JP4707342B2 - Substance atomization equipment - Google Patents

Substance atomization equipment Download PDF

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JP4707342B2
JP4707342B2 JP2004211597A JP2004211597A JP4707342B2 JP 4707342 B2 JP4707342 B2 JP 4707342B2 JP 2004211597 A JP2004211597 A JP 2004211597A JP 2004211597 A JP2004211597 A JP 2004211597A JP 4707342 B2 JP4707342 B2 JP 4707342B2
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inlet cavity
inner cylinder
closed space
wall
orifice group
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JP2006026583A (en
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勝守 湯澤
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Tokai Corp
Nanomizer Inc
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Nanomizer Inc
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本発明は、セラミックス、金属または薬品、食品等の業界で取り扱う各種物質を微粒化する装置に関し、特に、乳化、分散、微粉砕、破砕またはその他の状態で物質を微粒化する装置の改良に関するものである。   The present invention relates to an apparatus for atomizing various materials handled in the industry such as ceramics, metal or chemicals, and foods, and more particularly to an improvement of an apparatus for atomizing substances in an emulsified, dispersed, pulverized, crushed or other state. It is.

物質をミクロン以下のナノレベルに超微粒化すると、物質の電気的、化学的に特異な機能が発揮されることが知られており、このため、物質を超微粒化するものとして、各種のミル装置が開発されてきた。   It is known that when a substance is micronized to the nanometer level below a micron, the electrical and chemical specific functions of the substance are exerted. Devices have been developed.

しかしながら、ミル装置を主体とする微粒化装置は、大掛かりな装置でスペースを大きくとり、装置のための工事が必要であり、処理能力が小さく、高価であるという問題があったので、例えば特許文献1に記載されているような、ミル装置を使用せず、小型の設備で済み、処理能力が大きく、低価格な微粒化装置が提案されている。   However, since the atomization apparatus mainly composed of a mill apparatus has a problem that it takes a large space and requires a large space, requires work for the apparatus, has a small processing capacity, and is expensive. 1 has been proposed which does not use a mill device, requires only a small facility, has a large processing capacity, and is inexpensive.

この微粒化装置は、入口管および出口管を有する密閉状の容器と、この容器中に浮遊状態にて固定された立方体と、この立方体の表面から中心に向かって穿設され中心で交わる複数の孔と、これら孔のうちの特定の孔と上記出口管とを連通する導管とからなり、物質を含む液体に圧力を掛け上記入口管から導入することにより、上記物質が液体とともに上記立方体の表面の複数の孔から流入し、その中心にて合流し、その間の物質が互いに衝突し、かつ壁に衝突することにより、物質が上記特定の孔および導管を介して上記出口管から微粒化されて取り出されるように構成されている。   The atomization apparatus includes a sealed container having an inlet pipe and an outlet pipe, a cube fixed in a floating state in the container, and a plurality of holes that are drilled from the surface of the cube toward the center and intersect at the center. A hole and a conduit communicating with the specific one of the holes and the outlet pipe. By applying pressure to the liquid containing the substance and introducing the liquid from the inlet pipe, the substance is brought together with the liquid into the surface of the cube. The material is atomized from the outlet pipe through the specific holes and conduits by influxing from the plurality of holes, merging at the center, and the substances in between collide with each other and collide with the wall. It is configured to be removed.

図5〜図10は、特許文献1に記載された物質の微粒化装置と同様の原理で動作する従来の微粒化装置の一例を示す図で、図5は平面図、図6は図5の6−6線に沿った断面図、図7はその内筒の正面図、図8および図9はそれぞれ、図6の8−8線および9−9線に沿った断面図、図10は図6の下方部分を軸線の周りで45度転回して示す模式的端面図である。   5 to 10 are diagrams showing an example of a conventional atomization apparatus that operates on the same principle as the substance atomization apparatus described in Patent Document 1, FIG. 5 is a plan view, and FIG. FIG. 7 is a front view of the inner cylinder, FIGS. 8 and 9 are sectional views taken along lines 8-8 and 9-9 in FIG. 6, respectively, and FIG. 6 is a schematic end view showing a lower portion of 6 rotated 45 degrees around an axis. FIG.

この微粒化装置10は、図7に示すような外観を有する円筒体からなる内筒2と、図6に示すように、内筒2の外周に同軸的に嵌着された円筒体からなる外筒3とによって構成され、内筒2は、その一方の端面2aに開口する漏斗状の入口開口4と、この入口開口4の下端から軸線Lに沿って内筒2の長さ方向のほぼ中間位置まで内部に延びる入口キャビティ5と、内筒2の他方の端面2bに開口する出口開口6に連通して軸線Lに沿って内部に延びる、入口キャビティ5よりも小径の出口キャビティ7とを同軸的に備え、入口キャビティ5と出口キャビティ6とは仕切壁8によって互いに隔離されている。仕切壁8の入口キャビティ5側の壁面8aは軸線Lに対してほぼ直交する平面を形成している。   The atomization apparatus 10 includes an inner cylinder 2 having a cylindrical body having an appearance as shown in FIG. 7 and an outer cylinder having a cylindrical body coaxially fitted to the outer periphery of the inner cylinder 2 as shown in FIG. The inner cylinder 2 includes a funnel-shaped inlet opening 4 that opens on one end surface 2a thereof, and a substantially intermediate portion in the length direction of the inner cylinder 2 along the axis L from the lower end of the inlet opening 4. An inlet cavity 5 extending inward to a position and an outlet cavity 7 having a smaller diameter than the inlet cavity 5, which communicates with an outlet opening 6 opened on the other end surface 2 b of the inner cylinder 2 and extends inward along the axis L, are coaxial. The inlet cavity 5 and the outlet cavity 6 are separated from each other by a partition wall 8. A wall surface 8 a on the inlet cavity 5 side of the partition wall 8 forms a plane substantially orthogonal to the axis L.

内筒2の外壁面には、入口開口4を備えた大径の入口フランジ部2cと、入口キャビティ5、仕切壁8および出口キャビティ7を内蔵した小径の胴部2dと、フランジ部2cと胴部2dとの間に形成された両者の中間の外径を有する中間部2eと、上記中間部2eとほぼ同径の出口フランジ部2fとが段設されている。そして、外筒3の両端部が上記中間部2eと出口フランジ部2fとにそれぞれ嵌着されていることにより、内筒2の胴部2dの外壁面と外筒3の内壁面3aとの間には円筒状の閉空間9が形成されている。   On the outer wall surface of the inner cylinder 2, a large-diameter inlet flange portion 2c having an inlet opening 4, a small-diameter barrel portion 2d incorporating an inlet cavity 5, a partition wall 8 and an outlet cavity 7, a flange portion 2c and a trunk portion An intermediate portion 2e formed between the portion 2d and having an intermediate outer diameter between the two portions and an outlet flange portion 2f having substantially the same diameter as the intermediate portion 2e are provided in a stepped manner. Then, both end portions of the outer cylinder 3 are fitted into the intermediate portion 2e and the outlet flange portion 2f, respectively, so that the space between the outer wall surface of the body portion 2d of the inner tube 2 and the inner wall surface 3a of the outer tube 3 is reduced. A cylindrical closed space 9 is formed.

上記胴部2dの入口キャビティ5を内蔵する上方部分には、図8から特に明らかなように、胴部2dの周壁を放射方向に貫通して入口キャビティ5を上記閉空間9に連通させる合計12個のオリフィス11(第1オリフィス群)が形成されている。これらオリフィス11は、3個ずつ軸線Lに平行な方向に整列して4列のオリフィス列を構成し、かつこれらオリフィス列は、周方向にほぼ90度の角度間隔を隔てて配列されている。   As is apparent from FIG. 8, the upper portion of the body portion 2d containing the inlet cavity 5 passes through the peripheral wall of the body portion 2d in the radial direction and communicates the inlet cavity 5 with the closed space 9 in total. A plurality of orifices 11 (first orifice group) are formed. These orifices 11 are aligned in a direction parallel to the axis L three by three to form four orifice rows, and these orifice rows are arranged at an angular interval of approximately 90 degrees in the circumferential direction.

また、上記胴部2dの出口キャビティ7を内蔵する下方部分には、胴部2dの周壁を放射方向に貫通して上記閉空間9を出口キャビティ7に連通させる、上記オリフィス11よりも小径の合計16個のオリフィス12(第2オリフィス群)が形成されている。これらオリフィス12は、4個ずつ軸線Lに平行な方向に整列して4列のオリフィス列を構成し、かつこれらオリフィス列も、図9から特に明らかなように、周方向にほぼ90度の列間角度間隔を隔てて配列されているが、第1オリフィス群を構成するオリフィス11の列に対しては、周方向にほぼ45度偏位した位置に形成されている。   The lower portion of the body portion 2d containing the exit cavity 7 has a smaller diameter than the orifice 11 and penetrates the peripheral wall of the body portion 2d in the radial direction to allow the closed space 9 to communicate with the exit cavity 7. Sixteen orifices 12 (second orifice group) are formed. These orifices 12 are aligned in a direction parallel to the axis L by four to form four orifice rows, and these orifice rows are also substantially 90 ° rows in the circumferential direction, as clearly shown in FIG. Although they are arranged at an angular interval, they are formed at positions displaced by approximately 45 degrees in the circumferential direction with respect to the row of orifices 11 constituting the first orifice group.

この微粒化装置10の作用を、図6における仕切壁8から下方の部分を軸線Lの周りで45度転回して示す模式的端面図である図10によって説明すると、外部から入口開口4内に導入された、ポンプで圧力を加えられた、微粒化される物質の粒子を含む液体からなる原料は、入口開口4から入口キャビティ5内に流入し、仕切壁8の入口キャビティ5側の壁面8aに衝突し、さらに四方のオリフィス11を通って閉空間9に流出し、その間に物質が互いに衝突し、かつ仕切壁8の壁面8および外筒3の内壁面3aに衝突することにより、物質が微粒化されるとともに微粒子の塊がほぐされる。そして閉空間9に流出した原料は、さらにオリフィス12を通って四方から出口キャビティ7内に流入し、その際に物質が互いに衝突することによってさらに微粒化されて出口開口6から外部へ流出することになる。
特許第2527297号公報
The operation of the atomizing device 10 will be described with reference to FIG. 10 which is a schematic end view showing the portion below the partition wall 8 in FIG. 6 rotated around the axis L by 45 degrees. The introduced raw material made of a liquid containing particles of the substance to be atomized and pressurized by a pump flows into the inlet cavity 5 from the inlet opening 4, and the wall surface 8 a on the inlet cavity 5 side of the partition wall 8. , Further flows out into the closed space 9 through the four orifices 11, the substances collide with each other in the meantime, and collide with the wall surface 8 of the partition wall 8 and the inner wall surface 3 a of the outer cylinder 3. As it is atomized, the lump of fine particles is loosened. The raw material that has flowed out into the closed space 9 further flows into the outlet cavity 7 from four directions through the orifice 12, and when the materials collide with each other, the particles are further atomized and flow out from the outlet opening 6. become.
Japanese Patent No. 2527297

上述の微粒化装置10は、簡単な構成ながら優れた処理機能を有するものであるが、仕切壁8の入口キャビティ5側の壁面8aが軸線Lに対してほぼ直交する平面であるために、この壁面8aに垂直に衝突した粘度の高い物質がこの壁面8aに付着して滞留し、この滞留物が時間の経過とともに凝固して、図11に示すような堆積物Dを生じる。したがって、仕切壁8の壁面8aが物質を衝突させて微粒化したり、微粒子の塊をほぐしたりする壁面としての機能を失うのみでなく、堆積物Dがその近傍のオリフィス11をも塞いでしまうという問題があった。   The above-described atomizing apparatus 10 has an excellent processing function with a simple configuration. However, since the wall surface 8a on the inlet cavity 5 side of the partition wall 8 is a plane substantially orthogonal to the axis L, this A high-viscosity substance that collides perpendicularly to the wall surface 8a adheres to and stays on the wall surface 8a, and the accumulated material solidifies with time, resulting in a deposit D as shown in FIG. Therefore, the wall surface 8a of the partition wall 8 not only loses its function as a wall surface that causes a substance to collide and atomize or loosen a lump of fine particles, but also the deposit D blocks the orifice 11 in the vicinity thereof. There was a problem.

そこで本発明は、この種の微粒化装置において、仕切壁の入口キャビティ側の壁面に物質が滞留するのを防止することを課題とするものである。   Therefore, an object of the present invention is to prevent substances from staying on the wall surface of the partition wall on the inlet cavity side in this kind of atomization apparatus.

本発明は、仕切壁によって互いに隔離されて軸線に沿って延びる入口キャビティおよび出口キャビティを備えた円筒状の内筒と、この内筒との間に円筒状の閉空間を形成する態様で内筒の外側に嵌着された外筒と、入口キャビティから内筒の壁を放射方向に貫通して入口キャビティを上記閉空間に連通させる第1オリフィス群と、出口キャビティから内筒の壁を放射方向に貫通して上記閉空間を出口キャビティに連通させる第2オリフィス群とを備え、外部から入口キャビティに流入する、圧力を掛けられた、微粒化される物質の粒子を含む液体が、上記仕切壁の入口キャビティ側の壁面に衝突し、かつ第1オリフィス群を通じて上記閉空間に流出し、この閉空間から第2オリフィス群を通じて出口キャビティ内に流入し、この出口キャビティから外部へ流出するように構成されてなる物質の微粒化装置において、上記仕切壁の入口キャビティ側の壁面に突起を設けたことを特徴とするものである。   The present invention relates to a cylindrical inner cylinder having an inlet cavity and an outlet cavity that are separated from each other by a partition wall and extend along an axis, and a cylindrical closed space is formed between the inner cylinder and the inner cylinder. An outer cylinder fitted on the outside of the inner cylinder, a first orifice group that radially penetrates the wall of the inner cylinder from the inlet cavity and communicates the inlet cavity with the closed space, and a radial wall of the inner cylinder from the outlet cavity A second orifice group penetrating through the closed space and communicating the closed space with the outlet cavity, and a liquid containing particles of a substance to be atomized under pressure flowing into the inlet cavity from the outside is provided in the partition wall. Colliding with the wall on the inlet cavity side and flowing out into the closed space through the first orifice group, flowing into the outlet cavity from the closed space through the second orifice group, In atomization device configured comprising material to flow out to the outside from and is characterized in that a projection on the inlet cavity side wall of the partition wall.

この突起は、入口キャビティ側に突出する、上記内筒と同軸的な円錐面を形成していることが好ましく、円錐部を備えたプラグを上記仕切壁に埋め込むことにより上記円錐面を形成することがさらに好ましい。このプラグは、軸部と、この軸部よりも大径でかつ入口キャビティ内に挿入可能な外径を有して軸部の一端に同軸的に連接された円錐部とを備えており、仕切壁に同軸的に形成された孔に上記軸部を入口キャビティ側から埋め込ませた態様で仕切壁に設けられ、上記円錐部が上記突起を形成する。   The protrusion preferably forms a conical surface that protrudes toward the inlet cavity and is coaxial with the inner cylinder. The conical surface is formed by embedding a plug having a conical portion in the partition wall. Is more preferable. The plug includes a shaft portion, and a conical portion having a larger diameter than the shaft portion and having an outer diameter that can be inserted into the inlet cavity and coaxially connected to one end of the shaft portion. The shaft portion is provided in the partition wall in such a manner that the shaft portion is embedded from the inlet cavity side in a hole formed coaxially in the wall, and the conical portion forms the protrusion.

本発明の一実施の形態によれば、上記第1オリフィス群が、内筒の周方向に互いにほぼ90度の列間角度間隔を隔てて軸線と平行な方向に入口キャビティの周壁面上に整列する4列のオリフィス列で構成され、上記第2オリフィス群が、内筒の周方向に互いにほぼ90度の列間角度間隔を隔てて、かつ上記第1オリフィス群の各列に対して周方向にほぼ45度偏位された関係で、軸線と平行な方向に出口キャビティの周壁面上に整列する4列のオリフィス列で構成される。   According to an embodiment of the present invention, the first orifice group is aligned on the peripheral wall surface of the inlet cavity in a direction parallel to the axis at an angular interval of approximately 90 degrees from each other in the circumferential direction of the inner cylinder. And the second orifice group is circumferentially spaced apart from each other by approximately 90 degrees in the circumferential direction of the inner cylinder with respect to each row of the first orifice group. And four orifice rows aligned on the peripheral wall surface of the outlet cavity in a direction parallel to the axis.

上記第2オリフィス群を構成するオリフィスは、上記第1オリフィス群を構成するオリフィスよりも小径で、かつ多数であることが好ましい。   It is preferable that the orifices constituting the second orifice group have a smaller diameter and a larger number than the orifices constituting the first orifice group.

本発明によれば、上記仕切壁の入口キャビティ側の壁面に突起を設けたことにより、特にこの突起が、上記入口キャビティ側に突出する内筒と同軸的な円錐面を形成していることにより、入口キャビティに」流入した物質の粒子が仕切壁の壁面に対して斜めに衝突して放射方向に変向されるから、物質が仕切壁の壁面に付着滞留せず、したがって仕切壁の壁面上に凝固物が堆積するのを防止することができる。   According to the present invention, by providing a protrusion on the wall surface of the partition wall on the inlet cavity side, in particular, the protrusion forms a conical surface coaxial with the inner cylinder protruding to the inlet cavity side. Since the particles of the substance that has flowed into the inlet cavity collide obliquely against the wall surface of the partition wall and are diverted in the radial direction, the substance does not adhere to and stay on the wall surface of the partition wall, so It is possible to prevent the solidified matter from being deposited on the surface.

また、上記円錐面を一体に備えた内筒を機械加工により内部に形成することは困難であるが、円錐部を備えた別体のプラグを上記仕切壁に埋め込むことにより、仕切壁の壁面を容易に円錐面とすることができる。   In addition, it is difficult to machine the inner cylinder having the conical surface integrally by machining, but by embedding a separate plug having a conical portion in the partition wall, the wall surface of the partition wall can be reduced. It can easily be a conical surface.

以下、本発明による物質の微粒化装置について、図1〜図4を参照して説明する。   Hereinafter, the apparatus for atomizing a substance according to the present invention will be described with reference to FIGS.

図1は平面図、図2および図3はそれぞれ、図1の2−2線および3−3線に沿った断面図、図4は図2の下方部分を図3の下方部分に置き換えた、すなわち軸線の周りで45度転回して示す、図10に対応する模式的端面図である。   1 is a plan view, FIGS. 2 and 3 are cross-sectional views taken along lines 2-2 and 3-3 in FIG. 1, respectively, and FIG. 4 is a lower portion of FIG. 2 replaced with a lower portion of FIG. That is, it is a schematic end view corresponding to FIG.

図5〜図11を参照して説明した従来の微粒化装置10における仕切壁8の入口キャビティ側の壁面8aが、軸線Lにほぼ直交する平坦な面を形成しているのに対して、本実施の形態の物質の微粒化装置1は、その仕切壁8の入口キャビティ側の壁面が、軸線と同軸な円錐面16aを形成していることを特徴とするものである。   The wall 8a on the inlet cavity side of the partition wall 8 in the conventional atomization apparatus 10 described with reference to FIGS. 5 to 11 forms a flat surface substantially perpendicular to the axis L, whereas The substance atomization apparatus 1 according to the embodiment is characterized in that the wall surface on the inlet cavity side of the partition wall 8 forms a conical surface 16a coaxial with the axis.

このため、本実施の形態においては、図3に示すように、仕切壁8の中心に、入口キャビティ5と出口キャビティ7とを連通する軸孔8bが形成されているとともに、この軸孔8bにプラグPが埋め込まれている。   For this reason, in the present embodiment, as shown in FIG. 3, an axial hole 8b that connects the inlet cavity 5 and the outlet cavity 7 is formed at the center of the partition wall 8, and the axial hole 8b Plug P is embedded.

このプラグPは、仕切壁8の軸孔8bに埋め込まれる軸部15と、この軸部15よりも大径でかつ入口キャビティ5の内径よりも若干小径の外径を有して軸部15の一端に一体に、かつ同軸的に連接された円錐部16とからなり、図3に示すように、入口キャビティ5側から軸部15を仕切壁8の軸孔8bに埋め込むことにより、図2に示すように、円錐部16が備えている円錐面16aによって、仕切壁8の入口キャビティ5側の壁面が形成される。   The plug P has a shaft portion 15 embedded in the shaft hole 8 b of the partition wall 8, an outer diameter that is larger than the shaft portion 15 and slightly smaller than the inner diameter of the inlet cavity 5. The conical portion 16 is integrally and coaxially connected to one end. As shown in FIG. 3, the shaft portion 15 is embedded in the shaft hole 8b of the partition wall 8 from the inlet cavity 5 side as shown in FIG. As shown, a wall surface of the partition wall 8 on the inlet cavity 5 side is formed by the conical surface 16 a provided in the conical portion 16.

本実施の形態の微粒化装置1は、その仕切壁8にプラグPが埋め込まれて、入口キャビティ5側の壁面が、入口キャビティ5側に突出する円錐面16aとされていることを除いては、図5〜図11を参照して説明した従来の微粒化装置10と同様の構成を有するので、図1〜図4における対応する各部分に同一符号を付して、重複する説明は省略する。   The atomization apparatus 1 according to the present embodiment is configured except that the plug P is embedded in the partition wall 8 and the wall surface on the inlet cavity 5 side is a conical surface 16a protruding toward the inlet cavity 5 side. 5 to 11 have the same configuration as the conventional atomization apparatus 10 described with reference to FIG. 5 to FIG. 11, corresponding parts in FIG. 1 to FIG. .

以上の説明で明らかなように、本実施の形態によれば、仕切壁8の入口キャビティ5側の壁面を、入口キャビティ5と同軸的な円錐面16aとしたことにより、入口キャビティ5に流入した物質の粒子が、図4から明らかなように、仕切壁8の壁面に対して斜めに衝突して放射方向に変向されるから、物質が仕切壁8の壁面に付着滞留せず、したがって仕切壁8の壁面上に凝固物が堆積するのを防止することができる。   As apparent from the above description, according to the present embodiment, the wall surface on the inlet cavity 5 side of the partition wall 8 is the conical surface 16 a coaxial with the inlet cavity 5, so that it flows into the inlet cavity 5. As apparent from FIG. 4, the particles of the substance collide obliquely with the wall surface of the partition wall 8 and are changed in the radial direction, so that the substance does not adhere and stay on the wall surface of the partition wall 8. It is possible to prevent the solidified matter from being deposited on the wall surface of the wall 8.

また、円錐部16を備えた別体のプラグPを仕切壁8に埋め込むことにより円錐面16aを形成しているので、内筒2の加工も極めて容易であり、従来の微粒化装置10を微粒化装置1に改造することも極めて容易である。   Further, since the conical surface 16a is formed by embedding a separate plug P having the conical portion 16 in the partition wall 8, the processing of the inner cylinder 2 is extremely easy, and the conventional atomization apparatus 10 is finely divided. It is very easy to modify the conversion apparatus 1.

本発明による微粒化装置の一実施の形態の平面図である。It is a top view of one embodiment of the atomization device by the present invention. 図1の2−2線に沿った断面図である。FIG. 2 is a cross-sectional view taken along line 2-2 in FIG. 図1の3−3線に沿った断面図である。FIG. 3 is a cross-sectional view taken along line 3-3 in FIG. 1. 図2の下方部分を軸線の周りで45度転回して示す模式的端面図である。FIG. 3 is a schematic end view showing the lower part of FIG. 2 rotated 45 degrees around an axis. 従来の微粒化装置の平面図である。It is a top view of the conventional atomization apparatus. 図1の6−6線に沿った断面図である。FIG. 6 is a cross-sectional view taken along line 6-6 of FIG. 図1の微粒化装置が供えている内筒の正面図である。It is a front view of the inner cylinder which the atomization apparatus of FIG. 1 provides. 図6の8−8線に沿った断面図である。FIG. 8 is a cross-sectional view taken along line 8-8 in FIG. 6. 図6の9−9線に沿った断面図である。FIG. 9 is a cross-sectional view taken along line 9-9 in FIG. 6. 図6の下方部分を軸線の周りで45度転回して示す模式的端面図である。FIG. 7 is a schematic end view showing the lower part of FIG. 6 rotated 45 degrees around the axis. 従来の微粒化装置の欠点の説明に供する図10の部分図である。FIG. 11 is a partial view of FIG. 10 for explaining a defect of a conventional atomization apparatus.

符号の説明Explanation of symbols

1,10 微粒化装置
2 内筒
3 外筒
4 入口開口
5 入口キャビティ
6 出口開口
7 出口キャビティ
8 仕切壁
9 閉空間
11,12 オリフィス
15 プラグの軸部
16 プラグの円錐部
16a 円錐面
P プラグ
DESCRIPTION OF SYMBOLS 1,10 Atomization apparatus 2 Inner cylinder 3 Outer cylinder 4 Inlet opening 5 Inlet cavity 6 Outlet opening 7 Outlet cavity 8 Partition wall 9 Closed space 11,12 Orifice 15 Plug shaft part 16 Plug conical part 16a Conical surface P Plug

Claims (5)

仕切壁によって互いに隔離されて軸線に沿って延びる入口キャビティおよび出口キャビティを内部に備えた円筒状の内筒と、該内筒との間に閉空間を形成する態様で該内筒の外側に嵌着された外筒と、前記入口キャビティから前記内筒の壁を放射方向に貫通して該入口キャビティを前記閉空間に連通させる第1オリフィス群と、前記出口キャビティから前記内筒の壁を放射方向に貫通して前記閉空間を前記出口キャビティに連通させる第2オリフィス群とを備え、外部から前記入口キャビティに流入する、圧力を掛けられた、微粒化される物質の粒子を含む液体が、前記仕切壁の前記入口キャビティ側の壁面に衝突し、かつ前記第1オリフィス群を通じて前記閉空間に流出し、該閉空間から前記第2オリフィス群を通じて前記出口キャビティ内に流入し、該出口キャビティから外部へ流出するように構成されてなる物質の微粒化装置において、
前記仕切壁の前記入口キャビティ側の壁面に、前記入口キャビティ側に突出する、前記内筒と同軸的な円錐面を形成する突起を設け、前記入口キャビティに流入した物質の粒子を含む液体が仕切壁の壁面に対して斜めに衝突して放射方向に変向され、前記第1オリフィス群を通じて前記閉空間に流出することを特徴とする、物質の微粒化装置。
A cylindrical inner cylinder having an inlet cavity and an outlet cavity that are separated from each other by a partition wall and extend along the axis, and a closed space is formed between the inner cylinder and the outer cylinder. A worn outer cylinder, a first orifice group that radially passes through the wall of the inner cylinder from the inlet cavity to communicate the inlet cavity with the closed space, and a wall of the inner cylinder that radiates from the outlet cavity A second orifice group penetrating in a direction to communicate the closed space with the outlet cavity, and a liquid containing particles of a substance to be atomized under pressure flowing into the inlet cavity from the outside, The partition wall collides with the wall surface on the inlet cavity side, flows out to the closed space through the first orifice group, and exits from the closed space through the second orifice group. In atomization device configured comprising material as flows, flows out from the outlet cavity to the outside,
Protrusions projecting toward the inlet cavity and forming a conical surface coaxial with the inner cylinder are provided on the wall of the partition wall on the inlet cavity side, and the liquid containing the particles of the substance flowing into the inlet cavity is partitioned. An apparatus for atomizing a substance, characterized in that it collides obliquely with the wall surface of the wall, changes its direction in the radial direction, and flows out into the closed space through the first orifice group .
前記閉空間は、前記内筒と外側に嵌着された前記外筒との間に円筒状に形成されることを特徴とする請求項1記載の物質の微粒化装置。 The apparatus for atomizing a substance according to claim 1 , wherein the closed space is formed in a cylindrical shape between the inner cylinder and the outer cylinder fitted to the outside . 軸部と、該軸部よりも大径でかつ前記入口キャビティ内に挿入可能な外径を有して該軸部の一端に同軸的に連接された円錐部とを備えたプラグが、前記仕切壁に同軸的に形成された孔に前記軸部を前記入口キャビティ側から埋め込ませた態様で、前記仕切壁に設けられ、前記円錐部が前記突起を形成してなることを特徴とする請求項2記載の物質の微粒化装置。   A plug comprising: a shaft portion; and a conical portion having a larger diameter than the shaft portion and having an outer diameter that can be inserted into the inlet cavity and coaxially connected to one end of the shaft portion. The shaft portion is embedded in a hole formed coaxially in the wall from the inlet cavity side, and is provided on the partition wall, and the conical portion forms the protrusion. 2. A device for atomizing substances according to 2. 仕切壁によって互いに隔離されて軸線に沿って延びる入口キャビティおよび出口キャビティを内部に備えた円筒状の内筒と、該内筒との間に閉空間を形成する態様で該内筒の外側に嵌着された外筒と、前記入口キャビティから前記内筒の壁を放射方向に貫通して該入口キャビティを前記閉空間に連通させる第1オリフィス群と、前記出口キャビティから前記内筒の壁を放射方向に貫通して前記閉空間を前記出口キャビティに連通させる第2オリフィス群とを備え、外部から前記入口キャビティに流入する、圧力を掛けられた、微粒化される物質の粒子を含む液体が、前記仕切壁の前記入口キャビティ側の壁面に衝突し、かつ前記第1オリフィス群を通じて前記閉空間に流出し、該閉空間から前記第2オリフィス群を通じて前記出口キャビティ内に流入し、該出口キャビティから外部へ流出するように構成されてなる物質の微粒化装置において、
前記仕切壁の前記入口キャビティ側の壁面に突起を設け、
前記第1オリフィス群が、前記内筒の周方向に互いにほぼ90度の列間角度間隔を隔てて前記軸線と平行な方向に前記入口キャビティの周壁面上に整列する4列のオリフィス列で構成され、
前記第2オリフィス群が、前記内筒の周方向に互いにほぼ90度の列間角度間隔を隔てて、かつ前記第1オリフィス群の各列に対して周方向にほぼ45度偏位された関係で、前記軸線と平行な方向に前記出口キャビティの周壁面上に整列する4列のオリフィス列で構成されてなることを特徴とする物質の微粒化装置。
A cylindrical inner cylinder having an inlet cavity and an outlet cavity that are separated from each other by a partition wall and extend along the axis, and a closed space is formed between the inner cylinder and the outer cylinder. A worn outer cylinder, a first orifice group that radially passes through the wall of the inner cylinder from the inlet cavity to communicate the inlet cavity with the closed space, and a wall of the inner cylinder that radiates from the outlet cavity A second orifice group penetrating in a direction to communicate the closed space with the outlet cavity, and a liquid containing particles of a substance to be atomized under pressure flowing into the inlet cavity from the outside, The partition wall collides with the wall surface on the inlet cavity side, flows out to the closed space through the first orifice group, and exits from the closed space through the second orifice group. In atomization device configured comprising material as flows, flows out from the outlet cavity to the outside,
Providing a projection on the wall surface on the inlet cavity side of the partition wall,
The first orifice group is composed of four rows of orifices aligned on the peripheral wall surface of the inlet cavity in a direction parallel to the axis and spaced apart from each other by an angular interval of about 90 degrees in the circumferential direction of the inner cylinder. And
The relationship in which the second orifice group is offset by approximately 45 degrees in the circumferential direction with respect to each row of the first orifice group at an angular interval of approximately 90 degrees from each other in the circumferential direction of the inner cylinder. The apparatus for atomizing a substance is composed of four rows of orifices aligned on the peripheral wall surface of the outlet cavity in a direction parallel to the axis.
前記第2オリフィス群を構成するオリフィスが、前記第1オリフィス群を構成するオリフィスよりも小径で、かつ数が多いものからなることを特徴とする請求項4記載の物質の微粒化装置。   5. The apparatus for atomizing a substance according to claim 4, wherein the orifices constituting the second orifice group are smaller in diameter and larger in number than the orifices constituting the first orifice group.
JP2004211597A 2004-07-20 2004-07-20 Substance atomization equipment Expired - Fee Related JP4707342B2 (en)

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