Opposed seawater ice sheet machine

文档序号:464953 发布日期:2021-12-31 浏览:14次 中文

阅读说明:本技术 一种对置式海水冰片机 (Opposed seawater ice sheet machine ) 是由 姚宇 于 2021-09-09 设计创作,主要内容包括:本发明公开了一种对置式海水冰片机,包括水箱槽和设置在其上的雪花机组件,所述雪花机组件包括对置于支架上的制冷机,所述制冷机为声能制冷机,对置的两台所述制冷机的冷头端通过轴承设有滚动导冷管组件,所述滚动导冷管组件包括电机、导冷翅片和被所述轴承外环固定的中空导冷管,所述电机输出作用于所述轴承的外环,所述水箱槽内设有第一泵体在下侧对所述中空导冷管外壁喷水,设有第二泵体对所述制冷机散热,所述支架在出料端还设有刀片架,其上设有刀片。本发明通过声能压缩机小体积的稳定制冷,滚动导冷管组件导冷,在中空导冷管外壁将海水凝结成冰,能够实现海上制冰,且整个装置,由于制冷机体积小,不占空间。(The invention discloses an opposite type sea water ice plate machine, which comprises a water tank groove and a snowflake machine assembly arranged on the water tank groove, wherein the snowflake machine assembly comprises refrigerating machines which are opposite to a support, the refrigerating machines are acoustic energy refrigerating machines, the cold head ends of the two opposite refrigerating machines are provided with rolling cold guide pipe assemblies through bearings, each rolling cold guide pipe assembly comprises a motor, cold guide fins and a hollow cold guide pipe fixed by an outer ring of the bearing, the output of the motor acts on the outer ring of the bearing, a first pump body is arranged in the water tank groove, water is sprayed on the outer wall of the hollow cold guide pipe at the lower side, a second pump body is arranged for radiating the refrigerating machines, and the support is also provided with a blade frame at the discharge end and is provided with a blade. The invention can realize the ice making on the sea by stably refrigerating with small volume of the sound energy compressor and guiding cold by the rolling cold guide pipe assembly and condensing the seawater into ice on the outer wall of the hollow cold guide pipe, and the whole device does not occupy space due to the small volume of the refrigerator.)

1. The utility model provides an opposite formula sea water bornyl machine, includes water tank groove (1) and sets up the snowflake machine subassembly on it, its characterized in that: the snowflake machine component comprises a refrigerating machine (2) which is oppositely arranged on a support (100), the refrigerating machine (2) is a sound energy refrigerating machine, two refrigerating machine components are oppositely arranged, a rolling cold guide pipe component (4) is arranged at a cold head end of the refrigerating machine (2) through a bearing (3), the rolling cold guide pipe component (4) comprises a motor (41), cold guide fins (42) and a hollow cold guide pipe (43) fixed by an outer ring of the bearing (3), the output of the motor (41) acts on the outer ring of the bearing (3), a first pump body (5) is arranged in a water tank groove (1) and sprays water on the outer wall of the hollow cold guide pipe (43) at the lower side, a second pump body (6) is arranged to dissipate heat of the refrigerating machine (2), and the support (100) is further provided with a blade holder (11) at a discharge end and is provided with a blade.

2. Opposed seawater ice plate machine according to claim 1, characterized in that: the motor (41) is arranged on the support, and the output end of the motor is connected with a belt connecting wheel (412) fixed with the outer ring of the bearing (3) through a belt (411).

3. Opposed seawater ice plate machine according to claim 1, characterized in that: the cold guide fins (42) are of I-shaped structures and are sleeved at the cold head ends of the two opposite refrigerating machines (2).

4. Opposed seawater ice plate machine according to claim 1, characterized in that: the first water pump (5) is provided with at least four water spraying ports (52) on the bracket through a first pipeline (51).

5. Opposed seawater ice plate machine according to claim 4, characterized in that: and a water spraying shower head is arranged on the water spraying opening (52).

6. Opposed seawater ice plate machine according to claim 1, characterized in that: the second pump body (6) is arranged outside the heat dissipation part of the refrigerator (2) in a winding mode through a second pipeline (61) and forms circulation.

7. Opposed seawater ice plate machine according to claim 1, characterized in that: the blade holder (11) is provided with a connecting hole (111) connected with a blanking sloping plate.

8. Opposed seawater ice plate machine according to claim 1, characterized in that: the outer side is provided with an anticorrosive coating.

9. Opposed seawater ice plate machine according to claim 1, characterized in that: the refrigerator (2) is powered by a solar panel.

Technical Field

The invention relates to the field of snowflake machines, in particular to an opposed type seawater ice plate machine.

Background

In the process of fishing at sea, the ice cubes are usually carried and directly stored in the ship body, ice making equipment cannot be directly carried to sea, and the existing ice making equipment is large and inconvenient to carry but is in a bumpy and humid environment at sea, so that the existing ice making equipment cannot meet the severe environment.

Therefore, a snowflake machine suitable for fishing in the sea needs to be developed to ensure that deep sea fish can be iced and kept fresh when the fishing amount is large.

Disclosure of Invention

The invention aims to solve the problems and provides an opposed type seawater ice plate machine, which can realize offshore ice making by stably refrigerating with a small volume of an acoustic energy compressor and leading cold by a rolling cold guide pipe assembly, condensing seawater into ice on the outer wall of a hollow cold guide pipe, and does not occupy space due to the small volume of a refrigerator.

In order to achieve the purpose, the invention adopts the technical scheme that: the utility model provides an opposite formula sea water ice sheet machine, includes water tank groove and sets up the snowflake machine subassembly above that, snowflake machine subassembly includes that the opposition is located the refrigerator on the support, the refrigerator is the acoustic energy refrigerator, two of opposition the cold head end of refrigerator is equipped with rolling guide cold tube subassembly through the bearing, rolling guide cold tube subassembly include motor, guide cold fin and quilt the fixed cavity guide cold tube of bearing outer loop, motor output acts on the outer loop of bearing, it is right to be equipped with the second pump body at the downside to be equipped with the first pump body in the water tank groove the cavity guide cold tube outer wall water spray, it is right to be equipped with the second pump body the refrigerator heat dissipation, the support still is equipped with the blade frame at the discharge end, is equipped with the blade on it.

Further, the motor is arranged on the support, and the output end of the motor is connected with a belt connecting wheel fixed with the bearing outer ring through a belt.

Furthermore, the cold guide fins are of I-shaped structures and are sleeved at the cold head ends of the two opposite refrigerators.

Furthermore, the first water pump is provided with at least four water spraying ports on the bracket through a first pipeline.

Furthermore, a water spraying shower head is arranged on the water spraying opening.

Furthermore, the second pump body is arranged on the outer side of the heat dissipation part of the refrigerator in a winding mode through a second pipeline and forms circulation.

Furthermore, a connecting hole position is arranged on the blade frame and connected with a blanking inclined plate.

In summary, the invention has the following advantages:

the invention provides an opposed type sea water ice plate machine, which can realize sea ice making by stably refrigerating with a small volume of an acoustic energy compressor and leading cold by a rolling cold guide pipe assembly, condensing sea water into ice on the outer wall of a hollow cold guide pipe, and the whole device does not occupy space due to the small volume of a refrigerator.

The high-quality refrigeration efficiency of the sound energy compressor can condense the seawater on the hollow pipe into ice rapidly through the cold end of the sound energy compressor, and the cruising of the marine fishing is ensured.

Drawings

FIG. 1 is a schematic structural view of the present invention;

FIG. 2 is a cross-sectional view of a snowflake assembly;

FIG. 3 is a schematic view of a first circuit and a second circuit;

fig. 4 is a schematic view of a cartridge arrangement.

Detailed Description

The invention is further described with reference to the following figures and examples:

example 1:

an opposed seawator, as shown in figures 1-4, comprises a water tank 1 and a snowflake assembly disposed thereon.

The snowflake unit component comprises a refrigerator 2 which is oppositely arranged on the bracket 100, and the refrigerator 2 is an acoustic energy refrigerator and has small volume and high refrigeration efficiency.

The cold head ends of the two opposite refrigerators 2 are provided with rolling cold guide pipe assemblies 4 through bearings 3.

With reference to fig. 1 and 2, the rolling cold guide pipe assembly 4 includes a motor 41, cold guide fins 42, and a hollow cold guide pipe 43 fixed by an outer ring of the bearing 3.

Specifically, the output of the motor 41 acts on the outer ring of the bearing 3, i.e. the motor drives the outer ring of the bearing to rotate, and the hollow cold guide pipe 43 is fixed on the outer ring of the bearing 3, so that when the motor rotates, the hollow cold guide pipe rotates.

In the transmission mechanism, the motor 41 is disposed on the bracket and located at the rear end, and the output end of the motor is connected with the belt connecting wheel 412 fixed to the outer ring of the bearing 3 through the belt 411, that is, the motor drives the belt connecting wheel through the belt, and the belt connecting wheel drives the outer ring of the bearing 3 to rotate.

At the cold guiding end, the cold guiding fins 42 are i-shaped, and are sleeved on the cold end of the two opposite refrigerators 2.

The central position of the cold guide fin is solid, the two sides of the cold guide fin are connected with the notches, the cold head end is fixed, and meanwhile, the cold guide fin and the support form fixation for the refrigerator.

The outer side of the cold guide fins is provided with parallel fins, so that the cold quantity is transferred quickly.

The water tank groove 1 is internally provided with a first pump body 5 which sprays water to the outer wall of the hollow cold guide pipe 43 at the lower side, and the water source of the snowflake machine is arranged.

Specifically, the first water pump 5 is provided with at least four water spraying ports 52 on the bracket through the first pipeline 51, and each water spraying port is provided with a shower head, so that water can be discharged uniformly.

In this embodiment, the water jet ports are provided in 4 rows.

And a second pump body 6 is arranged for radiating heat of the refrigerator 2.

Specifically, the second pump body 6 is provided around the outside of the heat radiating portion of the refrigerator 2 through a second pipe 61, and circulates.

And the second pump body acts, so that the water in the water tank groove 1 is pumped to the second pipeline, and enters the water tank groove again after being subjected to circulating heat exchange and temperature reduction.

The support 100 is also provided with a blade holder 11 at the discharge end, on which a blade is arranged.

The blade is used for scraping off an ice layer formed by seawater on the outer wall of the hollow cold guide pipe 43, so that an ice making mechanism of the snowflake machine is formed, and cotton ice is formed.

The blade holder 11 is provided with a connecting hole 111 for connecting a blanking sloping plate, so that the cotton ice can be conveniently stored and collected.

It is worth noting that the outer side of the whole device is provided with an anti-corrosion coating, so that the device is convenient to use in the sea, and moreover, the power supply mode of the refrigerator adopts a solar power supply mode, so that the device is higher in practicability and convenience and stronger in independent use capability.

In conclusion, this scheme provides an opposite formula sea water bornyl machine, leads to through the stable refrigeration of the small volume of sound energy compressor, and the cold is led to the roll stand pipe subassembly, condenses the sea water into ice at cavity stand pipe outer wall, can realize the ice-making on the sea, and whole device, because the refrigerator is small, does not account for the space.

The high-quality refrigeration efficiency of the sound energy compressor can condense the seawater on the hollow pipe into ice rapidly through the cold end of the sound energy compressor, and the cruising of the marine fishing is ensured.

The above embodiments are merely illustrative of the technical concepts and features of the present invention, and the purpose of the embodiments is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements.

The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.

It will be understood that the embodiments described above are illustrative only and not restrictive, and that various obvious and equivalent modifications and substitutions for details described herein may be made by those skilled in the art without departing from the basic principles of the invention.

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