CN213029537U - Small silkworm is bred and blows sediment mechanism with silkworm dish upset - Google Patents
Small silkworm is bred and blows sediment mechanism with silkworm dish upset Download PDFInfo
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- CN213029537U CN213029537U CN202021936747.5U CN202021936747U CN213029537U CN 213029537 U CN213029537 U CN 213029537U CN 202021936747 U CN202021936747 U CN 202021936747U CN 213029537 U CN213029537 U CN 213029537U
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Abstract
The utility model provides a silkworm dish upset blows sediment mechanism for young silkworm is bred, including a plurality of sand-out stulls, the sand-out support that sand-out stand encloses, be provided with upset frame and upset axis on the sand-out support, the upset axis is located one side of upset frame, the upset frame passes through upset frame connecting piece and upset axis connection, the upset axis is through setting up the upset motor drive on sand-out support. The utility model discloses realize mechanized processing to the dregs of silkworms in the silkworm dish, replaced traditional artifical slagging-off, avoided the problem that inefficiency, human cost are on the high side that artifical slagging-off caused.
Description
Technical Field
The utility model relates to a young silkworm breeding technical field especially relates to a young silkworm is bred and blows sediment mechanism with silkworm dish upset.
Background
Silkworm is a metamorphosis insect, most commonly is silkworm, also called silkworm, which is one of economic insects for spinning and cocooning using mulberry leaves as foodstuff. The silkworm originates from China, the development temperature of the silkworm is 7-40 ℃, and the breeding temperature is 20-30 ℃. Silkworm babies live with mulberry leaves, and after continuously eating the mulberry leaves, the silkworm babies turn white, and after a period of time, the silkworm babies begin to peel. The skin is peeled for about a day, and the skin is not eaten and still like sleeping, which is called 'dormancy'. After one-time peeling, the larva becomes a second-instar larva. If the skin is peeled once, the larva grows to be one year old, the larva peels four times to become five-instar larva, and the silkworm becomes a mature silkworm after eating mulberry leaves for 8 days, and the silking and cocooning are started.
In the process of breeding young silkworms, a silkworm net needs to be laid on a silkworm tray, waste materials generated by the young silkworms fall into the silkworm tray through the silkworm net, and the waste materials in the silkworm tray need to be regularly cleaned. At present, the waste materials in the silkworm tray are cleaned by adopting a manual cleaning mode, and the mode has the defects of higher labor cost, lower efficiency and the like.
SUMMERY OF THE UTILITY MODEL
The less than exists among the prior art, the utility model provides a little silkworm is bred and blows sediment mechanism with silkworm dish upset realizes mechanized processing to the silkworm sediment in the silkworm dish, has replaced traditional manual cleaning, has avoided the problem that inefficiency, human cost are on the high side that manual cleaning caused.
The utility model provides a silkworm dish upset blows sediment mechanism for young silkworm is bred, including a plurality of sand-out stulls, the sand-out support that sand-out stand encloses, be provided with upset frame and upset axis on the sand-out support, the upset axis is located one side of upset frame, the upset frame passes through upset frame connecting piece and upset axis connection, the upset axis is through setting up the upset motor drive on sand-out support.
The overturning frame can rotate a certain radian around the overturning center shaft under the driving of the overturning motor, so that the silkworm tray positioned on the overturning frame can rotate, and silkworm residue in the silkworm tray can be poured out in the rotating process of the silkworm tray, so that the silkworm residue in the silkworm tray can be automatically treated, and the defects of low efficiency and high cost caused by the input of manpower are overcome.
Furthermore, a turning driving chain wheel and a turning driven chain wheel which are matched with each other are respectively arranged at two ends of the turning middle shaft, and the turning driving chain wheel is in power connection with a turning motor.
Furthermore, the turnover frame also comprises a turnover cylinder which is fixedly connected on the turnover frame.
Further, the device comprises at least two overturning cylinders which are oppositely arranged.
Furthermore, a jacking mechanism is arranged below the turnover frame.
Furthermore, the lower part of the sand outlet support is provided with a conveying belt, limiting plates are arranged along the conveying direction of the conveying belt, and the two limiting plates are respectively positioned on two sides of the conveying belt and fixedly connected with the sand outlet support.
Further, climbing mechanism is including jacking roof, jacking bottom plate and jacking cylinder, jacking roof and jacking bottom plate set gradually on the sand outlet support and lie in the below of upset frame, the jacking cylinder sets up between jacking roof and jacking bottom plate and can order about the jacking roof and reciprocate.
Furthermore, the sand-casting machine also comprises a sand-casting vehicle matched with the turnover frame.
Further, the sand outlet support is provided with at least one overturning cushion pad, and the overturning cushion pad is positioned below the overturning frame.
Compared with the prior art, the utility model discloses following beneficial effect has:
firstly, the overturning frame is matched with a silkworm tray for use, so that the silkworm residue waste in the silkworm tray is convenient to treat;
secondly, the upset frame can rotate certain radian round the upset axis under the drive of upset motor to the silkworm dish that makes in the upset frame rotates thereupon, and the silkworm excrement waste material in the silkworm dish is emptyd away after reaching certain angle, and then realizes mechanized operation, raises the efficiency.
Drawings
Fig. 1 is a first perspective view of the present invention;
fig. 2 is a right side view of the present invention;
FIG. 3 is a second perspective view of the present invention;
the reference numbers illustrate:
1. a sand outlet support; 100. producing a sand cross brace; 101. a sand outlet stand column; 2. turning over the frame; 3. a roll-over frame attachment; 4. turning over the middle shaft; 5. turning over a motor; 6. overturning the driving chain wheel; 7. turning over the driven chain wheel; 8. turning over the air cylinder; 9. a jacking mechanism; 900. jacking a top plate; 901. jacking the bottom plate; 902. jacking a cylinder; 10. a conveyor belt; 11. a limiting plate; 12. a foundry vehicle; 13. the cushion is inverted.
The objects, features and advantages of the present invention will be further described with reference to the accompanying drawings.
Detailed Description
In order to make the objects, technical solutions and advantageous effects of the present invention more clearly understood, the following technical solutions of the present invention are further described with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1 to 3, the utility model provides a little silkworm is bred with silkworm dish upset and blows sediment mechanism, including a plurality of sand stulls 100, the sand support 1 that goes out that sand stand 101 encloses, go out to be provided with upset frame 2 and upset axis 4 on the sand support 1, upset axis 4 is located one side of upset frame 2, and upset frame 2 is connected with upset axis 4 through upset frame connecting piece 3, and upset axis 4 is through setting up the drive of upset motor 5 on a sand support 1.
The two ends of the turning middle shaft 4 are respectively provided with a turning driving chain wheel 6 and a turning driven chain wheel 7 which are matched for use, and the turning driving chain wheel 6 is in power connection with a turning motor 5.
Still including four upset cylinders 8, every equal rigid coupling of upset cylinder 8 is on the apex angle of upset frame 2, and the silkworm dish is located upset frame 2, and in order to prevent the silkworm dish landing at its pivoted in-process, upset cylinder 8 steps up the silkworm dish, makes it steadily fix on upset frame 2.
The lower part of the sand outlet support 1 is provided with two conveying belts 10 which are arranged in parallel, the conveying belts 10 are driven by a motor, limiting plates 11 are arranged along the conveying direction of the conveying belts 10, and the two limiting plates 11 are respectively positioned on two sides of the conveying belts 10 and fixedly connected with the sand outlet support 1. The silkworm tray to be treated is conveyed to the lower part of the turnover frame 2 through the conveying belt 10, and the limiting plate 11 can limit the silkworm tray positioned between the silkworm tray and the limiting plate, so that the silkworm tray can be conveniently installed on the turnover frame 2.
Still including climbing mechanism 9, climbing mechanism 9 is including climbing roof 900, jacking bottom plate 901 and jacking cylinder 902, and climbing roof 900 and jacking bottom plate 901 set gradually on sanding support 1 and lie in upset frame 2's below, conveyor belt 10's top, and jacking cylinder 902 sets up between climbing roof 900 and jacking bottom plate 901 and can order about climbing roof 900 and reciprocate. When the conveyer belt 10 conveys the silkworm tray to be processed to the lower part of the turnover frame 2, the jacking top plate 900 can jack the silkworm tray into the turnover frame 2 through the jacking cylinder 902.
The silkworm tray silkworm residue collecting and transporting device further comprises a sand-casting vehicle 12 matched with the turnover frame 2, the silkworm tray pours the dumped silkworm residue waste into the sand-casting vehicle 12, and the sand-casting vehicle 12 is transported out in a centralized mode.
Have two on the sand production support 1 and control the upset blotter 13 of arranging, upset blotter 13 is located the below of upset frame 2, and when upset frame 2 reset, the blotter can play the effect of buffering to upset frame 2, avoids its and sand production stull 100 direct contact of sand production support 1.
The working principle of the embodiment is as follows: during the use, carry the silkworm dish of pending to the top of jacking roof 900 through conveyor belt 10, jacking roof 900 pushes up the silkworm dish to the upset frame 2 in, upset cylinder 8 is tight to the silkworm dish in the upset frame 2 clamp this moment, takes out the young silkworm on the silkworm dish and pours the silkworm dregs waste material in the silkworm dish into the car for turning over 12 along with the upset frame 2 rotates certain radian after with silkworm, resets at last and accomplishes the waste material processing work of a silkworm dish.
This embodiment can handle the dregs of silkworms in the silkworm dish through mechanized operation, has replaced traditional artifical work, and the pain that has improved efficiency dies to reduce the human cost.
Finally, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the present invention can be modified or replaced by other means without departing from the spirit and scope of the present invention, which should be construed as limited only by the appended claims.
Claims (9)
1. The utility model provides a little silkworm is bred and blows sediment mechanism with silkworm dish upset, includes and goes out sand support (1) that sand stull (100), sand outlet stand (101) enclose by a plurality of, its characterized in that, be provided with upset frame (2) and upset axis (4) on sand outlet support (1), upset axis (4) are located one side of upset frame (2), upset frame (2) are connected with upset axis (4) through upset frame connecting piece (3), upset axis (4) are through setting up upset motor (5) drive on sand outlet support (1).
2. The silkworm tray overturning and residue blowing mechanism for young silkworm breeding as claimed in claim 1, wherein the overturning middle shaft (4) is provided with an overturning driving sprocket (6) and an overturning driven sprocket (7) at two ends respectively, and the overturning driving sprocket (6) is in power connection with an overturning motor (5).
3. The silkworm tray overturning and residue blowing mechanism for breeding young silkworms according to claim 1, further comprising an overturning cylinder (8), wherein the overturning cylinder (8) is fixedly connected to the overturning frame (2).
4. The silkworm tray overturning and residue blowing mechanism for breeding young silkworms according to claim 3, characterized by comprising at least two overturning cylinders (8) which are oppositely arranged.
5. The silkworm tray overturning and residue blowing mechanism for breeding young silkworms according to claim 1, wherein a jacking mechanism (9) is arranged below the overturning frame (2).
6. The silkworm tray overturning and residue blowing mechanism for breeding young silkworms according to claim 5, wherein a conveying belt (10) is arranged at the lower part of the sand outlet support (1), limiting plates (11) are arranged along the conveying direction of the conveying belt (10), and the two limiting plates (11) are respectively positioned at two sides of the conveying belt (10) and fixedly connected with the sand outlet support (1).
7. The silkworm tray overturning and slag blowing mechanism for young silkworm breeding as claimed in claim 5 or 6, wherein the jacking mechanism (9) comprises a jacking top plate (900), a jacking bottom plate (901) and a jacking cylinder (902), the jacking top plate (900) and the jacking bottom plate (901) are sequentially arranged on the sand outlet support (1) and located below the overturning frame (2), and the jacking cylinder (902) is arranged between the jacking top plate (900) and the jacking bottom plate (901) and can drive the jacking top plate (900) to move up and down.
8. The silkworm tray overturning and residue blowing mechanism for breeding young silkworms according to any one of claims 1 to 6, characterized by further comprising a foundry cart (12) used in cooperation with the overturning frame (2).
9. The silkworm tray overturning and residue blowing mechanism for breeding young silkworms according to claim 1, wherein the sand outlet bracket (1) is provided with at least one overturning cushion pad (13), and the overturning cushion pad (13) is positioned below the overturning frame (2).
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CN202021936747.5U CN213029537U (en) | 2020-09-07 | 2020-09-07 | Small silkworm is bred and blows sediment mechanism with silkworm dish upset |
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CN202021936747.5U CN213029537U (en) | 2020-09-07 | 2020-09-07 | Small silkworm is bred and blows sediment mechanism with silkworm dish upset |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113229225A (en) * | 2021-05-26 | 2021-08-10 | 吴斌 | Full-automatic cultivation equipment for replacing mulberry leaves and collecting silkworm excrement |
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2020
- 2020-09-07 CN CN202021936747.5U patent/CN213029537U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113229225A (en) * | 2021-05-26 | 2021-08-10 | 吴斌 | Full-automatic cultivation equipment for replacing mulberry leaves and collecting silkworm excrement |
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