JPH06154692A - Device for hot-melting thermoplastic synthetic resin - Google Patents

Device for hot-melting thermoplastic synthetic resin

Info

Publication number
JPH06154692A
JPH06154692A JP4262191A JP4262191A JPH06154692A JP H06154692 A JPH06154692 A JP H06154692A JP 4262191 A JP4262191 A JP 4262191A JP 4262191 A JP4262191 A JP 4262191A JP H06154692 A JPH06154692 A JP H06154692A
Authority
JP
Japan
Prior art keywords
melter
synthetic resin
thermoplastic synthetic
heating
preheating
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
JP4262191A
Other languages
Japanese (ja)
Other versions
JP2983313B2 (en
Inventor
Ryoichi Matsushita
良一 松下
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.)
Matsushita Industrial Co Ltd
Original Assignee
Matsushita Industrial Co Ltd
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 Matsushita Industrial Co Ltd filed Critical Matsushita Industrial Co Ltd
Priority to JP3042621A priority Critical patent/JP2983313B2/en
Publication of JPH06154692A publication Critical patent/JPH06154692A/en
Application granted granted Critical
Publication of JP2983313B2 publication Critical patent/JP2983313B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Abstract

PURPOSE:To melt a thermoplastic synthetic resin to obtain a hot-melt adhesive which is applied onto a base material. CONSTITUTION:This device is composed of a hopper 1, a preheating melter 2, a heating melter 3, a high-temp. melter 4, a lid 5, a sheathing insulating member 6, an inert gas sealing means 7 and a coating means 8, and a guide plate also used as a baffle is furnished in the hopper, a preheating fin also used as a moderate cutting baffle in the preheating melter and a checkered heating fin for fine cutting in the heating melter. Since the lump of a solid thermoplastic synthetic resin is gradually hot-melted in an inert gas atmosphere without being oxidized, carbonized, hardened or deteriorated, and the hot-melt adhesive is applied on a base material. Further, the device is operated without heating the heat source for the guide plate and preheating fin, and even a fine- grain solid thermoplastic synthetic resin is hot-melted by one device.

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、熱可塑性合成樹脂を溶
融してホットメルト接着剤とし、このホットメルト接着
剤を被塗布基材に塗布することができる熱可塑性合成樹
脂の熱溶融溶解装置(以下、単に溶融装置と称す。)に
関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an apparatus for melting and melting thermoplastic synthetic resin capable of melting a thermoplastic synthetic resin into a hot melt adhesive and applying the hot melt adhesive to a substrate to be coated. (Hereinafter, simply referred to as a melting device).

【0002】[0002]

【従来の技術】従来の溶融装置としては、ホッパーと中
空内の下部に加熱用突出部を複数個立設してなる溶融器
や蓋体で構成され、熱可塑性合成樹脂を溶融するものが
ある。
2. Description of the Related Art As a conventional melting apparatus, there is a melting apparatus which comprises a hopper and a plurality of heating projections provided in the lower part of the hollow and a lid for melting a thermoplastic synthetic resin. .

【0003】[0003]

【発明が解決しようとする課題】しかし、従来の溶融装
置では、溶融する熱可塑性合成樹脂の素材形状は様々で
あり、ブロック状、ビーズ状、ペレット状、チップ状、
紐状等の固形熱可塑性合成樹脂を熱溶解する場合、それ
ぞれの材料に応じた各々単独の溶融装置が必要である。
一例を挙げると固形熱可塑性合成樹脂をホッパーより投
入し、溶融器内の加熱用突出部で一度に熱可塑性合成樹
脂を溶融するため、急速に溶解した熱可塑性合成樹脂の
酸化や溶融器内に接する熱可塑性合成樹脂の温度不均一
による粘度の変化により溶けたものが更に固まって硬化
したり、こびりつきが生じたり、流動が悪くて一部の流
路に滞留が起こって熱劣化等の影響が起因して起こった
り、逆対流現象、即ち溶融中のホットメルトの中に新し
い材料を追加投入すると、中央部に沈み、まわりに溶け
たものが上昇して包みこむような現象となる。これは、
中央部の新しい材料の溶解が遅れ且つ先に溶けたもの
が、再度溶融器の壁面で再加熱されるようなことが多く
なり、局部加熱により熱可塑性合成樹脂が酸化、炭化、
硬化、劣化し易く、また効率よく溶融を行うことができ
ないという問題点がある。更に、熱可塑性合成樹脂が溶
融器内の壁面に付着したり、熱劣化や硬化して流動性が
悪くなったり、ついには管路を細く閉塞することになる
ので、不必要に硬化したり、こびりついたものを溶かす
ために高温化して粘度を下げて流動性をよくしようとし
て、熱可塑性合成樹脂に混合された他要素を気化蒸発さ
せて、使用目的に適さない不良品を製造してしまった
り、また例えばポンプの送液量を増しても、管路が細く
閉塞したままでは熱溶融した熱可塑性合成樹脂を送るこ
とができないという問題点がある。更には、ホッパーよ
り投入する固形熱可塑性合成樹脂に付着したゴミ異物等
の目詰まりにより溶融器を使用不能にするという問題点
がある。
However, in the conventional melting apparatus, the material shapes of the thermoplastic synthetic resin to be melted are various, and the shapes of the blocks, beads, pellets, chips,
When a solid thermoplastic synthetic resin such as a string is melted by heat, a separate melting device is required for each material.
To give an example, solid thermoplastic synthetic resin is charged from the hopper, and the thermoplastic synthetic resin is melted at once by the heating protrusion in the melter. Due to the change in viscosity due to the non-uniform temperature of the thermoplastic synthetic resin in contact, the melted material further hardens and hardens, sticking occurs, or the flow is poor and retention occurs in some of the flow paths, causing the effects of heat deterioration, etc. This is a phenomenon that occurs due to the above phenomenon or a reverse convection phenomenon, that is, when a new material is additionally charged into the hot melt during melting, the material sinks in the central portion and the melted material rises and wraps around. this is,
The melting of the new material in the central part is delayed, and what was melted earlier is often reheated again on the wall surface of the melter, and the local heating causes the thermoplastic synthetic resin to oxidize, carbonize,
There are problems that it is easily hardened and deteriorated, and that melting cannot be performed efficiently. Furthermore, the thermoplastic synthetic resin adheres to the wall surface in the melter, heat deterioration or hardening deteriorates the fluidity, and finally the pipe line is narrowly blocked, so that it is hardened unnecessarily, In order to melt the sticky substance, the temperature is lowered to lower the viscosity to improve the fluidity, and other elements mixed with the thermoplastic synthetic resin are vaporized and evaporated to produce a defective product that is not suitable for the purpose of use. Further, for example, even if the amount of liquid to be pumped is increased, there is a problem in that the thermoplastic synthetic resin that has been melted by heat cannot be fed if the pipe line remains thinly closed. Furthermore, there is a problem that the melting machine becomes unusable due to clogging of dust and foreign matters adhering to the solid thermoplastic synthetic resin fed from the hopper.

【0004】そこで、本発明は、従来に比較して熱劣化
した細粒塊や局部加熱による炭化膜の剥離した異物等や
固形熱可塑性合成樹脂の供給時のゴミ異物等により管路
が閉塞するのに対処でき、溶融器内で熱可塑性合成樹脂
の酸化、炭化、硬化、劣化等の現象を少なくし、その上
効率よく熱可塑性合成樹脂を溶融することができ、しか
も熱損失が少なく、また接着材の品質の低下等を起こす
ことがない溶融装置を提供しようとするものである。
Therefore, in the present invention, as compared with the conventional art, the pipeline is blocked by fine particles lumps that have been thermally deteriorated, foreign substances from which the carbonized film has been peeled off due to local heating, and foreign substances from dust when the solid thermoplastic synthetic resin is supplied. It is possible to reduce the phenomenon of oxidation, carbonization, curing, deterioration, etc. of the thermoplastic synthetic resin in the melter, and moreover, the thermoplastic synthetic resin can be efficiently melted, and the heat loss is small, and An object of the present invention is to provide a melting device that does not cause deterioration of the quality of the adhesive material.

【0005】[0005]

【課題を解決するための手段】上記目的を達成するため
に、本発明の溶融装置は、その溶融素材の流れに沿っ
て、上面及び下面を開放した中空内部に下方の流れに沿
って粗裁断用の邪魔板を兼ねた案内板を設け、該案内板
の適所に必要に応じて加熱する熱源を埋設してなるホッ
パーと;前記ホッパーの下方に位置し、上面及び下面を
開放した中空内部に下方の流れに沿って中裁断用の邪魔
板を兼ねた予熱用フィンを設け、該予熱用フィンの適所
に必要に応じて加熱する熱源を埋設してなる予熱用溶融
器と;前記予熱用溶融器の下方に位置し、上面及び下面
を開放した中空内部に下方の流れに沿って細裁用の碁盤
目状の邪魔板を兼ねた加温用フィンを設け、適所に熱源
を埋設してなる加温用溶融器と;前記加温用溶融器の下
方に位置し、熱可塑性合成樹脂を熱溶融する加熱フィン
を適所に設けた流動容易なる漏斗状貯溜凹所を有し、熱
源を埋設してなる高温溶融器と;前記ホッパーの上面を
閉じて内部を気密する蓋体と;外部への熱放散を防止し
て溶融器内を適正な温度に保ち且つ火傷防止のために、
溶融器の表面との間に空気保温断熱を目的とした断熱空
間部を設けて施した外装断熱部材と;不活性ガスを溶融
器内部に供給する供給ラインと、その内部に充満する気
体を排気する排気ラインとで構成された不活性ガス封入
手段と;マイクロプロセッサー等の温度制御手段にて溶
融器内を適正な温度に制御し、必要適正な温度に溶融し
た熱可塑性合成樹脂を、自動制御可能なサーボモーター
を連結したギアポンプにより必要なる適正量を一定量及
び必要な圧力にて、先端に加温付き塗工ノズルを有する
ヒートホースに送液でき、サーボモーターの自動制御用
コントローラーにてギアポンプの自動停止及び自動可変
が可能な塗工手段とよりなるものである。
In order to achieve the above-mentioned object, the melting apparatus of the present invention has a structure in which a hollow material having an open upper surface and a lower surface is roughly cut along the flow of the molten material. A hopper provided with a guide plate also serving as a baffle for use, and a heat source embedded in the guide plate at an appropriate place for heating when necessary; a hollow interior located below the hopper and having open upper and lower surfaces A preheating melter in which a preheating fin also serving as a baffle for cutting is provided along a downward flow, and a heat source for heating as needed is embedded in an appropriate place of the preheating fin; and the preheating melting It is located below the vessel and has a heating fin that doubles as a grid-shaped baffle plate for fine cutting along the downward flow inside the hollow with the upper and lower surfaces open, and the heat source is buried in the appropriate place. A warming melter; located below the warming melter and made of thermoplastic A high-temperature melter having a funnel-shaped reservoir recess in which heating fins for heat-melting a synthetic resin are provided at appropriate positions and in which a heat source is embedded; and a lid body that closes the upper surface of the hopper to hermetically seal the inside. ; In order to prevent heat dissipation to the outside, keep the inside of the melter at an appropriate temperature and prevent burns,
An exterior heat insulating member provided with an insulating space portion for the purpose of heat insulation and heat insulation with the surface of the melter; a supply line for supplying an inert gas into the melter, and a gas filling the inside thereof is exhausted. Inert gas encapsulation means composed of an exhaust line and a temperature control means such as a microprocessor to control the inside of the melter to an appropriate temperature, and automatically control the thermoplastic synthetic resin melted to the necessary and appropriate temperature. It is possible to deliver the appropriate amount required by a gear pump connected with a possible servo motor to a heat hose having a coating nozzle with heating at the fixed amount and the required pressure, and the gear pump is used by the controller for automatic control of the servo motor. And a coating means capable of automatically stopping and automatically changing.

【0006】また、高温溶融器において、ギアポンプ出
口の圧力がある一定値以上に上昇すると、安全逃がし弁
が作動してギアポンプ出口の溶融した熱可塑性合成樹脂
を高温溶融器の漏斗状貯溜凹所に還流する圧力上昇防止
手段を設けるとともにギアポンプ出口又は入口にフィル
ターを設け、更に安全弁が作動した時は必要に応じてサ
ーボモーターの回転数を自動制御してなるものを用いる
こともできる。
In the high temperature melter, when the pressure at the outlet of the gear pump rises above a certain value, the safety relief valve operates and the molten thermoplastic synthetic resin at the outlet of the gear pump enters the funnel-shaped reservoir recess of the high temperature fuser. It is also possible to use a device which is provided with a means for preventing pressure rise for recirculation, a filter is provided at the outlet or inlet of the gear pump, and when the safety valve is activated, the rotation speed of the servo motor is automatically controlled if necessary.

【0007】[0007]

【作用】以上の如く本発明の溶融装置によれば、溶融器
の温度を予熱させるのが先か固形熱可塑性合成樹脂を投
入するのが先かの順序は問わないが、操作例を挙げる
と、溶融装置の蓋体を開き、ブロック状、ビーズ状、ペ
レット状、チップ状、紐状の固形熱可塑性合成樹脂をホ
ッパー上面より投入し、蓋体を閉じて不活性ガス封入手
段における供給ラインより例えば加熱ヒーターで加熱さ
れた不活性ガスが供給されて溶融器内を不活性雰囲気に
し、各々の溶融器における熱源により予熱し、ホッパ
ー、予熱用溶融器、加温用溶融器、高温溶融器内を順次
段階的に高温に設定した設定温度に到達すると内部の熱
可塑性合成樹脂材料は熱溶解されており、ギアポンプの
駆動が可能であるインターロックが解除されて、熱可塑
性合成樹脂の溶融装置の使用ができる。
As described above, according to the melting apparatus of the present invention, the order of preheating the temperature of the melting vessel or charging the solid thermoplastic synthetic resin does not matter. , Open the lid of the melting device, put the block-shaped, bead-shaped, pellet-shaped, chip-shaped, and string-shaped solid thermoplastic synthetic resin from the upper surface of the hopper, close the lid, and supply from the supply line in the inert gas sealing means. For example, an inert gas heated by a heater is supplied to make the inside of the melter an inert atmosphere and preheated by the heat source in each melter, and the hopper, preheater melter, warmer melter, high temperature melter When the temperature reaches the set temperature, which is set to a high temperature in a stepwise manner, the thermoplastic synthetic resin material inside is melted by heat, the gear pump can be driven, the interlock is released, and the thermoplastic synthetic resin melting device is released. It is used.

【0008】そして、更に溶解手順を詳しく説明する
と、例えばブロック状の塊である固形熱可塑性合成樹脂
の場合、投入された熱可塑性合成樹脂はホッパー内の邪
魔板を兼ねた案内板により粗裁断状に熱溶融され、次に
予熱用溶融器内の邪魔板を兼ねた予熱用フィンにより溶
融されて更に中裁断状に溶融され、そして加温用溶融器
内の碁盤目状の邪魔板を兼ねた加温用フィンにより棒状
に細裁されることにより徐々に細かく固形熱可塑性合成
樹脂は溶融され、高温溶融器の流動容易なる漏斗状貯溜
凹所における熱源により熱可塑性合成樹脂は芯まで徐々
に熱溶融される。また、この時予熱された不活性ガスの
供給をして内圧が高まるとセンサーが作動して不活性ガ
スの供給を停止し且つ定められたタイムチャートにより
排気ラインより排気する。
The melting procedure will be described in more detail. For example, in the case of a solid thermoplastic synthetic resin which is a block-shaped lump, the thermoplastic synthetic resin charged is roughly cut by a guide plate also serving as a baffle plate in the hopper. Then, it was melted by the preheating fins that also served as the baffle plate in the preheating melter, and was further melted into a medium cut shape, and it also served as a grid-shaped baffle plate in the heating fuser. The thermoplastic resin is gradually finely melted by being finely cut into a rod shape by the fins for heating, and the thermoplastic synthetic resin gradually heats up to the core by the heat source in the funnel-shaped reservoir recess that facilitates the flow of the high temperature melter. To be melted. At this time, when the preheated inert gas is supplied to increase the internal pressure, the sensor is activated to stop the supply of the inert gas and exhaust the gas from the exhaust line according to a predetermined time chart.

【0009】次に、溶融器内の下限の温度の設定、溶融
器内の不活性ガス化の条件が満たされないとインターロ
ックにてギアポンプの駆動はできないが、これらの条件
が整うと、サーボモーターによりギアポンプを回転さ
せ、熱溶融した熱可塑性合成樹脂をヒートホースに送り
込み、加温付き塗工ノズルより熱溶融した熱可塑性合成
樹脂を被塗布基材に吹き付けたり又は塗布する接着剤と
して利用でき、さまざまな産業界に広く用いることがで
きる。
Next, the gear pump cannot be driven by the interlock unless the conditions of the lower limit temperature in the melter and the inert gasification in the melter are satisfied. However, if these conditions are satisfied, the servo motor will be operated. The gear pump is rotated by, the thermo-melted thermoplastic synthetic resin is fed into the heat hose, and the thermo-melted thermoplastic synthetic resin is sprayed or applied to the substrate to be coated from the coating nozzle with heating, and can be used as an adhesive. It can be widely used in various industries.

【0010】また、紐状の固形熱可塑性合成樹脂のよう
に細長いものの場合は、渦巻き状にしてホッパーに投入
し、更にシート状のものを用いた場合も、折り畳んでブ
ロック状にしてホッパーに投入し、前述の如くブロック
状の固形熱可塑性合成樹脂の場合と同様に熱溶融される
のである。
Further, in the case of an elongated one such as a string-like solid thermoplastic synthetic resin, it is put into a hopper in a spiral shape, and even when a sheet-like one is used, it is folded into a block shape and put into the hopper. However, as described above, it is heat-melted as in the case of the block-shaped solid thermoplastic synthetic resin.

【0011】次に、ビーズ状、ペレット状、チップ状で
ある細粒状の固形熱可塑性合成樹脂の場合には、ホッパ
ー及び予熱用溶融器の予熱が不要であり、熱源を加熱し
ないので、案内板及び予熱用フィンは、邪魔板として働
き、自由落下を防止する役目を果たすのである。
Next, in the case of fine-grained solid thermoplastic synthetic resin in the form of beads, pellets, or chips, preheating of the hopper and preheating melter is not necessary, and the heat source is not heated, so the guide plate The preheating fins act as a baffle and prevent free fall.

【0012】このように運転を続けると、溶融器内にお
ける熱溶融した熱可塑性合成樹脂の量が経時変化に伴っ
て、自然に消費減少するので、ある一定のレベルに達す
ると例えばレベルスイッチが信号を発し、この信号をも
とにして熱可塑性合成樹脂を補強すべく蓋体を開くと、
蓋体に設けた例えばセンサーが作動して信号が働き、こ
の信号をもとに、蓋体を開いた状態で不活性ガス供給ラ
インより加熱された不活性ガスを供給することにより、
不活性雰囲気に保持することができるので、高温溶融器
の貯溜凹所に貯溜されて熱溶融した熱可塑性合成樹脂の
表面が酸化するのを防止することができる。こうして、
熱可塑性合成樹脂を補充した後、すみやかに蓋体を閉じ
ると、蓋体に設けたセンサーが作動して供給ラインから
不活性ガスを供給することを停止すると、溶融器内を不
活性ガス雰囲気に保つことができる。次に常時運転中
は、数秒間供給ラインより不活性ガスを供給すると、そ
の後に、排気ラインより微量づつ排気を行う工程を一定
周期で繰り返すことにより、常に溶融器内を不活性ガス
雰囲気に保つことができる。従って、不活性ガスの消費
を極小に設定する省資源化を保つことができる。
When the operation is continued in this manner, the amount of the thermoplastic synthetic resin that has been melted in the melter naturally decreases with the lapse of time. Therefore, when a certain level is reached, for example, the level switch sends a signal. And open the lid to reinforce the thermoplastic synthetic resin based on this signal,
For example, a sensor provided on the lid operates to generate a signal, and based on this signal, by supplying the heated inert gas from the inert gas supply line with the lid open,
Since it can be maintained in the inert atmosphere, it is possible to prevent the surface of the thermoplastic synthetic resin stored in the storage recess of the high temperature melter and thermally fused from being oxidized. Thus
When the lid is closed immediately after replenishing the thermoplastic synthetic resin, the sensor provided on the lid operates and the supply of the inert gas from the supply line is stopped. Can be kept. Next, during continuous operation, after supplying an inert gas from the supply line for a few seconds, the process of exhausting a small amount from the exhaust line is repeated at regular intervals to constantly maintain an inert gas atmosphere in the melter. be able to. Therefore, it is possible to keep resource saving by setting the consumption of the inert gas to a minimum.

【0013】また、何らかの状況で加温付き塗工ノズル
が閉塞して、ギアポンプ出口の圧力が上昇してヒートホ
ースの耐圧度を超すことにより起こる破裂等のトラブル
を防止するために、ある一定値以上に上昇すると圧力上
昇防止手段における安全逃し弁が作動し、ギアポンプ出
口の溶融した熱可塑性合成樹脂を高温溶融器の漏斗状貯
溜凹所に還流し、ギアポンプ出口の圧力上昇を防止する
ことができる。また、同時にサーボモーターの回転数を
減じることもできるが、使用する熱可塑性合成樹脂の性
質によりその選択は任意である。
In addition, in order to prevent troubles such as rupture caused by the pressure of the gear pump outlet rising and the pressure resistance of the heat hose being exceeded, the coating nozzle with heating is blocked under some circumstances, and a certain value is set. When the pressure rises above the above, the safety relief valve in the pressure rise prevention means operates, and the molten thermoplastic synthetic resin at the gear pump outlet is returned to the funnel-shaped reservoir recess of the high temperature melter to prevent the pressure rise at the gear pump outlet. . At the same time, the rotation speed of the servo motor can be reduced, but the selection is arbitrary depending on the properties of the thermoplastic synthetic resin used.

【0014】[0014]

【実施例】本発明の詳細を更に図示した実施例により説
明する。
The details of the present invention will be described with reference to the embodiments shown in the drawings.

【0015】熱可塑性合成樹脂の溶融装置Aは、熱可塑
性高分子材料、その中でも高粘着性物質を溶融する装置
であり、図1に示すようにホッパー1、予熱用溶融器
2、加温用溶融器3、高温溶融器4、蓋体5、外装断熱
部材6、不活性ガス封入手段7、塗工手段8より構成さ
れている。更に、高温溶融器4における圧力上昇防止手
段9、フィルター10を構成要素としている。
The melting device A for thermoplastic synthetic resin is a device for melting a thermoplastic polymer material, especially a highly viscous substance, and as shown in FIG. 1, a hopper 1, a preheating melter 2, and a heating device. The melter 3, the high-temperature melter 4, the lid 5, the exterior heat insulating member 6, the inert gas filling means 7, and the coating means 8 are included. Further, the pressure rise preventing means 9 and the filter 10 in the high temperature melter 4 are components.

【0016】ホッパー1は、図2に示すように熱可塑性
合成樹脂を投入するための上面及び下面を開放した中空
内部の下方に、邪魔板を兼ねた案内板11を下方の流れに
沿って1つ又は複数個設け、該案内板11の適所に、図例
のものでは中央部に必要に応じて加熱する熱源11aを埋
設している。即ち、ブロック状の塊、紐状のように細長
いものを渦巻き状にしたもの、シート状のものを折り畳
んでブロック状にしたものを熱溶融する場合は、案内板
11の熱源11aの加熱により粗裁断し、またビーズ状、ペ
レット状、チップ状である細粒状のものを熱溶融する場
合は、案内板11の熱源11aを加熱せずに案内板11を邪魔
板として用いるのである。そして、次に述べる予熱用溶
融器2とホッパー1の間には、断熱シールパッキン12を
介存させて、予熱用溶融器2との温度差を作るために分
離を行っている。これは、各々の溶融器内の温度を分離
して、各々の溶融器内の温度を正確に温度制御し、酸
化、炭化を防止するため温度差による溶融をコントロー
ルするためである。また、断熱シールパッキン12を介存
させる代わりに、ホッパー1を熱伝導の悪いステンレス
等の材料で製造することも可能であり、その時にはホッ
パー1に施すその部分の外装断熱部材6を取り外すこと
もできる。
As shown in FIG. 2, the hopper 1 is provided with a guide plate 11 which also serves as a baffle along a downward flow below a hollow interior having an open upper surface and a lower surface for charging a thermoplastic synthetic resin. One or a plurality of them are provided, and a heat source 11a for heating as needed is embedded in an appropriate place of the guide plate 11 in the central portion in the example of the drawing. That is, when a block-shaped lump, a strip-shaped elongated one in a spiral shape, or a sheet-shaped folded one in a block shape is melted by heat, a guide plate
In the case of roughly cutting by heating the heat source 11a of 11 and heat-melting fine particles such as beads, pellets, and chips, the guide plate 11 is not heated and the guide plate 11 is blocked. Is used as. A heat insulating seal packing 12 is interposed between the preheating melter 2 and the hopper 1 described below to separate the preheating melter 2 in order to create a temperature difference with the preheating melter 2. This is because the temperature inside each melter is separated, the temperature inside each melter is accurately controlled, and the melting due to the temperature difference is controlled to prevent oxidation and carbonization. Instead of interposing the heat-insulating seal packing 12, the hopper 1 can be made of a material such as stainless steel having poor heat conductivity. At that time, the exterior heat insulating member 6 to be applied to the hopper 1 can be removed. it can.

【0017】予熱用溶融器2は、前記ホッパー1の下方
に位置し、上面及び下面を開放した中空内部に下方の流
れに沿って中裁断用の邪魔板を兼ねた予熱用フィン13を
設け、該予熱用フィン13の適所に熱源14を埋設してなる
ものである。図例の予熱用溶融器2は、図2に示すよう
に接触面積を次第に小さくし、熱可塑性合成樹脂を壁面
でも溶融できるように途中より下方に向かうにつれて絞
った形状とし、この形状に合わせて邪魔板を兼ねた予熱
用フィン13も中心に向かうように配設し、予熱用溶融器
2の下部に流れを横切る方向に予熱用フィン13aを配設
し、該予熱用フィン13aに熱源14を埋設したものであ
る。この予熱用フィン13は熱源14を切って使用すること
により邪魔板としての役目も果たすのである。また、次
に述べる加温用溶融器3と予熱用溶融器2の間には、酸
化、炭化を防止するために同様に断熱シールパッキン12
aを介存させて、加温用溶融器3との温度差を作るため
に温度分離を行っている。
The preheating melter 2 is located below the hopper 1, and is provided with a preheating fin 13 also serving as a baffle plate for middle cutting along a downward flow in a hollow interior having an open upper surface and a lower surface, A heat source 14 is embedded in an appropriate position of the preheating fin 13. As shown in FIG. 2, the preheating melter 2 in the illustrated example has a contact area that is gradually reduced, and has a shape in which the thermoplastic synthetic resin is squeezed downward from the middle so that it can be melted even on a wall surface. The preheating fins 13 also serving as baffles are arranged so as to be directed toward the center, and the preheating fins 13a are arranged in the lower portion of the preheating melter 2 in a direction crossing the flow, and the heat source 14 is provided to the preheating fins 13a. It is buried. The preheating fins 13 also serve as a baffle by using the heat source 14 after cutting. Further, between the heating melter 3 and the preheating melter 2 which will be described below, in order to prevent oxidation and carbonization, a heat insulating seal packing 12 is similarly provided.
The temperature separation is performed in order to create a temperature difference with the heating melter 3 by interposing a.

【0018】加温用溶融器3は、前記予熱用溶融器2の
下方に位置し、上面及び下面を開放した中空内部に下方
の流れに沿って、細裁用の伝熱面積を大きくするため碁
盤目状の邪魔板を兼ねた加温用フィン15を設け、適所に
熱源16を埋設してなるものである。図例の加温用溶融器
3も、図2に示すように前記予熱用溶融器2と同様に熱
源16より加温用溶融器3全体に熱が伝わるため、また伝
熱面積を増すように接触面積のいずれでも溶融できるよ
うに下方に向かうにつれて次第に縮小するため絞った形
状としたものである。また、次に述べる高温溶融器4と
加温用溶融器3の間には、同様に断熱シールパッキン12
bを介存させて、高温溶融器4との温度差を作るために
温度分離を行っている。
The heating melter 3 is located below the preheating melter 2 and has a large heat transfer area for slicing along a downward flow in a hollow interior having open upper and lower surfaces. A heating fin (15) also serving as a grid-shaped baffle is provided, and a heat source (16) is embedded in an appropriate place. As shown in FIG. 2, in the heating melter 3 of the illustrated example, heat is transferred from the heat source 16 to the entire heating melter 3 as in the case of the preheating melter 2, so that the heat transfer area is also increased. In order to be able to melt any of the contact areas, the shape is squeezed in order to reduce gradually as it goes downward. In addition, between the high temperature melter 4 and the heating melter 3 described below, a heat insulating seal packing 12 is similarly provided.
Temperature separation is performed in order to make a temperature difference with the high temperature melter 4 by interposing b.

【0019】高温溶融器4は、前記加温用溶融器3の下
方に位置し、熱可塑性合成樹脂を熱溶融する貯溜凹所17
を有し、熱源18を埋設してなるものである。更に図例の
ものは、図2に示すように流動容易なる漏斗状貯溜凹所
17内には、伝熱面積を大きくするために加熱フィン17′
を設け、高温溶融器4の側面又は下面にギアポンプ19を
取り付け、高温溶融器4本体に、貯溜凹所17とギアポン
プ19の吸込口に連通する連通口20及びギアポンプ19の吐
出口より輸送口21を設け、この輸送口21の途中に交換が
簡単なようにカートリッジ式のフィルター10を取り付け
たものである。尚、フィルター10を、ギアポンプ19入口
に位置させることも可能である。
The high-temperature melter 4 is located below the heating melter 3 and has a storage recess 17 for thermally melting the thermoplastic synthetic resin.
And has a heat source 18 buried therein. Further, in the example shown in the figure, as shown in FIG.
Heating fins 17 'are provided inside 17 to increase the heat transfer area.
A gear pump 19 is attached to the side surface or the lower surface of the high temperature melter 4, and the main body of the high temperature melter 4 has a communication port 20 communicating with the storage recess 17 and the suction port of the gear pump 19, and a transport port 21 from the discharge port of the gear pump 19. The cartridge type filter 10 is attached in the middle of the transportation port 21 for easy replacement. The filter 10 may be located at the inlet of the gear pump 19.

【0020】圧力上昇防止手段9は、図2のように前記
高温溶融器4における輸送口21と貯溜凹所17を連通する
戻り口22を穿設し、この戻り口22の途中に安全逃がし弁
23を設けたものであり、ギアポンプ19出口の圧力がある
一定値以上に上昇すると、例えばコイルバネ等の弾性部
材23aに反して安全逃がし弁23が作動することにより図
中矢印方向に移動して、戻り口22の閉塞状態を解いて、
ギアポンプ19出口の溶融した熱可塑性合成樹脂を図中矢
印で示した如く流動容易なる高温溶融器4の漏斗状貯溜
凹所17に還流することにより、ギアポンプ19出口の圧力
上昇を防止することができる。
As shown in FIG. 2, the pressure rise preventing means 9 is provided with a return port 22 which communicates the transport port 21 and the storage recess 17 in the high temperature melter 4, and a safety relief valve is provided in the return port 22.
When the pressure at the outlet of the gear pump 19 rises above a certain value, the safety relief valve 23 operates against the elastic member 23a such as a coil spring to move in the direction of the arrow in the figure. Unblock the return port 22,
By returning the molten thermoplastic synthetic resin at the outlet of the gear pump 19 to the funnel-shaped reservoir recess 17 of the high-temperature melter 4 where the flow becomes easy as shown by the arrow in the figure, the pressure rise at the outlet of the gear pump 19 can be prevented. .

【0021】上記の熱源11a、14、16、18は、シーズヒ
ーターを鋳造と同時に鋳込んだものであったり、或いは
穿設した取付孔にシーズヒーターを密着させて挿入した
ものであったり、或いは取付孔に蒸気や加熱オイル等の
熱媒を循環させることにより加熱溶融するものであって
もよい。
The heat sources 11a, 14, 16, 18 are the sheath heaters cast at the same time as the casting, or the sheath heaters are inserted in close contact with the drilled mounting holes, or It may be one that heats and melts by circulating a heating medium such as steam or heating oil in the mounting hole.

【0022】蓋体5は、前記ホッパー1の上面を閉じて
内部を気密するものであり、特に図例のものは、図1の
如くホッパー1の上面に断熱シールパッキン12cを介存
させて取付部材24を設け、該取付部材24の上面にパッキ
ン25を介して取り付けて、開閉自在としたものである。
また、蓋体5の開閉が内部の温度変化や空気接触による
酸化等に影響を及ぼすので、特に図示しないが開閉表示
のためのセンサーを設けている。
The lid 5 closes the upper surface of the hopper 1 and hermetically seals the inside. Particularly, in the illustrated example, the lid 5 is attached to the upper surface of the hopper 1 with a heat insulating seal packing 12c interposed therebetween. A member 24 is provided, and is attached to the upper surface of the attachment member 24 via a packing 25 so that it can be freely opened and closed.
Further, since the opening and closing of the lid 5 affects the internal temperature change and oxidation due to air contact, a sensor for opening and closing display is provided, although not particularly shown.

【0023】外装断熱部材6は、溶融器1、2、3、4
外部への熱放散を防止し且つ内部を適正な温度に保ち且
つ火傷防止のために、ホッパー1、予熱用溶融器2、加
温用溶融器3、高温溶融器4表面との間に断熱空間部26
を設けて施したものである。特に、ホッパー1、予熱用
溶融器2、加温用溶融器3、高温溶融器4表面と外装断
熱部材6の間に断熱空間部26を設けているので、強制対
流を防止して、断熱空間部26の温度を逃がさず、空気に
よる保温熱断熱によって省エネルギー対策及び断熱効果
を高めることができる。尚、溶融温度の低い熱可塑性合
成樹脂の場合は、コストダウンのため直接巻き付けるこ
ともある。
The exterior heat insulating member 6 is composed of the melters 1, 2, 3, 4
A heat insulating space is provided between the hopper 1, the preheating melter 2, the heating melter 3 and the high temperature melter 4 in order to prevent heat dissipation to the outside, maintain an appropriate temperature inside and prevent burns. Part 26
Is provided. Particularly, since the heat insulating space portion 26 is provided between the surface of the hopper 1, the preheating melter 2, the heating melter 3, the high temperature melter 4 and the exterior heat insulating member 6, forced convection is prevented and the heat insulating space is prevented. The temperature of the portion 26 is not escaped, and the heat insulation and heat insulation by air can enhance the energy saving measures and the heat insulation effect. In the case of a thermoplastic synthetic resin having a low melting temperature, it may be directly wound for cost reduction.

【0024】不活性ガス封入手段7は、第1図のように
導管27を配管して、不活性ガスを溶融器1、2、3、4
内部に供給する供給ライン28とその内部に充満する気体
を排気する排気ライン29で形成されている。ここで、供
給ライン28は、図1の如く供給元に不活性ガス用フィル
ター30、電磁弁31、微圧調整弁32、微流量調整弁33、バ
イパス用のバイパス弁34の順で配管した流量制御手段35
及び断熱空間部26に位置する加熱ヒーター36を途中に設
け、配管27aをホッパー1に接続したものである。次
に、排気ライン29は、途中に電磁弁を用いたON−OF
Fの排気弁37、逆止弁付微量調整弁38を順に取り付け、
配管27bをホッパー1に接続したものである。
The inert gas sealing means 7 is provided with a conduit 27 as shown in FIG.
It is composed of a supply line 28 for supplying the inside and an exhaust line 29 for exhausting the gas filling the inside. Here, the flow rate of the supply line 28 is such that the inert gas filter 30, the electromagnetic valve 31, the fine pressure adjusting valve 32, the fine flow rate adjusting valve 33, and the bypass bypass valve 34 are piped in this order from the supply source as shown in FIG. Control means 35
A heater 36 located in the heat insulating space 26 is provided on the way, and the pipe 27a is connected to the hopper 1. Next, the exhaust line 29 is an ON-OF which uses a solenoid valve on the way.
F exhaust valve 37, check valve with check valve 38 are attached in order,
The pipe 27b is connected to the hopper 1.

【0025】塗工手段8は、図1に示す如くサーボモー
ター39をカップリング40を介してギアポンプ19に直結
し、輸送口21の吐出側には、加熱ヒーターを内蔵し保温
を施したフレキシブルなヒートホース41を連結し、該ヒ
ートホース41の先端に電磁弁43を介して加熱ヒーターを
内蔵した加温付き塗工ノズル42を取り付けたものであ
る。
As shown in FIG. 1, the coating means 8 has a flexible structure in which a servomotor 39 is directly connected to a gear pump 19 via a coupling 40, and a heating heater is built in the discharge side of the transportation port 21 to keep heat. A heat hose 41 is connected, and a heating application nozzle 42 having a built-in heater is attached to the end of the heat hose 41 via an electromagnetic valve 43.

【0026】系外に設けた電気制御操作盤46内のマイク
ロプロセッサー等の温度制御手段にて溶融器1、2、
3、4内を順次段階的に高温に設定した設定温度の値に
対して、熱可塑性合成樹脂の性質上、温度変化に対して
粘度が微変するので、必要以上に温度管理を充分に行う
ため、0.5℃前後の範囲で制御し且つヒートホース41
及び加温付き塗工ノズル42の温度を制御し、必要適正な
温度に溶融した熱可塑性合成樹脂を、自動制御可能なサ
ーボモーター39に連結したギアポンプ19により必要なる
適正量ずつ一定量及び必要な圧力にて、先端に加温付き
塗工ノズル42を有するヒートホース41に送液でき、サー
ボモーター39のコントローラー制御システムにてギアポ
ンプ19の自動停止及び自動可変が可能である。
The melters 1, 2 are controlled by temperature control means such as a microprocessor in an electric control panel 46 provided outside the system.
Due to the property of the thermoplastic synthetic resin, the viscosity slightly changes with respect to the set temperature value in which the temperature inside 3 and 4 is set to a high temperature in a stepwise manner. Therefore, the heat hose 41 is controlled within the range of around 0.5 ° C.
And, the temperature of the coating nozzle 42 with heating is controlled, and the thermoplastic synthetic resin melted to a necessary and appropriate temperature is controlled by the gear pump 19 connected to the automatically controllable servo motor 39 in a constant amount and a necessary amount. By pressure, liquid can be sent to the heat hose 41 having the coating nozzle 42 with heating at the tip, and the controller control system of the servomotor 39 can automatically stop and automatically change the gear pump 19.

【0027】また、サーボモーター39は、パンチ孔44を
穿設した保護安全カバー45により囲まれている。
Further, the servo motor 39 is surrounded by a protective safety cover 45 having punch holes 44 formed therein.

【0028】更に、不活性ガス封入手段7で供給する不
活性ガスは、予熱された窒素ガス、二酸化炭素ガスを意
味するのである。
Further, the inert gas supplied by the inert gas filling means 7 means preheated nitrogen gas and carbon dioxide gas.

【0029】また、溶融装置Aにおけるホッパー1、予
熱用溶融器2、加温用溶融器3、高温溶融器4、ギアポ
ンプ19、ヒートホース41等のホットメルトの接触部及び
接液部にフッ素ライニング、例えばPTFE、PCTF
E、FEP、PFA等の非粘着、耐熱、耐薬、耐磨耗、
非通電の処理材を焼き付けてコーティングすることによ
り、従来頻繁に壁面にこびりついたり、管路を閉塞する
高粘度のホットメルトの付着を防止することができる。
Further, the hopper 1, the preheating melter 2, the heating melter 3, the high temperature melter 4, the gear pump 19, the heat hose 41 and the like in the melting device A are provided with a fluorine lining on the contact part and the liquid contact part of the hot melt. , For example, PTFE, PCTF
Non-adhesive, heat resistant, chemical resistant, abrasion resistant, such as E, FEP, PFA, etc.
By baking and coating the non-energized treatment material, it is possible to prevent the sticking of the high-viscosity hot melt, which conventionally sticks to the wall surface and blocks the pipeline.

【0030】尚、代表的実施例の溶融装置Aでは、ホッ
パー1、予熱用溶融器2、加温用溶融器3、高温溶融器
4を別部材として構成しているが、全て或いは必要な部
分を一体成形することも可能である。
In the melting apparatus A of the typical embodiment, the hopper 1, the preheating melter 2, the heating melter 3 and the high temperature melter 4 are constructed as separate members, but all or necessary parts are provided. It is also possible to integrally mold.

【0031】また、特にビーズ状、ペレット状、チップ
状である細粒状の固形熱可塑性合成樹脂を熱溶融する場
合には、案内板11の熱源11aを加熱しないで運転するの
であるが、例えばホッパー1の材質に熱伝導の悪いステ
ンレス等を用いるとともに、ホッパー1及び蓋体5に外
装断熱部材6でその部分の保温を行わない装置も採用す
ることができる。
Further, particularly when the fine granular solid thermoplastic synthetic resin in the form of beads, pellets, or chips is melted by heat, the heat source 11a of the guide plate 11 is operated without heating, for example, a hopper. It is also possible to use a device such as stainless steel, which has poor heat conduction, as the material of No. 1 and which does not keep the parts of the hopper 1 and the lid 5 by the exterior heat insulating member 6.

【0032】而して、溶融器の温度を予熱させるのが先
か固形熱可塑性合成樹脂を投入するのが先かの順序は問
わないが、操作例を挙げると、溶融装置Aの蓋体5を開
き、ブロック状、ビーズ状、ペレット状、チップ状、紐
状の固形熱可塑性合成樹脂をホッパー1より投入し、蓋
体5を閉じて不活性ガス封入手段7における供給ライン
28より加熱ヒーター36で加熱された不活性ガスが供給さ
れて溶融器内1、2、3、4を不活性雰囲気にし、熱源
11a、14、16、18を予熱してホッパー1、予熱用溶融器
2、加温用溶融器3、高温溶融器4内を順次段階的に高
温に設定した設定温度に到達すると内部の熱可塑性合成
樹脂材料は熱溶解されており、ギアポンプの駆動が可能
であるインターロックが解除されて、熱可塑性合成樹脂
の溶融器の使用ができる。
The order of preheating the temperature of the melting vessel or charging the solid thermoplastic synthetic resin is not critical, but an example of the operation is as follows. Open, the block-shaped, bead-shaped, pellet-shaped, chip-shaped, and string-shaped solid thermoplastic synthetic resin is charged from the hopper 1, the lid 5 is closed, and the supply line in the inert gas sealing means 7 is closed.
The inert gas heated by the heater 36 is supplied from the 28 to make the insides of the melter 1, 2, 3, 4 inert atmosphere and heat source.
11a, 14, 16, 18 are preheated and the thermoplasticity of the interior is reached when the set temperature set in the hopper 1, the preheating melter 2, the warming melter 3 and the high temperature melter 4 is gradually increased to a high temperature. Since the synthetic resin material is melted by heat, the interlock enabling the driving of the gear pump is released, and the melter of the thermoplastic synthetic resin can be used.

【0033】そして、更に溶解手順を詳しく説明する
と、ブロック状の塊の固形熱可塑性合成樹脂の場合は、
投入された熱可塑性合成樹脂はホッパー1内の邪魔板を
兼ねた案内板11の間を通過することにより粗裁断状に熱
溶融され、次に予熱用溶融器2内の邪魔板を兼ねた予熱
用フィン13により溶融されて更に中裁断状に溶融され、
そして加温用溶融器3内の碁盤目状の邪魔板を兼ねた加
温用フィン15により細裁されることにより徐々に細かく
固形熱可塑性合成樹脂は徐々に高温に接して棒状の溶融
小塊にされ、高温溶融器4の流動容易なる貯溜凹所17に
おける熱源18により熱可塑性合成樹脂を芯まで徐々に熱
溶融することになり、且つ不活性ガスの供給圧により内
圧が高まるとセンサー(特に図示せず)が作動して不活
性ガスの供給を停止し且つ定められたタイムチャートに
より排気弁37が開き、逆止弁付微量調整弁38にて流量を
コントロールしながら排気する。
The dissolution procedure will be described in more detail. In the case of a block-shaped lump of solid thermoplastic synthetic resin,
The injected thermoplastic synthetic resin is heat-melted in a roughly cut shape by passing between the guide plates 11 also functioning as baffles in the hopper 1, and then preheating which also serves as a baffle in the preheating melter 2. It is melted by the fins 13 for melting and further melted into a medium cut shape,
Then, by being finely cut by the heating fins 15 also serving as a grid-shaped baffle in the heating melter 3, the solid thermoplastic synthetic resin gradually comes into contact with a high temperature and gradually melts into a rod-shaped molten lump. When the heat source 18 in the storage recess 17 that facilitates the flow of the high-temperature melter 4 gradually melts the thermoplastic synthetic resin to the core, and the internal pressure increases due to the supply pressure of the inert gas, the sensor (particularly (Not shown) operates to stop the supply of the inert gas, and the exhaust valve 37 opens according to a predetermined time chart, and the minute amount regulating valve 38 with a check valve controls the flow rate to exhaust the gas.

【0034】次に、溶融器内の下限の温度の設定、溶融
器内の不活性ガス化の条件が満たされないとインターロ
ックにてギアポンプ19の駆動はできないが、これらの条
件が整うと、溶解設定温度になり、サーボモーター39に
よりギアポンプ19を回転させ、熱溶融した熱可塑性合成
樹脂をヒートホース41に送り込むとともに、電磁弁43を
開いて加熱空気の圧力で加温付き塗工ノズル42より熱溶
融した熱可塑性合成樹脂を必要量、必要面積に応じて、
必要形状パターンに合ったノズルを使用することにより
被塗布基材に吹き付け又は塗布して、さまざまな用途に
用いることができる。
Next, the gear pump 19 cannot be driven by the interlock unless the conditions for setting the lower limit temperature in the melter and inert gasification in the melter are satisfied, but when these conditions are met, melting is performed. When the temperature reaches the set temperature, the servomotor 39 rotates the gear pump 19 to send the heat-melted thermoplastic synthetic resin to the heat hose 41, and the solenoid valve 43 is opened to heat the coating nozzle 42 with heating by the pressure of heated air. Depending on the required amount and area of the molten thermoplastic synthetic resin,
By using a nozzle suitable for a required shape pattern, it can be sprayed or coated on a substrate to be coated and used for various purposes.

【0035】また、紐状の固形熱可塑性合成樹脂のよう
に細長いものの場合は、渦巻き状にしてホッパーに投入
し、更にシート状のものの場合も、折り畳んでブロック
状にしてホッパー1に投入し、前述の如くブロック状の
固形熱可塑性合成樹脂の場合と同様に熱溶融されるので
ある。
In the case of a long and narrow one such as a string-like solid thermoplastic synthetic resin, it is spirally put into the hopper, and in the case of a sheet-like one, it is folded and put into the block into the hopper 1. As described above, it is heat-melted as in the case of the block-shaped solid thermoplastic synthetic resin.

【0036】更に、ビーズ状、ペレット状、チップ状で
ある細粒状の固形熱可塑性合成樹脂の場合には、ホッパ
ー1及び予熱用溶融器2の予熱が不要であり、熱源11
a、14を加熱しないので、案内板11及び予熱用フィン13
は、邪魔板として働き、自由落下を防止する役目を果た
すのである。
Further, in the case of fine-grained solid thermoplastic synthetic resin in the form of beads, pellets, or chips, preheating of the hopper 1 and the preheating melter 2 is unnecessary, and the heat source 11
Since a and 14 are not heated, the guide plate 11 and the preheating fins 13
Acts as a baffle and prevents free fall.

【0037】このように運転を続けると、溶融器内1、
2、3、4内における熱溶融した熱可塑性合成樹脂の量
が経時変化に伴って自然に消費減少するので、ある一定
のレベルに達するとレベルスイッチ(特に図示せず)の
信号が働き、この信号をもとにして蓋体5をホットメル
ト原料を補給すべく開くと、蓋体5に設けたセンサー
(特に図示せず)が作動して信号を発する。この信号を
もとに、蓋体5を開いた状態で供給ライン28より加熱し
た不活性ガスを供給して、不活性雰囲気に保持すること
ができるので、高温溶融器4の貯溜凹所17に貯溜されて
熱溶融した熱可塑性合成樹脂の表面が温度変化を受けて
粘度が変化し流動が悪くなったり、空気の影響により酸
化するのを防止することができる。こうして、すばやく
熱可塑性合成樹脂を補充した後、すみやかに蓋体5を閉
じると、蓋体5に設けたセンサー(特に図示せず)が作
動して供給ライン28から不活性ガスを供給することを停
止すると、溶融器1、2、3、4内を絶えず不活性ガス
雰囲気に保つことができる。次に常時運転中は経時変化
により時間設定のスケジュールにより数秒間供給ライン
28より不活性ガスを供給すると、その後に、また新しい
窒素ガス、二酸化炭素を供給するために排気ライン29の
逆止弁付微量調整弁38より排気することにより、微量づ
つ排気を行う工程を一定周期で繰り返すことにより、常
に溶融器内1、2、3、4内を不活性ガス雰囲気に保つ
ことができる。従って、不活性ガスの消費を極小に設定
する省資源化を保つことができる。
When the operation is continued in this way, the inside of the melter 1,
Since the amount of the thermoplastic synthetic resin melted in 2, 3, and 4 naturally decreases with the lapse of time, when a certain level is reached, a signal from a level switch (not particularly shown) works, and When the lid body 5 is opened to replenish the hot melt raw material based on the signal, a sensor (not shown) provided on the lid body 5 operates to emit a signal. On the basis of this signal, the heated inert gas can be supplied from the supply line 28 with the lid 5 opened to maintain the inert atmosphere, so that the storage recess 17 of the high-temperature melter 4 can be stored in the storage recess 17. It is possible to prevent the surface of the thermoplastic synthetic resin that has been stored and heat-melted from undergoing a temperature change to have a change in viscosity, resulting in poor flow and oxidation due to the influence of air. Thus, when the lid 5 is closed promptly after the thermoplastic synthetic resin is replenished, a sensor (not shown) provided on the lid 5 is activated to supply the inert gas from the supply line 28. When stopped, the inside of the melters 1, 2, 3, and 4 can be constantly maintained in an inert gas atmosphere. Next, during continuous operation, the supply line for several seconds
After supplying the inert gas from 28, the process to perform small amount exhaustion is performed by exhausting from the minute adjustment valve 38 with check valve in the exhaust line 29 to supply new nitrogen gas and carbon dioxide. By repeating the cycle, the insides of the melters 1, 2, 3 and 4 can always be kept in an inert gas atmosphere. Therefore, it is possible to keep resource saving by setting the consumption of the inert gas to a minimum.

【0038】また、何らかの状況で加温付き塗工ノズル
42が停止して、ギアポンプ19出口の圧力が上昇してヒー
トホースの耐圧度を超すことにより起こる破裂等のトラ
ブルを防止するために、ある一定値に上昇すると圧力上
昇防止手段9における例えばコイルバネ等の弾性部材23
aに反して安全逃し弁23が作動して図2において矢印方
向に移動し、戻り口22の閉塞状態を解除してギアポンプ
19出口の溶融した熱可塑性合成樹脂を流動容易なる貯溜
凹所17に還流し、ギアポンプ19出口の圧力上昇を防止す
ることができる。又は、サーボモーター39のコントロー
ラー制御機器によりホットメルトの種類によっては回転
数の自動制御により異常昇圧現象は解消される。
Further, the coating nozzle with heating under some circumstances
In order to prevent troubles such as rupture that occurs when 42 stops and the pressure at the outlet of the gear pump 19 rises to exceed the pressure resistance of the heat hose, when it rises to a certain value, for example, a coil spring in the pressure rise prevention means 9 Elastic member 23
Contrary to a, the safety relief valve 23 operates and moves in the direction of the arrow in FIG. 2 to release the closed state of the return port 22 and remove the gear pump.
The molten thermoplastic synthetic resin at the outlet of 19 can be returned to the storage recess 17 where the flow can be facilitated, and the pressure increase at the outlet of the gear pump 19 can be prevented. Or, depending on the type of hot melt, the controller of the servomotor 39 can automatically control the rotation speed to eliminate the abnormal pressurization phenomenon.

【0039】このように、本発明の代表的実施例の溶融
装置Aによれば、ブロック状の塊又は紐状の細長いもの
を渦巻き状にしたもの又はシート状のものを折り畳んで
ブロック状にしたものは、不活性ガス雰囲気においてホ
ッパー1内の邪魔板を兼ねた案内板11の間を通過するこ
とにより粗裁断状に熱溶融され、次に予熱用溶融器2内
の邪魔板を兼ねた予熱用フィン13により溶融されて更に
中裁断状に溶融され、そして加温用溶融器3内の碁盤目
状の邪魔板を兼ねた加温用フィン15により棒状に細裁さ
れることにより徐々に固形熱可塑性合成樹脂は徐々に高
温に接して棒状の溶融小塊にされ、高温溶融器4の漏斗
状貯溜凹所17において熱源18により熱可塑性合成樹脂を
芯まで徐々に熱溶融するので、熱可塑性合成樹脂の温度
制御によって急激な加温による急溶解や空気中での溶解
を防止するため、熱可塑性合成樹脂の酸化、炭化、硬
化、劣化を防止することができる。しかも、ビーズ状、
ペレット状、チップ状である細粒状の固形熱可塑性合成
樹脂の場合には、ホッパー1及び予熱用溶融器2の予熱
が不要であり、熱源11a、14を加熱しないので、案内板
11及び予熱用フィン13は、邪魔板として働き、自由落下
を防止する役目を果たすのである。従って、あらゆる種
類、形状の固形熱可塑性合成樹脂を一台の溶融装置Aに
より、熱溶融することができる。もちろん素材の溶融温
度に対応できる熱源は確保してなるものである。
As described above, according to the melting apparatus A of the representative embodiment of the present invention, a block-shaped lump or a string-shaped elongated member is made into a spiral shape or a sheet-shaped member is folded into a block shape. The material is heat-melted in a roughly cut shape by passing between the guide plates 11 which also function as baffles in the hopper 1 in an inert gas atmosphere, and then preheating which also serves as a baffle in the preheating melter 2. It is melted by the fins for heating 13 and further cut into a medium cut shape, and is gradually solidified by being finely cut into a rod shape by the heating fins 15 also functioning as a grid-shaped baffle plate in the heating melter 3. The thermoplastic synthetic resin is gradually brought into contact with high temperature to form a rod-shaped molten blob, and the heat source 18 gradually heat-melts the thermoplastic synthetic resin to the core in the funnel-shaped storage recess 17 of the high-temperature melter 4. The temperature control of the synthetic resin causes Since rapid dissolution due to temperature and dissolution in air are prevented, it is possible to prevent oxidation, carbonization, curing and deterioration of the thermoplastic synthetic resin. Moreover, beaded,
In the case of a pellet-shaped or chip-shaped fine-grained solid thermoplastic synthetic resin, preheating of the hopper 1 and the preheating melter 2 is unnecessary, and the heat sources 11a and 14 are not heated.
The preheating fins 13 and the preheating fins 13 function as baffle plates and prevent free fall. Therefore, solid thermoplastic synthetic resins of all types and shapes can be melted by the single melting device A. Of course, a heat source that can handle the melting temperature of the material must be secured.

【0040】また、高温溶融器4におけるギアポンプ19
出口に圧力上昇防止手段9を設けているので、何らかの
状況で加温付き塗工ノズル42が停止した場合にも、ヒー
トホース41内やギアポンプ19出口の圧力上昇を防止する
ことができ、従来よくあったヒートホース41内の内圧が
上昇しすぎてヒートホース41の破裂や加温付き塗工ノズ
ル42の先端より突発噴出することを防止し、しかも高温
溶融器4における吐出口である輸送口21にフィルター10
を設けているため、接着材の品質に悪影響を及ぼした
り、ヒートホース41内や加温付き塗工ノズル42の目詰ま
りの原因となるゴミ異物等を取り除くことができる。
Further, the gear pump 19 in the high temperature melter 4
Since the pressure rise prevention means 9 is provided at the outlet, even if the coating nozzle 42 with heating stops under some circumstances, it is possible to prevent the pressure rise in the heat hose 41 and the outlet of the gear pump 19, which is conventionally required. The internal pressure inside the heat hose 41, which was too high, was prevented from bursting and sudden ejection from the tip of the coating nozzle 42 with heating. To filter 10
Since the above is provided, it is possible to remove foreign matters and the like that adversely affect the quality of the adhesive material and cause clogging of the heat hose 41 and the coating nozzle 42 with heating.

【0041】更に、不活性ガス封入手段7の供給ライン
28により断続的に低圧の不活性ガスを供給すると、その
後、排気ライン29により内部に充満する気体を少量づつ
排気を行って溶融器1、2、3、4内のバランスを保つ
ので、不活性ガスの大幅な節約となる。また、マイクロ
プロセッサー等の温度制御手段にて溶融器1、2、3、
4内を適正な温度に制御するので、急激な温度変化を最
小にして安定した接着材の温度管理を行うことができ、
一部のこびりつきや酸化や炭化を防止し且つ熱劣化を防
止し、接着剤としての効果を劣化させない。
Further, the supply line of the inert gas sealing means 7
When low-pressure inert gas is intermittently supplied by 28, the gas filling the inside is exhausted little by little by the exhaust line 29, and the balance in the melters 1, 2, 3, 4 is maintained. It saves a lot of gas. Further, the temperature control means such as a microprocessor is used to melt the melters 1, 2, 3,
Since the inside of 4 is controlled to an appropriate temperature, it is possible to minimize the sudden temperature change and perform stable temperature control of the adhesive material.
It prevents some stickiness, oxidation and carbonization, prevents thermal deterioration, and does not deteriorate the effect as an adhesive.

【0042】[0042]

【発明の効果】本発明は、前述のように構成されている
ので、次に記載する効果を奏する。請求項1の溶融器に
おいては、ブロック状の塊又は紐状の細長いものを渦
巻き状にしたもの又はシート状のものを折り畳んでブロ
ック状にしたものは、不活性ガス雰囲気においてホッパ
ー内の邪魔板を兼ねた案内板の間を通過することにより
粗裁断状に溶融裁断され、次に予熱用溶融器内の邪魔板
を兼ねた予熱用フィンにより溶融されて更に中裁断状に
溶融され、そして加温用溶融器内の碁盤目状の邪魔板を
兼ねた加温用フィンにより細裁されることにより徐々に
固形熱可塑性合成樹脂は徐々に高温に接して棒状の溶融
小塊にされ、高温溶融器の伝熱面積を増すために加熱フ
ィンを設けた流動容易なる漏斗状貯溜凹所において熱源
により熱可塑性合成樹脂を芯まで徐々に熱溶融するの
で、熱可塑性合成樹脂の温度制御によって急激な加温に
よる急溶解や空気中での溶解を防止するため、熱可塑性
合成樹脂の酸化、炭化、硬化、劣化を防止することがで
きる。しかも、ビーズ状、ペレット状、チップ状である
細粒状の固形熱可塑性合成樹脂の場合には、ホッパー及
び予熱用溶融器の予熱が不要であり、熱源を加熱しない
ので、案内板及び予熱用フィンは、邪魔板として働き、
自由落下を防止する役目を果たすのである。従って、あ
らゆる種類、形状の固形熱可塑性合成樹脂を一台の溶融
装置により、熱溶融することができる。もちろん、素材
の溶融温度に対応できる熱源は確保してなるものであ
る。また、不活性ガス封入手段の供給ラインにより断
続的に低圧の不活性ガスを供給すると、その後に、排気
ラインにより内部に充満する気体を少量づつ排気を行っ
て溶融器内のバランスを保つので、不活性ガス使用量の
大幅な節約となる。更に、マイクロプロセッサー等の
温度制御手段にて溶融器内を適正な温度に制御するの
で、急激な温度変化を最小にして安定した接着材の温度
管理を行うことができ、酸化や炭化を防止し且つ滞留が
ない形状のため熱劣化を防止し、接着剤としての効果を
熱劣化させない。請求項2の溶融器においては、高温溶
融器におけるギアポンプ出口に圧力上昇防止手段を設け
ているので、何らかの状況で加温付き塗工ノズルが閉塞
した場合にも、ヒートホース内やギアポンプ出口の圧力
上昇を防止することができ、しかも高温溶融器における
ギアポンプの入口又は出口にフィルターを設けているた
め、接着材の品質に悪影響を及ぼしたり、ヒートホース
内や加温付き塗工ノズルの目詰まりの原因となるゴミ異
物等を取り除くことができる。
Since the present invention is constructed as described above, it has the following effects. In the melter according to claim 1, a block-shaped lump or a string-shaped elongated member is made into a spiral shape, or a sheet-shaped member is folded into a block shape, and the baffle plate in the hopper in an inert gas atmosphere. It is melted and cut into rough cuts by passing between the guide plates that also serve as the cut plates, and then it is melted by the preheating fins that also serve as the baffle plates in the preheating melter, and is further melted in the middle cut form, and then for heating. By being finely cut by the heating fins that also serve as a grid-shaped baffle in the melter, the solid thermoplastic synthetic resin is gradually brought into contact with high temperature to form a rod-shaped melted agglomerate. In the funnel-shaped reservoir recess where heating fins are installed to increase the heat transfer area, the heat source gradually melts the thermoplastic synthetic resin to the core, so that the temperature control of the thermoplastic synthetic resin causes rapid heating. Yo To prevent dissolution in rapid dissolution and air, oxidation of the thermoplastic synthetic resin, carbide, hardened, it is possible to prevent deterioration. Moreover, in the case of fine-grained solid thermoplastic synthetic resin in the form of beads, pellets, or chips, preheating of the hopper and preheating melter is not required and the heat source is not heated, so the guide plate and preheating fins Acts as a baffle,
It plays the role of preventing free fall. Therefore, solid thermoplastic synthetic resins of all types and shapes can be heat-melted by a single melting device. Of course, a heat source that can handle the melting temperature of the material is secured. Further, when the low-pressure inert gas is intermittently supplied through the supply line of the inert gas charging means, after that, the gas filling the inside is exhausted little by little by the exhaust line to maintain the balance in the melter, This greatly reduces the amount of inert gas used. Furthermore, since the temperature inside the melter is controlled to an appropriate temperature by temperature control means such as a microprocessor, it is possible to minimize sudden temperature changes and perform stable temperature control of the adhesive, and prevent oxidation and carbonization. In addition, since the shape does not cause retention, thermal deterioration is prevented, and the effect as an adhesive is not thermally deteriorated. In the melter of claim 2, since the pressure rise preventing means is provided at the gear pump outlet in the high temperature melter, even if the coating nozzle with heating is closed under some circumstances, the pressure in the heat hose or the gear pump outlet is increased. It is possible to prevent the rise, and since a filter is installed at the inlet or outlet of the gear pump in the high temperature melter, it may adversely affect the quality of the adhesive material and may cause clogging of the heat hose and the coating nozzle with heating. It is possible to remove the foreign matter, etc. that cause dust.

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

【図1】本発明に係る熱可塑性合成樹脂の熱溶解溶融装
置の代表的実施例の縦断面図
FIG. 1 is a vertical cross-sectional view of a typical embodiment of a heat melting and melting apparatus for thermoplastic synthetic resin according to the present invention.

【図2】同じく溶融器の拡大縦断面図FIG. 2 is an enlarged vertical cross-sectional view of the same melter.

【符号の説明】[Explanation of symbols]

A 熱可塑性合成樹脂の熱溶解溶融装置 1 ホッパー 2 予熱用溶融器 3 加温用溶融器 4 高温溶融器 5 蓋体 6 外装断熱部材 7 不活性ガス封入手段 8 塗工手段 9 圧力上昇防止手段 10 フィルター 11 案内板 12 断熱シールパ
ッキン 13 予熱用フィン 14 熱源 15 加温用フィン 16 熱源 17 貯溜凹所 18 熱源 19 キアポンプ 20 連通口 21 輸送口 22 戻り口 23 安全逃し弁 24 取付部材 25 パッキン 26 断熱空間部 27 導管 28 供給ライン 29 排気ライン 30 不活性ガス用
フィルター 31 電磁弁 32 微圧調整弁 33 微流量調整弁 34 バイパス弁 35 流量制御手段 36 加熱ヒーター 37 排気弁 38 逆止弁付微量
調整弁 39 サーボモーター 40 カップリング 41 ヒートホース 42 加温付き塗工
ノズル 43 電磁弁 44 パンチ孔 45 保護安全カバー 46 電気制御盤
A Thermomelting / melting device for thermoplastic synthetic resin 1 Hopper 2 Preheating melter 3 Heating melter 4 High temperature melter 5 Lid body 6 Exterior heat insulating member 7 Inert gas filling means 8 Coating means 9 Pressure rise preventing means 10 Filter 11 Guide plate 12 Insulation seal packing 13 Preheating fin 14 Heat source 15 Heating fin 16 Heat source 17 Storage recess 18 Heat source 19 Kia pump 20 Communication port 21 Transport port 22 Return port 23 Safety relief valve 24 Mounting member 25 Packing 26 Insulating space Part 27 Conduit 28 Supply line 29 Exhaust line 30 Inert gas filter 31 Solenoid valve 32 Fine pressure adjustment valve 33 Fine flow rate adjustment valve 34 Bypass valve 35 Flow rate control means 36 Heating heater 37 Exhaust valve 38 Minute adjustment valve with check valve 39 Servo motor 40 Coupling 41 Heat hose 42 Coating nozzle with heating 43 Solenoid valve 44 Punch hole 45 Protective safety cover 46 Electric control panel

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 上面及び下面を開放した中空内部に下方
の流れに沿って粗裁断用の邪魔板を兼ねた案内板を設
け、該案内板の適所に必要に応じて加熱する熱源を埋設
してなるホッパーと、 前記ホッパーの下方に位置し、上面及び下面を開放した
中空内部に下方の流れに沿って中裁断用の邪魔板を兼ね
た予熱用フィンを設け、該予熱用フィンの適所に必要に
応じて加熱する熱源を埋設してなる予熱用溶融器と、 前記予熱用溶融器の下方に位置し、上面及び下面を開放
した中空内部に下方の流れに沿って細裁用の碁盤目状の
邪魔板を兼ねた加温用フィンを設け、適所に熱源を埋設
してなる加温用溶融器と、 前記加温用溶融器の下方に位置し、熱可塑性合成樹脂を
熱溶融する加熱フィンを適所に設けた流動容易なる漏斗
状貯溜凹所を有し、熱源を埋設してなる高温溶融器と、 前記ホッパーの上面を閉じて内部を気密する蓋体と、 外部への熱放散を防止して溶融器内を適正な温度に保ち
且つ火傷防止のために、溶融器の表面との間に断熱空間
部を設けて施した外装断熱部材と、 不活性ガスを溶融器内部に供給する供給ラインと、その
内部に充満する気体を排気する排気ラインとで構成され
た不活性ガス封入手段と、 マイクロプロセッサー等の温度制御手段にて溶融器内を
適正な温度に制御し、必要適正な温度に溶融した熱可塑
性合成樹脂を、自動制御可能なサーボモーターを連結し
たギアポンプにより必要なる適正量を一定量及び必要な
圧力にて、先端に加温付き塗工ノズルを有するヒートホ
ースに送液でき、サーボモーターの自動制御用コントロ
ーラーにてギアポンプの自動停止及び自動可変が可能な
塗工手段と、よりなる熱可塑性合成樹脂の熱溶融溶解装
置。
1. A guide plate also serving as a baffle plate for rough cutting is provided along a downward flow in a hollow interior having an open upper surface and a lower surface, and a heat source for heating is buried in an appropriate place of the guide plate. And a preheating fin located below the hopper and having an upper surface and a lower surface opened along the downward flow and also serving as a baffle plate for medium cutting, and the preheating fin is provided at an appropriate position. A preheating melter in which a heat source for heating as needed is embedded, and a cross-cutting grid along a downward flow in a hollow interior located below the preheating melter and having an upper surface and a lower surface opened. Heating fins that also function as a baffle plate and have a heat source embedded in a suitable place, and heating that melts the thermoplastic synthetic resin under the heating melter. It has a funnel-shaped storage recess with fins in place to facilitate the flow and fills the heat source. A high-temperature melter that is installed, a lid that closes the upper surface of the hopper to make the inside airtight, and to prevent heat dissipation to the outside to keep the inside of the melter at an appropriate temperature and prevent burns, melt It is composed of an exterior heat insulating member provided with a heat insulating space between it and the surface of the vessel, a supply line for supplying an inert gas to the inside of the melter, and an exhaust line for exhausting the gas filling the inside. A gear pump with an inert gas filling means and a temperature control means such as a microprocessor that controls the interior temperature of the melter to an appropriate temperature, and the thermoplastic synthetic resin melted to the necessary and appropriate temperature is connected to a servomotor that can be automatically controlled. Can be used to deliver a required and appropriate amount to a heat hose that has a coating nozzle with heating at the tip at a fixed amount and pressure, and the controller for automatic control of the servo motor automatically stops the gear pump and automatically A thermomelting / melting apparatus for a thermoplastic synthetic resin, which comprises a coating means capable of variable movement.
【請求項2】 高温溶融器において、ギアポンプ出口の
圧力がある一定値以上に上昇すると、安全逃がし弁が作
動してギアポンプ出口の溶融した熱可塑性合成樹脂を高
温溶融器の漏斗状貯溜凹所に還流する圧力上昇防止手段
を設けるとともにギアポンプ入口又は出口にフィルター
を設け、更に安全逃がし弁が作動した時には必要に応じ
てサーボモーターの回転数を自動制御してなる請求項1
記載の熱可塑性合成樹脂の熱溶融溶解装置。
2. In the high temperature melter, when the pressure at the outlet of the gear pump rises above a certain value, the safety relief valve operates and the molten thermoplastic synthetic resin at the outlet of the gear pump is transferred to the funnel-shaped reservoir recess of the high temperature fuser. 2. A pressure rise preventing means for circulating the flow is provided, a filter is provided at the inlet or outlet of the gear pump, and when the safety relief valve is actuated, the rotation speed of the servo motor is automatically controlled as required.
A device for melting and melting a thermoplastic synthetic resin as described.
JP3042621A 1991-02-13 1991-02-13 Melting and melting equipment for thermoplastic synthetic resin Expired - Lifetime JP2983313B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3042621A JP2983313B2 (en) 1991-02-13 1991-02-13 Melting and melting equipment for thermoplastic synthetic resin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3042621A JP2983313B2 (en) 1991-02-13 1991-02-13 Melting and melting equipment for thermoplastic synthetic resin

Publications (2)

Publication Number Publication Date
JPH06154692A true JPH06154692A (en) 1994-06-03
JP2983313B2 JP2983313B2 (en) 1999-11-29

Family

ID=12641095

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3042621A Expired - Lifetime JP2983313B2 (en) 1991-02-13 1991-02-13 Melting and melting equipment for thermoplastic synthetic resin

Country Status (1)

Country Link
JP (1) JP2983313B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6175101B1 (en) * 1998-09-24 2001-01-16 Nordson Corporation Thermoplastic material melting unit having high throughput and heating capacity

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6175101B1 (en) * 1998-09-24 2001-01-16 Nordson Corporation Thermoplastic material melting unit having high throughput and heating capacity

Also Published As

Publication number Publication date
JP2983313B2 (en) 1999-11-29

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