CN205695577U - Soybean phospholipid powder feed production system - Google Patents

Soybean phospholipid powder feed production system Download PDF

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Publication number
CN205695577U
CN205695577U CN201620209614.5U CN201620209614U CN205695577U CN 205695577 U CN205695577 U CN 205695577U CN 201620209614 U CN201620209614 U CN 201620209614U CN 205695577 U CN205695577 U CN 205695577U
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CN
China
Prior art keywords
bunker
blending bunker
oil
production system
soybean phospholipid
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Withdrawn - After Issue
Application number
CN201620209614.5U
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Chinese (zh)
Inventor
张阿炳
谈忠会
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
HUZHOU RONGSHENG BIOLOGICAL TECHNOLOGY Co Ltd
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HUZHOU RONGSHENG BIOLOGICAL TECHNOLOGY Co Ltd
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Priority to CN201620209614.5U priority Critical patent/CN205695577U/en
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Publication of CN205695577U publication Critical patent/CN205695577U/en
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Abstract

Soybean phospholipid powder feed production system.Provide simple in construction so that feeding is uniform, improve the soybean phospholipid powder feed production system of work efficiency.Including heating cabinet, storage bin, Semen Maydis powder feeding mechanism, blending bunker and discharging bin, described heating cabinet is used for heating phosphatide oil, described heating cabinet connects storage bin by pipeline, it is provided with pay-off between described storage bin and blending bunker, described pay-off includes U-shaped petroleum pipeline and some feed mechanisms, the two ends mouth of pipe of described petroleum pipeline is respectively communicated with described storage bin, and the body bottom portion of petroleum pipeline is provided with some oil outlets, and described oil outlet one_to_one corresponding connects described blending bunker by described feed mechanism;Described Semen Maydis powder feeding mechanism includes feeding warehouse, and described feeding warehouse connects described blending bunker by aerator, is provided with blender in described blending bunker, and described discharging bin is positioned at the bottom of blending bunker.The convenient processing of this utility model, operation is reliable.

Description

Soybean phospholipid powder feed production system
Technical field
This utility model relates to feeding field, particularly relates to soybean phospholipid powder feed production system.
Background technology
Soybean phospholipid powder feedstuff is that primary raw material is refined by high quality soybean phosphatide oil (52%) and high-quality expanded corn powder (48%) to be formed, but, in prior art, production system is relatively decentralized so that production efficiency is low, reduces the quality of product.Simultaneously, it is injected in temporary storage after phosphatide oil heating, it is delivered to next step processing by storage bin, only connect bottom original storage bin and have a petroleum pipeline, phosphatide oil carries out batch mixing with Semen Maydis powder in petroleum pipeline is delivered to batch mixing unit, this mode phosphatide oil is not easy to mix homogeneously with Semen Maydis powder, and product easily produces big fat particles, reduces the quality of product.
Utility model content
This utility model is for problem above, it is provided that simple in construction so that feeding is uniform, improves the soybean phospholipid powder feed production system of work efficiency.
The technical solution of the utility model is: include heating cabinet, storage bin, Semen Maydis powder feeding mechanism, blending bunker and discharging bin, and described heating cabinet is used for heating phosphatide oil, and described heating cabinet connects storage bin by pipeline,
It is provided with pay-off between described storage bin and blending bunker, described pay-off includes U-shaped petroleum pipeline and some feed mechanisms, the two ends mouth of pipe of described petroleum pipeline is respectively communicated with described storage bin, the body bottom portion of petroleum pipeline is provided with some oil outlets, and described oil outlet one_to_one corresponding connects described blending bunker by described feed mechanism;
Described Semen Maydis powder feeding mechanism includes feeding warehouse, and described feeding warehouse connects described blending bunker by aerator, is provided with blender in described blending bunker, and described discharging bin is positioned at the bottom of blending bunker.
Described feed mechanism is resin oil pipe, and the top of described blending bunker is provided with some oil-ins, and described resin oil pipe connects one to one between described oil outlet and oil-in.
Described feed mechanism includes flowline, bunker, shower nozzle and electric pushrod, described bunker has inlet and outlet, described flowline is connected between described oil outlet and the import of bunker, described shower nozzle is located in the outlet of described bunker, the top of described blending bunker is provided with some chutes, feed mechanism described in described chute one_to_one corresponding, described electric pushrod is located on described blending bunker and promotes described bunker to be slidably connected in described chute, and described shower nozzle is positioned at described blending bunker.
Described feed mechanism includes flowline, bunker and shower nozzle, described bunker has inlet and outlet, described flowline is connected between described oil outlet and the import of bunker, described shower nozzle is located in the outlet of described bunker, the top of described blending bunker is inclined plane, and the top of described blending bunker is provided with some chutes, feed mechanism described in described chute one_to_one corresponding, described bunker is slidably connected and is located in described chute, and described shower nozzle is positioned at described blending bunker.
Described chute be respectively provided on two sides with flexible brush.
Described bunker includes warehouse and the slip pipe being connected as a single entity, and described slip pipe is located in described chute adaptedly, and described import is positioned on the warehouse of bunker, and outlet is positioned on the slip pipe of bunker.
It is provided with liquidometer in described storage bin.
This utility model is at work, after soyabean lecithin oil is heated in heating cabinet, it is delivered to storage bin, phosphatide oil automatically flows into the mixing bunker of lower section by gravity, mixing bunker is also connected with being provided with Semen Maydis powder feeding mechanism, carries out mix and blend with phosphatide oil in Semen Maydis powder is sent into mixing bunker, and mixed phosphatide powder carries out pack packing by discharging bin, save the time, improve work efficiency.
By arranging some feed mechanisms between storage bin and blending bunker so that feeding is uniform, it is simple to phosphatide oil, when follow-up stirring, more uniformly, improves the quality of product.
Feed mechanism is operated by following three kinds of modes:
One, by arranging some oil-ins on blending bunker, meanwhile, arranges resin oil pipe so that phosphatide oil, even into some positions of blending bunker, improves the uniformity of feeding;
Its two, carry out promoting bunker by arranging electric pushrod, can make bunker back and forth movement on blending bunker, meanwhile, by shower nozzle, phosphatide oil is carried out uniform feeding, operation is reliable, improves work efficiency;
Its three, by the end face of blending bunker is arranged to inclined plane so that phosphatide oil assured uniform, under the effect of deadweight, is delivered in blending bunker by shower nozzle by bunker, convenient operation.The convenient processing of this utility model, operation is reliable.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model,
Fig. 2 is the structural representation of the first embodiment of pay-off in this utility model,
Fig. 3 is the structural representation of the second embodiment of pay-off in this utility model,
Fig. 4 be in Fig. 3 A to structural representation,
Fig. 5 is the structural representation of the third embodiment of pay-off in this utility model,
Fig. 6 be in Fig. 5 B to structural representation;
In figure, 1 is storage bin, and 2 is blending bunker, and 21 is oil-in, and 22 is chute, 23 is inclined plane, and 3 is petroleum pipeline, and 30 is oil outlet, and 4 is feed mechanism, 41 is resin oil pipe, and 42 is flowline, and 43 is bunker, and 431 is warehouse, 432 is slip pipe, and 44 is shower nozzle, and 45 is electric pushrod, and 5 is flexible brush, 6 is liquidometer, and 7 is heating cabinet, and 8 is feeding warehouse, and 9 is aerator, 10 is discharging bin, and 11 is blender, and 12 is baffle plate.
Detailed description of the invention
As shown in figures 1 to 6, including heating cabinet 7, storage bin 1, Semen Maydis powder feeding mechanism, blending bunker 2 and discharging bin 10, described heating cabinet 7 is used for heating phosphatide oil to this utility model, and described heating cabinet 7 connects storage bin 1 by pipeline,
It is provided with pay-off between described storage bin and blending bunker, described pay-off includes U-shaped petroleum pipeline 3 and some feed mechanisms 4, the two ends mouth of pipe of described petroleum pipeline 3 is respectively communicated with described storage bin, the body bottom portion of petroleum pipeline is provided with some oil outlets 30, and described oil outlet one_to_one corresponding connects described blending bunker by described feed mechanism;
Described Semen Maydis powder feeding mechanism includes feeding warehouse 8, described feeding warehouse 8 connects described blending bunker 2(by aerator 9 and Semen Maydis powder is reliably entered in blending bunker), blender 11 it is provided with in described blending bunker, described discharging bin 10 is positioned at the bottom (bottom of blending bunker is provided with opening, and discharging bin is connected on the opening of blending bunker) of blending bunker.
As in figure 2 it is shown, described feed mechanism is resin oil pipe 41, the top of described blending bunker is provided with some oil-ins 21, and described resin oil pipe connects one to one between described oil outlet and oil-in.By arranging some oil-ins, meanwhile, resin oil pipe is set so that phosphatide oil, even into some positions of blending bunker, improves the uniformity of feeding.
As shown in Figure 3-4, described feed mechanism includes flowline 42, bunker 43, shower nozzle 44 and electric pushrod 45, described bunker has inlet and outlet, described flowline 42 is connected between described oil outlet and the import of bunker, described shower nozzle 44 is located in the outlet of described bunker, the top of described blending bunker 2 is provided with some chutes 22, feed mechanism described in described chute 22 one_to_one corresponding, described electric pushrod 45 is located on described blending bunker and promotes described bunker 43 to be slidably connected in described chute, and described shower nozzle is positioned at described blending bunker.In work, carrying out promoting bunker by arranging electric pushrod, can make bunker back and forth movement on blending bunker, meanwhile, by shower nozzle, phosphatide oil be carried out uniform feeding, operation is reliable, improves work efficiency.
As seen in figs. 5-6, described feed mechanism includes flowline 42, bunker 43 and shower nozzle 44, described bunker has inlet and outlet, described flowline 42 is connected between described oil outlet and the import of bunker, and described shower nozzle 44 is located in the outlet of described bunker, and the top of described blending bunker 2 is inclined plane 23, the top of described blending bunker is provided with some chutes 22, feed mechanism described in described chute 22 one_to_one corresponding, described bunker 43 is slidably connected and is located in described chute, and described shower nozzle is positioned at described blending bunker.In work, by the end face of blending bunker is arranged to inclined plane so that phosphatide oil assured uniform, under the effect of deadweight, is delivered in blending bunker by shower nozzle by bunker, convenient operation;During conventional sense, bunker is positioned at the top of inclined plane, can pass through detent mechanism (such as alignment pin) and be fixed.
Described chute be respectively provided on two sides with flexible brush 5 so that chute forms the sealing of relative closure, reduces dust etc. and enters in blending bunker, improves the quality of product.
Described bunker 43 includes warehouse 431 and the slip pipe 432 being connected as a single entity, and described slip pipe 432 is located in described chute 22 adaptedly, and described import is positioned on the warehouse of bunker, and outlet is positioned on the slip pipe of bunker, convenient processing, and operation is reliable.
It is provided with liquidometer 6 in described storage bin, it is simple to measure the liquid level in storage bin, improves the accuracy of metering.
It is provided with sideboard 12, it is simple to follow-up packaging operation in described discharging bin 10.

Claims (8)

1. soybean phospholipid powder feed production system, it is characterised in that include heating cabinet, storage bin, Semen Maydis powder feeding mechanism, blending bunker and discharging bin, described heating cabinet is used for heating phosphatide oil, and described heating cabinet connects storage bin by pipeline,
It is provided with pay-off between described storage bin and blending bunker, described pay-off includes U-shaped petroleum pipeline and some feed mechanisms, the two ends mouth of pipe of described petroleum pipeline is respectively communicated with described storage bin, the body bottom portion of petroleum pipeline is provided with some oil outlets, and described oil outlet one_to_one corresponding connects described blending bunker by described feed mechanism;
Described Semen Maydis powder feeding mechanism includes feeding warehouse, and described feeding warehouse connects described blending bunker by aerator, is provided with blender in described blending bunker, and described discharging bin is positioned at the bottom of blending bunker.
Soybean phospholipid powder feed production system the most according to claim 1, it is characterised in that described feed mechanism is resin oil pipe, the top of described blending bunker is provided with some oil-ins, and described resin oil pipe connects one to one between described oil outlet and oil-in.
Soybean phospholipid powder feed production system the most according to claim 1, it is characterized in that, described feed mechanism includes flowline, bunker, shower nozzle and electric pushrod, described bunker has inlet and outlet, described flowline is connected between described oil outlet and the import of bunker, described shower nozzle is located in the outlet of described bunker, the top of described blending bunker is provided with some chutes, feed mechanism described in described chute one_to_one corresponding, described electric pushrod is located on described blending bunker, and promote described bunker to be slidably connected in described chute, described shower nozzle is positioned at described blending bunker.
Soybean phospholipid powder feed production system the most according to claim 1, it is characterized in that, described feed mechanism includes flowline, bunker and shower nozzle, described bunker has inlet and outlet, described flowline is connected between described oil outlet and the import of bunker, described shower nozzle is located in the outlet of described bunker, the top of described blending bunker is inclined plane, the top of described blending bunker is provided with some chutes, feed mechanism described in described chute one_to_one corresponding, described bunker is slidably connected and is located in described chute, and described shower nozzle is positioned at described blending bunker.
5. according to the soybean phospholipid powder feed production system described in claim 3 or 4, it is characterised in that described chute be respectively provided on two sides with flexible brush.
6. according to the soybean phospholipid powder feed production system described in claim 3 or 4, it is characterized in that, described bunker includes warehouse and the slip pipe being connected as a single entity, and described slip pipe is located in described chute adaptedly, described import is positioned on the warehouse of bunker, and outlet is positioned on the slip pipe of bunker.
Soybean phospholipid powder feed production system the most according to claim 1, it is characterised in that be provided with liquidometer in described storage bin.
Soybean phospholipid powder feed production system the most according to claim 1, it is characterised in that be provided with sideboard in described discharging bin.
CN201620209614.5U 2016-03-18 2016-03-18 Soybean phospholipid powder feed production system Withdrawn - After Issue CN205695577U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620209614.5U CN205695577U (en) 2016-03-18 2016-03-18 Soybean phospholipid powder feed production system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620209614.5U CN205695577U (en) 2016-03-18 2016-03-18 Soybean phospholipid powder feed production system

Publications (1)

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CN205695577U true CN205695577U (en) 2016-11-23

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105747258A (en) * 2016-03-18 2016-07-13 湖州荣胜生物科技股份有限公司 Soybean lecithin powder feed production system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105747258A (en) * 2016-03-18 2016-07-13 湖州荣胜生物科技股份有限公司 Soybean lecithin powder feed production system

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Granted publication date: 20161123

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