic dispensing equipment blanking mechanism, includes motor, feeder hopper, pay-off case, pay-off auger axle and flow distribution plate, its characterized in that: the motor is fixedly arranged on the motor fixing seat, and a dustproof baffle is additionally arranged at a transmission shaft of the motor; the transmission shaft is fixedly connected with the feeding auger shaft; the feeding auger shaft is arranged inside the feeding box; a support column is welded at the bottom of the feeding box, a feeding hole is formed in the upper portion of the front end of the feeding box, and a discharging hole is formed in the lower portion of the tail end of the feeding box; supporting columns of the feeding hopper are arranged on two sides of the feeding hole; a feed hopper is fixedly welded on the feed hopper supporting column; a discharge hopper is fixedly arranged below the discharge port; a flow distribution plate is arranged below the discharge hopper; and a splitter plate supporting column is arranged at the bottom of the splitter plate.
2. The blanking mechanism of the automatic batching equipment according to claim 1, characterized in that: the feeding box is of a cylindrical structure.
3. The blanking mechanism of the automatic batching equipment according to claim 1, characterized in that: the outside diameter of pay-off auger axle and the inboard diameter phase-match of pay-off case.
4. The blanking mechanism of the automatic batching equipment according to claim 1, characterized in that: the feeding auger shaft comprises a first section of auger shaft, a second section of auger shaft and a third section of auger shaft; the front end of the second section of auger shaft is provided with a first section of auger shaft; the tail end of the second section of auger shaft is provided with a third section of auger shaft; the first section of packing auger shaft, the second section of packing auger shaft and the third section of packing auger shaft form a whole feeding packing auger shaft.
5. The blanking mechanism of the automatic batching equipment according to claim 4, characterized in that: the distances among the sections of twisted pieces of the first section of auger shaft, the second section of auger shaft and the third section of auger shaft are different; the twisted piece interval of the second section of auger shaft is larger than that of the first section of auger shaft and smaller than that of the third section of auger shaft.
6. The blanking mechanism of the automatic batching equipment according to claim 1, characterized in that: the height of the splitter plate support columns arranged at the bottom of the splitter plate is different, and the height of the splitter plate support column at the front end of the splitter plate is larger than that of the splitter plate support column at the tail end of the splitter plate.
CN201921364741.2U 2019-08-21 2019-08-21 Automatic dispensing equipment blanking mechanism Active CN211056021U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921364741.2U CN211056021U (en) 2019-08-21 2019-08-21 Automatic dispensing equipment blanking mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921364741.2U CN211056021U (en) 2019-08-21 2019-08-21 Automatic dispensing equipment blanking mechanism

Publications (1)

Publication Number Publication Date
CN211056021U true CN211056021U (en) 2020-07-21

Family

ID=71590488

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921364741.2U Active CN211056021U (en) 2019-08-21 2019-08-21 Automatic dispensing equipment blanking mechanism

Country Status (1)

Country Link
CN (1) CN211056021U (en)

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