JP3198742U - Biodegradable composite resin pellet manufacturing equipment - Google Patents

Biodegradable composite resin pellet manufacturing equipment Download PDF

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JP3198742U
JP3198742U JP2015001402U JP2015001402U JP3198742U JP 3198742 U JP3198742 U JP 3198742U JP 2015001402 U JP2015001402 U JP 2015001402U JP 2015001402 U JP2015001402 U JP 2015001402U JP 3198742 U JP3198742 U JP 3198742U
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chamber
extrusion
kneading
paper powder
molding machine
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豊 押田
豊 押田
田中 裕之
裕之 田中
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日本ペパロン株式会社
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Abstract

【課題】単独の粉砕機により微粉砕した古紙の紙粉とポリ乳酸樹脂および架橋剤から一体成形機により製造する生分解性複合樹脂ペレットの製造装置を提供する。【解決手段】製造装置は、単独の粉砕機を有し、当該粉砕機は、粉砕室と、当該粉砕室内に投入された古紙を粉砕して紙粉にする複数の固定刃と回転刃と、当該紙粉を当該粉砕室から落下させる吸引スクリーンとを有し、当該製造装置はまた、成形機を有し、微粉砕された紙粉がベルトコンベア20によりホッパー23に定量的に投入される。当該成形機は、樹脂組成物を加熱下に混練する混練室26と、混練室26で混練された樹脂組成物が排出される押出成形室41とを有し、当該成形機は、押出成形室41内の樹脂組成物をダイス孔43より加圧押出して一体成形する。【選択図】図3The present invention provides an apparatus for producing biodegradable composite resin pellets produced by an integrated molding machine from waste paper powder finely pulverized by a single pulverizer, a polylactic acid resin and a crosslinking agent. A manufacturing apparatus includes a single pulverizer, and the pulverizer includes a pulverization chamber, a plurality of fixed blades and a rotary blade that pulverize used paper put into the pulverization chamber into paper powder. A suction screen for dropping the paper powder from the crushing chamber, and the manufacturing apparatus also has a molding machine, and the finely pulverized paper powder is quantitatively introduced into the hopper 23 by the belt conveyor 20. The molding machine has a kneading chamber 26 for kneading the resin composition under heating, and an extrusion molding chamber 41 from which the resin composition kneaded in the kneading chamber 26 is discharged. The resin composition in 41 is pressure-extruded from the die hole 43 and integrally molded. [Selection] Figure 3

Description

考案の詳細な説明Detailed description of the invention

本考案は、古紙とポリ乳酸から成る複合材を製造する際に、単独の粉砕機により微粉砕した古紙の紙粉とポリ乳酸樹脂および架橋剤を混練室と押出室から成る一体成形機により製造する生分解性複合樹脂ペレットの製造装置に関するものである。In the present invention, when a composite material made of waste paper and polylactic acid is produced, the waste paper powder finely pulverized by a single pulverizer, polylactic acid resin and cross-linking agent are produced by an integrated molding machine consisting of a kneading chamber and an extrusion chamber. The present invention relates to an apparatus for producing biodegradable composite resin pellets.

近年石油系プラスチック使用による廃棄物の環境保全並びに地球温暖化対策上の炭酸ガス削減の観点から、植物由来のセルロース繊維質を持つ古紙と同じく植物由来の生分解性樹脂であるポリ乳酸樹脂との複合材料の開発が進められている。In recent years, from the viewpoint of environmental protection of wastes due to the use of petroleum-based plastics and the reduction of carbon dioxide gas as a countermeasure against global warming, the use of plant-derived biodegradable resin and polylactic acid resin as well as waste paper with plant-derived cellulose fiber Composite materials are being developed.

複合材の原料となる古紙は、粉砕して配合に適したサイズと強度を保つ必要があるが、従来は古紙を湿式で解砕したり、より簡便な乾式で、ハンマーミルにより綿状に解繊したり、ロールクラッシャーやカッターミルで200μ以下に微粉砕して樹脂と紙粉が良く混合し、均一組成の複合材が得られる工夫がなされている。しかし、繊維の強度を維持しながら古紙を大量に微粉砕して複合材料に供することは容易でなく、通常は特開平08−283475合報や特開平11−099522合報に示すごとく、古紙を粗粉砕機で2〜5mmサイズに粗粉砕し、次いで微粉砕機で200μ以下に微粉砕する2段処理により複合材料に供したり、特開平2003−340823合報に示すごとく、粗粉砕した紙粉と樹脂に添加剤を加えて混練・押出成形して複合材料とした後に、再度この成形した複合材料を粉砕して、混練・押出成形を行って目的の複合材とする2段処理が行われている。このような2段処理は工程が増加して、コストが高くなり、また加熱履歴が増えて材料劣化が生じ、製品品質が低下するという問題がある。Waste paper used as a raw material for composite materials must be pulverized to maintain a size and strength suitable for blending. Conventionally, waste paper can be crushed wet, or it can be crushed with a hammer mill into a cotton-like form using a simpler dry method. A device has been devised in which a composite material having a uniform composition can be obtained by finely pulverizing or finely pulverizing to 200 μm or less with a roll crusher or a cutter mill. However, it is not easy to pulverize a large amount of waste paper to provide a composite material while maintaining the strength of the fiber. Usually, as shown in JP-A-08-283475 and JP-A-11-099522, A coarsely pulverized paper powder that is coarsely pulverized to a size of 2 to 5 mm with a coarse pulverizer and then finely pulverized to 200 μm or less with a fine pulverizer is used for a composite material. After adding the additive to the resin and kneading and extruding to form a composite material, the molded composite material is pulverized again and kneaded and extruded to obtain the desired composite material. ing. Such a two-stage process has a problem that the number of processes increases, the cost increases, the heating history increases, material deterioration occurs, and product quality decreases.

更に、複合材の原料となるポリ乳酸樹脂は、複合材中の分散を良好とするために特許文献3597645号、同じく4590378号に示すごとく、粒径が3〜200μの粉末とすることが望まれているが、粉塵飛散の問題に加えてポリ乳酸樹脂はポリオレフィン等の汎用樹脂に比べて強度が高く、ペレットを粉砕機で微粉砕して複合材料に供することが困難であった。Furthermore, the polylactic acid resin used as the raw material of the composite material is desired to be a powder having a particle size of 3 to 200 μm as shown in Patent Documents 3597645 and 4590378 in order to improve dispersion in the composite material. However, in addition to the problem of dust scattering, the polylactic acid resin has higher strength than general-purpose resins such as polyolefin, and it has been difficult to finely pulverize the pellets with a pulverizer and to provide the composite material.

また、ポリ乳酸は精製した発酵乳酸の環状二量体であるラクチドの開環重合や溶媒中での脱水重合により製造されているが、構成する乳酸の不斉炭素により、D体、L体、DL混合体等の種類があり、通常強度、耐熱性の点から結晶性の高い98%の純度を超える高純度なD体、またはL体のポリ乳酸が選定されている。しかし、このような高純度なポリ乳酸を古紙との複合材の製造に供することは、材料コストが高くなると共に、融点を高め、混練、溶融、押出の加工時の作業温度を高めて、古紙の変質、押出ノズル(ダイス孔)の詰り、取出したペレットの融着を起こすという問題を生じていた。Polylactic acid is produced by ring-opening polymerization of lactide, which is a purified cyclic dimer of fermented lactic acid, and dehydration polymerization in a solvent, but the asymmetric carbon of lactic acid constitutes D-form, L-form, There are various types such as DL mixtures, and high purity D-form or L-form polylactic acid exceeding the purity of 98%, which is high in crystallinity, is usually selected from the viewpoint of strength and heat resistance. However, the use of such high-purity polylactic acid for the production of composites with waste paper increases the material cost, raises the melting point, raises the working temperature during kneading, melting, and extrusion, and increases the waste paper. This causes problems such as deterioration of the material, clogging of the extrusion nozzle (die hole), and fusion of the extracted pellets.

更に、紙粉とポリ乳酸樹脂および架橋剤を混合して混練、溶融、押出加工するために、通常は加圧式や双腕式混練機(ニーダー)で混練・溶融した複合材を、ベルトコンベヤー等の移送機で一軸式や、混合、分散機能に優れ、安定した押出量が期待できる二軸式、または2軸テーパー式の押出機(ペレタイザー)の投入口に投入し、スクリューで加圧、加温しながらに押出ノズルより回転式カッターを介して複合材ペレットを製造していが、混練機のホッパーに微粉状の紙粉とポリ乳酸樹脂を投入すると粉塵が飛散し、嵩比重の異なる材料の投入により、ホッパー内で材料どうしが分離して、均一な供給・混合に支障を生じ、均質な組成を有するペレットを得られないという問題を生じている。
また、溶融した複合材を混練機から押出機に移送する際に温度変化を生じて押出機のダイス孔から排出するペレットに不良や目詰りを起こす問題も発生していた。
Furthermore, in order to mix and knead, melt and extrude paper powder, polylactic acid resin and cross-linking agent, usually a composite material kneaded and melted with a pressure type or double arm type kneader (kneader) is used as a belt conveyor, etc. It is introduced into the inlet of a biaxial or biaxial tapered extruder (pelletizer) that is excellent in mixing and dispersing functions and can be expected to have a stable extrusion amount, and is pressurized and applied with a screw. The composite pellets are produced from the extrusion nozzle through a rotary cutter while warming. However, when fine paper powder and polylactic acid resin are put into the hopper of the kneader, dust is scattered, and materials with different bulk specific gravity are produced. Due to the introduction, the materials are separated in the hopper, which causes a problem in uniform supply and mixing, resulting in a problem that pellets having a homogeneous composition cannot be obtained.
Further, when the molten composite material is transferred from the kneader to the extruder, a temperature change occurs, causing a problem that the pellet discharged from the die hole of the extruder is defective or clogged.

考案の効果Effect of device

本考案の目的は、古紙とポリ乳酸から成る複合材を製造する際に、均質な配合組成が得られて、かつ粉塵の飛散も少ない粒径を有する古紙を、単独の粉砕機により一段で微粉砕することにより生産効率をあげてコストを低減し、混練室と押出室から成る一体成形機に投入し、低温で溶融して均質な配合組成が得られて、かつ粉塵の飛散も少なく、比較的安価なペレット状のポリ乳酸と混合し、架橋剤を加えて混練、溶融、押出成形を行うことにより、ダイス孔の目詰りや取出したペレットの融着がなく、安価で均質な生分解性複合樹脂ペレットの製造装置を提供することにある。The purpose of the present invention is to produce waste paper having a uniform blending composition and a particle size with less dust scattering when producing a composite material comprising waste paper and polylactic acid in a single step by a single crusher. Crushing to increase production efficiency and reduce costs, put into an integrated molding machine consisting of a kneading chamber and an extrusion chamber, melt at a low temperature to obtain a homogeneous blending composition, and less dust scattering. By mixing with polylactic acid in the form of inexpensive pellets and adding a crosslinking agent to knead, melt, and extrude, there is no clogging of the die holes or fusion of the extracted pellets, and it is inexpensive and homogeneous biodegradability It is providing the manufacturing apparatus of a composite resin pellet.

本考案を実施するための最良の形態としては、粉砕室に投入した複数枚の古紙を、複数の固定刃と回転刃を有する単独の粉砕機により150〜800rpmで微粉砕して、吸引スクリーンを介して得た2〜4mm径の紙粉40〜60重量部と融点が140〜160℃でD体乳酸の含有量が2〜5重量%のL体型ポリ乳酸樹脂40〜60重量部および架橋剤1〜4重量部を混練室と押出室を有する成形機の混練室に定量投入し、180〜190℃の加熱下に混練した複合樹脂組成物を、押出成形室より2〜5mm径のダイス孔より加圧押出して一体成形する生分解性複合樹脂ペレットの製造装置を提供する。As the best mode for carrying out the present invention, a plurality of used papers put into a crushing chamber are pulverized at 150 to 800 rpm by a single crusher having a plurality of fixed blades and rotating blades, and a suction screen is used. 40 to 60 parts by weight of paper powder having a diameter of 2 to 4 mm obtained through the process, 40 to 60 parts by weight of L-form polylactic acid resin having a melting point of 140 to 160 ° C. and a D-lactic acid content of 2 to 5% by weight, and a crosslinking agent 1 to 4 parts by weight are quantitatively charged into a kneading chamber of a molding machine having a kneading chamber and an extrusion chamber, and a composite resin composition kneaded under heating at 180 to 190 ° C. has a die hole with a diameter of 2 to 5 mm from the extrusion molding chamber. An apparatus for producing biodegradable composite resin pellets that are integrally molded by pressure extrusion is provided.

以下本考案の実施例を図面に基づき詳細に説明する。Embodiments of the present invention will be described below in detail with reference to the drawings.

図1は、本考案の構成例を示す生分解性複合樹脂ペレットの製造装置の古紙粉砕機の正面図である。粉砕機1の投入ステージ2の投入口3より一枚が0.2〜1.0m、厚さ0.1〜5mmの古紙を2〜10枚づつ連続して粉砕室4に投下する。架台5上のローラー駆動モーター6により粉砕された紙粉は、シューター室7の下部に設置された吸引筒8よりブロアー9およびサイクロン10を経て収納箱11に集荷され、軽量された紙粉がベルトコンベヤー等の移送具で混練機のホッパーに投入される。FIG. 1 is a front view of a used paper crusher of a biodegradable composite resin pellet manufacturing apparatus showing a configuration example of the present invention. A used sheet of 0.2 to 1.0 m 2 and a thickness of 0.1 to 5 mm is continuously dropped into the pulverizing chamber 4 by 2 to 10 sheets from the input port 3 of the input stage 2 of the pulverizer 1. The paper powder crushed by the roller drive motor 6 on the gantry 5 is collected in the storage box 11 from the suction cylinder 8 installed in the lower part of the shooter chamber 7 through the blower 9 and the cyclone 10, and the lightened paper powder is belted. It is put into the hopper of the kneader with a transfer device such as a conveyor.

図2は、本考案の構成例を示す古紙粉砕機の粉砕室の断面図である。粉砕室4の上のホッパー12より古紙が投入され、粉砕機本体13内のローラー駆動モーター6に連結したモーターシリンダー14に固定した複数枚の回転刃15と、粉砕機本体13に固定した複数の固定刃16により破砕され、粉砕された紙粉が吸引スクリーン17を通過して補修室18に落下する。回転刃15のローター部にはブレード19が設置される。図2では、3個のブレードを有する回転刃と2個の固定刃の例を示しているが、各々複数個を設置することも可能である。補修室18に落下した紙粉は、吸引筒8からブロアー9により排出されて収納箱11に移送される。ステンレス製のメッシュから成る吸引スクリーン17は2〜4mm径のパンチ孔が付設され、粉塵の飛散の少ない2〜4mm径の紙粉を1段の粉砕工程で製造することができる。  FIG. 2 is a cross-sectional view of a crushing chamber of a used paper crusher showing a configuration example of the present invention. Used paper is fed from a hopper 12 above the crushing chamber 4, and a plurality of rotary blades 15 fixed to a motor cylinder 14 connected to a roller drive motor 6 in the crusher main body 13 and a plurality of fixed blades fixed to the crusher main body 13. The paper powder crushed and crushed by the fixed blade 16 passes through the suction screen 17 and falls into the repair chamber 18. A blade 19 is installed in the rotor portion of the rotary blade 15. In FIG. 2, an example of a rotary blade having three blades and two fixed blades is shown, but a plurality of blades can be installed respectively. The paper dust dropped in the repair chamber 18 is discharged from the suction cylinder 8 by the blower 9 and transferred to the storage box 11. The suction screen 17 made of stainless steel mesh is provided with punch holes with a diameter of 2 to 4 mm, and can produce paper powder with a diameter of 2 to 4 mm with less dust scattering in a single pulverization step.

図3は、本考案の構成例を示す生分解性複合樹脂ペレットの製造装置の混練室と押出室を有する一体型成形機の側面図である。
図3で、本考案の粉砕機で微粉砕された2〜4mm径の計量された紙粉がベルトコンベヤー20により、紙粉投入口21から混練機22のホッパー23に配合比が40〜60重量部となるように定量的に投入される。同じく本考案の融点が140〜160℃でD体乳酸の含有量が2〜5重量%のL体型ポリ乳酸樹脂ポリ乳酸と架橋剤が定量機と投入モーターから成るポリ乳酸投入機24および架橋剤投入機25からホッパー23に配合比が各々40〜60重量部および1〜4重量部となるように定量的に投入される。混練機22の混練室26には駆動モーター27、28によりブレードを有するローター29、30を160〜200℃、5〜10分間、20〜50rpm回転させて混練する。混練及び混練物の排出と押出室への移送用の駆動部は、モーター31、変速機32、減速機33等から構成される。ローター内部には熱媒体、冷却水による温度制御機構を設けることは好ましい。混練室26は、加圧シリンダー34及び加圧蓋35により2〜7kg/cmの圧力で加圧する。混練終了時に混練室26の底に設置された底板36を開閉モーター37によりスライドして開いて混練物を排出し、2次混練する排出スクリュー38に投下する。排出スクリュー38の出口側には連結した回転ディスク39が設けられ、回転ディスク39には4〜8mm径の穴が多数敷設され、軸受けを介して固定ディスク40と接している。回転ディスク39と固定ディスク40には4〜8mm径の穴が多数敷設され、通過した混練物は押出室41に導入される。押出室41に導入された混練物は、ピッチが排出スクリューより小さい押出スクリュー42により、押出スクリュー42の外周に熱媒体、冷却水による温度制御機構を設け170〜190℃に保温しながら、2〜4mm径の穴を敷設した押出ダイス43を経て押出される。押出ダイス43から押出された混練物は、蓋体44を介して押出スクリュー42と連結したスクリューカッター45により径2〜4mm、長さ2〜4mmの生分解性複合樹脂ペレットを効率良く製造し、ペレット収納箱46内に収容し、計量後に出荷容器に包装して出荷する。
FIG. 3 is a side view of an integral molding machine having a kneading chamber and an extrusion chamber of a biodegradable composite resin pellet manufacturing apparatus showing a configuration example of the present invention.
In FIG. 3, the measured paper powder having a diameter of 2 to 4 mm finely pulverized by the pulverizer of the present invention is blended by the belt conveyor 20 from the paper powder inlet 21 to the hopper 23 of the kneader 22 at a blending ratio of 40 to 60 weight. It is quantitatively added so that it becomes a part. Similarly, the L-type polylactic acid resin having a melting point of 140 to 160 ° C. and a D-lactic acid content of 2 to 5% by weight of the present invention. Quantitatively charged from the feeder 25 to the hopper 23 such that the blending ratio is 40 to 60 parts by weight and 1 to 4 parts by weight, respectively. The kneading chamber 26 of the kneader 22 is kneaded by rotating the rotors 29 and 30 having blades by driving motors 27 and 28 at 160 to 200 ° C. for 5 to 10 minutes and 20 to 50 rpm. The drive unit for kneading and discharging the kneaded material and transferring it to the extrusion chamber includes a motor 31, a transmission 32, a speed reducer 33, and the like. It is preferable to provide a temperature control mechanism with a heat medium and cooling water inside the rotor. The kneading chamber 26 is pressurized by a pressure cylinder 34 and a pressure lid 35 at a pressure of 2 to 7 kg / cm 2 . At the end of kneading, the bottom plate 36 installed at the bottom of the kneading chamber 26 is slid and opened by an open / close motor 37 to discharge the kneaded material and drop it onto a discharge screw 38 for secondary kneading. A rotating disk 39 connected to the outlet side of the discharge screw 38 is provided. A large number of holes with a diameter of 4 to 8 mm are laid in the rotating disk 39 and are in contact with the fixed disk 40 through bearings. A large number of holes having a diameter of 4 to 8 mm are laid in the rotating disk 39 and the fixed disk 40, and the kneaded material that has passed is introduced into the extrusion chamber 41. The kneaded material introduced into the extrusion chamber 41 is provided with a temperature control mechanism using a heat medium and cooling water on the outer periphery of the extrusion screw 42 by an extrusion screw 42 whose pitch is smaller than the discharge screw, while keeping the temperature at 170 to 190 ° C. It is extruded through an extrusion die 43 in which a 4 mm diameter hole is laid. The kneaded product extruded from the extrusion die 43 efficiently produces biodegradable composite resin pellets having a diameter of 2 to 4 mm and a length of 2 to 4 mm by a screw cutter 45 connected to the extrusion screw 42 via the lid 44. It is accommodated in the pellet storage box 46, packaged in a shipping container after weighing, and shipped.

図4は、本考案の別の構成例を示す生分解性複合樹脂ペレットの製造装置の混練機と押出機をスクリューコンベアーで連結した連結一体型成形機の例を示す側面図である。図4で混練機25の機構は図3と同様であり、各部は同じ符号で示している。排出スクリュー38から排出された混練物は、混練物収納箱47内にあるスクリューコンベアー48により、押出機49のホッパー50に投入される。スクリューコンベアー48はスクリューモーター51で駆動され、スクリュー円筒の外周はベルトヒーターやリボンヒーター等の加熱手段52により保温される。押出機49のフィーダー部53では、押出モーター54の駆動により、スクリュー式押出機で混練物を押出すが、スクリュー式押出機としては、一軸スクリューや二軸スクリューが知られている。図4では、特に混合効率に優れた2軸テーパースクリュー55の例を示しており、混練物は噛み込みよく押出室41に押出されて、図3に述べた方法と同様に本考案の生分解性複合樹脂ペレットを効率良く製造することができる。  FIG. 4 is a side view showing an example of a connected integrated molding machine in which a kneader and an extruder of a biodegradable composite resin pellet manufacturing apparatus showing another configuration example of the present invention are connected by a screw conveyor. In FIG. 4, the mechanism of the kneading machine 25 is the same as that in FIG. 3, and each part is denoted by the same reference numeral. The kneaded material discharged from the discharge screw 38 is fed into the hopper 50 of the extruder 49 by a screw conveyor 48 in the kneaded material storage box 47. The screw conveyor 48 is driven by a screw motor 51, and the outer periphery of the screw cylinder is kept warm by heating means 52 such as a belt heater or a ribbon heater. In the feeder unit 53 of the extruder 49, the kneaded material is extruded by a screw type extruder by driving the extrusion motor 54. As the screw type extruder, a single screw or a twin screw is known. FIG. 4 shows an example of a biaxial taper screw 55 that is particularly excellent in mixing efficiency. The kneaded material is well pushed into the extrusion chamber 41 and is biodegraded according to the present invention in the same manner as the method described in FIG. Can be produced efficiently.

以上、図3および図4で示すように、本考案の混練室と押出室を有する一体成形機を用いることにより、混合、混練、溶融、押出を一貫成形することができ、混練から押出までの熱履歴、ダイスの目詰り、押出ペレットの融着等のトラブルを回避して、均質な生分解性複合樹脂ペレットを製造することが可能となる。  As described above, as shown in FIG. 3 and FIG. 4, by using the integrated molding machine having the kneading chamber and the extrusion chamber of the present invention, mixing, kneading, melting, and extrusion can be integrally formed. A homogeneous biodegradable composite resin pellet can be produced while avoiding troubles such as heat history, die clogging, and fusion of extruded pellets.

図1は、本考案の構成例を示す生分解性複合樹脂ペレットの製造装置の古紙粉砕機の正面図である。FIG. 1 is a front view of a used paper crusher of a biodegradable composite resin pellet manufacturing apparatus showing a configuration example of the present invention. 図2は、本考案の構成例を示す古紙粉砕機の粉砕室の断面図である。FIG. 2 is a cross-sectional view of a crushing chamber of a used paper crusher showing a configuration example of the present invention. 図3は、本考案の構成例を示す生分解性複合樹脂ペレットの製造装置の混練室と押出室を有する一体型成形機の側面図である。FIG. 3 is a side view of an integral molding machine having a kneading chamber and an extrusion chamber of a biodegradable composite resin pellet manufacturing apparatus showing a configuration example of the present invention. 図4は、本考案の別の構成例を示す生分解性複合樹脂ペレットの製造装置の混練機と押出機をスクリューコンベアーで連結した連結一体型成形機の例を示す側面図である。FIG. 4 is a side view showing an example of a connected integrated molding machine in which a kneader and an extruder of a biodegradable composite resin pellet manufacturing apparatus showing another configuration example of the present invention are connected by a screw conveyor.

1: 粉砕機
2: 投入ステージ
3: 投入口
4: 粉砕室
5: 架台
6: 駆動モーター
7: シューター室
8: 吸引筒
9: ブロアー
10: サイクロン
11: 収納箱
12: ホッパー
13: 粉砕機本体
14: モーターシリンダー
15: 回転刃
16: 固定刃
17: スクリーン
18: 捕集室
19: 牽引錘
20: ベルトコンベアー
21: 粉体投入機
22: 混練機
23: ホッパー
24: ポリ乳酸投入機
25: 架橋剤投入機
26: 混練室
27,28: 駆動モーター
29,30: ローター
31: モーター
32: 変速機
33: 減速機
34: 加圧シリンダー
35: 加圧蓋
36: 底板
37: 開閉モーター
38: 排出スクリュー
39: 回転ディスク
40: 固定ディスク
41: 押出室
42: 押出スクリュー
43: 押出ダイス
44: 蓋体
45: スクリューカッター
46: ペレット収納箱
47: 混練物収納箱
48: スクリューコンベアー
49: 押出機
50: ホッパー
51: スクリューモーター
52: 加熱手段
53: フィーダー部
54: 押出モーター
55: 2軸テーパースクリュー
1: Crusher 2: Input stage 3: Input port 4: Crushing chamber 5: Mounting base 6: Drive motor 7: Shooter chamber 8: Suction cylinder 9: Blower 10: Cyclone 11: Storage box 12: Hopper 13: Crusher main body 14 : Motor cylinder 15: Rotary blade 16: Fixed blade 17: Screen 18: Collection chamber 19: Traction weight 20: Belt conveyor 21: Powder feeder 22: Kneader 23: Hopper 24: Polylactic acid feeder 25: Cross-linking agent Feeder 26: Kneading chamber 27, 28: Drive motor 29, 30: Rotor 31: Motor 32: Transmission 33: Reduction gear 34: Pressure cylinder 35: Pressure lid 36: Bottom plate 37: Opening / closing motor 38: Discharge screw 39 : Rotating disc 40: Fixed disc 41: Extrusion chamber 42: Extruding screw 43: Extrusion die 44: Lid 45: Screw -Cutter 46: Pellet storage box 47: Kneaded material storage box 48: Screw conveyor 49: Extruder 50: Hopper 51: Screw motor 52: Heating means 53: Feeder section 54: Extrusion motor 55: Biaxial taper screw

Claims (1)

粉砕室に投入した複数枚の古紙を、複数の固定刃と回転刃を有する単独の粉砕機により150〜800rpmで微粉砕して、吸引スクリーンを介して得た2〜4mm径の紙粉40〜60重量部と粒径が1〜3mmのペレット状で融点が140〜160℃のD体乳酸の含有量が2〜5重量%のL体型ポリ乳酸樹脂40〜60重量部および架橋剤1〜4重量部を混練室と押出室を有する成形機の混練室に定量投入し、170〜190℃の加熱下に混練した複合樹脂組成物を、押出成形室より2〜5mm径のダイス孔より加圧押出して一体成形する均質な生分解性複合樹脂ペレットの製造装置A plurality of waste papers put into the crushing chamber are finely pulverized at 150 to 800 rpm by a single crusher having a plurality of fixed blades and rotating blades, and obtained from 2 to 4 mm diameter paper powder 40 to 40 mm. 60 to 60 parts by weight, 40 to 60 parts by weight of L-form polylactic acid resin containing 2 to 5% by weight of D-form lactic acid having a particle size of 1 to 3 mm and a melting point of 140 to 160 ° C. and crosslinking agents 1 to 4 Weight parts are quantitatively charged into a kneading chamber of a molding machine having a kneading chamber and an extrusion chamber, and a composite resin composition kneaded under heating at 170 to 190 ° C. is pressed from a die hole having a diameter of 2 to 5 mm from the extrusion molding chamber. Equipment for producing homogeneous biodegradable composite resin pellets by extrusion and integral molding
JP2015001402U 2015-03-10 2015-03-10 Biodegradable composite resin pellet manufacturing equipment Expired - Fee Related JP3198742U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2019214702A (en) * 2018-06-07 2019-12-19 日本製紙株式会社 Method for producing resin composite

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2019214702A (en) * 2018-06-07 2019-12-19 日本製紙株式会社 Method for producing resin composite
JP7227068B2 (en) 2018-06-07 2023-02-21 日本製紙株式会社 Method for producing resin composite

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