JP2010137377A - Apparatus for supplying two-liquid curable resin - Google Patents

Apparatus for supplying two-liquid curable resin Download PDF

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JP2010137377A
JP2010137377A JP2008313424A JP2008313424A JP2010137377A JP 2010137377 A JP2010137377 A JP 2010137377A JP 2008313424 A JP2008313424 A JP 2008313424A JP 2008313424 A JP2008313424 A JP 2008313424A JP 2010137377 A JP2010137377 A JP 2010137377A
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container
curable resin
hose
liquid
raw material
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JP5274226B2 (en
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Yutaka Nishigori
豊 錦織
Koji Nakazawa
功治 中澤
Manabu Adachi
学 足立
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Meisei Industrial Co Ltd
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Meisei Industrial Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an apparatus for supplying a two-liquid curable resin which is good in apparatus transportation properties to a work field while supplying two kinds of liquid always at a constant ratio even when the amount of a liquid in each container is changed. <P>SOLUTION: First and second pressure resistant containers 1 and 2 which can hold two different kinds of a raw material liquid of the two-liquid curable resin separately in an airtight condition are provided. A nozzle device 3 which can discharge the uncured two-liquid curable resin is provided. A first hose 4 which connects the held liquid of the first container 1 with the nozzle device 3 and a second hose 5 which connects the held liquid discharge part of the second container 2 with the nozzle device 3 are provided. A mixing part 6 which mixes a first raw material liquid in the first container 1 and a second raw material liquid in the second container 2 is installed in the nozzle device 3. A compressor 7 which can supply pressurized gas to the first and second containers 1 and 2 is provided. A flow regulating valve 8 is installed in each of the first and second hoses 4 and 5. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

2液硬化型樹脂の互いに異なる2種類の原料液を夫々各別に収容自在な第1、第2容器を設け、未硬化の前記2液硬化型樹脂を吐出自在なノズル装置を設け、前記第1容器の収容液排出部と前記ノズル装置とを接続する第1ホースと、前記第2容器の収容液排出部と前記ノズル装置とを接続する第2ホースとを設け、前記第1容器内の第1原料液と前記第2容器内の第2原料液とを混合する混合部を、前記ノズル装置に設けてある2液硬化型樹脂供給装置に関する。   Provided are first and second containers capable of separately accommodating two different raw material liquids of a two-component curable resin, respectively, and provided with a nozzle device capable of discharging the uncured two-component curable resin. A first hose connecting the container liquid discharge part of the container and the nozzle device; and a second hose connecting the liquid storage part of the second container and the nozzle device; and a first hose in the first container. The present invention relates to a two-part curable resin supply apparatus in which a mixing unit that mixes one raw material liquid and a second raw material liquid in the second container is provided in the nozzle device.

従来の2液硬化型樹脂供給装置は、図3に示すように、コンパクト化や軽量化を行って樹脂充填現場への搬入や取り扱い性を良くする為に、第1ホース4の下流端部と第2ホース5の下流端部に、開閉弁14を介在させ、第1容器1と第2容器2とを、夫々耐圧性の気密容器で形成し、第1容器1と第2容器2夫々に、予め加圧ガスを封入してあり、開閉弁14の開弁操作によって、夫々の容器1,2内の加圧ガスの圧力で夫々の容器1,2から各別に2液がノズル装置3に供給されて、ノズル装置3から2液の混合液として吐出されるように構成してあった(公知公用技術であって、適切な文献はみあたらない)。   As shown in FIG. 3, the conventional two-component curable resin supply device has a downstream end portion of the first hose 4 in order to reduce the size and weight and to improve the carrying-in and handling properties to the resin filling site. An opening / closing valve 14 is interposed at the downstream end of the second hose 5, and the first container 1 and the second container 2 are each formed of a pressure-resistant airtight container, and the first container 1 and the second container 2 are respectively provided. The pressurized gas is sealed in advance, and two liquids are separately supplied from the containers 1 and 2 to the nozzle device 3 by the pressure of the pressurized gas in the containers 1 and 2 by opening the on-off valve 14. It was configured to be supplied and discharged from the nozzle device 3 as a mixed liquid of two liquids (it is a publicly known technique, and no appropriate literature is found).

上述した従来の2液硬化型樹脂供給装置では、例えば、水発泡性のポリウレタン吐出装置に適用する場合、原料の2液夫々の吐出流量を各別に調整することはできず、特に、2液夫々の粘度やその他の物性が異なると、第1容器1と第2容器2の内圧は、初期段階では例え同一の値であったとしても、貯留液量が減っていくに伴って、夫々の容器1,2からの吐出圧が互いに異なった値に変化し、ノズルでの混合比率が不安定になるという問題点があった。   In the above-described conventional two-component curable resin supply device, for example, when applied to a water-foaming polyurethane discharge device, the discharge flow rate of each of the two liquids of the raw material cannot be adjusted separately. If the internal pressures of the first container 1 and the second container 2 are the same value at the initial stage, as the amount of stored liquid decreases, the respective containers have different viscosities and other physical properties. There was a problem that the discharge pressures from 1 and 2 changed to different values, and the mixing ratio at the nozzle became unstable.

図4(a)に示すように、第1ホース4と第2ホース5の夫々にポンプPを介在させて、第1原料液と第2原料液とを夫々のポンプPでノズル3に供給することが考えられている(例えば、特開平9−308856号公報参照)。
この場合、装置全体を樹脂供給作業現場近くへ持ち込むには、第1容器1と第2容器2の他にポンプPがあるために重く、しかも、ポンプPの駆動電源がその作業現場近くになければならず、非常に不便なものであった。
そこで、図4(b)に示すように、第1ホース4と第2ホース5とを延長させて、ノズル3のみを作業現場に持ち込むようにすることが考えられるが、第1ホース4と第2ホース5とが長くなって、原料搬送途中で外気温の影響を受けやすくなり、粘性が変化して夫々の原料流量調整が困難になる等の不都合が発生する虞がある。
As shown in FIG. 4A, the first raw material liquid and the second raw material liquid are supplied to the nozzle 3 by the respective pumps P with the pumps P interposed between the first hose 4 and the second hose 5, respectively. (For example, refer to JP-A-9-308856).
In this case, in order to bring the entire apparatus close to the resin supply work site, it is heavy because there is a pump P in addition to the first container 1 and the second container 2, and the drive power source of the pump P must be close to the work site. It was very inconvenient.
Therefore, as shown in FIG. 4B, it is conceivable to extend the first hose 4 and the second hose 5 and bring only the nozzle 3 into the work site. The length of the two hose 5 becomes long, and it is likely to be affected by the outside air temperature during the conveyance of the raw material, and there is a possibility that inconveniences such as a change in viscosity and difficulty in adjusting the respective raw material flow rates may occur.

従って、本発明の目的は、上記問題点を解消し、各容器内の液量が変化しても、常に一定の比率で2液を供給できるようにしながら、作業現場への装置の運搬性の良い2液硬化型樹脂供給装置を提供するところにある。   Therefore, the object of the present invention is to solve the above-mentioned problems, and even if the amount of liquid in each container changes, the two liquids can always be supplied at a constant ratio, while the transportability of the apparatus to the work site is improved. The object is to provide a good two-part curable resin supply device.

本発明の第1の特徴構成は、2液硬化型樹脂の互いに異なる2種類の原料液を夫々各別に収容自在な第1、第2容器を設け、未硬化の前記2液硬化型樹脂を吐出自在なノズル装置を設け、前記第1容器の収容液排出部と前記ノズル装置とを接続する第1ホースと、前記第2容器の収容液排出部と前記ノズル装置とを接続する第2ホースとを設け、前記第1容器内の第1原料液と前記第2容器内の第2原料液とを混合する混合部を、前記ノズル装置に設けてある2液硬化型樹脂供給装置であって、前記第1容器と前記第2容器とを、夫々耐圧性の気密容器で形成し、前記第1容器と前記第2容器とに加圧ガスを供給自在な加圧ガス供給装置を設け、前記第1ホースと前記第2ホースとに夫々流量調整弁を設けてあるところにある。   The first characteristic configuration of the present invention is provided with first and second containers each capable of accommodating two different types of raw material liquids of a two-component curable resin, and discharging the uncured two-component curable resin. A free nozzle device, a first hose connecting the liquid storage part of the first container and the nozzle device, a second hose connecting the liquid storage part of the second container and the nozzle device; A mixing part for mixing the first raw material liquid in the first container and the second raw material liquid in the second container is provided in the nozzle device, The first container and the second container are each formed of a pressure-resistant airtight container, and a pressurized gas supply device capable of supplying pressurized gas to the first container and the second container is provided. One hose and the second hose are provided with flow rate adjusting valves, respectively.

本発明の第1の特徴構成によれば、耐圧性の気密容器で形成してある前記第1容器と前記第2容器には、加圧ガス供給装置からの加圧ガスが供給されるために、使用に伴って夫々の容器内の液が減量していっても安定した圧力で加圧され、しかも、前記第1容器に接続する前記第1ホースや前記第2容器に接続する前記第2ホースには、夫々前記流量調整弁が設けてあるために、前記ノズル装置で2種類の原料液の混合比率を常に適切になるように調整でき、供給する2液硬化型樹脂の品質を安定した状態にできる。
その上、図2に示すように、前記第1ホースと前記第2ホースとを短くした状態で、作業現場近くに前記第1容器、前記第2容器、前記ノズルを持ち込み、例えば、前記第1容器と第2容器とに前記加圧ガス供給装置からの加圧ガスを供給する加圧ガス供給ホースを延長させて、前記加圧ガス供給装置を別の箇所に置けば、原料液は外気温の影響を受けることなく、しかも装置の運搬性を良好にできる。
従って、安定した施工を行うことが可能となる。
According to the first characteristic configuration of the present invention, the pressurized gas from the pressurized gas supply device is supplied to the first container and the second container which are formed of a pressure-resistant airtight container. The second hose connected to the first hose or the second container is connected to the first container and is pressurized with a stable pressure even when the liquid in each container is reduced in use. Since the hose is provided with the flow rate adjusting valve, the mixing ratio of the two types of raw material liquids can always be adjusted appropriately by the nozzle device, and the quality of the supplied two-component curable resin is stabilized. Can be in a state.
In addition, as shown in FIG. 2, the first container, the second container, and the nozzle are brought near the work site in a state where the first hose and the second hose are shortened. If the pressurized gas supply hose for supplying the pressurized gas from the pressurized gas supply device to the container and the second container is extended and the pressurized gas supply device is placed at another location, the raw material liquid will be outside air temperature. In addition, the transportability of the apparatus can be improved.
Therefore, stable construction can be performed.

本発明の第2の特徴構成は、前記加圧ガス供給装置をコンプレッサーで形成してあるところにある。   A second characteristic configuration of the present invention is that the pressurized gas supply device is formed of a compressor.

本発明の第2の特徴構成によれば、コンプレッサーによって、加圧ガスの供給を自在に行えて、第1容器及び第2容器内の夫々の原料液を最後まで適切な圧で供給することができる。   According to the second characteristic configuration of the present invention, the pressurized gas can be freely supplied by the compressor, and the respective raw material liquids in the first container and the second container can be supplied at an appropriate pressure to the end. it can.

本発明の第3の特徴構成は、前記混合部に前記加圧ガス供給装置からの加圧ガスを混入させるガス混入路を設けて、前記第2ホースに合流接続させてあることにある。   A third characteristic configuration of the present invention resides in that a gas mixing path for mixing the pressurized gas from the pressurized gas supply device is provided in the mixing unit and joined to the second hose.

本発明の第3の特徴構成によれば、前記混合部で前記加圧ガス供給装置からの加圧ガスがガス混入路を介して混入されることにより、加圧ガスの攪拌作用により2液の混合がより均一に行われ、しかも、第2ホース内の第2原料液の搬送と混合部での混合作用を共に行わせることができる。   According to the third characteristic configuration of the present invention, when the pressurized gas from the pressurized gas supply device is mixed in the mixing unit through the gas mixing path, two liquids are mixed by the stirring action of the pressurized gas. Mixing can be performed more uniformly, and both the conveyance of the second raw material liquid in the second hose and the mixing operation in the mixing unit can be performed.

本発明の第4の特徴構成は、前記第1原料液が、イソシアネートを主剤とするものであり、前記第2原料液が、ポリオールを主剤とするものであることにある。   The fourth characteristic configuration of the present invention is that the first raw material liquid is mainly composed of isocyanate, and the second raw material liquid is mainly composed of polyol.

本発明の第4の特徴構成によれば、イソシアネートとポリオールとによるポリウレタンの現場充填施工が、より小型の装置で、しかも品質を安定させて行えるようになる。   According to the fourth characteristic configuration of the present invention, on-site filling construction of polyurethane with isocyanate and polyol can be performed with a smaller apparatus and with stable quality.

以下に本発明の実施の形態を図面に基づいて説明する。尚、図面において従来例と同一の符号で表示した部分は、同一又は相当の部分を示している。   Embodiments of the present invention will be described below with reference to the drawings. In the drawings, the parts denoted by the same reference numerals as those in the conventional example indicate the same or corresponding parts.

図1に示すように、2液硬化型樹脂の互いに異なる2種類の原料液(イソシアネートを主材とする第1原料液とポリオールを主材とする第2原料液)を、夫々各別に気密状態で収容自在な耐圧性の第1、第2容器1,2を設け、未硬化の前記2液硬化型樹脂を吐出自在なノズル装置3を設け、第1容器1の収容液排出部とノズル装置3とを接続する第1ホース4と、第2容器2の収容液排出部とノズル装置3とを接続する第2ホース5とを設け、第1容器1内の第1原料液と第2容器2内の第2原料液とを混合する混合部6を、ノズル装置3に設けてある。
そして、第1容器1と第2容器2とに加圧ガス供給ホース16を介して加圧ガスを供給自在な加圧ガス供給装置として小型のコンプレッサー7を設け、第1ホース4と第2ホース5とに夫々流量調整弁8を介在させてノズル装置3に接続してフロンガスを用いないポリウレタンフォーム(ノンフロンPUF)の2液硬化型樹脂供給装置を構成してある。
As shown in FIG. 1, two different raw material liquids of a two-component curable resin (first raw material liquid mainly composed of isocyanate and second raw material liquid mainly composed of polyol) are individually sealed. Pressure-resistant first and second containers 1 and 2 are provided, a nozzle device 3 is provided that is capable of discharging the uncured two-part curable resin, and the contained liquid discharge unit and nozzle device of the first container 1 are provided. A first hose 4 that connects the first container 4 and a second hose 5 that connects the liquid storage part of the second container 2 and the nozzle device 3, and the first raw material liquid and the second container in the first container 1 are provided. A mixing unit 6 for mixing the second raw material liquid in 2 is provided in the nozzle device 3.
A small compressor 7 is provided as a pressurized gas supply device capable of supplying pressurized gas to the first container 1 and the second container 2 via the pressurized gas supply hose 16, and the first hose 4 and the second hose are provided. 5 is connected to the nozzle device 3 with a flow rate adjusting valve 8 interposed therebetween to form a polyurethane foam (non-Freon PUF) two-component curable resin supply device that does not use Freon gas.

前記ノズル装置3を構成するに、ノズル装置本体9に対して着脱自在なポリエチレンなどの樹脂ホースから成る筒部10を、先端側に設け、第1原料液の第1吐出部11と第2原料液の第2吐出部12とを、筒部10内に配設すると共に、第1吐出部11を第2吐出部12より先端側に配置して、筒部10内に2液の混合部6を形成してある。
前記第2ホース5にコンプレッサー7からの加圧ガスを混入させるガス混入路13を、第2ホース5に合流接続して、筒部10内の混合部6で第1原料液と第2原料液と加圧ガスとが混合するように構成してある。
In order to constitute the nozzle device 3, a cylindrical portion 10 made of a resin hose such as polyethylene that is detachable from the nozzle device main body 9 is provided on the tip side, and the first discharge portion 11 and the second raw material of the first raw material liquid are provided. The liquid second discharge unit 12 is disposed in the cylindrical portion 10, and the first discharge portion 11 is disposed on the distal end side of the second discharge portion 12, so that the two-liquid mixing unit 6 is disposed in the cylindrical portion 10. Is formed.
A gas mixing path 13 for mixing the pressurized gas from the compressor 7 into the second hose 5 is joined and connected to the second hose 5, and the first raw material liquid and the second raw material liquid are mixed at the mixing portion 6 in the cylinder portion 10. And the pressurized gas are mixed.

尚、図中のRはレギュレーターで、各容器の内圧や、管路の内圧を一定に保つようにしてある。
また、第1容器1と流量調整弁8との間や、第2容器2と流量調整弁8との間に、夫々開閉弁14を設けて、現場発泡のポリウレタン樹脂を供給する必要のないときには、各開閉弁14を閉じるようにしてある。
Incidentally, R in the figure is a regulator, which keeps the internal pressure of each container and the internal pressure of the pipe line constant.
Further, when it is not necessary to provide an on-off valve 14 between the first container 1 and the flow rate adjustment valve 8 or between the second container 2 and the flow rate adjustment valve 8, it is not necessary to supply polyurethane resin in the field. Each on-off valve 14 is closed.

尚、第1容器1と第2容器2には、夫々着脱自在な気密性の着脱蓋15を設けて、原料液を補充できるようにしてある。   The first container 1 and the second container 2 are each provided with a removable airtight detachable lid 15 so that the raw material liquid can be replenished.

〔別実施形態〕
以下に他の実施の形態を説明する。
[Another embodiment]
Other embodiments will be described below.

〈1〉 前記ノズル装置3は、混合部6にスタティックミキサを内装してあってもよい。この場合は、前記ガス混入路13がなくてもよい。
〈2〉 前記2液硬化型樹脂は、現場発泡のポリウレタン樹脂に限らず、エポキシ樹脂やその他の樹脂であっても良い。
尚、上述のように、図面との対照を便利にするために符号を記したが、該記入により本発明は添付図面の構成に限定されるものではない。また、本発明の要旨を逸脱しない範囲において、種々なる態様で実施し得ることは勿論である。
<1> The nozzle device 3 may include a static mixer in the mixing unit 6. In this case, the gas mixing path 13 may be omitted.
<2> The two-component curable resin is not limited to an in-situ foamed polyurethane resin, and may be an epoxy resin or another resin.
In addition, as mentioned above, although the code | symbol was written in order to make contrast with drawing convenient, this invention is not limited to the structure of an accompanying drawing by this entry. In addition, it goes without saying that the present invention can be carried out in various modes without departing from the gist of the present invention.

実施形態で説明する概略図Schematic diagram described in the embodiment 使用状態の一例を示す作用図Action diagram showing an example of usage 従来の概略図Conventional schematic (a),(b)は、別の従来技術を示す概略作用図(A), (b) is a schematic action | operation figure which shows another prior art

符号の説明Explanation of symbols

1 第1容器
2 第2容器
3 ノズル装置
4 第1ホース
5 第2ホース
6 混合部
7 コンプレッサー
8 流量調整弁
9 ノズル装置本体
10 筒部
11 第1吐出部
12 第2吐出部
13 ガス混入路
DESCRIPTION OF SYMBOLS 1 1st container 2 2nd container 3 Nozzle apparatus 4 1st hose 5 2nd hose 6 Mixing part 7 Compressor 8 Flow control valve 9 Nozzle apparatus main body 10 Cylinder part 11 1st discharge part 12 2nd discharge part 13 Gas mixing path

Claims (4)

2液硬化型樹脂の互いに異なる2種類の原料液を夫々各別に収容自在な第1、第2容器を設け、未硬化の前記2液硬化型樹脂を吐出自在なノズル装置を設け、前記第1容器の収容液排出部と前記ノズル装置とを接続する第1ホースと、前記第2容器の収容液排出部と前記ノズル装置とを接続する第2ホースとを設け、前記第1容器内の第1原料液と前記第2容器内の第2原料液とを混合する混合部を、前記ノズル装置に設けてある2液硬化型樹脂供給装置であって、前記第1容器と前記第2容器とを、夫々耐圧性の気密容器で形成し、前記第1容器と前記第2容器とに加圧ガスを供給自在な加圧ガス供給装置を設け、前記第1ホースと前記第2ホースとに夫々流量調整弁を設けてある2液硬化型樹脂供給装置。   Provided are first and second containers capable of separately accommodating two different raw material liquids of a two-component curable resin, respectively, and provided with a nozzle device capable of discharging the uncured two-component curable resin. A first hose connecting the container liquid discharge part of the container and the nozzle device; and a second hose connecting the liquid storage part of the second container and the nozzle device; and a first hose in the first container. A two-part curable resin supply apparatus provided in the nozzle device for mixing one raw material liquid and a second raw material liquid in the second container, wherein the first container, the second container, Are formed of pressure-resistant airtight containers, provided with a pressurized gas supply device capable of supplying pressurized gas to the first container and the second container, respectively, and the first hose and the second hose, respectively. A two-component curable resin supply device provided with a flow rate adjusting valve. 前記加圧ガス供給装置をコンプレッサーで形成してある請求項1記載の2液硬化型樹脂供給装置。   The two-part curable resin supply apparatus according to claim 1, wherein the pressurized gas supply apparatus is formed by a compressor. 前記混合部に前記加圧ガス供給装置からの加圧ガスを混入させるガス混入路を設けて、前記第2ホースに合流接続させてある請求項1または2記載の2液硬化型樹脂供給装置。   3. The two-part curable resin supply apparatus according to claim 1, wherein a gas mixing path through which the pressurized gas from the pressurized gas supply apparatus is mixed is provided in the mixing unit and joined to the second hose. 前記第1原料液が、イソシアネートを主剤とするものであり、前記第2原料液が、ポリオールを主剤とするものである請求項1から3のいずれかに記載の2液硬化型樹脂供給装置。   4. The two-part curable resin supply apparatus according to claim 1, wherein the first raw material liquid is based on isocyanate, and the second raw material liquid is based on polyol. 5.
JP2008313424A 2008-12-09 2008-12-09 Two-component curable resin supply device Active JP5274226B2 (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015157397A (en) * 2014-02-24 2015-09-03 Towa株式会社 Resin molding apparatus and method
CN106738404A (en) * 2016-11-30 2017-05-31 芜湖立创包装有限公司 For the charging process of plastics

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4840446U (en) * 1971-09-18 1973-05-22
JPS52102065U (en) * 1976-01-31 1977-08-03
JPS535265A (en) * 1976-07-01 1978-01-18 Olin Corp Rpocess and device for producing foam
JPH08267447A (en) * 1995-01-27 1996-10-15 Nordson Corp Distribution head for two component form with interruption part
JP2002119909A (en) * 2000-10-18 2002-04-23 Kansai Paint Co Ltd Roller coating method

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4840446U (en) * 1971-09-18 1973-05-22
JPS52102065U (en) * 1976-01-31 1977-08-03
JPS535265A (en) * 1976-07-01 1978-01-18 Olin Corp Rpocess and device for producing foam
JPH08267447A (en) * 1995-01-27 1996-10-15 Nordson Corp Distribution head for two component form with interruption part
JP2002119909A (en) * 2000-10-18 2002-04-23 Kansai Paint Co Ltd Roller coating method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015157397A (en) * 2014-02-24 2015-09-03 Towa株式会社 Resin molding apparatus and method
CN106738404A (en) * 2016-11-30 2017-05-31 芜湖立创包装有限公司 For the charging process of plastics

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