CN204259647U - Fly maggot and matrix separate, dedicated equipment - Google Patents
Fly maggot and matrix separate, dedicated equipment Download PDFInfo
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- CN204259647U CN204259647U CN201420751290.9U CN201420751290U CN204259647U CN 204259647 U CN204259647 U CN 204259647U CN 201420751290 U CN201420751290 U CN 201420751290U CN 204259647 U CN204259647 U CN 204259647U
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- matrix
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- fly maggot
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Abstract
The utility model relates to fly maggot feeding facility and method field, especially a kind of fly maggot and matrix separate, dedicated equipment, it comprises thick matrix separator and thin matrix separator, thick matrix separator comprises thick matrix separate mesh, frame, rotating shaft and power-driven mechanism, thick matrix separate mesh is tubular structure, rotating shaft to be arranged in frame and to be in transmission connection with power-driven mechanism, rotating shaft is passed thick matrix separate mesh inside and is connected with thick matrix separate mesh by connecting rod, the mesh size of thin matrix separate mesh be less than fly maggot exceptionally straight after length, this fly maggot and matrix separate, dedicated equipment and separating method, utilize fly maggot to stir in separate mesh in process and can be in exceptionally straight state, then guarantee that the length of fly maggot is consistent substantially, thus utilize the size of the eyelet of separate mesh to arrange, the matrix of larger particles and less matrix is guaranteed all to separate, make overall separation more thorough, separation rate is high.
Description
Technical field
The utility model relates to fly maggot feeding facility and method field, the separate, dedicated equipment of especially a kind of fly maggot and matrix.
Background technology
In existing fly maggot feeding process, after fly maggot portion's growth in the substrate, maturation, need to carry out fly maggot to be separated with matrix, in separation process, major part utilizes the photophobism of fly maggot to adopt stronger illumination to be radiated at stromal surface, thus fly maggot is bored toward its content, and the matrix on top layer is peeled off by staff, repeatedly most matrix can be separated, but the cleanliness factor be separated is poor, workload is large, inefficiency.And existing employing horizontal screen screens out in process to matrix, because the telescopic level of fly maggot is inconsistent, cause fly maggot to be difficult to be separated accurately, part fly maggot confuses at tiny its content, and part fly maggot confuses at thicker its content, inferior separating effect.
Utility model content
The purpose of this utility model is deficiency in order to solve above-mentioned technology and provides a kind of structure simple, the fly maggot of good separating effect and matrix separate, dedicated equipment.
In order to achieve the above object, fly maggot designed by the utility model and matrix separate, dedicated equipment, it comprises thick matrix separator and thin matrix separator, thick matrix separator comprises thick matrix separate mesh, frame, rotating shaft and power-driven mechanism, thick matrix separate mesh is tubular structure, rotating shaft to be arranged in frame and to be in transmission connection with power-driven mechanism, rotating shaft is passed thick matrix separate mesh inside and is connected with thick matrix separate mesh by connecting rod, one end of thick matrix separate mesh is provided with material inlet, the other end is provided with material outlet, the mesh size of thick matrix separate mesh be greater than fly maggot exceptionally straight after length, thin matrix separator comprises thin matrix separate mesh, frame, rotating shaft and power-driven mechanism, thin matrix separate mesh is tubular structure, rotating shaft to be arranged in frame and to be in transmission connection with power-driven mechanism, rotating shaft is passed thin matrix separate mesh inside and is connected with thin matrix separate mesh by connecting rod, one end of thin matrix separate mesh is provided with material inlet, the other end is provided with material outlet, the mesh size of thin matrix separate mesh be less than fly maggot exceptionally straight after length.
Technique scheme, fly maggot is utilized to stir in process in thick matrix separate mesh and thin matrix separate mesh, the health of fly maggot can be in exceptionally straight state, and is retractable to the longest, and the length of fly maggot is consistent substantially in the process, in the process of drum screen, can effectively matrix be separated with fly maggot, structure is simple, easy to operate, sustainable separating power is strong, is separated thorough excellent result.
Thick matrix separator is positioned at the front of thin matrix separator, and the below of the thick matrix separate mesh of thick matrix separator is provided with receiving hopper, and receiving hopper is connected by the material inlet of conveyer belt with thin matrix separator.
Thin matrix separator is positioned at the front of thick matrix separator, and the below of the thin matrix separate mesh of thin matrix separator is provided with receiving hopper, and receiving hopper is connected by the material inlet of conveyer belt with thick matrix separator.
Both are connected as a single entity by technique scheme, and then can improve filter efficiency, and serviceability is more superior, achieve disposable filtering and complete, and improve performance and operating efficiency.
In thick matrix separate mesh and thin matrix separate mesh, be all axially provided with the blend stop of some projections, blend stop interval is arranged.The setting of this structure, in use, can effectively stir the matrix in thick matrix separate mesh and thin matrix separate mesh, avoid under the influence of centrifugal force, matrix is attached on thick matrix separate mesh and thin matrix separate mesh, cause the situation that cannot spill, ensure that the normal working performance of equipment.
Described power-driven mechanism comprises electromotor and speed changer.
A kind of fly maggot and matrix separating method, first the mixture of fly maggot and matrix is sent into thick matrix separate mesh inside by material inlet, along with the rotation of thick matrix separate mesh, thin matrix and fly maggot can be filtered from the eyelet of thick matrix separate mesh and fall, and oarse-grained thick matrix is discharged from material outlet; Secondly, again the thin matrix filtered out from thick matrix separate mesh and fly maggot are sent into thin matrix separate mesh from material inlet, in thin matrix separate mesh rotation process, fly maggot is in exceptionally straight state, then thin matrix filters out from thin matrix separate mesh, fly maggot is then in thin matrix separate mesh, discharges from material outlet.
The fly maggot that the utility model obtains and matrix separate, dedicated equipment, utilize fly maggot to stir in separate mesh in process and can be in exceptionally straight state, then guarantee that the length of fly maggot is consistent substantially, thus utilize the size of the eyelet of separate mesh to arrange, the matrix of larger particles and less matrix is guaranteed all to separate, make overall separation more thorough, separation rate is high.
Accompanying drawing explanation
Fig. 1 is the structural representation of crude separation device of the present utility model and thin separator;
Fig. 2 is the structural representation of thick matrix separate mesh of the present utility model and thin matrix separate mesh.
Embodiment
Below by embodiment, the utility model will be further described by reference to the accompanying drawings.
Embodiment 1:
As Fig. 1, shown in Fig. 2, the fly maggot that the present embodiment describes and matrix separate, dedicated equipment, it comprises thick matrix separator and thin matrix separator, thick matrix separator comprises thick matrix separate mesh 6, frame 1, rotating shaft 2 and power-driven mechanism, thick matrix separate mesh 6 is tubular structure, rotating shaft 2 to be arranged in frame 1 and to be in transmission connection with power-driven mechanism, rotating shaft 2 is passed thick matrix separate mesh 6 inside and is connected with thick matrix separate mesh 6 by connecting rod 8, one end of thick matrix separate mesh 6 is provided with material inlet 3, the other end is provided with material outlet 4, the mesh size of thick matrix separate mesh 6 be greater than fly maggot exceptionally straight after length, thin matrix separator comprises thin matrix separate mesh 7, frame 1, rotating shaft 2 and power-driven mechanism, thin matrix separate mesh 7 is tubular structure, rotating shaft 2 to be arranged in frame 1 and to be in transmission connection with power-driven mechanism, rotating shaft 2 is passed thin matrix separate mesh 7 inside and is connected with thin matrix separate mesh 7 by connecting rod 8, one end of thin matrix separate mesh 7 is provided with material inlet 3, the other end is provided with material outlet 4, the mesh size of thin matrix separate mesh 7 be less than fly maggot exceptionally straight after length, thick matrix separator is positioned at the front of thin matrix separator, and the below of the thick matrix separate mesh 6 of thick matrix separator is provided with receiving hopper 5, and receiving hopper 5 is connected by the material inlet 3 of conveyer belt with thin matrix separator.In thick matrix separate mesh 6 and thin matrix separate mesh 7, be all axially provided with six protruding blend stops 9, blend stop 9 interval is arranged.Described power-driven mechanism comprises electromotor and speed changer.
Embodiment 2:
As Fig. 1, shown in Fig. 2, the fly maggot that the present embodiment describes and matrix separate, dedicated equipment, it comprises thick matrix separator and thin matrix separator, thick matrix separator comprises thick matrix separate mesh 6, frame 1, rotating shaft 2 and power-driven mechanism, thick matrix separate mesh 6 is tubular structure, rotating shaft 2 to be arranged in frame 1 and to be in transmission connection with power-driven mechanism, rotating shaft 2 is passed thick matrix separate mesh 6 inside and is connected with thick matrix separate mesh 6 by connecting rod 8, one end of thick matrix separate mesh 6 is provided with material inlet 3, the other end is provided with material outlet 4, the mesh size of thick matrix separate mesh 6 be greater than fly maggot exceptionally straight after length, thin matrix separator comprises thin matrix separate mesh 7, frame 1, rotating shaft 2 and power-driven mechanism, thin matrix separate mesh 7 is tubular structure, rotating shaft 2 to be arranged in frame 1 and to be in transmission connection with power-driven mechanism, rotating shaft 2 is passed thin matrix separate mesh 7 inside and is connected with thin matrix separate mesh 7 by connecting rod 8, one end of thin matrix separate mesh 7 is provided with material inlet 3, the other end is provided with material outlet 4, the mesh size of thin matrix separate mesh 7 be less than fly maggot exceptionally straight after length, thin matrix separator is positioned at the front of thick matrix separator, and the below of the thin matrix separate mesh 7 of thin matrix separator is provided with receiving hopper 5, and receiving hopper 5 is connected by the material inlet 3 of conveyer belt with thick matrix separator.In thick matrix separate mesh 6 and thin matrix separate mesh 7, be all axially provided with six protruding blend stops 9, blend stop 9 interval is arranged.Described power-driven mechanism comprises electromotor and speed changer.
Embodiment 3:
The fly maggot that the present embodiment describes and matrix separating method, first the mixture of fly maggot and matrix is sent into thick matrix separate mesh 6 inside by material inlet 3, along with the rotation of thick matrix separate mesh 6, thin matrix and fly maggot can be filtered from the eyelet of thick matrix separate mesh 6 and fall, and oarse-grained thick matrix is discharged from material outlet 4; Secondly, again the thin matrix filtered out from thick matrix separate mesh 6 and fly maggot are sent into thin matrix separate mesh 7 from material inlet 3, in thin matrix separate mesh 7 rotation process, fly maggot is in exceptionally straight state, then thin matrix filters out from thin matrix separate mesh 7, fly maggot is then in thin matrix separate mesh 7, discharges from material outlet 4.
Claims (5)
1. a fly maggot and matrix separate, dedicated equipment, it is characterized in that: it comprises thick matrix separator and thin matrix separator, thick matrix separator comprises thick matrix separate mesh, frame, rotating shaft and power-driven mechanism, thick matrix separate mesh is tubular structure, rotating shaft to be arranged in frame and to be in transmission connection with power-driven mechanism, rotating shaft is passed thick matrix separate mesh inside and is connected with thick matrix separate mesh by connecting rod, one end of thick matrix separate mesh is provided with material inlet, the other end is provided with material outlet, the mesh size of thick matrix separate mesh be greater than fly maggot exceptionally straight after length, thin matrix separator comprises thin matrix separate mesh, frame, rotating shaft and power-driven mechanism, thin matrix separate mesh is tubular structure, rotating shaft to be arranged in frame and to be in transmission connection with power-driven mechanism, rotating shaft is passed thin matrix separate mesh inside and is connected with thin matrix separate mesh by connecting rod, one end of thin matrix separate mesh is provided with material inlet, the other end is provided with material outlet, the mesh size of thin matrix separate mesh be less than fly maggot exceptionally straight after length.
2. a kind of fly maggot according to claim 1 and matrix separate, dedicated equipment, it is characterized in that: thick matrix separator is positioned at the front of thin matrix separator, the below of the thick matrix separate mesh of thick matrix separator is provided with receiving hopper, and receiving hopper is connected by the material inlet of conveyer belt with thin matrix separator.
3. a kind of fly maggot according to claim 1 and matrix separate, dedicated equipment, it is characterized in that: thin matrix separator is positioned at the front of thick matrix separator, the below of the thin matrix separate mesh of thin matrix separator is provided with receiving hopper, and receiving hopper is connected by the material inlet of conveyer belt with thick matrix separator.
4. a kind of fly maggot according to claim 1 or 2 or 3 and matrix separate, dedicated equipment, is characterized in that: the blend stop being all axially provided with some projections in thick matrix separate mesh and thin matrix separate mesh, and blend stop interval is arranged.
5. a kind of fly maggot according to claim 4 and matrix separate, dedicated equipment, is characterized in that: described power-driven mechanism comprises electromotor and speed changer.
Priority Applications (1)
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CN201420751290.9U CN204259647U (en) | 2014-12-04 | 2014-12-04 | Fly maggot and matrix separate, dedicated equipment |
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CN201420751290.9U CN204259647U (en) | 2014-12-04 | 2014-12-04 | Fly maggot and matrix separate, dedicated equipment |
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CN204259647U true CN204259647U (en) | 2015-04-15 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104430203A (en) * | 2014-12-04 | 2015-03-25 | 桐乡市恒易生物科技有限公司 | Method and special device for separating fly maggots from substrates |
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2014
- 2014-12-04 CN CN201420751290.9U patent/CN204259647U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104430203A (en) * | 2014-12-04 | 2015-03-25 | 桐乡市恒易生物科技有限公司 | Method and special device for separating fly maggots from substrates |
CN104430203B (en) * | 2014-12-04 | 2016-09-28 | 浙江恒易生物科技有限公司 | Fly larvae separates special equipment and separation method with substrate |
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Address after: 314512, room 8, building 2401-2418, Jin Yue District, 329, Zhenxing East Road, vibration zone, East Lake City, Jiaxing, Zhejiang, Tongxiang Patentee after: YAO HONGGEN Address before: Tongxiang City, Jiaxing City, Zhejiang province Shimen town 314500 Chun Li Qiao Cun Donggang sea group Patentee before: TONGXIANG HENGYI BIOTECHNOLOGY CO., LTD. |