CN216292544U - Spiral balance material guide structure of feeding device - Google Patents

Spiral balance material guide structure of feeding device Download PDF

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Publication number
CN216292544U
CN216292544U CN202121581900.1U CN202121581900U CN216292544U CN 216292544 U CN216292544 U CN 216292544U CN 202121581900 U CN202121581900 U CN 202121581900U CN 216292544 U CN216292544 U CN 216292544U
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guide
feeding device
inlet pipe
passageway
pipe
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CN202121581900.1U
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Chinese (zh)
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彭杰
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Chengdu Xuguang Technology Co ltd
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Chengdu Xuguang Technology Co ltd
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Abstract

The utility model relates to the technical field of feeding equipment, in particular to a spiral balance material guide structure of a feeding device, which comprises a material guide box arranged in the middle of the feeding device, wherein a hollow material guide channel is vertically arranged in the material guide box, the material guide channel is in a circular truncated cone shape with a large upper part and a small lower part, a spiral material guide plate is arranged in the material guide channel, and the outer side of the material guide plate is attached to the inner wall of the material guide channel. Utilize the guide case at feeding device middle part to carry out the guide, wherein the guide passageway in the guide case sets up to big-end-up's round platform shape to be convenient for form the fodder landing of being convenient for at the inner wall of guide passageway, be the heliciform stock guide in the inside setting of guide passageway simultaneously, fodder alright fall along the heliciform stock guide, through the setting of this mode alright avoid the fodder to take place to block up in the guide case, make and throw the material process and accomplish smoothly. The problem of present feeding device appear the fodder easily in the guide region and block up the influence feeding device and throw the material is solved.

Description

Spiral balance material guide structure of feeding device
Technical Field
The utility model relates to the technical field of feeding equipment, in particular to a spiral balance material guide structure of a feeding device.
Background
In agricultural cultivation, need feed in the breed process every day, traditional artifical feeding mode is through raising the manual material that adds to raising in the basin of personnel, and along with the gradual development of times, feeding device has also appeared and has assisted to breed and feed, and all be the ejection of compact of upper end feeding lower extreme in present feeding device basically, feed jam scheduling problem appears easily in the guide region between feeding and the ejection of compact, consequently needs a feeding device's spiral balance guide structure to solve this technical problem.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a spiral balance material guide structure of a feeding device, and solves the problem that the feeding device is influenced by feed blockage easily occurring in a material guide area of the conventional feeding device.
In order to solve the technical problems, the utility model adopts the following technical scheme:
the utility model provides a feeding device's balanced guide structure of spiral, is including setting up in the guide box at feeding device middle part, the vertical hollow guide passageway that is equipped with in the guide box, the guide passageway is big-end-up's round platform shape, be equipped with in the guide passageway and be spiral helicine stock guide, the outside of stock guide pastes with the inner wall of guide passageway mutually.
The technical scheme is that a vertical rod is connected to the center of the material guide plate, a connecting rod is transversely arranged at the upper end of the vertical rod, a clamping groove is formed in the top of the material guide box, and the end portion of the connecting rod is clamped in the clamping groove.
A further technical scheme is, be equipped with feed structure in the top of guide box in the feeding device, feed structure includes vertical first inlet pipe and the second inlet pipe that sets up in feeding device, the vertical first passageway that is equipped with on the pipe wall of first inlet pipe, be equipped with on the pipe wall of second inlet pipe and be spiral-shaped second passageway, the second inlet pipe rotates the cover and establishes on first inlet pipe for rotate the second inlet pipe and adjust the position that first passageway and second passageway align and align each other, the upper end of first inlet pipe forms the feed inlet at feeding device's top.
A further technical scheme is that the top of feeding device is equipped with the casing, the connecting piece that the casing internal rotation was equipped with the gear and was the cylinder is equipped with a plurality of latches around the outer wall of connecting piece, the gear meshes with the latch mutually, the bottom of connecting piece is equipped with the annular plate, the lower extreme of annular plate is equipped with the connecting pipe, the upper end of second inlet pipe links to each other with the connecting pipe.
Still further technical scheme is, the inner wall of connecting pipe is equipped with a plurality of bar grooves, the outer wall of second inlet pipe upper end is equipped with a plurality of bars protrudingly, when the second inlet pipe links to each other with the connecting pipe, the protruding card of bar is established at the bar inslot.
A further technical scheme is that a bearing is arranged in the connecting piece, the outer circle of the bearing is connected with the inner wall of the connecting piece, and the upper end of the first feeding pipe is connected with the inner circle of the bearing.
According to a further technical scheme, a through hole is formed in the middle of the upper end of the shell, and the upper end of the first feeding pipe penetrates out of an inner circle of the bearing and is communicated with the through hole.
A further technical scheme is that a motor is further arranged in the shell, and an output shaft of the motor faces upwards and is used for driving the gear to rotate.
A further technical scheme is that the casing includes top cap and device shell, the device shell sets up in the inside position that is close to the upper end of feeding device, and the middle part of device shell is equipped with the groove of accomodating of undercut, connecting piece, gear, annular plate and connecting pipe all set up in accomodating the inslot, the top cap sets up and is used for the groove shutoff of accomodating of device shell in the feeding device top.
Compared with the prior art, the utility model has the beneficial effects that: utilize the guide case at feeding device middle part to carry out the guide, wherein the guide passageway in the guide case sets up to big-end-up's round platform shape to be convenient for form the fodder landing of being convenient for at the inner wall of guide passageway, be the heliciform stock guide in the inside setting of guide passageway simultaneously, fodder alright fall along the heliciform stock guide, through the setting of this mode alright avoid the fodder to take place to block up in the guide case, make and throw the material process and accomplish smoothly.
Drawings
FIG. 1 is a cross-sectional view of a feeding device according to the utility model.
FIG. 2 is a schematic view of the structure of the material guiding box of the present invention.
FIG. 3 is a schematic diagram of the structure of the feed structure of the present invention.
Fig. 4 is a schematic structural view of the feeding structure of the present invention with the top cover removed.
FIG. 5 is a schematic view of the connection between the second feeding tube and the connecting member according to the present invention.
Fig. 6 is a schematic structural view of the connector of the present invention.
Icon: 1-feeding device, 101-first feeding pipe, 102-second feeding pipe, 103-first channel, 104-second channel, 105-gear, 106-connecting piece, 107-latch, 108-annular plate, 109-connecting pipe, 110-strip groove, 111-strip protrusion, 112-bearing, 113-through hole, 114-motor, 116-top cover, 117-device shell, 118-accommodating groove, 2-material guiding box, 201-material guiding channel, 202-material guiding plate, 203-vertical rod, 204-connecting rod, 205-clamping groove.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Example (b):
fig. 1 to 6 show a preferred embodiment of a spiral balance material guiding structure of a feeding device of the present invention, the spiral balance material guiding structure of the feeding device in this embodiment specifically includes a material guiding box 2 disposed in the middle of the feeding device 1, a hollow material guiding channel 201 is vertically disposed in the material guiding box 2, the material guiding channel 201 is in a circular truncated cone shape with a large top and a small bottom, a spiral material guiding plate 202 is disposed in the material guiding channel 201, and the outer side of the material guiding plate 202 is attached to the inner wall of the material guiding channel 201.
Utilize the guide case 2 at 1 middle part of feeding device to carry out the guide, wherein the guide passageway 201 in the guide case 2 sets up to big-end-up's round platform shape, so that the fodder landing of being convenient for is formed the slope at the inner wall of guide passageway 201, simultaneously at the inside setting of guide passageway 201, be spiral helicine stock guide 202, fodder alright fall along spiral helicine stock guide 202, through the setting of this mode alright avoid the fodder to take place to block up in guide case 2, make and throw the material process and accomplish smoothly.
The center of the material guide plate 202 is connected with a vertical rod 203, the upper end of the vertical rod 203 is transversely provided with a connecting rod 204, the top of the material guide box 2 is provided with a clamping groove 205, the end part of the connecting rod 204 is clamped in the clamping groove 205, the vertical rod 203 at the middle part is used for supporting the center of the material guide plate 202 and serves as a spiral central shaft of the material guide plate 202, and the transverse connecting rod 204 at the upper end of the vertical rod 203 is clamped in the clamping groove 205 at the top of the material guide box 2 so as to be convenient for cleaning after the material guide plate 202 is taken out.
Feeding structure is equipped with in feeding device 1 top of guide case 2, feeding structure includes vertical first inlet pipe 101 and the second inlet pipe 102 that sets up in feeding device 1, the vertical first passageway 103 that is equipped with on the pipe wall of first inlet pipe 101, be equipped with on the pipe wall of second inlet pipe 102 and be spiral-shaped second passageway 104, second inlet pipe 102 rotates the cover and establishes on first inlet pipe 101, a position for rotating second inlet pipe 102 and adjusting whether first passageway 103 and second passageway 104 align and align each other, the upper end of first inlet pipe 101 forms the feed inlet at feeding device 1's top. The feeding is carried out by utilizing the feeding hole formed at the top of the feeding device 1 at the upper end of the first feeding pipe 101, the second feeding pipe 102 rotates on the outer wall of the first feeding pipe 101, so that the aligned height between the second channel 104 and the first channel 103 is adjusted, in the feeding process, the discharging hole of the feeding device 1 is closed, at the moment, after the feed is added to the aligned height between the second channel 104 and the first channel 103, the feed can not enter the feeding device 1 again, the feeding is stopped from the feeding hole at the moment, the amount of the added feed can be quantitatively controlled, different feeds are required to be added according to different feeding varieties and different feeding times, only the second channel 104 is required to be rotated to align different positions of the second channel 104 with the first channel 103, the feeding amount can be adjusted, and the adding amount of the feed can be accurately controlled by the mode, and is very convenient and fast.
The top of the feeding device 1 is provided with a shell, a gear 105 and a cylindrical connecting piece 106 are rotationally arranged in the shell, a plurality of clamping teeth 107 are arranged on the outer wall surrounding the connecting piece 106, the gear 105 is meshed with the clamping teeth 107, the bottom of the connecting piece 106 is provided with an annular plate 108, the lower end of the annular plate 108 is provided with a connecting pipe 109, and the upper end of the second feeding pipe 102 is connected with the connecting pipe 109. The casing at the top of the feeding device 1 is used for storing the gear 105 and the connecting piece 106, the gear 105 is meshed with the latch 107 on the outer wall of the connecting piece 106, the connecting piece 106 is driven to rotate through the rotation of the gear 105, the annular plate 108 and the connecting pipe 109 are driven to rotate through the rotation of the connecting piece 106, and the second feeding pipe 102 is connected with the connecting pipe 109, so that the rotation of the second feeding pipe 102 is realized through the rotation of the gear 105.
The inner wall of connecting pipe 109 is equipped with a plurality of bar grooves 110, and the outer wall of second inlet pipe 102 upper end is equipped with a plurality of bar arch 111, and when second inlet pipe 102 links to each other with connecting pipe 109, the protruding 111 card of bar is established in bar groove 110, and bar groove 110 and the protruding 111 of bar all adopt vertical setting to realize being connected between second inlet pipe 102 and the connecting pipe 109, and avoid appearing radial skidding between second inlet pipe 102 and the connecting pipe 109.
Be equipped with bearing 112 in the connecting piece 106, the excircle of bearing 112 links to each other with the inner wall of connecting piece 106, and the upper end of first inlet pipe 101 links to each other with the interior circle of bearing 112, and it links to each other to form to rotate between the upper end of first inlet pipe 101 and the connecting piece 106 through setting up bearing 112, and can utilize the fixed first inlet pipe 101 that sets up to fix bearing 112.
The middle part of the upper end of the shell is provided with a through hole 113, and the upper end of the first feeding pipe 101 penetrates out of the inner circle of the bearing 112 and is communicated with the through hole 113, so that the first feeding pipe 101 is fed at the through hole 113.
A motor 114 is further arranged in the shell, an output shaft of the motor 114 faces upwards to drive the gear 105 to rotate, the gear 105 is driven to rotate by the output shaft of the motor 114, and therefore the rotation of the second feeding pipe 102 is controlled mechanically, the number of rotation turns of the second feeding pipe 102 is controlled, and therefore the alignment position of the second channel 104 and the first channel 103 is adjusted conveniently.
The casing includes top cap 116 and device shell 117, and device shell 117 sets up in the inside position that is close to the upper end of feeder 1, and the middle part of device shell 117 is equipped with the groove 118 of accomodating of undercut, and connecting piece 106, gear 105, annular plate 108 and connecting pipe 109 all set up in accomodating the groove 118, and top cap 116 sets up and is used for the groove 118 shutoff of accomodating of device shell 117 in feeder 1 top. The device case 117 has a receiving groove 118 at the center thereof for receiving the connection member 106, the gear 105, the ring plate 108 and the connection pipe 109, and a top cover 116 for closing the device case 117.
Although the utility model has been described herein with reference to a number of illustrative embodiments thereof, it should be understood that numerous other modifications and embodiments can be devised by those skilled in the art that will fall within the spirit and scope of the principles of this disclosure. More specifically, various variations and modifications are possible in the component parts and/or arrangements of the subject combination arrangement within the scope of the disclosure, the drawings and the appended claims. In addition to variations and modifications in the component parts and/or arrangements, other uses will also be apparent to those skilled in the art.

Claims (9)

1. The utility model provides a feeding device's balanced guide structure of spiral which characterized in that: including setting up in guide case (2) at feeding device (1) middle part, vertical hollow guide passageway (201) that is equipped with in guide case (2), guide passageway (201) are big-end-up's round platform shape, be equipped with in guide passageway (201) and be spiral helicine stock guide (202), the outside of stock guide (202) pastes with the inner wall of guide passageway (201) mutually.
2. The feeding device of claim 1, wherein the spiral balance guide structure comprises: the center department of stock guide (202) is connected with pole setting (203), the upper end of pole setting (203) transversely is equipped with connecting rod (204), the top of guide box (2) is equipped with draw-in groove (205), the tip card of connecting rod (204) is established in draw-in groove (205).
3. The feeding device of claim 1, wherein the spiral balance guide structure comprises: feeding structure is equipped with in the top of guide case (2) in feeding device (1), feeding structure includes vertical first inlet pipe (101) and the second inlet pipe (102) that set up in feeding device (1), vertically on the pipe wall of first inlet pipe (101) be equipped with first passageway (103), be equipped with on the pipe wall of second inlet pipe (102) and be spiral-shaped second passageway (104), second inlet pipe (102) rotate the cover and establish on first inlet pipe (101) for rotate second inlet pipe (102) and adjust first passageway (103) and second passageway (104) and align the position of lining up each other, the upper end of first inlet pipe (101) forms the feed inlet at the top of feeding device (1).
4. The feeding device of claim 3, wherein the spiral balance guide structure comprises: the top of feeding device (1) is equipped with the casing, the casing internal rotation is equipped with gear (105) and is connecting piece (106) of cylinder, and the outer wall that encircles connecting piece (106) is equipped with a plurality of latches (107), gear (105) and latch (107) mesh mutually, the bottom of connecting piece (106) is equipped with annular plate (108), the lower extreme of annular plate (108) is equipped with connecting pipe (109), the upper end and the connecting pipe (109) of second inlet pipe (102) link to each other.
5. The feeding device of claim 4, wherein the spiral balance guide structure comprises: the inner wall of connecting pipe (109) is equipped with a plurality of bar grooves (110), the outer wall of second inlet pipe (102) upper end is equipped with the protruding (111) of a plurality of bars, when second inlet pipe (102) link to each other with connecting pipe (109), the protruding (111) card of bar is established in bar groove (110).
6. The feeding device of claim 4, wherein the spiral balance guide structure comprises: be equipped with bearing (112) in connecting piece (106), the excircle of bearing (112) links to each other with the inner wall of connecting piece (106), the upper end of first inlet pipe (101) links to each other with the interior circle of bearing (112).
7. The feeding device of claim 6, wherein the spiral balance guide structure comprises: the middle part of the upper end of the shell is provided with a through hole (113), and the upper end of the first feeding pipe (101) penetrates out of the inner circle of the bearing (112) and is communicated with the through hole (113).
8. The feeding device of claim 4, wherein the spiral balance guide structure comprises: and a motor (114) is further arranged in the shell, and an output shaft of the motor (114) faces upwards and is used for driving the gear (105) to rotate.
9. The feeding device of any one of claims 4 to 8, wherein the spiral balance guide structure comprises: the casing includes top cap (116) and device shell (117), device shell (117) set up in feeding device (1) inside position near the upper end, and the middle part of device shell (117) is equipped with undercut accomodates groove (118), connecting piece (106), gear (105), annular plate (108) and connecting pipe (109) all set up in accomodating groove (118), top cap (116) set up and are used for accomodating groove (118) shutoff with device shell (117) in feeding device (1) top.
CN202121581900.1U 2021-07-13 2021-07-13 Spiral balance material guide structure of feeding device Active CN216292544U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121581900.1U CN216292544U (en) 2021-07-13 2021-07-13 Spiral balance material guide structure of feeding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121581900.1U CN216292544U (en) 2021-07-13 2021-07-13 Spiral balance material guide structure of feeding device

Publications (1)

Publication Number Publication Date
CN216292544U true CN216292544U (en) 2022-04-15

Family

ID=81086476

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121581900.1U Active CN216292544U (en) 2021-07-13 2021-07-13 Spiral balance material guide structure of feeding device

Country Status (1)

Country Link
CN (1) CN216292544U (en)

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