CN212892419U - Uninterrupted feeding device of vertical slicing machine - Google Patents

Uninterrupted feeding device of vertical slicing machine Download PDF

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Publication number
CN212892419U
CN212892419U CN202021908002.8U CN202021908002U CN212892419U CN 212892419 U CN212892419 U CN 212892419U CN 202021908002 U CN202021908002 U CN 202021908002U CN 212892419 U CN212892419 U CN 212892419U
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support
feeding
conveying
wheel
driven shaft
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CN202021908002.8U
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Chinese (zh)
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丁宇峰
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Hangzhou Shengri Machinery Manufacturing Co ltd
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Hangzhou Shengri Machinery Manufacturing Co ltd
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Abstract

The utility model discloses a vertical slicer's incessant loading attachment, including automatic feeding machine, set up at the quantitative conveyer of automatic feeding machine one end and with the full-automatic vertical slicer of quantitative conveyer matched with, characterized by install light sense induction system on the quantitative conveyer, light sense device and automatic feeding machine and quantitative conveyer line connection, the utility model discloses be provided with automatic feeding machine and quantitative conveyer, install light sense induction system on quantitative conveyer's the hopper that connects, through light sense induction system response material position, control automatic feeding machine automatic feeding when the material is not enough, when the material is enough, control quantitative conveyer pay-off only need artifically put the material into the feeding funnel can, realize the autoloading, improve production efficiency.

Description

Uninterrupted feeding device of vertical slicing machine
[ technical field ] A method for producing a semiconductor device
The utility model relates to a slicer technical field specifically indicates a vertical slicer's incessant loading attachment.
[ background of the invention ]
Along with the continuous improvement of production technology level, the society has got into an more and more automatic era, but the material loading mode of traditional slicer technique adopts artifical pay-off mode, and the manual work of carrying the material to the charging tray through operating personnel is manually pushed into the pressure feed bin and is cut, has the recruitment big, the human cost is high, and the problem that manual pay-off production efficiency is low, for this reason, has provided the incessant loading attachment of vertical slicer.
[ Utility model ] content
The utility model aims at solving the manual pay-off of slicer, production efficiency is low, the problem that the recruitment is big to an incessant loading attachment of vertical slicer has been provided.
In order to achieve the above purpose, the utility model provides a following technical scheme: the utility model provides an incessant loading attachment of vertical slicer, includes automatic feeding machine, sets up the quantitative conveyer in automatic feeding machine one end and the full-automatic vertical slicer with quantitative conveyer looks complex, characterized by install light sense induction system on the quantitative conveyer, light sense device and automatic feeding machine and quantitative conveyer line connection.
Further preferred is: the automatic feeding machine comprises a feeding support, a feeding mechanism and a steel frame, wherein the feeding mechanism is installed on the feeding support, the steel frame is installed on the feeding mechanism, a feeding hopper is installed on the steel frame, and a discharging hopper is further arranged at the other end of the feeding mechanism.
Further preferred is: the feeding mechanism comprises a feeding support and a speed reducing motor seat plate, wherein the feeding support is mounted on the feeding support, the speed reducing motor seat plate is mounted at one end of the feeding support, a speed reducing motor is mounted on the speed reducing motor seat plate, a driving shaft is mounted on the speed reducing motor, a driving wheel is mounted on the driving shaft, a skirt conveyer belt is mounted on the driving wheel, and a bearing is mounted at the other end of the driving shaft.
Further preferred is: the feeding mechanism further comprises a driven shaft arranged at the other end of the feeding support, a driven wheel is mounted on the driven shaft and then meshed with the skirt conveyor belt, a first bearing and a gland matched with the driven shaft are further mounted on the feeding support, an adjusting screw is further arranged on the driven shaft, a supporting wheel is further mounted on the feeding support, and idler wheels are mounted on the feeding support and the feeding support.
Further preferred is: the quantitative conveyor comprises a conveying support arranged on the full-automatic vertical slicing machine and a conveying mechanism arranged on the conveying support, wherein a hopper connecting support is further arranged on the conveying support, a hopper connecting body is arranged on the hopper connecting support, a low-level light sensation inductive probe and a high-level light sensation inductive probe are arranged on the hopper connecting body, and the low-level light sensation inductive probe and the high-level light sensation inductive probe form a light sensation inductive device.
Further preferred is: conveying mechanism is including installing the support on the carriage, install the conveyer shelf on the support, install conveyor motor on the conveyer shelf, conveyor motor is last to install the motor sprocket, the meshing has the chain on the motor sprocket.
Further preferred is: conveying mechanism is still including installing driven shaft two on the support, install from driving wheel two on the driven shaft two, still install bearing two and bearing three and gland two with driven shaft two-phase adaptation on the support, install driving sprocket on the driven shaft two, driving sprocket and chain meshing, install the conveyer belt from driving wheel two, the conveyer belt other end is installed from driving wheel three, install on the support and follow driving wheel three-phase complex driven shaft three.
Further preferred is: the conveying support is fixedly provided with an air cylinder, the conveying support is further movably connected with a material baffle plate, a push rod is arranged on the air cylinder, and the push rod is movably connected with the material baffle plate.
The utility model has the advantages that:
the utility model discloses be provided with automatic feeding machine and quantitative conveyer, install light sense induction system on quantitative conveyer's the hopper that connects, through light sense induction system response material position, control automatic feeding machine automatic feeding when the material is not enough, when the material is enough, control quantitative conveyer pay-off, only need the manual work put into the material connect the hopper in can, realize autoloading, improve production efficiency.
[ description of the drawings ]
FIG. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic structural view of an automatic feeder;
FIG. 3 is a cross-sectional view taken at B of FIG. 2;
FIG. 4 is a cross-sectional view taken at A of FIG. 2;
FIG. 5 is a schematic view of the construction of a quantitative conveyor;
fig. 6 is a cross-sectional view of a quantitative conveyor.
Illustration of the drawings: 1. an automatic feeding machine; 101. a feeding support; 102. a feeding bracket; 1021. a feeding bracket; 1022. a speed reduction motor seat plate; 1023. a reduction motor; 1024. a drive shaft; 1025. a driving wheel; 1026. a skirt edge conveyor belt; 1027. a bearing; 1028. a driven shaft; 1029. a driven wheel; 1121. a first bearing; 1022. a gland; 1123. adjusting the screw rod; 103. a steel frame; 104. a hopper; 105. a discharge hopper; 106. A riding wheel; 107. a roller; 2. a quantitative conveyor; 201. a delivery stent; 202. a conveying mechanism; 2021. a support; 2022 conveyor shelves; 2023 a conveyor motor; 2024. a motor sprocket; 2025. a chain; 2026. a second driven shaft; 2027. a second driven wheel; 2028. a conveyor belt; 2029. a driven wheel III; 2120. a drive sprocket; 2121. a second bearing; 2122. a third bearing; 2123. a second gland; 2124. a driven shaft III; 203. a receiving hopper bracket; 204. a receiving hopper; 205. a light-sensitive sensing device; 2051. a low-level light sensing device; 2052. a high-order light sensing device; 206. a cylinder; 2061. a push rod; 207. a striker plate.
Detailed Description
The following will further describe the uninterrupted feeding device of a vertical slicer according to the present invention with reference to fig. 1-6.
Referring to fig. 1, the uninterrupted feeding device of a vertical slicer in this embodiment includes an automatic feeding machine 1, a quantitative conveyor 2 disposed at one end of the automatic feeding machine 1, and a full-automatic vertical slicer 3 matched with the quantitative conveyor 2, and is characterized in that a light-sensitive device 205 is mounted on the quantitative conveyor 2, the light-sensitive device 205 is connected to the automatic feeding machine 1 and the quantitative conveyor 2 through a line, and the light-sensitive device 205 senses the position of a material in a receiving hopper 204, so as to control the automatic feeding of the automatic feeding machine 1 and the feeding of the quantitative conveyor 2, and realize full-automatic uninterrupted feeding without manual feeding.
Referring to fig. 2, the automatic feeding machine 1 includes a feeding support 101, a feeding mechanism 102 mounted on the feeding support 101, and a steel frame 103 mounted on the feeding mechanism 102, wherein a hopper 104 is mounted on the steel frame 103, and a discharging hopper 105 is further disposed at the other end of the feeding mechanism 102, and the material is manually placed in the hopper 104 and is transmitted to the discharging hopper 105 through the feeding mechanism 102, so that the material is sent to a receiving hopper 204 in the quantitative conveyor 2.
Referring to fig. 2-4, the feeding mechanism 102 includes a feeding bracket 1021 fixed on the feeding bracket 101 by screws, a decelerating motor seat plate 1022 welded at one end of the feeding bracket 1021, a decelerating motor 1023 installed on the decelerating motor seat plate 1022 through bolts, a driving shaft 1024 installed on the decelerating motor 1023, a driving wheel 1025 installed on the driving shaft 1024, a skirt conveyer belt 1026 installed on the driving wheel 1025, a bearing 1027 installed at the other end of the driving shaft 1024, the feeding mechanism 102 further includes a driven shaft 1028 installed at the other end of the feeding bracket 1021, a driven wheel 1029 installed on the driven shaft 1028, the driven wheel 1029 meshed with the skirt conveyer belt 1026, a bearing 1121 and a gland 1122 matched with the driven shaft 1028 installed on the feeding bracket 1021, the driving shaft 1024 drives the driving wheel 1025 to rotate through the decelerating motor 1023, the driving wheel drives the skirt conveying belt 1025 to move, and the skirt conveying belt 1025 drives the driven wheel 1029 and the driven shaft 1028 to rotate, so that the material in the hopper 104 is conveyed to the discharge hopper 105, and the automatic feeding process is realized; the automatic feeding machine is characterized in that the driven shaft 1028 is further provided with an adjusting screw 1123, the gap between the driven shaft 1028 and the bearing 1121 can be accurately adjusted, the feeding support 1021 is further provided with a riding wheel 106 which can support a skirt conveyor 1026, the feeding support 101 and the feeding support 1021 are provided with rollers 107, and the rollers 107 can facilitate the movement of the automatic feeding machine 1.
Referring to fig. 5 to 6, the quantitative conveyor 2 includes a conveying support 201 installed on the fully automatic vertical slicer 3, a conveying mechanism 202 installed on the conveying support 201, a receiving hopper bracket 203 is also arranged on the conveying bracket 201, a receiving hopper 204 is arranged on the receiving hopper bracket 203, a low-level light sensing probe 2051 and a high-level light sensing probe 2052 are arranged on the receiving hopper 204, the low-level light sensing probe 2051 and the high-level light sensing probe 2052 form the light sensing device 205, when the low-level light-sensitive sensing probe 2051 cannot sense the materials, the quantitative conveyor 2 stops conveying the materials, the speed reducing motor 1023 on the automatic feeding machine 1 is started to feed the skirt-shaped conveying belt 1026, when the high-level light-sensitive inductive probe 2052 senses the material, the speed reducing motor 1023 on the automatic feeding machine 1 stops, and the quantitative conveyor 2 is started to convey the material.
Referring to fig. 5-6, the conveying mechanism 202 includes a bracket 2021 mounted on the conveying bracket 201, a conveyor shelf 2022 is mounted on the bracket 2021, a conveying motor 2023 is mounted on the conveyor shelf 2022, a motor sprocket 2024 is mounted on the conveying motor 2023, a chain 2025 is engaged with the motor sprocket 2024, the conveying mechanism 202 further includes a driven shaft pair 2026 mounted on the bracket 2021, a driven wheel pair 2027 is mounted on the driven shaft pair 2026, a bearing pair 2121 and a bearing pair 2122 which are adapted to the driven shaft pair 2026 and a gland pair 2123 are mounted on the bracket 2021, a driving sprocket 2120 is mounted on the driven shaft pair 2026, the driving sprocket 2120 is engaged with the chain 2025, a conveying belt 2028 is mounted on the driven wheel pair 2027, a driven wheel pair 2029 is mounted at the other end of the conveying belt 2028, a driven wheel pair 2124 which is engaged with the driven wheel pair 2029 is mounted on the bracket 2021, the conveying motor 2023 drives the motor chain wheel 2024 to rotate, the motor chain wheel 2024 drives the chain 2025 to rotate, the chain 2025 drives the driving chain wheel 2120 to rotate, the driving chain wheel 2120 drives the driven shaft II 2026 and the driven wheel II 2027 mounted on the driven shaft 2026 to rotate, the driven wheel II 2027 drives the conveying belt 2028 to rotate, and the conveying belt 2028 drives the driven shaft III 2124 and the driven wheel III 2029 to rotate, so that the materials are conveyed from the material receiving hopper 204 to the full-automatic vertical slicer 3.
Referring to fig. 5, an air cylinder 206 is fixedly installed on the conveying support 201 through a screw, a material baffle 207 is further movably connected to the conveying support 201, a push rod 2061 is arranged on the air cylinder 206, the push rod 2061 is movably connected with the material baffle 207, when the quantitative conveyor 2 stops feeding, the air cylinder 206 pushes the push rod 2061 to lift the material baffle 207, so that the material on the conveying belt 2028 is prevented from falling into the full-automatic slicer 3, when the quantitative conveyor 2 starts feeding, the air cylinder 206 retracts the push rod 2061 to put the material baffle 207 down, and the material conveyed to the conveying belt 2028 is conveyed to the full-automatic slicer 3 for slicing.
The utility model discloses a use, when the material can not be responded to low level light sense inductive probe 2051, quantitative conveyor 2 stops to carry the material, cylinder 206 promotes push rod 2061 and makes striker plate 207 lift, gear motor 1023 on the automatic feeding machine 1 starts, make shirt rim conveyer belt 1026 carry out the pay-off from hopper 104 to play hopper 105, when high level light sense inductive probe 2052 senses the material, gear motor 1023 on the automatic feeding machine 1 stops, cylinder 206 packs up push rod 2061 and makes striker plate 207 put down, start conveying motor 2023 on the quantitative conveyor 2 and make conveyer belt 208 from connecing hopper 204 to the interior transported substance material of full-automatic slicer 3.
When the materials are conveyed to the low-position light sensing probe 2051, the materials cannot be sensed, the actions are repeated, and the materials are conveyed uninterruptedly.
The above-mentioned embodiment is right the utility model discloses an explanation, it is not right the utility model discloses a limited, any right the scheme after the simple transform of the utility model all belongs to the protection scope of the utility model.

Claims (8)

1. An uninterrupted feeding device of a vertical slicing machine comprises an automatic feeding machine (1), a quantitative conveyor (2) arranged at one end of the automatic feeding machine (1) and a full-automatic vertical slicing machine (3) matched with the quantitative conveyor (2); the automatic quantitative conveying machine is characterized in that a light sensing device (205) is mounted on the quantitative conveying machine (2), and the light sensing device (205) is connected with the automatic feeding machine (1) and the quantitative conveying machine (2) through lines.
2. The uninterrupted feeding device of a vertical slicer as claimed in claim 1, wherein: the automatic feeding machine (1) comprises a feeding support (101), a feeding mechanism (102) mounted on the feeding support (101), and a steel frame (103) mounted on the feeding mechanism (102), wherein a feeding hopper (104) is mounted on the steel frame (103), and a discharging hopper (105) is further arranged at the other end of the feeding mechanism (102).
3. The uninterrupted feeding device of a vertical slicer as claimed in claim 2, characterized in that: feeding mechanism (102) installs gear motor bedplate (1022) at feeding support (1021) one end including installing feeding support (1021) on feeding support (101), install gear motor (1023) on gear motor bedplate (1022), install driving shaft (1024) on gear motor (1023), install driving wheel (1025) on driving wheel (1024), install shirt rim conveyer belt (1026) on driving wheel (1025), bearing (1027) are installed to the driving shaft (1024) other end.
4. The uninterrupted feeding device of a vertical slicer as claimed in claim 3, characterized in that: the feeding mechanism (102) further comprises a driven shaft (1028) arranged at the other end of the feeding support (1021), the driven shaft (1028) is provided with a driven wheel (1029) after installation, the driven wheel (1029) is meshed with the skirt conveyor belt (1026), the feeding support (1021) is further provided with a bearing I (1121) and a gland (1122) which are matched with the driven shaft (1028), the driven shaft (1028) is further provided with an adjusting screw rod (1123), the feeding support (1021) is further provided with a supporting wheel (106), and the feeding support (101) and the feeding support (1021) are provided with rollers (107).
5. The uninterrupted feeding device of a vertical slicer as claimed in claim 1, wherein: quantitative conveyor (2) are including installing conveying support (201) on full-automatic vertical slicer (3), install conveying mechanism (202) on conveying support (201), still install on conveying support (201) and connect hopper support (203), connect and install on hopper support (203) and connect hopper (204), connect and install low level light sense inductive probe (2051) and high level light sense inductive probe (2052) on hopper (204), low level light sense inductive probe (2051) and high level light sense inductive probe (2052) constitute light sense induction system (205).
6. The uninterrupted feeding device of a vertical slicer as claimed in claim 5, wherein: the conveying mechanism (202) comprises a support (2021) arranged on a conveying support (201), a conveyor shelf (2022) is arranged on the support (2021), a conveying motor (2023) is arranged on the conveyor shelf (2022), a motor chain wheel (2024) is arranged on the conveying motor (2023), and a chain (2025) is meshed on the motor chain wheel (2024).
7. The uninterrupted feeding device of a vertical slicer according to claim 6, characterized in that: the conveying mechanism (202) further comprises a driven shaft II (2026) arranged on a support (2021), a driven wheel II (2027) is arranged on the driven shaft II (2026), a bearing II (2121) and a bearing III (2122) which are matched with the driven shaft II (2026) and a gland II (2123) are further arranged on the support (2021), a driving chain wheel (2120) is arranged on the driven shaft II (2026), the driving chain wheel (2120) is meshed with a chain (2025), a conveying belt (2028) is arranged on the driven wheel II (2027), a driven wheel III (2029) is arranged at the other end of the conveying belt (2028), and a driven shaft III (2124) matched with the driven wheel III (2029) is arranged on the support (2021).
8. The uninterrupted feeding device of a vertical slicer according to claim 6, characterized in that: the conveying support is characterized in that an air cylinder (206) is fixedly mounted on the conveying support (201), a material baffle plate (207) is movably connected to the conveying support (201), a push rod (2061) is arranged on the air cylinder (206), and the push rod (2061) is movably connected with the material baffle plate (207).
CN202021908002.8U 2020-09-04 2020-09-04 Uninterrupted feeding device of vertical slicing machine Active CN212892419U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021908002.8U CN212892419U (en) 2020-09-04 2020-09-04 Uninterrupted feeding device of vertical slicing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021908002.8U CN212892419U (en) 2020-09-04 2020-09-04 Uninterrupted feeding device of vertical slicing machine

Publications (1)

Publication Number Publication Date
CN212892419U true CN212892419U (en) 2021-04-06

Family

ID=75256555

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021908002.8U Active CN212892419U (en) 2020-09-04 2020-09-04 Uninterrupted feeding device of vertical slicing machine

Country Status (1)

Country Link
CN (1) CN212892419U (en)

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