CN213675174U - Feeding mechanism of injection molding machine for flame-retardant storage battery shell - Google Patents

Feeding mechanism of injection molding machine for flame-retardant storage battery shell Download PDF

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Publication number
CN213675174U
CN213675174U CN202022535245.8U CN202022535245U CN213675174U CN 213675174 U CN213675174 U CN 213675174U CN 202022535245 U CN202022535245 U CN 202022535245U CN 213675174 U CN213675174 U CN 213675174U
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feeding
throw
workbin
sides
injection molding
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CN202022535245.8U
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Inventor
杨桂锋
贾庆虎
陈亮
陈志平
李�杰
唐洋
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JIANGSU YONGDA POWER INDUSTRY CO LTD
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JIANGSU YONGDA POWER INDUSTRY CO LTD
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Abstract

The utility model provides a flame-retardant feeding mechanism of an injection molding machine for accumulator shells, which relates to the technical field of feeding equipment and comprises a feeding box, a feeding device and a cleaning device, wherein a pair of crushing roller shafts are arranged inside the feeding box, the surfaces of the crushing roller shafts are provided with crushing blades, two ends of the crushing roller shafts are embedded with power motors, the end parts of the power motors are fixedly connected with the side surfaces of the inner walls of the feeding box, the crushing roller shafts rotate in opposite directions, the feeding device comprises a conveyor belt and an anti-slip strip, one end of the conveyor belt is propped against the top edges of the side surfaces of the feeding box, the cleaning device comprises an air blower and a sliding cover plate, the feeding box is combined with the cooperation of the feeding device and the cleaning device, the material is fed into the feeding box through the conveyor belt, the crushing blades are driven to crush and mix the material through the rotation of the crushing roller shafts, the cutting and the stirring of the material are carried out simultaneously, the high-efficient operation of guarantee equipment improves the practicality and the work rate of equipment.

Description

Feeding mechanism of injection molding machine for flame-retardant storage battery shell
Technical Field
The utility model relates to a charging equipment technical field especially relates to a fire-retardant battery case injection molding machine throws material mechanism.
Background
According to chinese patent number for CN211616395U comparison document discloses a fire-retardant battery case injection molding machine throw material mechanism, including last workbin, rabbling mechanism, booster mechanism, wiper mechanism and PLC controlling means, it is provided with the discharge gate to go up the workbin bottom, be provided with ejection of compact valve on the discharge gate, the injection molding machine feed inlet is connected to the discharge gate, it is provided with the zone of heating to go up the workbin lateral wall, it is provided with rabbling mechanism on the workbin to go up, it is provided with the rabbling mechanism to go up the workbin top, it is provided with booster mechanism and material loading mouth to go up the workbin top, be provided with material loading valve and material loading frame on the material loading mouth, PLC controlling means sets up at the workbin lateral wall, rabbling mechanism, booster mechanism. The utility model discloses can directly stir the processing to the raw materials, save the material loading step, improve material loading efficiency, and be provided with booster mechanism and guarantee material loading quality, and convenient cleanness, the practicality is strong.
However, when the device is used in practice, the materials are still stirred, the feeding port is too small to fit large materials, the materials are too heavy to be fed easily, and the device is used for stirring and cutting the materials separately and is not beneficial to practical use.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the prior art and providing a feeding mechanism of an injection molding machine for flame-retardant storage battery shells.
In order to achieve the above purpose, the utility model adopts the following technical scheme: the utility model provides a fire-retardant battery case injection molding machine throws material mechanism, includes the workbin of throwing, material feeding unit and cleaning device, the inside a pair of crushing roller that is equipped with of workbin of throwing, it is equipped with crushing blade to smash the roller surface, the inside embedding in crushing roller both ends is equipped with motor power, and motor power tip with throw workbin side fixed connection, it is rotatory in opposite directions to smash the roller, material feeding unit is located material throwing workbin one side, cleaning device is located material throwing box top, material feeding unit includes conveyer belt and antislip strip, conveyer belt one end offsets with throwing material box side top edge, cleaning device includes air-blower and sliding cover.
Preferably, throw the workbin top edge and be equipped with and throw the material baffle, and throw material baffle bottom surface and throw workbin welded fastening, it all fixes and is equipped with magnetism and inhale the strip to throw material baffle top surface both sides and side edge both sides, throw the inside smooth material platform that is equipped with of workbin, and smooth material platform front cross-section is stabilizer blade triangle-shaped, and smooth material platform bottom surface and throw the inside bottom surface coincidence of workbin and fix, and the peripheral lateral wall of smooth material platform all with throw the inside lateral wall fixed connection of workbin.
Preferably, the inside conveying power shaft that all is equipped with in conveyer belt both ends, the conveyer belt is close to the conveying power shaft both ends of throwing the workbin and all fixes and be equipped with the second support column, the conveying power shaft both ends that the workbin was kept away from to the conveyer belt all are equipped with first support column, all fix between the first support column of conveyer belt both sides and the second support column and be equipped with the limiting plate, spacing fixed surface is equipped with spacing knee, the even array of antislip strip is fixed in the conveyer belt surface.
Preferably, throw material baffle and cleaning device's slip apron magnetism and inhale and be connected, the spacing groove has been seted up to the inside horizontal direction of slip apron, spacing groove bottom is equipped with the air-blower, and air-blower tip and spacing groove sliding connection, the side that slip apron is close to material feeding unit is equipped with rotatory apron, and rotatory apron is articulated with the slip apron, rotatory apron is inhaled with throwing material baffle side magnetism and is connected, the bottom both sides that material feeding unit was kept away from to the slip apron respectively fixedly are equipped with the heel post, the heel post bottom respectively fixedly is equipped with the removal wheel.
Preferably, the side of feeding case keeping away from material feeding unit is equipped with discharge device, discharge device is including arranging material pipe and aspiration pump, arrange the material pipe and throw the material case side and be close to bottom border department and run through fixed connection, arrange the inside run through of material pipe and be equipped with the ooff valve, it is equipped with the aspiration pump to arrange the material pipe surface.
Preferably, the magnetic strip is provided with four pairs of magnetic strips which are respectively positioned on two sides of the top surface of the feeding baffle, on two sides of the side edge of the feeding baffle, on two sides of the bottom surface of the sliding cover plate and on two sides of the bottom surface of the rotating cover plate, the magnetic strips on two sides of the side edge of the feeding baffle are opposite to the magnetic strips on two sides of the bottom surface of the rotating cover plate, and the magnetic strips on two sides of the top surface of the feeding baffle are opposite to the magnetic strips on two sides of the bottom.
Advantageous effects
The utility model discloses in, throw the workbin and combine material feeding unit and cleaning device's cooperation, carry out pay-off to the feeding incasement to the material through the conveyer belt, carry out the smashing and the mixing of material through smashing the rotatory crushing blade that drives of roller, make the cutting and the stirring of material go on simultaneously to improve the efficiency of throwing the material, clear up in the workbin to throwing through cleaning device's air-blower simultaneously, prevent that the material from blocking with crushing blade, the high-efficient operation of support equipment, improve equipment's practicality and work rate.
Drawings
FIG. 1 is a schematic perspective view of a feeding mechanism of an injection molding machine for flame-retardant storage battery cases;
FIG. 2 is an enlarged view of FIG. 1-A;
FIG. 3 is a front cross-sectional view of a feeding mechanism of an injection molding machine for flame-retardant battery cases;
FIG. 4 is an enlarged view of FIG. 3-A;
FIG. 5 is a side view of a feeding mechanism of an injection molding machine for flame retardant battery cases.
Illustration of the drawings:
1. a feeding device; 101. a first support column; 102. a second support column; 103. a limiting plate; 104. limiting the bent rod; 105. a conveyor belt; 106. a transmission power shaft; 107. anti-slip strips; 2. a cleaning device; 201. a sliding cover plate; 202. rotating the cover plate; 203. magnetically attracting the strip; 204. a load-bearing column; 205. a moving wheel; 206. a limiting groove; 207. a blower; 3. a discharge device; 301. a discharge pipe; 302. an on-off valve; 303. an air pump; 4. a feeding box; 5. a material sliding table; 6. a feeding baffle plate; 7. a crushing roller shaft; 8. a power motor; 9. and (4) crushing blades.
Detailed Description
In order to make the technical means, the creation features, the achievement purposes and the functions of the present invention easy to understand, the present invention will be further explained below with reference to the following embodiments and the accompanying drawings, but the following embodiments are only the preferred embodiments of the present invention, and not all embodiments are included. Based on the embodiments in the implementation, other embodiments obtained by those skilled in the art without any creative work belong to the protection scope of the present invention.
Specific embodiments of the present invention will be described below with reference to the accompanying drawings.
The specific embodiment is as follows:
referring to fig. 1-5, a feeding mechanism of an injection molding machine for flame-retardant storage battery shells comprises a feeding box 4, a feeding device 1 and a cleaning device 2, wherein a pair of crushing roller shafts 7 are arranged inside the feeding box 4, crushing blades 9 are arranged on the surfaces of the crushing roller shafts 7, power motors 8 are embedded inside the two ends of the crushing roller shafts 7, the end parts of the power motors 8 are fixedly connected with the side surfaces of the inner walls of the feeding box 4, the crushing roller shafts 7 rotate oppositely, the feeding device 1 is positioned on one side of the feeding box 4, the cleaning device 2 is positioned on the top of the feeding box 4, the feeding device 1 comprises a conveyor belt 105 and anti-slip strips 107, one end of the conveyor belt 105 is abutted against the top edges of the side surfaces of the feeding box 4, the cleaning device 2 comprises an air blower 207 and a sliding cover plate 201, the feeding box 4 is matched with the feeding device 1 and the cleaning device 2, materials are fed into the feeding box through the conveyor belt 105, the, the cutting and the stirring of the materials are carried out simultaneously, thereby improving the feeding efficiency, the inside of the feeding box 4 is cleaned by the air blower 207 of the cleaning device 2, the materials are prevented from being blocked with the crushing blades 9, the high-efficiency operation of the equipment is ensured, the practicability and the working rate of the equipment are improved, the top edge of the feeding box 4 is provided with a feeding baffle 6, the bottom surface of the feeding baffle 6 is welded and fixed with the feeding box 4, both sides of the top surface and both sides of the side edge of the feeding baffle 6 are fixedly provided with magnetic suction strips 203, the size of a feeding port of the feeding box 4 is increased by the feeding baffle 6, simultaneously, the materials are prevented from being overlarge or falling from the top of the feeding box 4 during the feeding, the feeding safety is ensured, the inside of the feeding box 4 is provided with a sliding material platform 5, the front cross section of the sliding material platform 5 is triangular, the bottom surface of the sliding material platform 5 is coincided and fixed with the inner bottom surface of the feeding box 4, and the peripheral side wall of the sliding material platform 5 is fixedly, the material which is rotationally driven by the crushing roller shaft 7 to rotate and cut by the crushing blade 9 slides to one end of the feeding box 4 through the material sliding table 5, so that the material can be conveniently discharged through the discharging device 3, the conveying power shafts 106 are arranged inside two ends of the conveying belt 105, the two ends of the conveying power shaft 106, close to the feeding box 4, of the conveying belt 105 are fixedly provided with second supporting columns 102, the two ends of the conveying power shaft 106, far away from the feeding box 4, of the conveying belt 105 are respectively provided with a first supporting column 101, a limiting plate 103 is fixedly arranged between the first supporting column 101 and the second supporting column 102 on two sides of the conveying belt 105, the surface of the limiting plate 103 is fixedly provided with a limiting bent rod 104, the anti-slip strips 107 are uniformly fixed on the surface of the conveying belt 105 in an array manner, the anti-slip phenomenon of the material when the conveying belt 105 conveys the material at an inclined angle is prevented, and, the material conveying and feeding device comprises a material feeding baffle plate 6, a sliding cover plate 201 of a cleaning device 2, a limiting groove 206 arranged in the sliding cover plate 201 in the horizontal direction, a blower 207 arranged at the bottom of the limiting groove 206, a rotating cover plate 202 arranged at the side of the sliding cover plate 201 close to a material feeding device 1, a rotating cover plate 202 hinged with the sliding cover plate 201, a bearing column 204 respectively arranged at the two sides of the bottom of the sliding cover plate 201 far away from the material feeding device 1, moving wheels 205 respectively arranged at the bottom of the bearing column 204, four pairs of magnetic attraction strips 203 respectively arranged at the two sides of the top surface of the material feeding baffle plate 6, the two sides of the side edge of the material feeding baffle plate 6, the two sides of the bottom surface of the sliding cover plate 201 and the two sides of the bottom surface of the rotating cover plate 202, magnetic strips 203 on two sides of the side edge of the feeding baffle 6 are opposite to magnetic strips 203 on two sides of the bottom surface of the rotary cover plate 202 in magnetism, magnetic strips 203 on two sides of the top surface of the feeding baffle 6 are opposite to magnetic strips 203 on two sides of the bottom surface of the sliding cover plate 201, the sliding cover plate 201 is pushed forwards and backwards to slide on the surface of the feeding baffle 6, the bearing column 204 drives the moving wheel 205 to move forwards and backwards along with the movement of the sliding cover plate 201, so as to control the covering degree of the sliding cover plate 201 on the surface of the feeding baffle 6, the position of the air blower 207 is adjusted by sliding the air blower 207 in a limiting sliding chute, the rotary cover plate 202 rotates around the side surface of the sliding cover plate 201 to be fixed with the side surface of the feeding baffle 6 in a magnetic absorption manner, the air blower 207 is driven to operate, so as to clean the inside of the feeding box 4, a discharging device 3 is arranged on the, the side of the material discharge pipe 301 and the side of the material feeding box 4 close to the bottom edge are fixedly connected in a penetrating mode, a switch valve 302 is arranged in the material discharge pipe 301 in a penetrating mode, an air suction pump 303 is arranged on the surface of the material discharge pipe 301, and the air suction pump 303 is driven to operate by opening the switch valve 302, so that materials in the material feeding machine are discharged from a material discharge port to the outside, and the next process of the injection molding process is performed.
In the present disclosure, unless expressly stated or limited otherwise, the first feature "on" or "under" the second feature may comprise direct contact between the first and second features, or may comprise contact between the first and second features not directly. Also, the first feature being "on," "above" and "over" the second feature includes the first feature being directly on and obliquely above the second feature, or merely indicating that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature includes the first feature being directly under and obliquely below the second feature, or simply meaning that the first feature is at a lesser elevation than the second feature.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It should be understood by those skilled in the art that the present invention is not limited by the above embodiments, and the description in the above embodiments and the description is only preferred examples of the present invention, and is not intended to limit the present invention, and that the present invention can have various changes and modifications without departing from the spirit and scope of the present invention, and these changes and modifications all fall into the scope of the claimed invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a fire-retardant battery case injection molding machine throws material mechanism, includes and throws workbin (4), material feeding unit (1) and cleaning device (2), its characterized in that: throw workbin (4) inside and be equipped with a pair of crushing roller (7), it is equipped with crushing blade (9) to smash roller (7) surface, the inside embedding in crushing roller (7) both ends is equipped with motor power (8), and motor power (8) tip and throw workbin (4) inner wall side fixed connection, it is rotatory in opposite directions to smash roller (7), material feeding unit (1) is located throw workbin (4) one side, cleaning device (2) are located throw workbin (4) top, material feeding unit (1) include conveyer belt (105) and antislip strip (107), conveyer belt (105) one end offsets with throw workbin (4) side top edge, cleaning device (2) include air-blower (207) and sliding cover board (201).
2. The feeding mechanism of the injection molding machine for flame-retardant storage battery shells as claimed in claim 1, wherein: throw workbin (4) top edge and be equipped with and throw material baffle (6), and throw material baffle (6) bottom surface and throw workbin (4) welded fastening, throw material baffle (6) top surface both sides and side edge both sides and all fix and be equipped with magnetism and inhale strip (203), throw workbin (4) inside and be equipped with smooth material platform (5), and smooth material platform (5) front cross-section is stabilizer blade triangle-shaped, and smooth material platform (5) bottom surface and throw workbin (4) inside bottom surface coincidence fixed, and smooth material platform (5) peripheral lateral wall all with throw workbin (4) inside lateral wall fixed connection.
3. The feeding mechanism of the injection molding machine for flame-retardant storage battery shells as claimed in claim 1, wherein: conveyer belt (105) both ends are inside all to be equipped with conveying power shaft (106), conveyer belt (105) are close to conveying power shaft (106) both ends of throwing workbin (4) and all fix and are equipped with second support column (102), conveying power shaft (106) both ends that throwing workbin (4) was kept away from in conveyer belt (105) all are equipped with first support column (101), all fixed limiting plate (103) that are equipped with between first support column (101) of conveyer belt (105) both sides and second support column (102), limiting plate (103) fixed surface is equipped with spacing knee (104), the even array of antislip strip (107) is fixed in conveyer belt (105) surface.
4. The feeding mechanism of the injection molding machine for flame-retardant storage battery shells as claimed in claim 2, characterized in that: throw material baffle (6) and cleaning device (2) slide cover board (201) magnetism and inhale and be connected, spacing groove (206) have been seted up to the inside horizontal direction of slide cover board (201), spacing groove (206) bottom is equipped with air-blower (207), and air-blower (207) tip and spacing groove (206) sliding connection, the side that slide cover board (201) are close to material feeding unit (1) is equipped with rotatory apron (202), and just rotatory apron (202) are articulated with slide cover board (201), rotatory apron (202) are inhaled with throw material baffle (6) side magnetism and are connected, the bottom both sides that material feeding unit (1) were kept away from in slide cover board (201) respectively fixedly are equipped with heel post (204), heel post (204) bottom respectively fixedly is equipped with movable wheel (205).
5. The feeding mechanism of the injection molding machine for flame-retardant storage battery shells as claimed in claim 1, wherein: throw workbin (4) and keep away from side of material feeding unit (1) and be equipped with discharge device (3), discharge device (3) are including arranging material pipe (301) and aspiration pump (303), it runs through fixed connection to arrange material pipe (301) and throw workbin (4) side and be close to bottom border department, arrange that material pipe (301) inside runs through and is equipped with ooff valve (302), it is equipped with aspiration pump (303) to arrange material pipe (301) surface.
6. The feeding mechanism of the injection molding machine for flame-retardant storage battery shells as claimed in claim 2, characterized in that: the magnetic attraction strip (203) is provided with four pairs of magnetic attraction strips which are respectively positioned on two sides of the top surface of the feeding baffle (6), two sides of the side edge of the feeding baffle (6), two sides of the bottom surface of the sliding cover plate (201) and two sides of the bottom surface of the rotating cover plate (202), the magnetic attraction strips (203) on the two sides of the side edge of the feeding baffle (6) are opposite to the magnetic attraction strips (203) on the two sides of the bottom surface of the rotating cover plate (202), and the magnetic attraction strips (203) on the two sides of the top surface of the feeding baffle (6) are opposite to the magnetic attraction strips (203) on the two sides of.
CN202022535245.8U 2020-11-05 2020-11-05 Feeding mechanism of injection molding machine for flame-retardant storage battery shell Active CN213675174U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022535245.8U CN213675174U (en) 2020-11-05 2020-11-05 Feeding mechanism of injection molding machine for flame-retardant storage battery shell

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022535245.8U CN213675174U (en) 2020-11-05 2020-11-05 Feeding mechanism of injection molding machine for flame-retardant storage battery shell

Publications (1)

Publication Number Publication Date
CN213675174U true CN213675174U (en) 2021-07-13

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ID=76728368

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022535245.8U Active CN213675174U (en) 2020-11-05 2020-11-05 Feeding mechanism of injection molding machine for flame-retardant storage battery shell

Country Status (1)

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CN (1) CN213675174U (en)

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