JPH06257937A - Device for manufacturing snow-like dry ice - Google Patents

Device for manufacturing snow-like dry ice

Info

Publication number
JPH06257937A
JPH06257937A JP5041523A JP4152393A JPH06257937A JP H06257937 A JPH06257937 A JP H06257937A JP 5041523 A JP5041523 A JP 5041523A JP 4152393 A JP4152393 A JP 4152393A JP H06257937 A JPH06257937 A JP H06257937A
Authority
JP
Japan
Prior art keywords
dry ice
snow
hole
nozzle portion
nozzle
Prior art date
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.)
Granted
Application number
JP5041523A
Other languages
Japanese (ja)
Other versions
JP3140597B2 (en
Inventor
Hitoshi Miyata
仁 宮田
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.)
Japan Oxygen Co Ltd
Nippon Sanso Corp
Original Assignee
Japan Oxygen Co Ltd
Nippon Sanso Corp
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Japan Oxygen Co Ltd, Nippon Sanso Corp filed Critical Japan Oxygen Co Ltd
Priority to JP05041523A priority Critical patent/JP3140597B2/en
Publication of JPH06257937A publication Critical patent/JPH06257937A/en
Application granted granted Critical
Publication of JP3140597B2 publication Critical patent/JP3140597B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Carbon And Carbon Compounds (AREA)

Abstract

PURPOSE:To improve an yield and efficiency of dispersion of dye ice by a method wherein each of an upper hole and a lower hole is formed at a nozzle part, a direction of each of these openings is inclined toward each of extremity ends and formed to inject gas in an opposing direction. CONSTITUTION:A device 1 for manufacturing snow-like dry ice is comprised of a nozzle part 2 and a guide cylinder 3. The nozzle part 2 is formed of a cylinder 2A having its extremity end closed. In this case, the cylinder 2A has an upper hole 2a for supplying liquified carbonic acid gas and has a lower hole 2b at an extremity end thereof. A direction of each of openings of the upper hole 2a and the lower hole 2b is inclined toward the extremity end and at the same time gas is injected toward opposing directions. That is, a direction of opening of the upper hole 2a is inclined within a range of 45 to 60 deg. from a normal line beta against a longitudinal direction of a liquified gas supplying passage alpha. In turn, the direction of opening of the lower hole 2b is inclined more than 30 deg., and 45-60 deg. from the normal line beta toward the extremity end.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、食品の冷凍や冷凍輸送
等に用いられるスノー状のドライアイスを液化炭酸ガス
により簡易に製造するための製造器に関するものであ
る。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a manufacturing device for easily manufacturing snow-like dry ice used for freezing and freezing transportation of food by using liquefied carbon dioxide gas.

【0002】[0002]

【従来の技術】従来のスノー状ドライアイスの製造器
は、図6に示すようなノズル部11と円錐状のガイド筒
体12から構成され、前記ノズル部11には図7に拡大
して示すような液化炭酸ガスの流路11aと前記流路1
1aに導通する4箇所の傾斜した細孔からなる流出口1
1bが設けられており、前記ノズル部11の流路11a
に供給された液化炭酸ガスは、前記ノズル部11の流出
口11bより大気圧下のガイド筒体内に噴出され、噴出
された液化炭酸ガスは、その一部がスノー状の固体とな
って、ノズル部11の流出口11bより、前記スノー状
のドライアイスと気体状の炭酸ガスの混合流がガイド筒
体12内部を旋回しつつ外部に撒布されるものである。
2. Description of the Related Art A conventional snow-like dry ice producing device comprises a nozzle portion 11 and a conical guide cylinder 12 as shown in FIG. 6, and the nozzle portion 11 is shown in an enlarged manner in FIG. Liquefied carbon dioxide gas channel 11a and the channel 1
Outlet 1 composed of four slanted pores that are connected to 1a
1b is provided, and the flow path 11a of the nozzle portion 11 is provided.
The liquefied carbon dioxide gas supplied to the nozzle is ejected from the outlet 11b of the nozzle portion 11 into the guide cylinder at atmospheric pressure, and a part of the ejected liquefied carbon dioxide becomes a snow-like solid. From the outlet 11b of the portion 11, the mixed flow of the snow-like dry ice and the gaseous carbon dioxide is sprinkled to the outside while swirling inside the guide cylinder 12.

【0003】[0003]

【発明が解決しようとする課題】しかし、上記構成から
なるスノー状ドライアイスの製造器10によれば、スノ
ー状ドライアイスのホーン内での滞留時間が短く、スノ
ー状ドライアイス撒布面と前記製造器10のガイド筒体
開口端との距離が一定以上に大きくなると、前記ガイド
筒体12内を旋回しつつ撒布されるスノー状ドライアイ
スは、前記ドライアイス撒布面のみならず、外部に広が
って散乱し、撒布されるドライアイスがドーナツ状に堆
積するといった現象を引き起こし、撒布面での均一な堆
積が難しくなり、ドライアイスの供給効率が低下すると
いった問題を有していた。
However, according to the snow-like dry ice producing device 10 having the above-mentioned structure, the stay time of the snow-like dry ice in the horn is short, and the snow-like dry ice sprinkling surface and the above-mentioned production are produced. When the distance from the open end of the guide tube body of the container 10 becomes larger than a certain value, the snow-like dry ice sprinkled while swirling in the guide tube body 12 spreads not only to the dry ice sprinkling surface but also to the outside. This causes a phenomenon in which dry ice scattered and scattered is deposited in a donut shape, making it difficult to uniformly deposit on the sprayed surface, resulting in a problem that the supply efficiency of dry ice is reduced.

【0004】また、前記ノズル部11の噴出孔11bの
孔径を大きくし、前記液化炭酸ガスの供給量を多くする
と、上記問題に加えてスノー状ドライアイスの生成収率
が低下するといった問題を有していた。
Further, if the diameter of the ejection hole 11b of the nozzle portion 11 is increased and the supply amount of the liquefied carbon dioxide gas is increased, there is a problem that the production yield of snow-like dry ice is reduced in addition to the above problems. Was.

【0005】そこで、本願発明は、上記事情に鑑みてな
されたもので、ドライアイスの生成収率の向上を図り、
かつ撒布されるスノー状ドライアイスを外部に散乱させ
ることなく、集中的に、そして均一に撒布面に撒布する
とともに、液化炭酸ガスの噴出量が多くとも高いスノー
状ドライアイスの生成収率を維持できるスノー状ドライ
アイスの製造器を提供することを目的とするものであ
る。
Therefore, the present invention has been made in view of the above circumstances, and aims to improve the production yield of dry ice.
In addition, the snow-like dry ice that is sprinkled is sprayed on the sprinkling surface in a concentrated and uniform manner without scattering to the outside, and the production yield of snow-like dry ice is maintained even if the amount of liquefied carbon dioxide gas spouting is high. It is an object of the present invention to provide a snow-like dry ice producing device that can be used.

【0006】[0006]

【課題を解決するための手段】請求項1に記載のスノー
状ドライアイスの製造器は、上記課題を解決するため
に、液化炭酸ガスを供給する供給路と噴出孔を有するノ
ズル部と、前記ノズル部を囲んでこれに連設されたガイ
ド筒体からなるスノー状ドライアイスの製造器であっ
て、前記ノズル部が、ノズル部の液化炭酸ガス供給側に
設けられた上孔と、前記上孔よりノズル部の先端側に設
けられた下孔とを有してなり、かつ前記上孔と下孔の開
口方向をそれぞれノズルの先端側に向いて傾斜させると
ともに、相反する方向にガスを噴出するように形成した
ことを特徴とするものである。
In order to solve the above-mentioned problems, a snow-like dry ice producing apparatus according to a first aspect of the present invention includes a supply passage for supplying liquefied carbon dioxide gas, a nozzle portion having an ejection hole, and A snow-like dry ice manufacturing device comprising a guide cylinder surrounding the nozzle part and connected to the nozzle part, wherein the nozzle part includes an upper hole provided on the liquefied carbon dioxide gas supply side of the nozzle part and the upper part. The nozzle has a lower hole provided on the tip side of the nozzle portion with respect to the hole, and the opening directions of the upper hole and the lower hole are respectively inclined toward the tip side of the nozzle, and gas is ejected in opposite directions. It is characterized in that it is formed as follows.

【0007】請求項2に記載のスノー状ドライアイスの
製造器は、上記課題を解決するために、請求項1に記載
のスノー状ドライアイスの製造器におけるノズル部の上
孔の開口方向が、ノズル部の長さ方向に対する法線方向
よりノズル先端方向に45度から60度の範囲内で設け
られ、下孔の開口方向が前記法線方向よりノズル先端方
向に30度以上で、かつ前記上孔の傾斜角度以下にされ
てなることを特徴とするものである。
In order to solve the above-mentioned problems, the snow-like dry ice maker according to a second aspect of the invention is such that the opening direction of the upper hole of the nozzle portion in the snow-like dry ice maker according to the first aspect is: It is provided within a range of 45 degrees to 60 degrees in the nozzle tip direction from the direction normal to the length direction of the nozzle portion, and the opening direction of the pilot hole is 30 degrees or more in the nozzle tip direction from the normal direction, and the upper direction. It is characterized in that the angle of inclination of the hole is not more than that.

【0008】請求項3に記載のスノー状ドライアイスの
製造器は、上記課題を解決するめたに、請求項1または
請求項2に記載のスノー状ドライアイスの製造器におけ
るガイド筒体が、ほぼ同一内径の筒状にされてなること
を特徴とするものである。
In order to solve the above-mentioned problems, the snow-like dry ice producing apparatus according to the third aspect of the present invention is such that the guide cylinder in the snow-like dry ice producing apparatus according to the first or second aspect is substantially the same. It is characterized in that it is formed into a cylindrical shape having the same inner diameter.

【0009】[0009]

【作用】請求項1に記載のスノー状ドライアイスの製造
器は、上孔と、それよりノズル部の先端側に設けられた
下孔とを有し、かつ前記上孔と下孔の開口方向をそれぞ
れ傾斜させるとともに、相反する方向にガスを噴出する
ように形成したことにより、前記上孔から噴出した気体
状の炭酸ガスとスノー状のドライアイスとの混合流がガ
イド筒体内を旋回しつつ噴出し、下孔から噴出した旋回
しつつ噴出する混合流とが衝突しつつ前記ガイド筒体開
口部より撒布できるものであるので、前記ガイド筒体よ
り供給されるスノー状ドライアイスは、散乱せずに撒布
され、その撒布面に集中的に、そして均一に撒布するこ
とができ、例え前記製造器のガイド筒体開口部とドライ
アイス供給面とが離れていても、前記撒布面にドライア
イスを集中的に、そして均一に撒布し、冷却することが
できるものである。
According to the present invention, the snow-like dry ice producing device has an upper hole and a lower hole provided on the tip side of the nozzle portion with respect to the upper hole, and the opening direction of the upper hole and the lower hole. By inclining each of them and forming gas so as to eject in opposite directions, a mixed flow of gaseous carbon dioxide gas and snow-like dry ice ejected from the upper hole swirls in the guide cylinder. The snow-like dry ice supplied from the guide cylinder is scattered because it can be sprayed from the guide cylinder opening while colliding with the jetting and the swirling mixed flow ejected from the lower hole. Without spraying, the sprayed surface can be sprayed intensively and uniformly, and even if the guide cylinder opening of the manufacturing machine and the dry ice supply surface are separated, the dry ice can be sprayed on the sprayed surface. Intensively, And uniformly sprayed with, but can be cooled.

【0010】請求項2に記載のスノー状ドライアイスの
製造器は、上述した請求項1に記載のスノー状ドライア
イスの製造器におけるノズル部の噴出孔の上孔の開口方
向が、ノズル部の液化ガス供給路法線方向よりノズル先
端方向に45度から60度の範囲内で設けられ、下孔が
前記供給路法線方向よりノズル先端方向に30度以上
で、かつ前記上孔の傾斜角度以下に設けられてなるもの
であり、上記請求項1と同様の効果を、より効果的に奏
することができるものである。
According to a second aspect of the present invention, in the snow-like dry ice producing apparatus, the opening direction of the upper hole of the nozzle hole of the snow-like dry ice producing apparatus according to the above-mentioned first aspect of the nozzle section is the same as that of the nozzle section. It is provided within the range of 45 to 60 degrees in the nozzle tip direction from the liquefied gas supply path normal direction, the lower hole is 30 degrees or more in the nozzle tip direction from the supply path normal direction, and the inclination angle of the upper hole It is provided below, and it is possible to more effectively achieve the same effect as that of the first aspect.

【0011】請求項3に記載のスノー状ドライアイスの
製造器は、請求項1または請求項2に記載のスノー状ド
ライアイスの製造器におけるガイド筒体の断面が、その
開口部とほぼ同一面積及び形状を有するものであり、上
記請求項1と同様な効果を奏することができるととも
に、ガイド筒体の形状を円錐状の裾広がりとせず、ほぼ
断面同一面積の開口体とすることにより、スノー状ドラ
イアイスの生成収率の向上を図ることができ、結果的に
液化炭酸ガス使用量の削減を図ることが可能である。そ
して、例えばノズル部の噴出孔の孔径を大きくし、液化
炭酸ガスの供給量を多くしても、スノー状ドライアイス
の生成効率を維持することができる。
According to a third aspect of the present invention, in the snow-like dry ice producing apparatus, the cross-section of the guide cylinder in the snow-like dry ice producing apparatus according to the first or second aspect has substantially the same area as the opening. And the shape, the same effects as those of claim 1 can be achieved, and the shape of the guide tube body does not have a conical skirt spread but is an opening body having substantially the same cross-sectional area. The production yield of dry ice can be improved, and as a result, the amount of liquefied carbon dioxide used can be reduced. Then, even if, for example, the diameter of the ejection hole of the nozzle portion is increased and the amount of liquefied carbon dioxide gas supplied is increased, it is possible to maintain the generation efficiency of snow-like dry ice.

【0012】[0012]

【実施例】以下に、本発明の実施例について説明する。
図1は、本発明における実施例のスノー状ドライアイス
製造器1の概略構成を示す断面図である。前記スノー状
ドライアイス製造器1は、ノズル部2とガイド筒体3と
から構成され、前記ノズル部2は、先端が閉じられた筒
体2Aからなり筒体2Aには、図2に示すように液化炭
酸ガス供給側に上孔2a…が、前記上孔2aよりノズル
部2の先端側に下孔2b…が形成されている。そして、
前記上孔2aと下孔2bの開口方向は、図3と図4に示
すように、それぞれ相反する方向に設けられ、上孔2a
の開口方向は、ノズル部2の液化ガス供給路αの長さ方
向に対する法線βよりノズル先端方向に好ましくは45
度から60度の範囲内で傾斜させて設けられ、下孔2b
の開口方向は前記供給路αに対する法線βよりノズル先
端方向に30度以上で、かつ前記上孔2aの傾斜角度以
下に傾斜させて設けられている。また、上記構成からな
る本実施例のスノー状ドライアイス製造器1の上孔2a
と下孔2bとの間隔は前記上孔2a及び下孔2bの開口
方向,ガイド筒体3の径により適宜設計されるものであ
る。前記上孔2aと下孔2bの孔径については、同径の
ものが望ましいが、適宜使用用途によって設計変更する
ことが可能である。
EXAMPLES Examples of the present invention will be described below.
FIG. 1 is a sectional view showing a schematic configuration of a snow-like dry ice maker 1 according to an embodiment of the present invention. The snow-like dry ice maker 1 is composed of a nozzle portion 2 and a guide cylinder body 3, and the nozzle portion 2 is composed of a cylinder body 2A having a closed tip, as shown in FIG. Are formed on the liquefied carbon dioxide gas supply side, and lower holes 2b are formed on the tip side of the nozzle portion 2 with respect to the upper hole 2a. And
As shown in FIGS. 3 and 4, the opening directions of the upper hole 2a and the lower hole 2b are opposite to each other.
The opening direction of is preferably 45 in the nozzle tip direction from the normal β to the lengthwise direction of the liquefied gas supply passage α of the nozzle portion 2.
The inclined hole is provided within the range of 60 degrees to 60 degrees, and the prepared hole 2b
The opening direction is set to be 30 degrees or more in the nozzle tip direction from the normal line β to the supply path α, and is tilted at an inclination angle of the upper hole 2a or less. Further, the upper hole 2a of the snow-like dry ice maker 1 of the present embodiment having the above-mentioned configuration.
The space between the lower hole 2b and the lower hole 2b is appropriately designed depending on the opening direction of the upper hole 2a and the lower hole 2b and the diameter of the guide cylinder 3. The upper hole 2a and the lower hole 2b preferably have the same diameter, but the design can be changed appropriately depending on the intended use.

【0013】そして、以上構成からなる本実施例のスノ
ー状のドライアイス製造器1によれば、前記ノズル部2
の上孔または下孔より噴出される液化炭酸ガスの一部が
気化し、その残部はスノー状のドライアイスとなり、前
記両者の混合流は図5中矢印方向に、ガイド筒体3内を
旋回しつつガイド筒体3の開口部側に送り出されること
となり、一方下孔2bからも上記上孔2aと同様に噴出
した混合流が旋回しつつ送り出されるが、その送り出し
方向が図中破線矢印方向が示すように、上記上孔2aの
混合流とは逆にガイド筒体3のノズル側に送り出される
ので、上記上孔2aから噴出され混合流と衝突しつつ交
錯されて前記ガイド筒体3開口部よりスノー状ドライア
イスが撒布されることとなる。
According to the snow-like dry ice maker 1 of the present embodiment having the above structure, the nozzle portion 2 is provided.
Part of the liquefied carbon dioxide gas ejected from the upper hole or the lower hole is vaporized, and the remaining part becomes snow-like dry ice, and the mixed flow of the two swirls in the guide cylinder 3 in the direction of the arrow in FIG. While being sent out to the opening side of the guide tube body 3, the mixed flow jetted out is also sent out from the lower hole 2b in the same manner as the upper hole 2a while being swirled. As shown in FIG. 2, the mixed flow in the upper hole 2a is sent out to the nozzle side of the guide cylinder 3, so that the guide cylinder 3 is jetted from the upper hole 2a and intersects with the mixed flow to cross the guide cylinder 3 opening. Snow-like dry ice will be sprinkled from the part.

【0014】そこで、以下に示す条件からなる本発明に
おけるスノー状ドライアイスの製造器を作成し、以下の
ような試験を行なった。 (製造例1)本製造例1のスノー状ドライアイスの製造
器は、図5に示すように上記実施例と同様の円筒状のノ
ズル部5と前記ノズル部5に連設されたステンレス鋼
(SUS304)からなる図6に示すような円錐状のガ
イド筒体6から構成され、前記ノズル部5の内径は10
mmで上孔及び下孔からなる噴出孔5aの孔径が1.0
mmのものを使用し、前記ガイド筒体6の開口部口径は
125mmで、前記ガイド筒体6の垂直高さは約350
mmのものを使用した。
Therefore, a snow-like dry ice producing device according to the present invention having the following conditions was prepared, and the following tests were conducted. (Production Example 1) As shown in FIG. 5, the snow-like dry ice producing apparatus of Production Example 1 has a cylindrical nozzle portion 5 similar to that of the above-described embodiment and a stainless steel continuous with the nozzle portion 5 ( 6 is made of SUS304) and has a conical guide cylinder 6 as shown in FIG.
In mm, the diameter of the ejection hole 5a consisting of the upper hole and the lower hole is 1.0
The diameter of the opening of the guide cylinder 6 is 125 mm, and the vertical height of the guide cylinder 6 is about 350 mm.
The thing of mm was used.

【0015】そして、上記構成からなる製造例1のスノ
ー状ドライアイスの製造器7について、そのノズル部5
の噴出孔5aより、液温約−20℃の液化炭酸ガスを約
20kg/cm2(ゲージ圧)の圧力で供給した際の、
ドライアイスの生成収率、及び、上記ガイド筒体6の開
口部端を床より鉛直下向きに40cmの高さに設置し、
10秒間製造器7よりスノー状ドライアイスを流出させ
た際のドライアイスの撒布状態について観察した。そし
て、上記製造例1と比較すべく、従来例のスノー状ドラ
イアイスの製造器についても、上記と同様の試験を行な
った。従来例のスノー状ドライアイスの製造器は、前記
図6に示す従来の製造器10と同様な形状でノズル部1
1に上記製造例1と同様の内径10mm、噴出孔の孔径
0.8mmのものを使用し、前記ノズル部11に連設さ
れるガイド筒体12には、上記製造例1と同様の寸法及
び素材とからなるものを使用した。
The nozzle portion 5 of the snow-like dry ice producing device 7 of Production Example 1 having the above-described structure is provided.
When a liquefied carbon dioxide gas having a liquid temperature of about -20 ° C. was supplied at a pressure of about 20 kg / cm 2 (gauge pressure) from the ejection holes 5a of
The production yield of dry ice and the opening end of the guide cylinder 6 are set vertically downward from the floor at a height of 40 cm,
The sprinkling state of the dry ice when the snow-like dry ice was caused to flow out from the manufacturing device 7 for 10 seconds was observed. Then, in order to compare with the above-mentioned Production Example 1, the same test as described above was performed for the snow-like dry ice producing device of the conventional example. The snow-like dry ice manufacturing device of the conventional example has the same shape as the conventional manufacturing device 10 shown in FIG.
1 has the same inner diameter of 10 mm and the diameter of the ejection hole of 0.8 mm as in Production Example 1, and the guide cylinder 12 connected to the nozzle portion 11 has the same dimensions and dimensions as in Production Example 1 above. I used the one consisting of the material.

【0016】上記試験の結果、従来例のスノー状ドライ
アイスの製造器10においては、前述したようにそのド
ライアイスの生成収率は35%と低く、ドライアイスの
撒布状態は外径350mm、内径230mmのドーナツ
状であった。一方、上記構成からなる本製造例1のスノ
ー状ドライアイスの製造器7におけるドライアイスの生
成収率は38%と上記従来例に比較してやや高くなり、
その撒布状態は、外径280mmの円盤状内に集中的
に、かつ均一に堆積されたものであった。
As a result of the above test, in the snow-like dry ice producing apparatus 10 of the conventional example, as described above, the production yield of the dry ice is as low as 35%, and the sprinkling state of the dry ice is 350 mm in outer diameter and inner diameter. It was a 230 mm donut shape. On the other hand, the production yield of dry ice in the snow-like dry ice producing device 7 of the present Production Example 1 having the above configuration is 38%, which is slightly higher than that of the above-mentioned conventional example.
The sprinkled state was such that it was concentrated and uniformly deposited in a disk shape having an outer diameter of 280 mm.

【0017】さらに、上記製造例1のガイド筒体6を図
1に示すような円筒状のものに代えてその断面が開口部
と同一の形状で同面積を有するものとした上記実施例と
同様の形状からなるスノー状ドライアイスの製造器につ
いて、そのノズル部の内径が10mmで上孔及び下孔の
孔径が0.8mmのものを使用した製造例2と、前記ノ
ズル部の内径が10mmでその上孔及び下孔の孔径が
1.0mmのものを使用した製造例3のものを作成し、
更に、比較例としてガイド筒体は前記製造例2及び3と
同様なものを使用し、ノズル部に図7、図8に示すよう
な内径が10mm、噴出孔の孔径が0.8mmのものを
使用した従来例2を製作して、以下のような試験を行な
った。上記製造例2及び製造例3そして従来例2の製造
器のノズル部の噴出孔より、液温約−20℃の液化炭酸
ガスを約20kg/cm2(ゲージ圧)の圧力で供給し
た際の、ドライアイスの生成速度及び生成収率、そして
上記それぞれの製造器のガイド筒体の開口部を床より鉛
直下向きに40cmの高さに設置しスノー状ドライアイ
スを流出させた際のドライアイスの撒布状態について観
察した。結果を表1に示す
Further, the guide cylinder body 6 of Production Example 1 is replaced with a cylindrical shape as shown in FIG. 1 and its cross section has the same shape as the opening and has the same area as the above embodiment. In the manufacturing device for snow-like dry ice having the shape of No. 2, the inner diameter of the nozzle part is 10 mm, and the upper and lower holes are 0.8 mm in diameter, and the inner diameter of the nozzle part is 10 mm. The thing of the manufacture example 3 which uses the thing whose hole diameter of the upper hole and the lower hole is 1.0 mm is created,
Further, as a comparative example, the same guide cylindrical body as that used in the above-mentioned manufacturing examples 2 and 3 was used, and the nozzle portion had an inner diameter of 10 mm and an ejection hole diameter of 0.8 mm as shown in FIGS. The conventional example 2 used was manufactured and the following tests were conducted. When liquefied carbon dioxide gas having a liquid temperature of about -20 ° C. was supplied at a pressure of about 20 kg / cm 2 (gauge pressure) from the ejection holes of the nozzles of the above-mentioned Manufacturing Examples 2 and 3 and Conventional Example 2. The production rate and yield of dry ice, and the dry ice when the snow-like dry ice was made to flow out by installing the opening of the guide cylinder of each of the above-mentioned manufacturing machines vertically downward from the floor at a height of 40 cm. The sprinkling state was observed. The results are shown in Table 1.

【0018】[0018]

【表1】 [Table 1]

【0019】表1から明らかなように、上記製造例2及
び製造例3のスノー状ドライアイスの製造器について
は、従来例2の製造器に比較して、ドライアイスの生成
速度が著しく速く、生成収率についても従来例2と比較
すると著しく向上していることが判る。そして更に、本
発明における製造例2及び製造例3の製造器から供給さ
れるスノー状ドライアイスは、製造器のガイド筒体の開
口部より40cm程度離された面に対しても、ドライア
イスの撒布状態が外径210mmの円状で撒布され、従
来例2のようにドーナツ状とならず集中的に、そして均
一に撒布ができるものであることが判る。
As is clear from Table 1, the snow-like dry ice producing apparatuses of Production Example 2 and Production Example 3 had a significantly higher dry ice production rate than the production apparatus of Conventional Example 2. It can be seen that the production yield is also significantly improved as compared with Conventional Example 2. Furthermore, the snow-like dry ice supplied from the manufacturing device of the manufacturing example 2 and the manufacturing example 3 of the present invention has a dry ice content of 40 cm from the opening of the guide cylinder of the manufacturing device. It can be seen that the sprinkling state is sprinkled in a circular shape having an outer diameter of 210 mm, and it can be sprinkled in a concentrated and uniform manner without forming a donut shape as in Conventional Example 2.

【0020】[0020]

【発明の効果】以上説明したように、請求項1に記載の
スノー状ドライアイスの製造器は、上孔と、それよりノ
ズル部の先端側に設けられた下孔とを有し、かつ前記上
孔と下孔の開口方向をそれぞれ傾斜させて異なる方向に
設けたことにより、前記上孔から噴出した気体状の炭酸
ガスとスノー状のドライアイスとの混合流がガイド筒体
内を旋回しつつ噴出し、下孔から噴出した旋回しつつ噴
出する混合流と衝突しつつ前記ガイド筒体開口部より放
出させるものであるので、前記ガイド筒体より放出され
るスノー状ドライアイスは散乱せずに、その前方の撒布
面に集中的に、そして均一に撒布することができ、例え
前記製造器のガイド筒体開口部とドライアイス撒布面と
が離れていても、前記撒布面にドライアイスを集中的
に、そして均一に撒布することができるものである。
As described above, the snow-like dry ice producing device according to the first aspect has the upper hole and the lower hole provided on the tip side of the nozzle portion with respect to the upper hole. Since the opening directions of the upper hole and the lower hole are inclined and provided in different directions, the mixed flow of the gaseous carbon dioxide gas and the snow-like dry ice ejected from the upper hole swirls in the guide cylinder. Since it is to be ejected from the guide cylinder opening while colliding with the swirling and jetted mixed flow ejected from the lower hole, the snow-like dry ice released from the guide cylinder does not scatter. , It can be sprayed intensively and evenly on the sprinkling surface in front of it, and even if the guide cylinder opening of the manufacturing device and the dry ice sprinkling surface are separated, the dry ice is concentrated on the sprinkling surface. And evenly It is those that can be.

【0021】請求項2に記載のスノー状ドライアイスの
製造器は、上述した請求項1に記載のスノー状ドライア
イスの製造器におけるノズル部の噴出孔の上孔の開口方
向が、ノズル部の液化ガス供給路法線方向よりノズル先
端方向に45度から60度の範囲内で設けられ、下孔が
前記供給路法線方向よりノズル先端方向に30度以上
で、かつ前記上孔の傾斜角度以下に設けられてなるもの
であり、上記請求項1と同様の効果を、より効果的に奏
することができるものである。
The snow-like dry ice producing device according to a second aspect of the present invention is the snow-like dry ice producing device according to the above-mentioned first aspect, in which the opening direction of the upper holes of the nozzle holes is It is provided within the range of 45 to 60 degrees in the nozzle tip direction from the liquefied gas supply path normal direction, the lower hole is 30 degrees or more in the nozzle tip direction from the supply path normal direction, and the inclination angle of the upper hole It is provided below, and it is possible to more effectively achieve the same effect as that of the first aspect.

【0022】請求項3に記載のスノー状ドライアイスの
製造器は、請求項1または請求項2に記載のスノー状ド
ライアイスの製造器におけるガイド筒体の断面が、その
開口部とほぼ同一面積及び形状を有するものであり、上
記請求項1と同様な効果を奏することができるととも
に、ガイド筒体の形状を円錐状の裾広がりとせず、ほぼ
断面同一面積の開口体とすることにより、スノー状ドラ
イアイスの生成収率の向上を図ることができ、結果的に
液化炭酸ガス使用量の削減を図ることが可能である。そ
して、例えばノズル部の噴出孔の孔径を大きくし、液化
炭酸ガスの供給量を多くしても、スノー状ドライアイス
の生成効率を維持することができる。
According to a third aspect of the present invention, in the snow-like dry ice producing device, the cross section of the guide cylinder in the snow-like dry ice producing device according to the first or second aspect has substantially the same area as the opening. And the shape, the same effects as those of claim 1 can be achieved, and the shape of the guide tube body does not have a conical skirt spread but is an opening body having substantially the same cross-sectional area. The production yield of dry ice can be improved, and as a result, the amount of liquefied carbon dioxide used can be reduced. Then, even if, for example, the diameter of the ejection hole of the nozzle portion is increased and the amount of liquefied carbon dioxide gas supplied is increased, it is possible to maintain the generation efficiency of snow-like dry ice.

【0023】従って、本発明のスノー状ドライアイスの
製造器においては、スノー状ドライアイスの生成収率の
向上を図るとともに、その供給を集中的にかつ均一にで
きることから、食品の冷凍や冷凍輸送等において効果的
な冷却手段として使用できるものである。
Therefore, in the snow-like dry ice producing apparatus of the present invention, the production yield of the snow-like dry ice can be improved, and the supply thereof can be concentrated and uniform, so that foods can be frozen or frozen. Etc. can be used as an effective cooling means.

【図面の簡単な説明】[Brief description of drawings]

【図1】図1は、本発明における実施例のスノー状ドラ
イアイスの製造器の概略構成を示す断面図である。
FIG. 1 is a cross-sectional view showing a schematic configuration of a snow-like dry ice maker according to an embodiment of the present invention.

【図2】図2は、図1のノズル部の拡大構成図である。FIG. 2 is an enlarged configuration diagram of a nozzle unit shown in FIG.

【図3】図3は、図2のA−A’面の断面図である。FIG. 3 is a cross-sectional view taken along the line A-A ′ of FIG.

【図4】図4は、図2のB−B’面の断面図である。FIG. 4 is a cross-sectional view taken along the line B-B ′ of FIG.

【図5】図5は、本発明における製造例1の概略構成を
示す断面図である。
FIG. 5 is a cross-sectional view showing a schematic configuration of Production Example 1 of the present invention.

【図6】図6は、従来のスノー状ドライアイスの製造器
における概略構成を示す断面図である。
FIG. 6 is a cross-sectional view showing a schematic configuration of a conventional snow-like dry ice producing device.

【図7】図7は、図6のノズル部の概略構成を示す拡大
断面図である。
FIG. 7 is an enlarged cross-sectional view showing a schematic configuration of the nozzle unit of FIG.

【図8】図8は、図6のノズル部の正面図である。FIG. 8 is a front view of the nozzle portion of FIG.

【符号の説明】[Explanation of symbols]

1、7、10…スノー状ドライアイスの製造器 2、
5、11…ノズル部 2a…上孔 2b…下孔 3、6、12…ガイド筒体
5a、11b…噴出孔 11a…液化炭酸ガス供給路
1,7,10 ... Snow-like dry ice maker 2.
5, 11 ... Nozzle part 2a ... Upper hole 2b ... Lower hole 3, 6, 12 ... Guide cylinder
5a, 11b ... Jet holes 11a ... Liquefied carbon dioxide gas supply passage

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 液化炭酸ガスを供給する供給路と噴出孔
を有するノズル部と、前記ノズル部を囲んでこれに連設
されたガイド筒体からなるスノー状ドライアイスの製造
器であって、 前記ノズル部が、ノズル部の液化炭酸ガス供給側に設け
られた上孔と、前記上孔よりノズル部の先端側に設けら
れた下孔とを有してなり、かつ前記上孔と下孔の開口方
向をそれぞれノズルの先端側に向けて傾斜させるととも
に、相反する方向にガスを噴出するように形成したこと
を特徴とするスノー状ドライアイスの製造器。
1. A snow-like dry ice producing device comprising a nozzle portion having a supply passage for supplying liquefied carbon dioxide and an ejection hole, and a guide cylinder surrounding the nozzle portion and connected to the nozzle portion. The nozzle portion has an upper hole provided on the liquefied carbon dioxide gas supply side of the nozzle portion and a lower hole provided on the tip side of the nozzle portion with respect to the upper hole, and the upper hole and the lower hole are provided. The snow-like dry ice producing device is characterized in that the opening directions of the above are respectively inclined toward the tip side of the nozzle and the gas is ejected in opposite directions.
【請求項2】 請求項1に記載のスノー状ドライアイス
の製造器におけるノズル部の上孔の開口方向が、ノズル
部の長さ方向に対する法線方向よりノズル先端方向に4
5度から60度の範囲内で設けられ、下孔の開口方向が
前記法線方向よりノズル先端方向に30度以上で、かつ
前記上孔の傾斜角度以下にされてなることを特徴とする
スノー状ドライアイスの製造器。
2. The snow hole dry ice producing device according to claim 1, wherein the opening direction of the upper hole of the nozzle portion is 4 from the normal to the lengthwise direction of the nozzle portion toward the nozzle tip end.
The snow is provided within a range of 5 degrees to 60 degrees, and the opening direction of the lower hole is 30 degrees or more in the nozzle tip direction from the normal direction and less than or equal to the inclination angle of the upper hole. Dry ice making machine.
【請求項3】 請求項1または請求項2に記載のスノー
状ドライアイスの製造器におけるガイド筒体が、ほぼ同
一内径の筒状にされてなることを特徴とするスノー状ド
ライアイス製造器。
3. The snow-like dry ice producing device according to claim 1, wherein the guide tubular body in the snow-like dry ice producing device is formed into a tubular shape having substantially the same inner diameter.
JP05041523A 1993-03-02 1993-03-02 Snow dry ice making machine Expired - Lifetime JP3140597B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP05041523A JP3140597B2 (en) 1993-03-02 1993-03-02 Snow dry ice making machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP05041523A JP3140597B2 (en) 1993-03-02 1993-03-02 Snow dry ice making machine

Publications (2)

Publication Number Publication Date
JPH06257937A true JPH06257937A (en) 1994-09-16
JP3140597B2 JP3140597B2 (en) 2001-03-05

Family

ID=12610752

Family Applications (1)

Application Number Title Priority Date Filing Date
JP05041523A Expired - Lifetime JP3140597B2 (en) 1993-03-02 1993-03-02 Snow dry ice making machine

Country Status (1)

Country Link
JP (1) JP3140597B2 (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007012636A1 (en) * 2005-07-27 2007-02-01 Messer Group Gmbh Device and method for surface cooling of objects
JP2008001576A (en) * 2006-06-26 2008-01-10 Iwatani Internatl Corp Apparatus for generating dry-ice snow
JP2009504875A (en) * 2005-08-17 2009-02-05 ガストリートメント サービシーズ ビー.ブイ. Method and apparatus for purification of a methane-rich gas stream
JP2013541688A (en) * 2010-10-21 2013-11-14 レール・リキード−ソシエテ・アノニム・プール・レテュード・エ・レクスプロワタシオン・デ・プロセデ・ジョルジュ・クロード An apparatus for manufacturing a cooling pack comprising a package made of a porous material and containing a large amount of dry ice that is wrapped and kept in the package
DE102013105135A1 (en) * 2013-05-17 2014-11-20 enotech AG Valve nozzle unit for the production of dry ice

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007012636A1 (en) * 2005-07-27 2007-02-01 Messer Group Gmbh Device and method for surface cooling of objects
JP2009504875A (en) * 2005-08-17 2009-02-05 ガストリートメント サービシーズ ビー.ブイ. Method and apparatus for purification of a methane-rich gas stream
JP2008001576A (en) * 2006-06-26 2008-01-10 Iwatani Internatl Corp Apparatus for generating dry-ice snow
JP2013541688A (en) * 2010-10-21 2013-11-14 レール・リキード−ソシエテ・アノニム・プール・レテュード・エ・レクスプロワタシオン・デ・プロセデ・ジョルジュ・クロード An apparatus for manufacturing a cooling pack comprising a package made of a porous material and containing a large amount of dry ice that is wrapped and kept in the package
DE102013105135A1 (en) * 2013-05-17 2014-11-20 enotech AG Valve nozzle unit for the production of dry ice

Also Published As

Publication number Publication date
JP3140597B2 (en) 2001-03-05

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