CN203877334U - Aquatic product fluid ice freshness-retaining transporting device - Google Patents
Aquatic product fluid ice freshness-retaining transporting device Download PDFInfo
- Publication number
- CN203877334U CN203877334U CN201420119018.9U CN201420119018U CN203877334U CN 203877334 U CN203877334 U CN 203877334U CN 201420119018 U CN201420119018 U CN 201420119018U CN 203877334 U CN203877334 U CN 203877334U
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- China
- Prior art keywords
- transfer device
- load
- aquatic products
- ice
- closing plate
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- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
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Abstract
The utility model relates to a transporting device, in particular to an aquatic product fluid ice freshness-retaining transporting device. The aquatic product fluid ice freshness-retaining transporting device comprises a transporting belt. Sealing plates are arranged at the two ends of the conveying belt in the feeding direction of the transporting belt. The distance between the sealing plates is matched with the width of the transporting belt. Baffles are fixed to the transporting belt at intervals. A transportation cavity is defined by every two adjacent baffles and the two sealing plates. A guide tube used for pulse output of liquid nitrogen is arranged above the transporting belt. The guide tube is arranged in the feeding direction of the transporting belt. Capillary tubes are arranged at intervals on the guide tube. The upper end of each capillary tube is communicated with the guide tube. The lower end of each capillary tube extends to the position between the corresponding baffles. The aquatic product fluid ice freshness-retaining transporting device has the advantages that fluid ice can be effectively prevented from flowing too fast, injuries caused by mutual collision between aquatic products can be avoided, separation between an ice layer and a liquid layer can be avoided, it is guaranteed that the fluid ice is evenly mixed, and the freshness-retaining effect is improved.
Description
Technical field
The utility model relates to a kind of feedway, especially relates to the fresh-keeping feedway of a kind of aquatic products fluidisation ice.
Background technology
Existing preservation of fishery adopts mixture of ice and water, but ice cube volume in mixture of ice and water is larger, and the corner angle of transportation medium floe easily cause damage to aquatic products surface.Also having a class method for preserving aquatic products is to be undertaken fresh-keepingly by fluidisation ice, and fluidisation ice is to make water crystallize out from salt liquor form the compound of ice crystal and salt liquor salt liquor cooling, and the particle of this crystallization is less, can prevent aquatic products to damage.But fluidisation ice under static state ice sheet there will be and separates with liquid level, ice sheet can swim on liquid level, because aquatic product quality sinks to liquid level bottom compared with conference.Adopt traditional load-transfer device to transport in process, surperficial ice sheet is poor to the fresh-keeping effect of aquatic products, and fluidisation ice is a kind of flowable ice, when load-transfer device not at ordinary times, fluidisation ice stream speed is very fast, easily makes aquatic products assemble, and makes mutually to collide and cause damage between aquatic products and aquatic products.
Utility model content
The utility model is mainly for the problems referred to above, provides a kind of and can effectively prevent that fluidisation ice stream speed is too fast, prevents that between aquatic products, mutual collision causes damage, avoids ice sheet to separate, ensure that fluidisation ice mixes, improves the fresh-keeping feedway of aquatic products fluidisation ice of fresh-keeping effect with liquid level.
The purpose of this utility model is mainly achieved by following proposal: the fresh-keeping feedway of a kind of aquatic products fluidisation ice, comprise load-transfer device, the two ends of described load-transfer device direction of feed are provided with closing plate, distance between closing plate matches with load-transfer device width, on load-transfer device, interval is fixed with baffle plate, adjacent two baffle plates and closing plate form transport chamber, load-transfer device top is provided with the conduit for pulse output liquid nitrogen, conduit arranges along load-transfer device direction of feed, on conduit, be arranged at intervals with capillary tub, upper end capillaceous is connected with conduit, lower end extends between baffle plate.The two ends of load-transfer device direction of feed arrange closing plate, and distance between closing plate matches with load-transfer device width, and closing plate can seal the both sides of load-transfer device, prevents that fluidisation ice from leaking.On load-transfer device, interval is fixed with baffle plate, adjacent two baffle plates and closing plate form transport chamber, in transport chamber, hold fluidisation ice and be immersed in the aquatic products in fluidisation ice, baffle plate can prevent that fluidisation ice stream speed is too fast, and can be spacing to aquatic products, aquatic products are carried out to interval, prevent from bumping between aquatic products and aquatic products.Above load-transfer device, be provided with conduit, pulse input liquid nitrogen in conduit, on conduit, be arranged at intervals with capillary tub, upper end capillaceous and conduit are connected, lower end extends between baffle plate, liquid nitrogen is blown in fluidisation ice along supravasal capillary tub, makes the rolling of fluidisation ice, stirs, and prevents that the ice sheet of fluidisation ice from separating with liquid level, ensure that fluidisation ice mixes, and then ensure that the temperature of aquatic products fluidisation ice is around even.And liquid nitrogen temperature is lower, can prevent that fluidisation ice ice crystal in transportation from melting, and strengthens the fresh-keeping effect of fluidisation ice.Capillary tub hardness is lower, can be bending, can not impact the movement of baffle plate.
As preferably, between described belt edges and closing plate, be provided with sealing band, a lateral edges of sealing band is fixedly connected with closing plate, opposite side edge and load-transfer device fit tightly.Between belt edges and closing plate, be provided with sealing band, a lateral edges of sealing band is fixedly connected with closing plate, opposite side edge and load-transfer device fit tightly, and ensures the leak tightness between closing plate and load-transfer device, prevents that fluidisation ice from leaking from load-transfer device both sides.
As preferably, the height of described closing plate is higher than the height of baffle plate.In course of conveying, the electrolyte level of fluidisation ice is lower than the height of baffle plate, and the height of closing plate, higher than the height of baffle plate, can prevent that fluidisation ice from leaking from closing plate both sides.
As preferably, in the middle part of described baffle plate, be provided with the delivery hole that runs through baffle plate.Baffle plate middle part is provided with the delivery hole that runs through baffle plate, ensures that the salt liquor of the fluidisation ice in each transport chamber is connected, the electrolyte level in not only can balance transport chamber, and can ensure that the concentration of the salt liquor in each transport chamber is identical.
As preferably, one end of described load-transfer device is provided with drive wheel, the other end is provided with flower wheel, and load-transfer device is band transmission.
As preferably, described load-transfer device is belt, and baffle plate is connected with load-transfer device one.
Therefore, the fresh-keeping feedway of aquatic products fluidisation ice of the present utility model possesses following advantage: 1, the two ends of load-transfer device direction of feed arrange closing plate, and distance between closing plate matches with load-transfer device width, closing plate can seal the both sides of load-transfer device, prevent that fluidisation ice from leaking, on load-transfer device, interval is fixed with baffle plate, adjacent two baffle plates and closing plate form transport chamber, in transport chamber, hold fluidisation ice and be immersed in the aquatic products in fluidisation ice, baffle plate can prevent that fluidisation ice stream speed is too fast, and can be spacing to aquatic products, aquatic products are carried out to interval, prevent from bumping between aquatic products and aquatic products, 2, on load-transfer device, interval is fixed with baffle plate, adjacent two baffle plates and closing plate form transport chamber, in transport chamber, hold fluidisation ice and be immersed in the aquatic products in fluidisation ice, baffle plate can prevent that fluidisation ice stream speed is too fast, and can be spacing to aquatic products, aquatic products are carried out to interval, prevent from bumping between aquatic products and aquatic products.Above load-transfer device, be provided with conduit, pulse input liquid nitrogen in conduit, on conduit, be arranged at intervals with capillary tub, upper end capillaceous and conduit are connected, lower end extends between baffle plate, liquid nitrogen is blown in fluidisation ice along supravasal capillary tub, make the rolling of fluidisation ice, stir, the ice sheet that prevents fluidisation ice separates with liquid level, ensure that fluidisation ice mixes, and then the temperature of guarantee aquatic products fluidisation ice is around even, and liquid nitrogen temperature is lower, can prevent that fluidisation ice ice crystal in transportation from melting, and strengthens the fresh-keeping effect of fluidisation ice; 3, between belt edges and closing plate, be provided with sealing band, a lateral edges of sealing band is fixedly connected with closing plate, opposite side edge and load-transfer device fit tightly, and ensures the leak tightness between closing plate and load-transfer device, prevents that fluidisation ice from leaking from load-transfer device both sides; 4, baffle plate middle part is provided with the delivery hole that runs through baffle plate, ensures that the salt liquor of the fluidisation ice in each transport chamber is connected, the electrolyte level in not only can balance transport chamber, and can ensure that the concentration of the salt liquor in each transport chamber is identical.
Brief description of the drawings
Accompanying drawing 1 is a kind of cutaway view of the present utility model;
Accompanying drawing 2 is a kind of birds-eye vieies of the present utility model.
Illustrate: 1-load-transfer device, 2-baffle plate, 3-closing plate, 4-sealing band, 5-conduit, 6-capillary tub, 7-delivery hole, 8-drive wheel, 9-flower wheel, 10-fluidisation ice, 11-aquatic products.
Detailed description of the invention
Below by embodiment, and by reference to the accompanying drawings, the technical solution of the utility model is described in further detail.
Embodiment 1: as shown in Figure 1, 2, the fresh-keeping feedway of a kind of aquatic products fluidisation ice, comprises load-transfer device 1, and load-transfer device 1 is belt, and one end of load-transfer device is provided with drive wheel 8, the other end is provided with flower wheel 9, load-transfer device 1 is band transmission.The two ends of load-transfer device 1 direction of feed are provided with closing plate 3, distance between closing plate 3 matches with load-transfer device width, between belt edges and closing plate, be provided with sealing band 4, a lateral edges of sealing band is fixedly connected with closing plate, opposite side edge and load-transfer device fit tightly.On load-transfer device 1, interval is fixed with baffle plate 2, and baffle plate is connected with load-transfer device one, and baffle plate middle part is provided with the delivery hole 7 that runs through baffle plate.The height of closing plate is higher than the height of baffle plate, adjacent two baffle plates and closing plate form transport chamber, load-transfer device top is fixed with the conduit 5 for pulse output liquid nitrogen, conduit 5 arranges along load-transfer device direction of feed, on conduit, interval is connected with capillary tub 6, and upper end and the conduit of capillary tub 6 is connected, lower end extends between baffle plate.
The two ends of load-transfer device direction of feed arrange closing plate, and distance between closing plate matches with load-transfer device width, and closing plate can seal the both sides of load-transfer device, prevents that fluidisation ice 10 from leaking.On load-transfer device, interval is fixed with baffle plate, adjacent two baffle plates and closing plate form transport chamber, in transport chamber, hold fluidisation ice and be immersed in the aquatic products in fluidisation ice, baffle plate can prevent that fluidisation ice stream speed is too fast, and can be spacing to aquatic products, aquatic products are carried out to interval, prevent from bumping between aquatic products and aquatic products 11.Above load-transfer device, be provided with conduit, pulse input liquid nitrogen in conduit, on conduit, be arranged at intervals with capillary tub, upper end capillaceous and conduit are connected, lower end extends between baffle plate, liquid nitrogen is blown in fluidisation ice along supravasal capillary tub, makes the rolling of fluidisation ice, stirs, and prevents that the ice sheet of fluidisation ice from separating with liquid level, ensure that fluidisation ice mixes, and then ensure that the temperature of aquatic products fluidisation ice is around even.And liquid nitrogen temperature is lower, can prevent that fluidisation ice ice crystal in transportation from melting, and strengthens the fresh-keeping effect of fluidisation ice.Capillary tub hardness is lower, can be bending, can not impact the movement of baffle plate.Between belt edges and closing plate, be provided with sealing band, a lateral edges of sealing band is fixedly connected with closing plate, opposite side edge and load-transfer device fit tightly, and ensures the leak tightness between closing plate and load-transfer device, prevents that fluidisation ice from leaking from load-transfer device both sides.In course of conveying, the electrolyte level of fluidisation ice is lower than the height of baffle plate, and the height of closing plate, higher than the height of baffle plate, can prevent that fluidisation ice from leaking from closing plate both sides.Baffle plate middle part is provided with the delivery hole that runs through baffle plate, ensures that the salt liquor of the fluidisation ice in each transport chamber is connected, the electrolyte level in not only can balance transport chamber, and can ensure that the concentration of the salt liquor in each transport chamber is identical.
Should be understood that this embodiment is only not used in restriction scope of the present utility model for the utility model is described.In addition should be understood that those skilled in the art can make various changes or modifications the utility model after having read the content of the utility model instruction, these equivalent form of values fall within the application's appended claims limited range equally.
Claims (6)
1. the fresh-keeping feedway of aquatic products fluidisation ice, comprise load-transfer device, it is characterized in that, the two ends of described load-transfer device direction of feed are provided with closing plate, distance between closing plate matches with load-transfer device width, on load-transfer device, interval is fixed with baffle plate, adjacent two baffle plates and closing plate form transport chamber, load-transfer device top is provided with the conduit for pulse output liquid nitrogen, conduit arranges along load-transfer device direction of feed, on conduit, be arranged at intervals with capillary tub, upper end capillaceous and conduit are connected, lower end extends between baffle plate.
2. the fresh-keeping feedway of aquatic products fluidisation ice according to claim 1, it is characterized in that, between described belt edges and closing plate, be provided with sealing band, a lateral edges of sealing band is fixedly connected with closing plate, opposite side edge and load-transfer device fit tightly.
3. the fresh-keeping feedway of aquatic products fluidisation ice according to claim 1, is characterized in that, the height of described closing plate is higher than the height of baffle plate.
4. the fresh-keeping feedway of aquatic products fluidisation ice according to claim 1, is characterized in that, described baffle plate middle part is provided with the delivery hole that runs through baffle plate.
5. according to the fresh-keeping feedway of aquatic products fluidisation ice described in claim 1 or 2 or 3, it is characterized in that, one end of described load-transfer device is provided with drive wheel, the other end is provided with flower wheel, and load-transfer device is band transmission.
6. according to the fresh-keeping feedway of aquatic products fluidisation ice described in claim 1 or 2 or 3, it is characterized in that, described load-transfer device is belt, and baffle plate is connected with load-transfer device one.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420119018.9U CN203877334U (en) | 2014-03-17 | 2014-03-17 | Aquatic product fluid ice freshness-retaining transporting device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420119018.9U CN203877334U (en) | 2014-03-17 | 2014-03-17 | Aquatic product fluid ice freshness-retaining transporting device |
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CN203877334U true CN203877334U (en) | 2014-10-15 |
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CN201420119018.9U Expired - Fee Related CN203877334U (en) | 2014-03-17 | 2014-03-17 | Aquatic product fluid ice freshness-retaining transporting device |
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104528311A (en) * | 2014-12-31 | 2015-04-22 | 天津大学 | Sea ice conveying system |
CN104824114A (en) * | 2015-03-27 | 2015-08-12 | 浙江海洋学院 | An aquatic product fresh-keeping device and a method |
CN109368140A (en) * | 2018-12-10 | 2019-02-22 | 广东海洋大学 | A kind of electric automatization food feeding device for facilitating different shape food materials to convey |
CN110100873A (en) * | 2019-04-22 | 2019-08-09 | 温州科技职业学院 | The automation equipment freezed is impregnated for aquatic products |
CN111750588A (en) * | 2020-07-01 | 2020-10-09 | 上海哈港信息科技有限公司 | Automatic fluid conveying ice preservation system for offshore catching marine products |
CN113401583A (en) * | 2021-06-15 | 2021-09-17 | 惠州凯美特气体有限公司 | Granular dry ice conveying device and flaky dry ice production equipment |
-
2014
- 2014-03-17 CN CN201420119018.9U patent/CN203877334U/en not_active Expired - Fee Related
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104528311A (en) * | 2014-12-31 | 2015-04-22 | 天津大学 | Sea ice conveying system |
CN104824114A (en) * | 2015-03-27 | 2015-08-12 | 浙江海洋学院 | An aquatic product fresh-keeping device and a method |
CN109368140A (en) * | 2018-12-10 | 2019-02-22 | 广东海洋大学 | A kind of electric automatization food feeding device for facilitating different shape food materials to convey |
CN110100873A (en) * | 2019-04-22 | 2019-08-09 | 温州科技职业学院 | The automation equipment freezed is impregnated for aquatic products |
CN111750588A (en) * | 2020-07-01 | 2020-10-09 | 上海哈港信息科技有限公司 | Automatic fluid conveying ice preservation system for offshore catching marine products |
CN113401583A (en) * | 2021-06-15 | 2021-09-17 | 惠州凯美特气体有限公司 | Granular dry ice conveying device and flaky dry ice production equipment |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20141015 Termination date: 20150317 |
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EXPY | Termination of patent right or utility model |