JP5871323B2 - Sheet forming device - Google Patents

Sheet forming device Download PDF

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JP5871323B2
JP5871323B2 JP2012246180A JP2012246180A JP5871323B2 JP 5871323 B2 JP5871323 B2 JP 5871323B2 JP 2012246180 A JP2012246180 A JP 2012246180A JP 2012246180 A JP2012246180 A JP 2012246180A JP 5871323 B2 JP5871323 B2 JP 5871323B2
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extrusion port
pair
roll
extrusion
sheet forming
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JP2014094475A (en
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繁人 歳内
繁人 歳内
敏昭 頼金
敏昭 頼金
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Nihon Spindle Manufacturing Co Ltd
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Nihon Spindle Manufacturing Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B7/00Mixing; Kneading
    • B29B7/30Mixing; Kneading continuous, with mechanical mixing or kneading devices
    • B29B7/34Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices
    • B29B7/38Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary
    • B29B7/46Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary with more than one shaft
    • B29B7/48Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary with more than one shaft with intermeshing devices, e.g. screws
    • B29B7/488Parts, e.g. casings, sealings; Accessories, e.g. flow controlling or throttling devices
    • B29B7/489Screws
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B7/00Mixing; Kneading
    • B29B7/30Mixing; Kneading continuous, with mechanical mixing or kneading devices
    • B29B7/34Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices
    • B29B7/38Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary
    • B29B7/46Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary with more than one shaft
    • B29B7/48Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary with more than one shaft with intermeshing devices, e.g. screws
    • B29B7/484Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary with more than one shaft with intermeshing devices, e.g. screws with two shafts provided with screws, e.g. one screw being shorter than the other
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B7/00Mixing; Kneading
    • B29B7/30Mixing; Kneading continuous, with mechanical mixing or kneading devices
    • B29B7/34Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices
    • B29B7/38Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary
    • B29B7/46Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary with more than one shaft
    • B29B7/48Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices rotary with more than one shaft with intermeshing devices, e.g. screws
    • B29B7/488Parts, e.g. casings, sealings; Accessories, e.g. flow controlling or throttling devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B7/00Mixing; Kneading
    • B29B7/30Mixing; Kneading continuous, with mechanical mixing or kneading devices
    • B29B7/34Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices
    • B29B7/52Mixing; Kneading continuous, with mechanical mixing or kneading devices with movable mixing or kneading devices with rollers or the like, e.g. calenders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B7/00Mixing; Kneading
    • B29B7/30Mixing; Kneading continuous, with mechanical mixing or kneading devices
    • B29B7/58Component parts, details or accessories; Auxiliary operations
    • B29B7/582Component parts, details or accessories; Auxiliary operations for discharging, e.g. doors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B7/00Mixing; Kneading
    • B29B7/30Mixing; Kneading continuous, with mechanical mixing or kneading devices
    • B29B7/58Component parts, details or accessories; Auxiliary operations
    • B29B7/72Measuring, controlling or regulating
    • B29B7/728Measuring data of the driving system, e.g. torque, speed, power, vibration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29BPREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED; MAKING GRANULES OR PREFORMS; RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIAL CONTAINING PLASTICS
    • B29B7/00Mixing; Kneading
    • B29B7/74Mixing; Kneading using other mixers or combinations of mixers, e.g. of dissimilar mixers ; Plant
    • B29B7/7476Systems, i.e. flow charts or diagrams; Plants
    • B29B7/7495Systems, i.e. flow charts or diagrams; Plants for mixing rubber
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C48/00Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor
    • B29C48/25Component parts, details or accessories; Auxiliary operations
    • B29C48/30Extrusion nozzles or dies
    • B29C48/35Extrusion nozzles or dies with rollers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C48/00Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor
    • B29C48/03Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor characterised by the shape of the extruded material at extrusion
    • B29C48/07Flat, e.g. panels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C48/00Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor
    • B29C48/03Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor characterised by the shape of the extruded material at extrusion
    • B29C48/07Flat, e.g. panels
    • B29C48/08Flat, e.g. panels flexible, e.g. films

Description

本発明は、被成形材料を押出口から前方に押し出す材料押出部と、前記材料押出部から押し出される被成形材料を受け入れて一対のロールにてシート状に成形して払い出す材料圧延部と、前記材料押出部と前記材料圧延部との間において前記材料押出部から押し出される被成形材料を一時的に貯留する材料貯留部とが設けられたシート成形装置に関するものである。   The present invention includes a material extruding part that extrudes a molding material forward from an extrusion port, a material rolling part that accepts the molding material extruded from the material extruding part, forms the sheet into a sheet shape with a pair of rolls, and The present invention relates to a sheet forming apparatus provided with a material storage part for temporarily storing a material to be extruded extruded from the material extrusion part between the material extrusion part and the material rolling part.

かかるシート成形装置は、被成形材料をシート状に成形してシート状材を製造するものである。そして、その運転では、材料押出部から押し出される被成形材料が材料貯留部にて一時的に貯留され、そのように材料貯留部にて一時的に貯留されている被成形材料が材料圧延部の一対のロールによりシート状に成形されながら払い出される。
被成形材料としては、例えば、タイヤ用コンパウンド等のゴム材料が挙げられる。
Such a sheet forming apparatus manufactures a sheet material by forming a material to be formed into a sheet shape. In the operation, the molding material to be extruded from the material extruding part is temporarily stored in the material storage part, and the molding material temporarily stored in the material storage part in this way is the material rolling part. It is paid out while being formed into a sheet by a pair of rolls.
As a molding material, rubber materials, such as a compound for tires, are mentioned, for example.

このようなシート成形装置において、材料貯留部における左右両側を区画する一対の側壁部は、一対のロールの共有接線を挟んで押出口側の押出口側部分と、ロール側のロール間側部分とを備えて構成される。
そして、従来では、一対の側壁部の内面のうち、押出口側部分の内面同士の左右方向の間隔である左右間隔が、押出口の左右方向の幅よりも広くなる条件で、上下方向において一定になるように構成されていた(例えば、特許文献1及び2参照。)。
In such a sheet forming apparatus, the pair of side walls that define the left and right sides of the material storage unit include an extrusion port side portion on the extrusion port side across the shared tangent of the pair of rolls, and an inter-roll side portion on the roll side. It is configured with.
Conventionally, of the inner surfaces of the pair of side wall portions, the left-right distance, which is the distance between the inner surfaces of the extrusion port side portions, is constant in the vertical direction under the condition that the width in the horizontal direction of the extrusion port is wider. (For example, refer to Patent Documents 1 and 2).

特開平9−1631号公報JP-A-9-1631 実公平8−1069号公報No. 8-1069

ところで、押出口から材料貯留部に押し出された被成形材料は、左右方向に広がりつつ、回転する一対のロールに引っ張られて前方に進み、一対のロールの間隙に進入してシート状に成形される。
しかしながら、従来のシート成形装置では、一対の側壁部の内面のうち、押出口側部分の内面同士の左右間隔が、上下方向において一定になるように構成されている。そのため、押出口から材料貯留部に押し出された被成形材料のうちの上方側の被成形材料は、左右方向に広がって側壁部の押出口側部分の内面に当たると下方に流動し難い。したがって、押出口の背面視(ロール側から視た場合。以下同じ。)において、押出口の口縁と押出口側部分の内面との間における上方側の領域に、被成形材料が押出口側部分の内面に当たったままで滞留する滞留域が生じ易く、しかも、その滞留域が広くなり易い。
そして、このように、押出口の背面視において、押出口の口縁と押出口側部分の内面との間における上方側の領域に、被成形材料の広い滞留域が生じると、被成形材料の流動が阻害され、その下流の材料貯留部内における側壁部の内面近傍に被成形材料が十分に充填され難い。そのため、一対のロールの間隙に進入する被成形材料の左右方向の幅が狭くなったり、左右方向の端部の量が少なくなったりして、成形されたシート状材の幅(以下「シート幅」と呼ぶ。)が不安定になって、シート状材の左右方向のエッジにシート幅方向の凹凸が生じ易い。
By the way, the molding material extruded from the extrusion port to the material storage portion is stretched in the left-right direction, is pulled by a pair of rotating rolls, proceeds forward, enters the gap between the pair of rolls, and is formed into a sheet shape. The
However, the conventional sheet forming apparatus is configured such that, of the inner surfaces of the pair of side wall portions, the left-right distance between the inner surfaces of the extrusion port side portions is constant in the vertical direction. Therefore, the molding material on the upper side of the molding material extruded from the extrusion port to the material storage portion spreads in the left-right direction and hardly flows downward when hitting the inner surface of the extrusion port side portion of the side wall portion. Therefore, in the rear view of the extrusion port (when viewed from the roll side, the same applies hereinafter), the material to be molded is placed on the extrusion port side in the upper region between the mouth edge of the extrusion port and the inner surface of the extrusion port side portion. A staying area that stays in contact with the inner surface of the portion is likely to occur, and the staying area tends to be widened.
And, in this way, in the rear view of the extrusion port, when a wide retention area of the molding material occurs in the upper region between the edge of the extrusion port and the inner surface of the extrusion port side portion, The flow is hindered, and it is difficult to sufficiently fill the molding material in the vicinity of the inner surface of the side wall portion in the material storage portion downstream thereof. For this reason, the width of the molding material entering the gap between the pair of rolls becomes narrower or the amount of the end in the left-right direction decreases, and the width of the molded sheet-like material (hereinafter referred to as “sheet width”). Is unstable, and unevenness in the sheet width direction tends to occur at the left and right edges of the sheet-like material.

ところで、材料供給源からの材料押出部への被成形材料の供給が終了時期に近づくと、シート状材の払い出し量を変化させるように材料圧延部が制御される場合がある。このようなときに、上述のようなシート状材のエッジの凹凸の発生が顕著になる。つまり、材料押出部の材料押出量と材料圧延部の材料払い出し量とのバランスが崩れると、シート状材のエッジに凹凸が発生し易くなるのである。   By the way, when the supply of the molding material from the material supply source to the material extruding unit approaches the end time, the material rolling unit may be controlled so as to change the discharge amount of the sheet-like material. In such a case, the occurrence of unevenness of the edge of the sheet-like material as described above becomes remarkable. That is, if the balance between the material extrusion amount of the material extrusion portion and the material discharge amount of the material rolling portion is lost, irregularities are likely to occur on the edge of the sheet-like material.

そして、シート状材のエッジに凹凸が生じると、シート状材のシート幅が目標シート幅よりも狭くなって、不良として処理される場合があり、しかも、生じたエッジの凹部が深いと、シート状材に裂け目が入り、シート状材が切断する場合があるので、歩留まりが低下し易く、被成形材料のシート成形における歩留まりを向上する上で改善の余地があった。   And when unevenness occurs in the edge of the sheet-like material, the sheet width of the sheet-like material becomes narrower than the target sheet width and may be treated as a defect, and when the recessed portion of the generated edge is deep, the sheet Since a crack may enter the shaped material and the sheet-like material may be cut, the yield is likely to decrease, and there is room for improvement in improving the yield in sheet molding of the molding material.

ところで、本件出願人は、かかる実情に鑑みて、先に、シート成形における歩留まりを向上し得るシート成形装置を提案している(特願2011−125558。以下、この出願に係る発明を、「先願発明」という。)。   By the way, in view of such circumstances, the present applicant has previously proposed a sheet forming apparatus that can improve the yield in sheet forming (Japanese Patent Application No. 2011-125558. It is referred to as “the claimed invention”).

図1に、先願発明のシート成形装置の一実施形態を示す。
このシート成形装置は、被成形材料Mを押出口11から前方に押し出す材料押出部1と、その材料押出部1から押し出される被成形材料Mを受け入れて、軸心21aが水平方向に沿う姿勢で上下方向に並ぶ一対のロール21にてシート状に成形して払い出す材料圧延部2と、材料押出部1と材料圧延部2との間において材料押出部1から押し出される被成形材料Mを一時的に貯留する材料貯留部3と、運転を制御する制御部C等を備えて構成されている。
また、材料圧延部2とその材料圧延部2にてシート状材Msを引き入れて所定の処理を施すシート材処理装置70との間の搬送部には、シート状材Msを弛ませるコンベア装置からなるバッファ部60が設けられている。
FIG. 1 shows an embodiment of a sheet forming apparatus according to the invention of the prior application.
In this sheet forming apparatus, the material extruding part 1 for extruding the forming material M forward from the extrusion port 11 and the forming material M extruded from the material extruding part 1 are received, and the axis 21a is in a posture along the horizontal direction. A material rolling part 2 which is formed and discharged into a sheet shape by a pair of rolls 21 arranged in the vertical direction, and a molding material M extruded from the material extruding part 1 between the material extruding part 1 and the material rolling part 2 is temporarily It comprises the material storage part 3 which stores automatically, and the control part C etc. which control an operation | movement.
Further, a conveyor unit between the material rolling unit 2 and the sheet material processing apparatus 70 that draws the sheet material Ms and performs a predetermined process in the material rolling unit 2 is provided with a conveyor device that loosens the sheet material Ms. A buffer unit 60 is provided.

この実施形態では、材料貯留部3が、上部に上部開口部30を有する上部開放状に構成されている。
そして、材料貯留部3に貯留されている被成形材料Mに対して、材料押出部1からの被成形材料Mの押出方向Ds(以下、「材料押出方向」という場合がある。)に交差する下向きの材料押圧方向Dpに、押圧部材41を押圧させることにより圧力を印加する圧力印加部4が設けられている。
In this embodiment, the material storage part 3 is comprised by the upper open shape which has the upper opening part 30 in the upper part.
Then, the molding material M stored in the material storage unit 3 intersects the extrusion direction Ds of the molding material M from the material extrusion unit 1 (hereinafter, also referred to as “material extrusion direction”). A pressure application unit 4 that applies pressure by pressing the pressing member 41 in the downward material pressing direction Dp is provided.

次に、シート成形装置の各部について説明を加える。なお、以下では、図3における左右方向、上下方向を、それぞれ、左右方向、上下方向に定義して説明する。
図1、図2及び図4に示すように、材料圧延部2の一対のロール21は、上側のロール21が下側のロール21よりも材料貯留部3側とは反対側(前方側)に位置する前倒れ傾斜状にて上下方向に沿って並設されている。
上側及び下側のロール21の一方が、モーターなどの回転駆動装置22により被成形材料Mを送り出すべく回転駆動され、その駆動される一方のロール21は、他方のロール21を逆方向に従動回転させるべく、他方のロール21にギア(図示省略)を介して連動連結されている。なお、上下一対のロール21のうち、駆動回転するロール21は上下いずれでもよく、また、両ロール21をそれぞれ単独駆動させてもよい。ちなみに、一対のロール21は、材料貯留部3内に面する側では一対のロール21の外周面が互いに近づくように、互いに逆方向に回転される。
Next, description will be made regarding each part of the sheet forming apparatus. In the following description, the horizontal direction and the vertical direction in FIG. 3 are defined as the horizontal direction and the vertical direction, respectively.
As shown in FIGS. 1, 2, and 4, the pair of rolls 21 of the material rolling unit 2 is such that the upper roll 21 is on the opposite side (front side) to the material storage unit 3 side than the lower roll 21. It is arranged side by side along the up-down direction in the shape of a tilted forward position.
One of the upper and lower rolls 21 is rotationally driven by a rotary drive device 22 such as a motor to send out the molding material M, and the one roll 21 that is driven rotates the other roll 21 in the reverse direction. In order to achieve this, the other roll 21 is interlocked and connected via a gear (not shown). Of the pair of upper and lower rolls 21, the roll 21 that is driven and rotated may be either upper or lower, and both rolls 21 may be driven individually. Incidentally, the pair of rolls 21 are rotated in directions opposite to each other so that the outer peripheral surfaces of the pair of rolls 21 approach each other on the side facing the material storage portion 3.

そして、ロール21の回転速度を制御することにより、材料圧延部2による材料払い出し量を制御するように構成されている。
この実施形態では、ロール21の回転速度を通常速度とその通常速度よりも速い高速度の2段階に切り換えることにより、材料圧延部2の出力を2段階に切り換え自在なように構成されている。
And it is comprised so that the material discharge amount by the material rolling part 2 may be controlled by controlling the rotational speed of the roll 21.
In this embodiment, the output of the material rolling section 2 can be switched between two stages by switching the rotation speed of the roll 21 between two stages of a normal speed and a high speed faster than the normal speed.

図1〜図4に示すように、材料押出部1は、水平方向に並設された2軸のテーパースクリュー13を備えて構成されている。
2軸のテーパースクリュー13は、回転軸心13aが先端側ほど互いに近づき(図4参照。)、かつ、回転軸心13aが先端側ほど下方になる(図1及び図2参照。)傾斜姿勢でケーシング14内に配設されている。
このケーシング14は、内部空間が前方側ほど狭くなる先細り状に構成されており、その先端開口部には、長方形の左右両辺を曲線とした形状の押出口11が形成された押出口形成体12が取り付けられている。
つまり、材料押出部1は、材料押出方向Dsが先方ほど下方になる斜め下向き方向になるように構成されている。
As shown in FIGS. 1-4, the material extrusion part 1 is equipped with the biaxial taper screw 13 arranged in parallel with the horizontal direction.
The biaxial taper screw 13 is in an inclined posture in which the rotation axis 13a is closer to the tip side (see FIG. 4) and the rotation axis 13a is lower toward the tip side (see FIGS. 1 and 2). Arranged in the casing 14.
The casing 14 is formed in a tapered shape in which the inner space becomes narrower toward the front side, and the extrusion port forming body 12 in which the extrusion port 11 having a curved shape on both the left and right sides is formed at the front end opening. Is attached.
That is, the material extruding part 1 is configured such that the material extruding direction Ds is an obliquely downward direction that becomes lower toward the front.

このテーパースクリュー13の回転速度を制御することにより、材料押出部1による材料押出量を制御するように構成されている。
そして、この実施形態では、テーパースクリュー13の回転速度を通常速度とその通常速度よりも速い高速度の2段階に切り換えることにより、材料押出部1の出力を2段階に切り換え自在なように構成されている。
By controlling the rotational speed of the taper screw 13, the material extrusion amount by the material extruding unit 1 is controlled.
In this embodiment, the output of the material extruding unit 1 can be switched between two stages by switching the rotational speed of the taper screw 13 between a normal speed and a high speed higher than the normal speed. ing.

図1及び図2に示すように、材料押出部1及び材料圧延部2は、側面視で、押出口11の中心を通り材料押出方向Dsに沿って前方に延ばした仮想線のやや下方に一対のロール21の間隙21Gが位置する相対位置関係で配設されている。
そして、図1〜図4に示すように、材料貯留部3は、それら材料押出部1と材料圧延部2との間に、それらの間の左右両側を押出口11の上端よりも高い位置から押出口11の下端よりも低い位置までの範囲に亘って囲むように配設されている。
As shown in FIGS. 1 and 2, the material extruding part 1 and the material rolling part 2 are paired slightly below the imaginary line extending forward along the material extruding direction Ds through the center of the extrusion port 11 in a side view. Are arranged in a relative positional relationship where the gap 21G of the roll 21 is located.
And as shown in FIGS. 1-4, the material storage part 3 is between these material extrusion parts 1 and the material rolling part 2, and the both sides between them are higher than the upper end of the extrusion port 11. It arrange | positions so that it may surround over the range to the position lower than the lower end of the extrusion port 11. FIG.

図1〜図4に示すように、材料押出部1と材料圧延部2との間において、押出口形成体12の左右両側には、各々の側において材料押出部1と材料圧延部2との間を閉じるように側壁部3Gが設けられ、さらに、材料圧延部2の下側のロール21が押出口形成体12の押出口11よりも下方側の箇所に当接又は近接する状態で設けられている。そして、材料貯留部3が、押出口形成体12、左右一対の側壁部3G及び一対のロール21により仕切られる形態で、上部に上部開口部30を有する上部開放状に形成されている。
この上部開口部30は、押出口形成体12、左右両側の側壁部3G及び上側のロール21により囲まれる矩形状に構成されている。
図1〜図5に示すように、材料貯留部3における左右両側を区画する左右一対の側壁部3Gの各々が、一対のロール21の共有接線を挟んで押出口11側の押出口側部分31と、ロール21側の一対のロール21の間に進入するロール間側部分32とを備えて構成されている。
As shown in FIGS. 1 to 4, between the material extruding part 1 and the material rolling part 2, on both sides of the extrusion port forming body 12, there are the material extruding part 1 and the material rolling part 2 on each side. A side wall 3G is provided so as to close the space, and further, the lower roll 21 of the material rolling part 2 is provided in a state of being in contact with or close to a position below the extrusion port 11 of the extrusion port forming body 12. ing. And the material storage part 3 is formed in the upper open form which has the upper opening part 30 in the upper part by the form partitioned off with the extrusion port formation body 12, the left-right paired side wall part 3G, and a pair of roll 21. FIG.
The upper opening 30 has a rectangular shape surrounded by the extrusion port forming body 12, the left and right side wall portions 3 </ b> G, and the upper roll 21.
As shown in FIGS. 1 to 5, each of the pair of left and right side walls 3 </ b> G that divides the left and right sides of the material storage unit 3 has an extrusion port side portion 31 on the extrusion port 11 side across the shared tangent of the pair of rolls 21. And an inter-roll side portion 32 that enters between the pair of rolls 21 on the roll 21 side.

図3及び図5に示すように、一対の側壁部3Gの各々の内面3Sのうち、少なくとも押出口側部分31の内面31S同士の左右方向の間隔である左右間隔が、下方側ほど広くなるように構成されている。   As shown in FIG. 3 and FIG. 5, among the inner surfaces 3 </ b> S of the pair of side wall portions 3 </ b> G, at least the left-right distance that is the left-right distance between the inner surfaces 31 </ b> S of the extrusion port side portion 31 is increased toward the lower side. It is configured.

以下、一対の側壁部3Gについて、説明を加える。
図2〜図8に示すように、各側壁部3Gのうちの押出口側部分31は、一対のロール21と押出口形成体12との間に位置する部分であり、ロール間側部分32は、押出口側部分31から前方に延びて一対のロール21間をその間隙21Gの手前近傍にまで延びるように構成されている。
なお、左右一対の押出口側部分31は、互いに面対称となるように構成され、図7は、左右一対の押出口側部分31のうちの右側の押出口側部分31を示す図であり、図7(a)は左側面図、(b)は正面図、(c)は右側面図、(d)は下面図、(e)は左上前方から見た斜視図である。
また、左右一対のロール間側部分32も、互いに面対称となるように構成され、図8は、左右一対のロール間側部分32のうちの右側のロール間側部分32を示す図であり、図8(a)は左上前方から見た斜視図、(b)は左側面図、(c)は後面図、(d)は平面図、(e)は右側面図、(f)は斜め上前方から見た図である。
Hereinafter, the pair of side wall portions 3G will be described.
As shown in FIGS. 2-8, the extrusion port side part 31 of each side wall part 3G is a part located between a pair of roll 21 and the extrusion port formation body 12, and the roll side part 32 is Further, it is configured to extend forward from the extrusion port side portion 31 so as to extend between the pair of rolls 21 to the vicinity in front of the gap 21G.
The pair of left and right extrusion port side portions 31 are configured to be plane-symmetric with each other, and FIG. 7 is a diagram showing the right extrusion port side portion 31 of the pair of left and right extrusion port side portions 31, 7A is a left side view, FIG. 7B is a front view, FIG. 7C is a right side view, FIG. 7D is a bottom view, and FIG. 7E is a perspective view as viewed from the upper left front.
Further, the pair of left and right roll-side parts 32 are also configured to be plane-symmetric with each other, and FIG. 8 is a diagram showing the right roll-to-roll side part 32 of the pair of left and right rolls. 8A is a perspective view as viewed from the upper left front, FIG. 8B is a left side view, FIG. 8C is a rear view, FIG. 8D is a plan view, FIG. 8E is a right side view, and FIG. It is the figure seen from the front.

図2、図5及び図7に示すように、押出口側部分31は、左右方向視での外形形状が、縦長でしかも下底が上底に比べてかなり短い形態の概略直角台形状であり、その縦長直角台形状の押出口側部分31が、両端側に概ね直角の角部が存在する後面を押出口形成体12の背面における押出口11の左又は右側に当接させた状態で配設される。
その押出口側部分31における材料貯留部3内に面する内面31Sは、上方部分の平行内面部分31aと、その下方側に連なる下方広がり内面部分31bと、平行内面部分31aの下方側に位置して下方広がり内面部分31bの前方側に連なる下方前方両広がり内面部分31cとからなる。
As shown in FIGS. 2, 5, and 7, the extrusion port side portion 31 has a substantially right trapezoidal shape in which the outer shape when viewed in the left-right direction is vertically long and the lower bottom is considerably shorter than the upper bottom. The vertically elongated trapezoidal shaped extrusion port side portion 31 is arranged in a state where the rear surface having substantially right angle corners on both sides is in contact with the left or right side of the extrusion port 11 on the back surface of the extrusion port forming body 12. Established.
The inner surface 31S facing the material storage part 3 in the extrusion port side portion 31 is located on the lower side of the parallel inner surface portion 31a, the lower inner surface portion 31b extending downward, and the parallel inner surface portion 31b. The lower front spreading inner surface portion 31c is connected to the front side of the inner surface portion 31b.

図2、図5及び図7に示すように、押出口側部分31の内面31Sの平行内面部分31aは、材料押出方向Dsと材料押圧方向Dpとの両方向に平行な面に構成されている。
図2、図3、図5、図6及び図7に示すように、押出口側部分31の内面31Sの下方広がり内面部分31bは、材料押出方向Dsに平行で、材料押圧方向Dpにおいては下方側ほど左右方向の外側に位置する下方広がり状の傾斜面に構成されている。
また、この押出口側部分31の内面31Sの下方広がり内面部分31bは、左右方向での側面視で、底辺が押出口側部分31の内面31Sの略全幅に亘り、かつ、頂点が概略直角台形状の押出口側部分31における内面31Sの下底の後端に位置する縦長の概略逆三角形状に構成されている。
As shown in FIGS. 2, 5, and 7, the parallel inner surface portion 31 a of the inner surface 31 </ b> S of the extrusion port side portion 31 is configured as a surface parallel to both the material extrusion direction Ds and the material pressing direction Dp.
As shown in FIGS. 2, 3, 5, 6, and 7, the lower inner surface portion 31 b of the inner surface 31 </ b> S of the extrusion port side portion 31 is parallel to the material extrusion direction Ds and is lower in the material pressing direction Dp. It is comprised in the inclined surface of the downward spreading shape located in the outer side of the left-right direction, so that the side is.
Further, the inner surface 31b that extends downward from the inner surface 31S of the extrusion port side portion 31 has a bottom that covers substantially the entire width of the inner surface 31S of the extrusion port side portion 31 in a lateral view in the left-right direction, and a vertex that is substantially a right-angle platform. The shaped extrusion port side portion 31 is formed in a vertically long, generally inverted triangular shape located at the rear end of the bottom of the inner surface 31S.

押出口側部分31の内面31Sの下方前方両広がり内面部分31cは、材料押出方向Dsにおいては前方側ほど左右方向の外側に位置し、かつ、材料押圧方向Dpにおいては下方側ほど左右方向の外側に位置する形態で、下方と前方の両方向に向けて広がる傾斜面に構成されている。
また、この押出口側部分31の内面31Sの下方前方両広がり内面部分31cは、左右方向の側面視で、頂点が逆三角形状の下方広がり内面部分31bの底辺部分の前端に位置し、底辺が直角台形状の押出口側部分31における内面31Sの下底全長に亘る縦長の概略三角形状に構成されている。
The lower front both-side expanded inner surface portion 31c of the inner surface 31S of the extrusion port side portion 31 is located on the outer side in the left-right direction toward the front side in the material extrusion direction Ds, and the outer side in the left-right direction toward the lower side in the material pressing direction Dp. It is comprised in the inclined surface which spreads toward both the downward direction and the front direction.
Further, the lower front both-side spreading inner surface portion 31c of the inner surface 31S of the extrusion port side portion 31 is located at the front end of the bottom side portion of the inner surface portion 31b having an inverted triangular shape in the lateral direction when viewed from the left and right. The right-angle trapezoid-shaped extrusion port side portion 31 is configured to have a vertically long, generally triangular shape extending over the entire bottom length of the inner surface 31S.

つまり、この実施形態では、押出口側部分31の内面31Sのうちで、押圧部材41の上下方向における移動範囲の下限位置(詳細は後述)よりも下方の全域において、一対の押出口側部分31の内面31S同士の左右間隔が、下方側ほど広くなるように構成されていることになる。   That is, in this embodiment, in the inner surface 31S of the extrusion port side portion 31, the pair of extrusion port side portions 31 in the entire region below the lower limit position (details will be described later) of the movement range in the vertical direction of the pressing member 41. The left and right intervals between the inner surfaces 31 </ b> S are configured to become wider toward the lower side.

図2、図3、図5及び図8に示すように、ロール間側部分32は、左右方向視での外形形状が、頂点部分が前方(一対のロール21の間隙21Gの側)を向く概略二等辺三角形状である。そして、そのロール間側部分32の後方(押出口11の側)を向く端面部分(すなわち、概略二等辺三角形状の底辺に対応する縁部に沿う端面部分)は、平面状に形成され、ロール間側部分32における一対のロール21の各々に対向する端面部分(すなわち、概略二等辺三角形状の頂点を挟む長さが等しい辺に対応する縁部に沿う端面部分)は、各ロール21と同心円の円弧状に湾入する湾入面32dとなるように構成されている。   As shown in FIGS. 2, 3, 5, and 8, the inter-roll side portion 32 has an outline shape when viewed in the left-right direction, and the apex portion is facing forward (the gap 21 </ b> G side of the pair of rolls 21). Isosceles triangle shape. And the end surface part (namely, the end surface part in alignment with the edge corresponding to the base of a substantially isosceles triangle shape) which faces the back (extrusion port 11 side) of the part 32 between rolls is formed in plane, and roll The end surface portions facing each of the pair of rolls 21 in the intermediate portion 32 (that is, the end surface portion along the edge corresponding to the side having the same length sandwiching the apex of the approximately isosceles triangle) are concentric with each roll 21. It is comprised so that it may become the bay entrance surface 32d which enters into a circular arc shape.

また、ロール間側部分32における材料貯留部3内に面する内面32Sは、左右方向視において、後端縁の上方側に寄った部分と下方側の湾曲状端縁の後方側に寄った部分とを結ぶ第1線分の後方側の部分である下方広がり内面部分32aと、その第1線分と、上方側の湾曲状端縁の前方に寄った部分と下方側の湾曲状端縁の前方側に寄った部分とを結ぶ第2線分との間の部分である前方広がり内面部分32bと、その第2線分から前端にまで延びる平行内面部分32cとからなる。   Further, the inner surface 32S facing the inside of the material storage portion 3 in the inter-roll side portion 32 has a portion close to the upper side of the rear end edge and a portion close to the rear side of the lower curved end edge in the left-right direction view. A downwardly extending inner surface portion 32a that is a portion on the rear side of the first line segment that connects the first line segment, the first line segment, a portion near the front of the upper curved edge, and a lower curved edge. It consists of a front expanding inner surface portion 32b which is a portion between the second line segment connecting the portion approaching the front side, and a parallel inner surface portion 32c extending from the second line segment to the front end.

図2、図5、図6及び図8に示すように、ロール間側部分32の内面32Sの下方広がり内面部分32aは、材料押出方向Dsに平行で、材料押圧方向Dpにおいては下方側ほど左右方向の外側に位置する下方広がり状の傾斜面に構成されている。
ロール間側部分32の内面の前方広がり内面部分32bは、材料押出方向Dsにおいては前方側ほど左右方向の外側に位置し、かつ、材料押圧方向Dpに平行な前方広がり状の傾斜面に構成されている。
ロール間側部分32の内面の平行内面部分32cは、材料押出方向Dsと材料押圧方向Dpとの両方向に平行な面に構成されている。
As shown in FIGS. 2, 5, 6, and 8, the lower inner surface portion 32 a of the inner surface 32 </ b> S of the inter-roll side portion 32 is parallel to the material extrusion direction Ds, and the lower side in the material pressing direction Dp. It is comprised by the downwardly-expanding inclined surface located in the outer side of a direction.
The inner surface portion 32b that extends forward of the inner surface of the inter-roll side portion 32 is configured as an inclined surface that extends forward in the left and right direction toward the front side in the material extrusion direction Ds and is parallel to the material pressing direction Dp. ing.
The parallel inner surface portion 32c of the inner surface of the inter-roll side portion 32 is configured as a surface parallel to both the material extrusion direction Ds and the material pressing direction Dp.

図7(b)に示すように、押出口側部分31の上底に平行な方向での背面視において、材料押出方向Dsと材料押圧方向Dpとに沿う面に対する押出口側部分31の下方広がり内面部分31bの傾斜角度αは、例えば、5〜15度とされ、同じく、材料押出方向Dsと材料押圧方向Dpとに沿う面に対する押出口側部分31の下方前方両広がり内面部分31cの前端縁の傾斜角度βは、下方広がり内面部分31bの傾斜角度αよりも大きい、例えば、10〜20度とされる。
また、図8(f)に示すように、押出口側部分31の上底に平行な方向での背面視において、材料押出方向Dsと材料押圧方向Dpとに沿う面に対するロール間側部分32の下方広がり内面部分32aの傾斜角度γは、材料押出方向Dsと材料押圧方向Dpとに沿う面に対する押出口側部分31の下方前方両広がり内面部分31cの前端縁の傾斜角度βと同一とされ、例えば、10〜20度とされる。
また、ロール間側部分32の下方広がり内面部分32aの後端縁の長さは、押出口側部分31の下方前方両広がり内面部分31cの前端縁の長さと同一とされる。
As shown in FIG. 7B, in the rear view in the direction parallel to the upper base of the extrusion port side portion 31, the downward expansion of the extrusion port side portion 31 with respect to the surface along the material extrusion direction Ds and the material pressing direction Dp. The inclination angle α of the inner surface portion 31b is, for example, 5 to 15 degrees, and similarly, the front end edge of the inner surface portion 31c extending forward and downward in the extrusion port side portion 31 with respect to the surface along the material extrusion direction Ds and the material pressing direction Dp. Is larger than the inclination angle α of the inner surface portion 31b that extends downward, for example, 10 to 20 degrees.
Moreover, as shown in FIG.8 (f), in the back view in the direction parallel to the upper base of the extrusion opening | mouth side part 31, the side part 32 between rolls with respect to the surface in alignment with the material extrusion direction Ds and the material pressing direction Dp is shown. The inclination angle γ of the downwardly extending inner surface portion 32a is the same as the inclination angle β of the front end edge of the lower front both expanding inner surface portion 31c of the extrusion port side portion 31 with respect to the surface along the material extrusion direction Ds and the material pressing direction Dp. For example, the angle is 10 to 20 degrees.
Further, the length of the rear end edge of the inner surface portion 32a that extends downward in the inter-roll side portion 32 is the same as the length of the front end edge of the inner surface portion 31c that extends downward and forward in the extrusion port side portion 31.

図2〜図6に示すように、上述のように構成された押出口側部分31とロール間側部分32とが、押出口側部分31の下方前方両広がり内面部分31cの前端縁とロール間側部分32の下方広がり内面部分32aの後端縁とを合わせるように、押出口側部分31の後面とロール間側部分32の前面とを当接させた状態で、連結部材33により一体的に組み付けられて、側壁部3Gが構成される。   As shown in FIGS. 2 to 6, the extrusion port side portion 31 and the inter-roll side portion 32 configured as described above are formed between the front end edge of the inner surface portion 31 c and the front end edge of the inner surface portion 31 c. In a state where the rear surface of the extrusion port side portion 31 and the front surface of the inter-roll side portion 32 are in contact with each other so as to match the rear end edge of the inner surface portion 32a that extends downward from the side portion 32, the connecting member 33 integrally The side wall 3G is configured by assembling.

このように押出口側部分31とロール間側部分32とが連結部材33により一体的に組み付けられると、押出口側部分31の平行内面部分31a、下方広がり内面部分31b及び下方前方両広がり内面部分31c、並びにロール間側部分32の下方広がり内面部分32a、前方広がり内面部分32b及び平行内面部分32cが概ね一連に連なる状態となって、それらの内面部分により、側壁部3Gの内面3Sが構成される(図2及び図4参照。)。   In this way, when the extrusion port side portion 31 and the inter-roll side portion 32 are integrally assembled by the connecting member 33, the parallel inner surface portion 31a, the downwardly extending inner surface portion 31b, and the lower front both expanding inner surface portion of the extrusion port side portion 31. 31c and the inner surface portion 32a extending downward, the front expanding inner surface portion 32b, and the parallel inner surface portion 32c of the inter-roll side portion 32 are connected in a series, and the inner surface 3S of the side wall portion 3G is constituted by these inner surface portions. (See FIGS. 2 and 4).

そして、図2〜図6に示すように、このように押出口側部分31とロール間側部分32とが一体的に組み付けられて構成された側壁部3Gが、材料押出部1と材料圧延部2との間の左右両側の各々に、押出口11からの材料押出方向Dsに沿う背面視で、押出口側部分31の下方広がり内面部分31bが、押出口11の口縁に外側から近接する状態となるよう配設される(図3参照。)。   As shown in FIGS. 2 to 6, the side wall portion 3 </ b> G configured by integrally assembling the extrusion port side portion 31 and the inter-roll side portion 32 in this way is the material extrusion portion 1 and the material rolling portion. 2, the inner surface portion 31 b that extends downward from the extrusion port side portion 31 is close to the edge of the extrusion port 11 from the outside in a rear view along the material extrusion direction Ds from the extrusion port 11. It arrange | positions so that it may be in a state (refer FIG. 3).

図3に示すように、押出口11の左右方向の幅Wmは、このシート成形装置の仕様により決まり、一対のロール間側部分32の各々の内面32Sの前端部同士の左右間隔(一対のロール間側部分32における平行内面部分32cの前端部同士の左右間隔)Wfは、押出口11の左右方向の幅Wmよりも大きい条件で、一対のロール21にて被成形材料Mをシート状に成形するに当たっての目標幅により決まる。
そして、図3に示すように、一対の押出口側部分31の各々の内面31Sにおける上端部同士の左右間隔(一対の下方広がり内面部分31bの上端部同士の左右間隔)Wt、及び、一対の押出口側部分31の各々の内面31Sにおける下端部同士の左右間隔(一対の下方前方両広がり内面部分31cにおける下端部の前端部同士の最大左右間隔)Wdの各々は、押出口11の左右方向の幅Wm、及び、一対のロール間側部分32の各々の内面32Sにおける前端部同士の左右間隔Wfに基づいて、下記の式(1)、(2)の条件にて設定される。
As shown in FIG. 3, the width Wm in the left-right direction of the extrusion port 11 is determined by the specifications of the sheet forming apparatus, and the left-right distance between the front end portions of the inner surfaces 32S of the pair of inter-roll side portions 32 (the pair of rolls). The left-right distance between the front end portions of the parallel inner surface portion 32c in the intermediate side portion 32) Wf is larger than the width Wm in the left-right direction of the extrusion port 11 and is formed into a sheet shape by the pair of rolls 21. It is determined by the target range in doing.
And as shown in FIG. 3, the left-right space | interval of the upper end parts in each inner surface 31S of a pair of extrusion opening side part 31 (the left-right space | interval of the upper end parts of a pair of downward spreading inner surface part 31b) Wt, and a pair of Each of the left and right intervals between the lower ends of each inner surface 31S of the extrusion port side portion 31 (maximum left and right interval between the front end portions of the lower ends of the pair of lower front both spreading inner surfaces 31c) Wd is the horizontal direction of the extrusion port 11 Are set under the conditions of the following formulas (1) and (2) on the basis of the width Wm and the left-right distance Wf between the front end portions of each inner surface 32S of the pair of inter-roll side portions 32.

Wt<Wm ・・・式(1)
Wm<Wd<Wf ・・・式(2)
Wt <Wm Expression (1)
Wm <Wd <Wf (2)

つまり、この実施形態では、一対の側壁部3Gの各々の内面3Sのうち、押出口側部分31の内面31S(具体的には、下方広がり内面部分31b及び下方前方両広がり内面部分31c)に加えて、ロール間側部分32の内面32Sのうちの押出口側部分31の内面31Sの前方に連なる部分(すなわち、下方広がり内面部分32a)同士の左右間隔も、下方側ほど広くなるように構成されていることになる。
また、一対の押出口側部分31の各々の内面31Sの上端部(平行内面部分31a、すなわち、下方広がり内面部分31bの上端縁)同士の左右間隔Wtが、押出口11の左右方向の幅Wmよりも狭くなるように構成されていることになる。
また、一対の押出口側部分31の各々の内面31S(具体的には、後方側の部分である下方広がり内面部分31b)が、下方側ほど左右方向の外側に位置する傾斜面で構成され、押出口11に対する一対の押出口側部分31の各々の内面31S(具体的には、下方広がり内面部分31b)の相対位置関係が、押出口11からの材料押出方向Dsに沿う背面視で、押出口11の口縁に外側から近接する状態となるように構成されていることになる。
That is, in this embodiment, in addition to the inner surface 31S of the extrusion port side portion 31 (specifically, the downwardly extending inner surface portion 31b and the lower forward both expanding inner surface portion 31c) of the inner surface 3S of each of the pair of side wall portions 3G. In addition, the left-right distance between the portions (that is, the downwardly extending inner surface portion 32a) connected to the front of the inner surface 31S of the extrusion port side portion 31 in the inner surface 32S of the inter-roll side portion 32 is also configured to become wider toward the lower side. Will be.
Further, the left-right distance Wt between the upper end portions (parallel inner surface portion 31a, that is, the upper end edge of the inner surface portion 31b extending downward) of each inner surface 31S of the pair of extrusion port side portions 31 is the width Wm in the left-right direction of the extrusion port 11. It will be comprised so that it may become narrower.
Further, each inner surface 31S of the pair of extrusion port side portions 31 (specifically, a downwardly extending inner surface portion 31b that is a rear side portion) is configured by an inclined surface that is positioned on the outer side in the left-right direction toward the lower side, The relative positional relationship between the inner surfaces 31S (specifically, the downwardly extending inner surface portion 31b) of each of the pair of extrusion port side portions 31 with respect to the extrusion port 11 is determined in a rear view along the material extrusion direction Ds from the extrusion port 11. It will be comprised so that it may be in the state which adjoins the opening edge of the exit 11 from the outer side.

また、一対の側壁部3Gにおける内面3S同士の左右間隔が、押出口11からの材料押出方向Dsに沿って、一対のロール21の側に向かうほど広くなるように構成されていることになる。
さらに、一対の押出口側部分31の各々の内面31Sにおける下端部同士の左右間隔Wdが、一対のロール間側部分32の各々の内面32Sにおける前端部同士の左右間隔Wfよりも狭くなるように構成されていることになる。
Moreover, it is comprised so that the left-right space | interval of the inner surfaces 3S in a pair of side wall part 3G may become so wide as it goes to the pair of roll 21 side along the material extrusion direction Ds from the extrusion port 11. FIG.
Furthermore, the left-right distance Wd between the lower ends of the inner surfaces 31S of each of the pair of extrusion port side portions 31 is set to be narrower than the left-right distance Wf of the front end portions of each of the inner surfaces 32S of the pair of inter-roll side portions 32. It will be configured.

図1及び図2に示すように、圧力印加部4は、ロール21の軸心21aと平行な回転軸心42周りに回転自在に支持されたリンク43と、そのリンク43の上方側の端部に平面状の材料押圧面41aを下向きにして連結具44により連結された押圧部材41と、リンク43の下方側の端部に連結されてそのリンク43を回転軸心42周りに回転させることにより押圧部材41を下向きの材料押圧方向Dpに沿って移動させるアクチュエータ45とを備えて構成されている。ちなみに、リンク43の回転軸心42は、押出口11に対して、材料押出方向Dsにおいて後方側に位置する。
そして、リンク43の下方側の端部を引っ張る方向にアクチュエータ45を作動させることにより、押圧部材41により材料貯留部3に貯留されている被成形材料Mを上方から下向きの材料押圧方向Dpに押圧するように構成されている。
この実施形態では、押圧部材41により被成形材料Mを押圧する押圧力を、低圧と高圧の2段階に切り換えるように構成されている。
アクチュエータ45としては、油圧シリンダ、空気圧シリンダ、電動シリンダ等を用いることができる。
As shown in FIGS. 1 and 2, the pressure application unit 4 includes a link 43 that is rotatably supported around a rotation axis 42 that is parallel to the axis 21 a of the roll 21, and an upper end portion of the link 43. By connecting the pressing member 41 with the flat material pressing surface 41a facing downward by the connecting tool 44 and the lower end of the link 43 and rotating the link 43 around the rotation axis 42. And an actuator 45 that moves the pressing member 41 along the downward material pressing direction Dp. Incidentally, the rotation axis 42 of the link 43 is located on the rear side with respect to the extrusion port 11 in the material extrusion direction Ds.
Then, by actuating the actuator 45 in the direction of pulling the lower end portion of the link 43, the pressing member 41 presses the molding material M stored in the material storage portion 3 from above to the downward material pressing direction Dp. Is configured to do.
In this embodiment, the pressing force for pressing the material M to be pressed by the pressing member 41 is configured to be switched between two stages of low pressure and high pressure.
As the actuator 45, a hydraulic cylinder, a pneumatic cylinder, an electric cylinder or the like can be used.

図2〜図4に示すように、上述のようにリンク43の上端部に連結された押圧部材41は、厚さ方向(材料押圧方向Dpに相当する)視で矩形状に構成されて、材料貯留部3内に配設されている。
そして、押圧部材41を材料貯留部3内において材料押圧方向Dpに沿って移動させることが可能なように、材料押圧方向Dp視において、押圧部材41の外周部と材料貯留部3の上部開口部30の口縁(押出口形成体12、左右両側の側壁部3G及び上側のロール21にて形成される。)との間には、隙間が設けられている。
As shown in FIGS. 2 to 4, the pressing member 41 connected to the upper end portion of the link 43 as described above is configured in a rectangular shape when viewed in the thickness direction (corresponding to the material pressing direction Dp). Arranged in the reservoir 3.
And in the material pressing direction Dp view, the outer peripheral part of the pressing member 41 and the upper opening part of the material storage part 3 so that the pressing member 41 can be moved in the material storage part 3 along the material pressing direction Dp. A gap is provided between 30 mouth edges (formed by the extrusion port forming body 12, the side wall portions 3G on both the left and right sides, and the upper roll 21).

ところで、圧力印加部4は、材料貯留部3に貯留されている被成形材料Mを上方から下方に向く材料押圧方向Dpに予め設定した設定圧力をかけて押圧するものであるため、材料貯留部3に貯留されている被成形材料Mの量に応じて、押圧部材41の材料押圧面41aにおける材料押圧方向Dpでの位置が所定の範囲で変動することになる。
なお、図2及び図3に示すように、押圧部材41の材料押圧面41aにおける材料押圧方向Dpでの位置の変動範囲は、材料貯留部3内において、一対の押出口側部分31の各々の平行内面部分31aにて左右両側が囲まれる領域になるように構成されている。
By the way, the pressure application unit 4 presses the molding material M stored in the material storage unit 3 by applying a preset pressure in the material pressing direction Dp facing downward from above, so that the material storage unit The position in the material pressing direction Dp on the material pressing surface 41a of the pressing member 41 varies within a predetermined range in accordance with the amount of the molding material M stored in 3.
As shown in FIGS. 2 and 3, the fluctuation range of the position in the material pressing direction Dp on the material pressing surface 41 a of the pressing member 41 is different in each of the pair of extrusion port side portions 31 in the material storage portion 3. It is comprised so that it may become the area | region where both right and left sides may be enclosed by the parallel inner surface part 31a.

そして、図1に示すように、材料押圧方向Dpでの押圧部材41(実際には、材料押圧面41a)の位置を検出する位置検出センサT1が設けられている。
具体的には、位置検出センサT1は、回転軸心42に対するリンク43の回転角度(以下、「位置対応角度」という場合がある。)を検出するロータリーエンコーダにより構成されている。
つまり、押圧部材41が材料押圧方向Dpの下限位置(概ね、平行内面部分31aの下端縁)に位置するときの位置対応角度を0度とすると、材料押圧方向Dpでの押圧部材41の位置が下限位置から高くなるほど、位置対応角度が大きくなり、位置対応角度の変動は材料押圧方向Dpでの押圧部材41の位置変動となる。
そこで、位置検出センサT1の検出情報と材料押圧方向Dpでの押圧部材41の位置との相関関係を予め求めておいて、位置検出センサT1により、位置対応角度を材料押圧方向Dpでの押圧部材41の位置として検出するように構成されている。
As shown in FIG. 1, a position detection sensor T1 for detecting the position of the pressing member 41 (actually, the material pressing surface 41a) in the material pressing direction Dp is provided.
Specifically, the position detection sensor T1 is configured by a rotary encoder that detects a rotation angle of the link 43 with respect to the rotation axis 42 (hereinafter, also referred to as “position-corresponding angle”).
That is, when the position corresponding angle when the pressing member 41 is positioned at the lower limit position of the material pressing direction Dp (generally, the lower edge of the parallel inner surface portion 31a) is 0 degree, the position of the pressing member 41 in the material pressing direction Dp is The higher the position is from the lower limit position, the larger the position-corresponding angle, and the fluctuation of the position-corresponding angle becomes the position fluctuation of the pressing member 41 in the material pressing direction Dp.
Accordingly, a correlation between the detection information of the position detection sensor T1 and the position of the pressing member 41 in the material pressing direction Dp is obtained in advance, and the position corresponding angle is determined by the position detecting sensor T1 in the pressing member 41 in the material pressing direction Dp. The position 41 is detected.

また、図1に示すように、材料圧延部2の出口付近には、一対のロール21から払い出されるシート状材Msの有無を検出することにより、シート排出有無を検出するシート検出センサT2が設けられている。   As shown in FIG. 1, a sheet detection sensor T <b> 2 that detects whether or not a sheet is discharged by detecting the presence or absence of the sheet-like material Ms delivered from the pair of rolls 21 is provided near the exit of the material rolling unit 2. It has been.

次に、図9に基づいて、材料貯留部3の側壁部3Gの内面3Sを、この実施形態のように構成することにより、材料貯留部3における被成形材料Mの流動状態を改善できることを検証する。
なお、図9(a)は、材料貯留部3の側壁部3Gの内面3Sを上述した実施形態のように構成した場合の縦断背面図である。また、図9(b)は、従来のように、材料貯留部3の側壁部3Gの各々の内面3Sのうち、押出口側部分31の内面31S同士の左右間隔を、押出口11の左右方向の幅よりも広くなる条件で、上下方向において一定になるように構成した場合の縦断背面図である。
Next, based on FIG. 9, it is verified that the flow state of the molding material M in the material reservoir 3 can be improved by configuring the inner surface 3S of the side wall 3G of the material reservoir 3 as in this embodiment. To do.
FIG. 9A is a longitudinal rear view when the inner surface 3S of the side wall 3G of the material reservoir 3 is configured as in the above-described embodiment. 9 (b) shows the left-right distance between the inner surfaces 31S of the extrusion port side portion 31 among the inner surfaces 3S of the side wall 3G of the material storage unit 3 as in the prior art. It is a vertical rear view at the time of comprising so that it may become fixed in the up-down direction on the conditions which become wider than this width | variety.

ちなみに、図9(b)に示す構成では、側壁部3Gのロール間側部分32の内面32Sは、後方側の部分の前方広がり内面部分32fと、その前方広がり内面部分32fの前方に連なって前端にまで延びる平行内面部分32gとからなる。
ロール間側部分32の内面32Sの前方広がり内面部分32fは、材料押圧方向Dpに平行で、材料押出方向Dsにおいては前方側ほど左右方向の外側に位置する形態の前方広がり状の平面に構成され、ロール間側部分32の内面32Sの平行内面部分32gは、材料押出方向Dsと材料押圧方向Dpとの両方向に平行な平面に構成されている。
By the way, in the configuration shown in FIG. 9B, the inner surface 32S of the inter-roll side portion 32 of the side wall portion 3G is connected to the front widening inner surface portion 32f of the rear portion and the front end of the front widening inner surface portion 32f. And a parallel inner surface portion 32g extending up to.
An inner surface portion 32f that extends forward of the inner surface 32S of the inter-roll side portion 32 is configured to be a front-expanding flat surface that is parallel to the material pressing direction Dp and is positioned more outward in the left-right direction toward the front side in the material pushing direction Ds. The parallel inner surface portion 32g of the inner surface 32S of the inter-roll side portion 32 is configured in a plane parallel to both the material extrusion direction Ds and the material pressing direction Dp.

図9(a)に示す構成では、押出口側部分31の内面31Sのうちで、押圧部材41の移動範囲の下限位置よりも下方の全域において、一対の押出口側部分31の内面31S同士の左右間隔が、下方側ほど広くなるように構成されている。
このことにより、押出口11から材料貯留部3に押し出された被成形材料Mを材料貯留部3に充填するに当たり、黒塗り矢印のように、押出口側部分31の内面31Sに沿って下方に向かう被成形材料Mの流動が発生する。これにより、押出口11の背面視において、押出口11の口縁と押出口側部分31の内面31Sとの間における上方側の領域には、被成形材料Mの滞留域Aが生じ難くなる。また、一対の押出口側部分31の内面31S同士の左右間隔が下方側ほど広くなり、さらに上述した被成形材料Mの下方に向かう流動が発生することから、下側のロール21の外周面において極力広い領域に被成形材料Mを接触させることができる。
In the configuration shown in FIG. 9A, among the inner surfaces 31S of the extrusion port side portion 31, the inner surfaces 31S of the pair of extrusion port side portions 31 are located in the entire region below the lower limit position of the movement range of the pressing member 41. The left-right distance is configured to increase toward the lower side.
As a result, in filling the material reservoir 3 with the molding material M extruded from the extrusion port 11 to the material reservoir 3, as indicated by the black arrow, it is downward along the inner surface 31 </ b> S of the extrusion port side portion 31. The flow of the molding material M toward it occurs. Thereby, in the rear view of the extrusion port 11, the retention region A of the molding material M is hardly generated in the upper region between the edge of the extrusion port 11 and the inner surface 31 </ b> S of the extrusion port side portion 31. Moreover, since the space | interval between the inner surfaces 31S of a pair of extrusion port side parts 31 becomes wide toward the lower side, and further the flow toward the lower side of the molding material M described above occurs, the outer peripheral surface of the lower roll 21 The molding material M can be brought into contact with a region as wide as possible.

また、押出口側部分31の内面31Sのうちで、前端側の部分の下方前方両広がり内面部分31cにおいては、一対の押出口側部分31の内面31S同士の左右間隔が、下方側ほどかつ前方側ほど広くなるように構成されているので、被成形材料Mを左右方向に広げることができる。
さらに、ロール間側部分32の内面32Sのうち、押出口側部分31の内面31Sの前方に連なる部分である下方広がり内面部分32aにおいても、一対のロール間側部分32の内面32S同士の左右間隔が下方側ほど広くなるように構成されているので、被成形材料Mが下方に流動するのをさらに助長させて、下側のロール21の外周面に対して被成形材料Mを接触させる面積をさらに広げることができる。
したがって、これらの相乗作用により、押出口11から材料貯留部3に押し出された被成形材料Mを効果的に下側のロール21に向けて流動させて、被成形材料Mを下側のロール21の外周面に沿わせて左右方向に広げながら、前方に向けて流動させることができる。これにより、被成形材料Mを極力広い左右方向の幅で一対のロール21の間隙21Gに進入させることができるようになり、シート状材Msの幅が狭くなるのを抑制すると共に、シート状材Msのエッジに凹凸が生じるのを抑制することができる。
Moreover, in the inner surface 31S of the extrusion port side portion 31, in the lower front both-side spreading inner surface portion 31c of the front end side portion, the left and right intervals between the inner surfaces 31S of the pair of extrusion port side portions 31 are closer to the lower side and forward. Since it is comprised so that it may become so wide as the side, the molding material M can be extended in the left-right direction.
Further, among the inner surfaces 32S of the inter-roll side portion 32, the left and right distances between the inner surfaces 32S of the pair of inter-roll side portions 32 also in the downwardly extending inner surface portion 32a that is a portion connected to the front of the inner surface 31S of the extrusion port side portion 31. Is configured to become wider toward the lower side, so that the molding material M is further encouraged to flow downward, and the area where the molding material M is brought into contact with the outer peripheral surface of the lower roll 21 is increased. It can be further expanded.
Therefore, by these synergistic actions, the molding material M extruded from the extrusion port 11 to the material reservoir 3 is effectively caused to flow toward the lower roll 21 to cause the molding material M to flow downward. It can be made to flow toward the front while spreading in the left-right direction along the outer peripheral surface. As a result, the molding material M can be made to enter the gap 21G between the pair of rolls 21 with the widest lateral width as much as possible, and the width of the sheet-like material Ms is suppressed from being narrowed, and the sheet-like material is reduced. It can suppress that an unevenness | corrugation arises in the edge of Ms.

一方、図9(b)に示すように、一対の押出口側部分31の各々の内面31S同士の左右間隔が、上下方向において一定になるように構成されていると、押出口11から材料貯留部3に押し出された被成形材料Mのうち上方側の被成形材料Mは、黒塗り矢印のように、左右方向に広がって側壁部3Gの押出口側部分31の内面31Sに当たると下方に流動し難い。したがって、押出口11の背面視において、押出口11の口縁と押出口側部分31の内面との間における上方側の領域に、被成形材料Mが押出口側部分31の内面31Sに当たったままで滞留する滞留域Aが生じ易く、しかも、その滞留域Aが広くなり易い。
そして、このように材料貯留部3内に広い滞留域Aが生じると、被成形材料Mの流動が阻害され、その下流の材料貯留部3内における側壁部3Gの内面3S近傍に被成形材料Mが十分に充填され難い。そのため、一対のロール21の間隙21Gに進入する被成形材料Mの左右方向の幅が狭くなったり、左右方向の端部の量が少なくなったりして、シート状材Msの幅が不安定になって、シート状材Msの左右方向のエッジに凹凸が生じ易い。
On the other hand, as shown in FIG. 9B, when the left and right intervals between the inner surfaces 31S of the pair of extrusion port side portions 31 are constant in the vertical direction, the material is stored from the extrusion port 11. The molding material M on the upper side of the molding material M pushed out to the portion 3 spreads in the left-right direction and flows downward as it hits the inner surface 31S of the extrusion port side portion 31 of the side wall portion 3G as indicated by a black arrow. It is hard to do. Accordingly, in the rear view of the extrusion port 11, the molding material M hits the inner surface 31 </ b> S of the extrusion port side portion 31 in the upper region between the edge of the extrusion port 11 and the inner surface of the extrusion port side portion 31. A staying area A staying up to is easily generated, and the staying area A tends to be widened.
When a large staying area A is generated in the material reservoir 3 in this way, the flow of the molding material M is hindered, and the molding material M is located near the inner surface 3S of the side wall 3G in the downstream material reservoir 3. Is hard to be filled. Therefore, the width of the molding material M entering the gap 21G between the pair of rolls 21 is narrowed in the left-right direction or the amount of end portions in the left-right direction is reduced, and the width of the sheet-like material Ms becomes unstable. Thus, irregularities are likely to occur on the edge in the left-right direction of the sheet-like material Ms.

〔別形態〕
(A)一対の押出口側部分31の各々の内面31Sを、下方側ほど左右方向の外側に位置する傾斜面で構成する場合に、上記の実施形態では、押出口11に対する一対の押出口側部分31の各々の内面31Sの相対位置関係が、押出口11からの材料押出方向Dsに沿う背面視で、押出口11の口縁に外側から近接する状態となるように構成したが、押出口11の口縁に接する状態となるように構成してもよい。
[Another form]
(A) When the inner surfaces 31S of each of the pair of extrusion port side portions 31 are constituted by inclined surfaces positioned on the outer side in the left-right direction toward the lower side, in the above embodiment, the pair of extrusion port sides with respect to the extrusion port 11 The relative positional relationship between the inner surfaces 31S of the portions 31 is configured so as to be close to the mouth edge of the extrusion port 11 from the outside in a rear view along the material extrusion direction Ds from the extrusion port 11. You may comprise so that it may be in the state which touches 11 mouth edges.

(B)一対の側壁部3Gの各々の内面3Sのうち、押出口側部分31の内面31S同士の左右間隔が下方側ほど広くなるように構成するに当たって、押出口側部分31の内面31Sの形態は、上記の実施形態において例示した形態、すなわち、押出口側部分31の内面31Sを平行内面部分31aと下方広がり内面部分31bと下方前方両広がり内面部分31cとから構成する形態に限定されるものではない。
(B−1)例えば、押出口側部分31の内面31Sの全面を、材料押出方向Dsに平行で、材料押圧方向Dpにおいては下方側ほど左右方向の外側に位置する下方広がり状の一面の傾斜面としてもよい。
(B−2)例えば、押出口側部分31の内面31Sの全面を、材料押出方向Dsにおいては前方側ほど左右方向の外側に位置し、かつ、材料押圧方向Dpにおいては下方側ほど左右方向の外側に位置する下方前方両広がり状の一面の傾斜面としてもよい。
これらの場合は、いずれも、押出口側部分31の各々の内面31Sの全面に亘って、一対の押出口側部分31の各々の内面31S同士の左右間隔が下方側ほど広くなるように構成されることになる。
(B−3)例えば、押出口側部分31の内面31Sを、材料押圧方向Dpにおいて下方側ほど左右方向の外側に位置する形態で、複数段状になるようにしてもよい。
(B) Of the inner surface 3S of each of the pair of side wall portions 3G, the configuration of the inner surface 31S of the extrusion port side portion 31 is configured such that the left-right distance between the inner surfaces 31S of the extrusion port side portion 31 increases toward the lower side. Is limited to the form exemplified in the above-described embodiment, that is, the form in which the inner surface 31S of the extrusion port side portion 31 is composed of the parallel inner surface portion 31a, the lower inner surface portion 31b, and the lower front both inner surface portion 31c. is not.
(B-1) For example, the entire surface of the inner surface 31S of the extrusion port side portion 31 is parallel to the material extrusion direction Ds, and is inclined downward in the material pressing direction Dp so as to be positioned on the outer side in the left-right direction toward the lower side. It may be a surface.
(B-2) For example, the entire inner surface 31S of the extrusion port side portion 31 is positioned on the outer side in the left-right direction toward the front side in the material push-out direction Ds, and the lower side in the material pressing direction Dp. It is good also as a one-sided inclined surface of the downward front both spreading shape located in the outer side.
In any of these cases, the left and right intervals between the inner surfaces 31S of the pair of extrusion port side portions 31 are widened toward the lower side over the entire inner surface 31S of each of the extrusion port side portions 31. Will be.
(B-3) For example, the inner surface 31S of the extrusion port side portion 31 may be formed in a plurality of steps in a form in which the lower side in the material pressing direction Dp is positioned on the outer side in the left-right direction.

(C)一対の押出口側部分31の内面31Sに加えて、一対のロール間側部分32の内面32S同士の左右間隔も下方側ほど広くなるように構成するに当たって、上記の実施形態のように、ロール間側部分32の内面32Sの一部において、一対のロール間側部分32の内面32S同士の左右間隔が下方側ほど広くなるように構成する場合に限定されるものではない。
例えば、ロール間側部分32の内面32Sの全面を、材料押出方向Dsにおいては前方側ほど左右方向の外側に位置し、かつ、材料押圧方向Dpにおいては下方側ほど左右方向の外側に位置する形態で、下方と前方の両方向に向けて広がる一面の傾斜面とすることにより、ロール間側部分32の内面32Sの全面において、一対のロール間側部分32の内面32S同士の左右間隔が下方側ほど広くなるように構成してもよい。
(C) In addition to the inner surfaces 31S of the pair of extrusion port side portions 31, the left and right distances between the inner surfaces 32S of the pair of inter-roll side portions 32 are configured to become wider toward the lower side, as in the above embodiment. In addition, in a part of the inner surface 32S of the inter-roll side portion 32, the configuration is not limited to the case where the left-right distance between the inner surfaces 32S of the pair of inter-roll side portions 32 is increased toward the lower side.
For example, the entire inner surface 32S of the inter-roll side portion 32 is positioned on the outer side in the left-right direction toward the front side in the material extrusion direction Ds, and positioned on the outer side in the left-right direction toward the lower side in the material pressing direction Dp. Thus, by forming a single inclined surface that spreads in both the downward and forward directions, the left-right distance between the inner surfaces 32S of the pair of inter-roll side portions 32 is closer to the lower side on the entire inner surface 32S of the inter-roll side portion 32. You may comprise so that it may become large.

(D)一対の側壁部3Gにおける内面3S同士の左右間隔が、材料押出方向Dsに沿って、一対のロール21の側に向かうほど(すなわち、前方ほど)広くなるように構成するに当たって、上記の実施形態のように、押出口側部分31の内面31Sの一部(下方前方両広がり内面部分31c)、並びに、ロール間側部分32の内面32Sの一部(前方広がり内面部分32b)において、一対の側壁部3Gにおける内面3S同士の左右間隔が材料押出方向Dsに沿って前方ほど広くなるように構成する場合に限定されるものではない。
(D−1)例えば、押出口側部分31の内面31Sには、左右間隔が材料押出方向Dsに沿って前方ほど広くなる部分を設けずに、ロール間側部分32の内面32Sの一部において、一対の側壁部3Gにおける内面3S同士の左右間隔が材料押出方向Dsに沿って前方ほど広くなるように構成してもよい。
この場合は、例えば、押出口側部分31の内面31Sの全面を、材料押出方向Dsに平行となるように構成し、ロール間側部分32の内面32Sを上記の実施形態と同様の形態とする。
(D−2)例えば、押出口側部分31の内面31Sには、左右間隔が材料押出方向Dsに沿って前方ほど広くなる部分を設けずに、ロール間側部分32の内面32Sの全面において、一対の側壁部3Gにおける内面3S同士の左右間隔が材料押出方向Dsに沿って前方ほど広くなるように構成してもよい。
この場合は、押出口側部分31の内面31Sの全面を、材料押出方向Dsに平行となるように構成し、ロール間側部分32の内面32Sの全面を、材料押出方向Dsに沿って一対のロール21の側に向かうほど広くなる前方広がり状の一面の傾斜面とする。
(D−3)例えば、押出口側部分31の内面31Sの全面、及び、ロール間側部分32の内面32Sの全面において、一対の側壁部3Gにおける内面3S同士の左右間隔が材料押出方向Dsに沿って前方ほど広くなるように構成してもよい。
この場合は、例えば、押出口側部分31の内面31S、及び、ロール間側部分32の内面32Sの各々を、材料押出方向Dsにおいては前方側ほど左右方向の外側に位置し、かつ、材料押圧方向Dpにおいては下方側ほど左右方向の外側に位置する形態の下方前方両広がり状の一面の傾斜面とする。
(D) In the configuration in which the left-right distance between the inner surfaces 3S of the pair of side wall portions 3G increases toward the pair of rolls 21 along the material extrusion direction Ds (that is, forward), As in the embodiment, a pair of the inner surface 31S of the extrusion port side portion 31 (the lower front bifurcated inner surface portion 31c) and the inner surface 32S of the inter-roll side portion 32 (the front wider inner surface portion 32b) are paired. It is not limited to the case where the left and right distances between the inner surfaces 3S of the side wall portion 3G are made wider toward the front along the material extrusion direction Ds.
(D-1) For example, the inner surface 31S of the extrusion port side portion 31 is not provided with a portion where the left-right interval becomes wider toward the front along the material extrusion direction Ds, and a part of the inner surface 32S of the inter-roll side portion 32 The left and right distances between the inner surfaces 3S of the pair of side wall portions 3G may be configured to increase toward the front along the material extrusion direction Ds.
In this case, for example, the entire inner surface 31S of the extrusion port side portion 31 is configured to be parallel to the material extrusion direction Ds, and the inner surface 32S of the inter-roll side portion 32 is configured in the same manner as in the above embodiment. .
(D-2) For example, on the entire inner surface 31S of the inter-roll side portion 32, the inner surface 31S of the extrusion port side portion 31 is not provided with a portion where the left-right interval becomes wider toward the front along the material extrusion direction Ds. You may comprise so that the left-right space | interval of the inner surfaces 3S in a pair of side wall part 3G may become so wide that it is ahead along the material extrusion direction Ds.
In this case, the entire inner surface 31S of the extrusion port side portion 31 is configured to be parallel to the material extrusion direction Ds, and the entire inner surface 32S of the inter-roll side portion 32 is paired along the material extrusion direction Ds. It is set as the one inclined surface of the front spreading shape which becomes so wide as it goes to the roll 21 side.
(D-3) For example, on the entire inner surface 31S of the extrusion port side portion 31 and the entire inner surface 32S of the inter-roll side portion 32, the distance between the inner surfaces 3S in the pair of side wall portions 3G is in the material extrusion direction Ds. You may comprise so that it may become wide along the front along.
In this case, for example, each of the inner surface 31S of the extrusion port side portion 31 and the inner surface 32S of the inter-roll side portion 32 is positioned on the outer side in the left-right direction toward the front side in the material extrusion direction Ds, and the material pressing In the direction Dp, the lower side is defined as an inclined surface with a downwardly spreading front and a lower surface in the lateral direction.

(E)一対の押出口側部分31の各々の内面31Sにおける下端部同士の左右間隔Wd、及び一対のロール間側部分32の各々の内面32Sにおける前端部同士の左右間隔Wfの各々は、押出口11の左右方向の幅をWmとすると、Wm<Wd≦Wfとなる条件で、適宜設定することができる。 (E) Each of the left-right distance Wd between the lower ends of each inner surface 31S of the pair of extrusion port side portions 31 and the left-right distance Wf between the front end portions of each inner surface 32S of the pair of inter-roll side portions 32 is If the width of the outlet 11 in the left-right direction is Wm, it can be set as appropriate under the condition of Wm <Wd ≦ Wf.

(G)上記の実施形態では、材料貯留部3の側壁部3Gを互いに別体の押出口側部分31とロール間側部分32とにより構成したが、材料貯留部3の側壁部3Gを単一の部材により構成してもよい。 (G) In the above embodiment, the side wall 3G of the material storage unit 3 is configured by the extrusion port side part 31 and the inter-roll side part 32 which are separate from each other. You may comprise by the member of.

(H)材料貯留部3を上部に上部開口部30を有する上部開放状に構成するにしても、上記の実施形態の如き圧力印加部4を省略して、材料押出部1からの押出力と重力とにより、被成形材料Mを一対のロール21の間に進入させるように構成してもよい。
あるいは、材料貯留部3を上下左右の側周部全周に亘って閉じたられた状態に構成して、材料押出部1からの押出力によって、材料貯留部3内に貯留される被成形材料Mに圧力が印加されるように構成してもよい。
(H) Even if the material storage unit 3 is configured to have an upper opening having an upper opening 30 at the top, the pressure application unit 4 as in the above embodiment is omitted, and the pushing force from the material extrusion unit 1 The molding material M may be configured to enter between the pair of rolls 21 by gravity.
Or the material storage part 3 is comprised in the state closed over the peripheries of the upper, lower, left, and right side peripheral parts, and the molding material stored in the material storage part 3 by the pushing force from the material extrusion part 1 You may comprise so that a pressure may be applied to M.

ところで、上記の実施形態のシート成形装置によれば、以下の作用効果が期待できる。
押出口11の背面視において、押出口11の口縁と押出口側部分31の内面との間における上方側の領域には、従来の如き被成形材料の滞留域が生じ難くなる。
また、材料貯留部3の左右方向の幅が下方側ほど広くなり、さらに上述した被成形材料Mの下方に向かう流動が発生することから、下側のロール21の外周面において極力広い領域に被成形材料Mを接触させることができる。
つまり、押出口11から材料貯留部3に押し出された被成形材料Mが効果的に下側のロール21に向けて流動し、下側のロール21の外周面に沿って左右方向に広がるので、左右方向の幅のバラツキを抑制した状態で、被成形材料Mが一対のロール21の間隙に進入することになる。これにより、シート幅が狭くなるのが抑制されて、シート状材のエッジに凹凸が生じるのが抑制される。
したがって、シート成形における歩留まりを向上し得るシート成形装置を提供することができる。
By the way, according to the sheet forming apparatus of the above embodiment, the following effects can be expected.
In the rear view of the extrusion port 11, a conventional retention region of the molding material is hardly generated in the upper region between the edge of the extrusion port 11 and the inner surface of the extrusion port side portion 31.
Further, since the width in the left-right direction of the material storage portion 3 becomes wider toward the lower side and further the flow toward the lower side of the molding material M described above is generated, the area covered as wide as possible on the outer peripheral surface of the lower roll 21 is covered. The molding material M can be brought into contact.
That is, since the molding material M extruded from the extrusion port 11 to the material reservoir 3 effectively flows toward the lower roll 21 and spreads in the left-right direction along the outer peripheral surface of the lower roll 21. The molding material M enters the gap between the pair of rolls 21 in a state where the variation in the width in the left-right direction is suppressed. Thereby, it is suppressed that a sheet | seat width becomes narrow and it is suppressed that an unevenness | corrugation arises in the edge of a sheet-like material.
Therefore, it is possible to provide a sheet forming apparatus that can improve the yield in sheet forming.

しかしながら、このシート成形装置によっても、押出口11が形成された押出口形成体12の背面側の押出口11の周囲、押出口側部分31における材料貯留部3内に面する内面31S、押圧部材41に囲まれた箇所は、材料押出部1の2軸のテーパースクリュー13による押出力が伝わり難い空間(デッドスペース)となり、被成形材料Mの流れが悪くなったり、滞留域が生じ易くなり、シート状材のエッジに凹凸や切り欠きが生じることを完全には抑制できないという問題があった。   However, also with this sheet forming apparatus, the inner surface 31S facing the inside of the material reservoir 3 in the periphery of the extrusion port 11 on the back side of the extrusion port forming body 12 where the extrusion port 11 is formed, and the extrusion port side portion 31, the pressing member The part surrounded by 41 becomes a space (dead space) in which the pushing force by the biaxial taper screw 13 of the material extruding part 1 is difficult to be transmitted, the flow of the molding material M becomes worse, and a staying area is likely to occur. There was a problem that it was not possible to completely suppress the occurrence of irregularities and notches on the edge of the sheet-like material.

このほか、このシート成形装置は、一対の側壁部3Gのロール間側部分32のロール21側の先端部に、対向する内面同士が平面視して平行となる平行内面部分32cを設け、被成形材料Mをシート状に成形するに当たっての目標幅を規定するようにしているが、この平行内面部分32cの側面とロール21の隙間に侵入した被成形材料Mが、平行内面部分32cの形状的な理由により排出されずにそのまま圧延され、シート状材のエッジにはみ出して、間欠的な突起部が生じるという問題があった。   In addition, this sheet forming apparatus is provided with a parallel inner surface portion 32c in which the opposed inner surfaces are parallel to each other in plan view at the distal end portion on the roll 21 side of the inter-roll side portion 32 of the pair of side wall portions 3G. The target width for forming the material M into a sheet shape is defined, but the molding material M that has entered the gap between the side surface of the parallel inner surface portion 32c and the roll 21 has a shape of the parallel inner surface portion 32c. There is a problem in that the sheet is rolled as it is without being discharged for a reason, and protrudes to the edge of the sheet-like material to cause intermittent protrusions.

そして、このように、シート状材のエッジに凹凸や切り欠きが生じると、シート状材のシート幅が目標シート幅よりも狭くなって、不良として処理される場合があり、しかも、生じたエッジの凹部が深いと、シート状材に裂け目が入り、シート状材が切断する場合があるので、歩留まりが低下し易く、被成形材料Mのシート成形における歩留まりを向上する上でさらに改善の余地があった。
また、シート状材のエッジに突起部が生じた場合は、シート成形装置の後装置であるシート材処理装置70にシート状材を搬送するコンベア装置からなるバッファ部60等において、突起部がシート状材から欠落するため歩留まりの低下につながるとともに、欠落した材料の清掃に人手、時間を要するため生産性が低下するという問題があった。
In this way, when irregularities and cutouts occur on the edge of the sheet-like material, the sheet width of the sheet-like material may be narrower than the target sheet width and may be treated as defective, and the generated edge If the concave portion is deep, the sheet-like material may be cracked and the sheet-like material may be cut, so that the yield tends to decrease, and there is room for further improvement in improving the yield in sheet molding of the molding material M. there were.
In addition, when a protrusion is generated at the edge of the sheet-like material, the protrusion is a sheet in the buffer 60 or the like including a conveyor device that conveys the sheet-like material to the sheet material processing device 70 that is a rear device of the sheet forming device There is a problem in that the yield is reduced because the material is missing from the shaped material, and the productivity is lowered because it takes manpower and time to clean the missing material.

本発明は、かかる実情に鑑みてなされたものであり、その目的は、シート成形における歩留まりをさらに向上し得るシート成形装置を提供することを目的とする。   The present invention has been made in view of such circumstances, and an object thereof is to provide a sheet forming apparatus that can further improve the yield in sheet forming.

上記目的を達成するため、本発明のシート成形装置は、被成形材料を押出口から前方に押し出す材料押出部と、前記材料押出部から押し出される被成形材料を受け入れて一対のロールにてシート状に成形して払い出す材料圧延部と、前記材料押出部と前記材料圧延部との間において前記材料押出部から押し出される被成形材料を一時的に貯留する材料貯留部とが設けられたシート成形装置において、前記材料貯留部における左右両側を区画する一対の側壁部が、前記一対のロールの共有接線を挟んで押出口側の押出口側部分と、ロール側のロール間側部分とを備えて構成され、前記一対の側壁部の内面のうち、少なくとも前記押出口側部分の内面が、押出口の曲線形状に倣った曲面形状に形成されてなることを特徴とする。   In order to achieve the above object, a sheet forming apparatus according to the present invention receives a material extrusion portion for extruding a molding material forward from an extrusion port, and a molding material extruded from the material extrusion portion. The sheet forming is provided with a material rolling part that is molded and discharged and a material storage part that temporarily stores the molding material extruded from the material extrusion part between the material extrusion part and the material rolling part In the apparatus, the pair of side wall portions that define both the left and right sides of the material storage portion include an extrusion port side portion on the extrusion port side and a roll-to-roll side portion on the roll side across the shared tangent line of the pair of rolls. It is comprised, The inner surface of the said extrusion port side part is formed in the curved surface shape which followed the curved shape of the extrusion port among the inner surfaces of a pair of said side wall part, It is characterized by the above-mentioned.

そして、本第1発明においては、前記一対の側壁部のロール間側部分のロール側の先端部に、対向する内面同士が平面視して平行となる平行内面部分を設け、該平行内面部分の被成形材料の押出方向の長さが、ロールの直径の15%以下に設定してなることを特徴とする。And in this 1st invention, the parallel inner surface part by which the inner surfaces which face each other in parallel are planarly provided in the front-end | tip part of the roll side of the part between rolls of a pair of said side wall part is provided, The length of the molding material in the extrusion direction is set to 15% or less of the diameter of the roll.

また、本第2発明においては、前記一対の側壁部の内面のうち、少なくとも前記押出口側部分の内面同士の左右方向の間隔である左右間隔が、下方側ほど広くなるように構成されてなることを特徴とする。Moreover, in this 2nd invention, it is comprised so that the left-right space | interval which is a space | interval of the left-right direction at least between the inner surfaces of the said extrusion opening side part among the inner surfaces of a pair of said side wall part may become so wide as the downward side. It is characterized by that.

この場合において、前記一対の側壁部のロール間側部分の内面が、前記押出口側部分の内面に連続する曲面形状に形成されてなるようにすることができる。In this case, the inner surface of the portion between the rolls of the pair of side wall portions can be formed in a curved shape that is continuous with the inner surface of the extrusion port side portion.

また、前記材料貯留部が、上部が開口するように構成され、前記材料貯留部に貯留されている被成形材料に対して、上部から押圧部材を押圧することにより圧力を印加する圧力印加部が設けられているようにすることができる。   Further, the material reservoir is configured so that an upper portion is opened, and a pressure applying unit that applies pressure by pressing a pressing member from above on the molding material stored in the material reservoir. It can be provided.

本発明のシート成形装置によれば、前記材料貯留部における左右両側を区画する一対の側壁部が、前記一対のロールの共有接線を挟んで押出口側の押出口側部分と、ロール側のロール間側部分とを備えて構成され、前記一対の側壁部の内面のうち、少なくとも前記押出口側部分の内面が、押出口の曲線形状に倣った曲面形状に形成されてなるようにすることにより、押出口が形成された押出口形成体の背面側の材料押出部による押出力が伝わり難い空間(デッドスペース)を小さくすることができ、被成形材料の流れが悪くなったり、滞留域が生じ易くなることを防止して、シート状材のエッジに凹凸や切り欠きが生じることを抑制し、シート成形における歩留まりを向上することができる。   According to the sheet forming apparatus of the present invention, the pair of side wall portions defining the left and right sides of the material storage portion are formed on the extrusion port side of the extrusion port side across the shared tangent of the pair of rolls, and the roll on the roll side. An inner side portion, and among the inner surfaces of the pair of side wall portions, at least the inner surface of the extrusion port side portion is formed in a curved shape following the curved shape of the extrusion port. , Can reduce the space (dead space) where the pushing force by the material extruding part on the back side of the extrusion port forming body where the extrusion port is formed is difficult to be transmitted, and the flow of the molding material becomes worse, or the retention area is generated It is possible to prevent the sheet from being easily formed, to suppress the occurrence of unevenness and notches at the edge of the sheet material, and to improve the yield in sheet forming.

また、前記一対の側壁部のロール間側部分の内面が、前記押出口側部分の内面に連続する曲面形状に形成されてなるようにすることにより、側壁部の押出口側部分の内面とロール間側部分の内面との連続性を確保し、被成形材料の流れが悪くなったり、滞留域が生じ易くなることをより確実に防止して、シート状材のエッジに凹凸や切り欠きが生じることを抑制し、シート成形における歩留まりを向上することができる。   In addition, the inner surface of the pair of side wall portions between the rolls is formed in a curved shape that is continuous with the inner surface of the extrusion port side portion, whereby the inner surface of the extrusion port side portion of the side wall portion and the roll Ensuring continuity with the inner surface of the intermediate portion, more reliably preventing the flow of the molding material from becoming worse and the possibility of stagnant areas to occur, causing irregularities and notches on the edge of the sheet-like material This can be suppressed and the yield in sheet forming can be improved.

また、前記一対の側壁部のロール間側部分のロール側の先端部に、対向する内面同士が平面視して平行となる平行内面部分を設け、該平行内面部分の被成形材料の押出方向の長さが、ロールの直径の15%以下に設定してなるようにすることにより、平行内面部分の側面とロールの隙間に被成形材料が侵入する距離を短くでき、これによって、被成形材料の侵入量を低減し、被成形材料がシート状材のエッジにはみ出して、間欠的な突起部が生じることを抑制し、シート成形における歩留まり及び生産性を向上することができる。   In addition, a parallel inner surface portion in which the opposed inner surfaces are parallel to each other in plan view is provided at the end of the pair of side wall portions between the rolls in the roll side, and the parallel inner surface portion in the extrusion direction of the molding material is provided. By setting the length to be 15% or less of the diameter of the roll, the distance that the molding material enters the gap between the side surface of the parallel inner surface portion and the roll can be shortened. The amount of intrusion can be reduced, the material to be molded can be prevented from protruding to the edge of the sheet-like material, and intermittent projections can be suppressed, and the yield and productivity in sheet molding can be improved.

また、前記一対の側壁部の内面のうち、少なくとも前記押出口側部分の内面同士の左右方向の間隔である左右間隔が、下方側ほど広くなるように構成されてなるようにすることにより、押出口側部分における材料貯留部の左右方向の幅が下方側ほど広くなるので、押出口から材料貯留部に押し出された被成形材料を材料貯留部に充填するに当たり、押出口側部分の内面に沿って下方に向かう被成形材料の流動が発生する。これにより、押出口の背面視において、押出口の口縁と押出口側部分の内面との間における上方側の領域には、被成形材料の滞留域が生じ難くなる。
また、材料貯留部の左右方向の幅が下方側ほど広くなり、さらに上述した被成形材料の下方に向かう流動が発生することから、下側のロールの外周面において極力広い領域に被成形材料を接触させることができる。
つまり、押出口から材料貯留部に押し出された被成形材料が効果的に下側のロールに向けて流動し、下側のロールの外周面に沿って左右方向に広がるので、左右方向の幅のバラツキを抑制した状態で、被成形材料が一対のロールの間隙に進入することになる。これにより、シート幅が狭くなるのが抑制されて、シート状材のエッジに凹凸が生じるのを抑制し、シート成形における歩留まりを向上することができる。
In addition, among the inner surfaces of the pair of side wall portions, at least the left and right intervals, which are the intervals in the left and right direction between the inner surfaces of the extrusion port side portions, are configured to become wider toward the lower side. Since the width in the left-right direction of the material storage portion at the outlet side portion becomes wider toward the lower side, when filling the material storage portion with the molding material extruded from the extrusion port to the material storage portion, along the inner surface of the extrusion port side portion. As a result, the molding material flows downward. Thereby, in the back view of the extrusion port, a staying area of the molding material is hardly generated in the upper region between the edge of the extrusion port and the inner surface of the extrusion port side portion.
In addition, since the width of the material storage portion in the left-right direction becomes wider toward the lower side and the flow toward the lower side of the molding material described above is generated, the molding material is placed in a region as wide as possible on the outer peripheral surface of the lower roll. Can be contacted.
In other words, the molding material extruded from the extrusion port to the material storage portion effectively flows toward the lower roll and spreads in the left-right direction along the outer peripheral surface of the lower roll. With the variation suppressed, the molding material enters the gap between the pair of rolls. Thereby, it can suppress that a sheet | seat width becomes narrow, it can suppress that an unevenness | corrugation arises in the edge of a sheet-like material, and can improve the yield in sheet forming.

また、前記材料貯留部が、上部が開口するように構成され、前記材料貯留部に貯留されている被成形材料に対して、上部から押圧部材を押圧することにより圧力を印加する圧力印加部が設けられているようにすることにより、材料貯留部が過圧状態となるのを回避できる。これにより、材料貯留部内を流動する被成形材料を左右方向に良好に広げることができる。
そして、押圧部材により、貯留部内の被成形材料をその左右方向の中央部近傍において上方から押圧することになるので、貯留部内において被成形材料を左右方向に効果的に広げながら流動させることができる。
したがって、左右方向の幅のバラツキを抑制した状態で、被成形材料を一対のロールの間隙に進入させることができるので、シート成形における歩留まりをさらに向上することができる。
Further, the material reservoir is configured so that an upper portion is opened, and a pressure applying unit that applies pressure by pressing a pressing member from above on the molding material stored in the material reservoir. By being provided, it can avoid that a material storage part will be in an overpressure state. Thereby, the to-be-molded material which flows in the material storage part can be favorably spread in the left-right direction.
The pressing member presses the material to be molded in the storage portion from above in the vicinity of the central portion in the left-right direction, so that the material to be molded can flow in the storage portion while effectively spreading in the left-right direction. .
Therefore, since the material to be molded can enter the gap between the pair of rolls in a state in which the variation in the width in the left-right direction is suppressed, the yield in sheet forming can be further improved.

先願発明のシート成形装置の一実施形態の全体構成を示す左側面図である。It is a left view which shows the whole structure of one Embodiment of the sheet forming apparatus of prior application invention. 圧力印加部、材料貯留部及び材料圧延部を示す縦断左側面図である。It is a vertical left side view which shows a pressure application part, a material storage part, and a material rolling part. 材料貯留部を示す縦断背面図である。It is a vertical rear view which shows a material storage part. 材料貯留部を示す横断平面図である。It is a cross-sectional top view which shows a material storage part. 材料貯留部を示す斜視図である。It is a perspective view which shows a material storage part. 図2のVI−VI方向での断面図である。It is sectional drawing in the VI-VI direction of FIG. 側壁部の押出口側部分を示す図である。It is a figure which shows the extrusion port side part of a side wall part. 側壁部のロール間側部分を示す図である。It is a figure which shows the side part between rolls of a side wall part. 材料貯留部における被成形材料の流動状態を説明するための材料貯留部の縦断背面図である。It is a vertical back view of the material storage part for demonstrating the flow state of the to-be-molded material in a material storage part. 先願発明のシート成形装置の一実施形態の材料貯留部の斜視図である。It is a perspective view of the material storage part of one Embodiment of the sheet forming apparatus of prior invention. 本発明のシート成形装置の一実施形態の材料貯留部の斜視図である。It is a perspective view of the material storage part of one Embodiment of the sheet forming apparatus of this invention. 先願発明のシート成形装置の一実施形態の材料貯留部の縦断背面図である。It is a vertical back view of the material storage part of one Embodiment of the sheet forming apparatus of prior application invention. 本発明のシート成形装置の一実施形態の材料貯留部の縦断背面図である。It is a vertical back view of the material storage part of one Embodiment of the sheet forming apparatus of this invention. 先願発明のシート成形装置の一実施形態の材料貯留部の拡大斜視図である。It is an expansion perspective view of the material storage part of one Embodiment of the sheet forming apparatus of prior invention. 本発明のシート成形装置の一実施形態の材料貯留部の拡大斜視図である。It is an expansion perspective view of the material storage part of one Embodiment of the sheet forming apparatus of this invention. 先願発明と本発明のシート成形装置の一実施形態の材料貯留部を示し、(a)は横断平面図、(b)は縦断背面図、(c)は縦断右側面図である。The material storage part of one Embodiment of the prior application invention and the sheet forming apparatus of this invention is shown, (a) is a cross-sectional top view, (b) is a longitudinal rear view, (c) is a longitudinal right side view. 先願発明と本発明のシート成形装置によって成形されたシート状材を斜め上方から撮影した写真である。It is the photograph which image | photographed the sheet-like material shape | molded by prior invention invention and the sheet forming apparatus of this invention from diagonally upward.

以下、本発明のシート成形装置の一実施形態を、上記先願発明のシート成形装置と比較しながら図面に基づいて説明する。   Hereinafter, an embodiment of the sheet forming apparatus of the present invention will be described based on the drawings while comparing with the sheet forming apparatus of the prior invention.

図10−1、図11−1及び図12−1並びに図13(a)及び(b)並びに図14の左半分に上記先願発明のシート成形装置の一実施形態を、図10−2、図11−2及び図12−2並びに図13(a)及び(b)並びに図14の右半分に、これに対応する本発明のシート成形装置の一実施形態を、それぞれを示す。   10-1, FIG. 11-1 and FIG. 12-1, FIG. 13 (a) and FIG. 13 (b) and FIG. 14, the left half of FIG. FIGS. 11-2 and 12-2, FIGS. 13A and 13B, and the right half of FIG. 14 show an embodiment of the sheet forming apparatus of the present invention corresponding thereto.

先願発明のシート成形装置において、材料貯留部3における左右両側を区画する一対の側壁部3Gが、前記一対のロール21の共有接線を挟んで押出口11側の押出口側部分31と、ロール21側のロール間側部分32とを備えて構成され、一対の側壁部3Gの内面3Sのうち、押出口側部分31の内面31Sの材料貯留部3内に面する内面部分31bは、平面形状に形成されている。
これに対して、本発明のシート成形装置においては、内面部分31bは、押出口11の曲線形状、すなわち、押出口11の長方形の左右両辺の曲線形状に倣った曲面形状に形成されている。
ここで、「押出口11の長方形の左右両辺の曲線形状に倣った」とは、押出口11の長方形の左右両辺の曲線形状の開口縁に連続するように内面部分31bが形成されることを意味する。
この曲面形状は、ロール21側に向けて押出口側部分31の容積が徐々に広がる円錐面形状に形成されている。
本発明のシート成形装置は、これにより、押出口11が形成された押出口形成体12の背面側(ロール21側)の材料押出部1(具体的には、テーパースクリュー13)による押出力が伝わり難い空間(デッドスペース)を小さくすることができ、被成形材料Mの流れが悪くなったり、滞留域が生じ易くなることを防止して、シート状材Sのエッジに凹凸や切り欠きが生じることを抑制し、シート成形における歩留まりを向上することができる。
In the sheet forming apparatus according to the invention of the prior application, the pair of side wall portions 3G that divide the left and right sides of the material storage portion 3 are arranged on the extrusion port side portion 31 on the extrusion port 11 side with the shared tangent line between the pair of rolls 21 and The inner surface portion 31b of the inner surface 3S of the extrusion port side portion 31 among the inner surfaces 3S of the pair of side wall portions 3G has a planar shape. Is formed.
On the other hand, in the sheet forming apparatus of the present invention, the inner surface portion 31b is formed in a curved shape that follows the curved shape of the extrusion port 11, that is, the curved shape of the left and right sides of the rectangular shape of the extrusion port 11.
Here, “following the curved shape of the left and right sides of the rectangle of the extrusion port 11” means that the inner surface portion 31 b is formed so as to be continuous with the curved opening edges of the left and right sides of the rectangle of the extrusion port 11. means.
This curved surface shape is formed in a conical surface shape in which the volume of the extrusion port side portion 31 gradually increases toward the roll 21 side.
Accordingly, the sheet forming apparatus of the present invention is capable of pushing force by the material extruding portion 1 (specifically, the taper screw 13) on the back side (roll 21 side) of the extrusion port forming body 12 in which the extrusion port 11 is formed. A space (dead space) that is difficult to be transmitted can be reduced, and the flow of the molding material M is prevented from being deteriorated and a staying area is not easily generated, and irregularities and notches are generated at the edge of the sheet-like material S. This can be suppressed and the yield in sheet forming can be improved.

また、先願発明のシート成形装置において、一対の側壁部3Gのロール間側部分32の内面32Sの前方広がり内面部分32bは、平面形状に形成されている。
これに対して、本発明のシート成形装置においては、内面部分32bは、押出口側部分31の内面部分31bに連続する曲面形状に形成されている。
ここで、内面部分31b以外のロール間側部分32の内面32Sの内面部分32a及び平行内面部分32cも、隣接する内面部分31bや内面部分32bとなだらかに連続するように形成するようにしている。
本発明のシート成形装置は、これにより、側壁部3Gの押出口側部分31の内面31Sとロール間側部分32の内面32Sとの連続性を確保し、被成形材料Mの流れが悪くなったり、滞留域が生じ易くなることをより確実に防止して、シート状材Sのエッジに凹凸や切り欠きが生じることを抑制し、シート成形における歩留まりを向上することができる。
Moreover, in the sheet forming apparatus of the prior invention, the front spreading inner surface portion 32b of the inner surface 32S of the inter-roll side portion 32 of the pair of side wall portions 3G is formed in a planar shape.
On the other hand, in the sheet forming apparatus of the present invention, the inner surface portion 32 b is formed in a curved shape that is continuous with the inner surface portion 31 b of the extrusion port side portion 31.
Here, the inner surface portion 32a and the parallel inner surface portion 32c of the inner surface 32S of the inter-roll side portion 32 other than the inner surface portion 31b are also formed so as to be smoothly continuous with the adjacent inner surface portion 31b and the inner surface portion 32b.
Thereby, the sheet forming apparatus of the present invention ensures continuity between the inner surface 31S of the extrusion port side portion 31 and the inner surface 32S of the inter-roll side portion 32 of the side wall 3G, and the flow of the molding material M becomes worse. Thus, it is possible to more reliably prevent the staying area from being easily generated, suppress the occurrence of unevenness and notches at the edge of the sheet-like material S, and improve the yield in sheet forming.

また、図13に示すように、先願発明のシート成形装置において、一対の側壁部3Gのロール間側部分32のロール21側の先端部に、対向する内面同士が平面視して平行となる平行内面部分32cを設け、この平行内面部分32cの被成形材料Mの押出方向の長さL0が、ロール21の直径Dの20〜25%に設定するようにしている。
これに対して、本発明のシート成形装置においては、平行内面部分32cの被成形材料Mの押出方向の長さL1を、先願発明のシート成形装置のL1よりL’だけ短く形成する(図13(a)及び(c)のハッチング部は切除部を示す。)ことにより、ロール21の直径Dの15%以下、好ましくは、3〜10%、より好ましくは、5〜7%に設定するようにしている。
本発明のシート成形装置は、これにより、平行内面部分32cの側面とロール21の隙間に被成形材料Mが侵入する距離を短くでき、これによって、被成形材料Mの侵入量を低減し、図14に示すように、被成形材料Mがシート状材Sのエッジにはみ出して、間欠的な突起部Stが生じることを抑制し、シート成形における歩留まりを向上することができる。
Moreover, as shown in FIG. 13, in the sheet forming apparatus according to the invention of the prior application, the inner surfaces facing each other are parallel to each other at the distal end portion on the roll 21 side of the inter-roll side portion 32 of the pair of side wall portions 3G. A parallel inner surface portion 32 c is provided, and the length L 0 in the extrusion direction of the molding material M of the parallel inner surface portion 32 c is set to 20 to 25% of the diameter D of the roll 21.
On the other hand, in the sheet forming apparatus of the present invention, the length L1 in the extrusion direction of the molding material M of the parallel inner surface portion 32c is shorter than L1 of the sheet forming apparatus of the prior invention by L ′ (FIG. 13 (a) and 13 (c) indicate a cut portion.), So that the diameter D of the roll 21 is set to 15% or less, preferably 3 to 10%, more preferably 5 to 7%. I am doing so.
Thus, the sheet molding apparatus of the present invention can shorten the distance that the molding material M enters the gap between the side surface of the parallel inner surface portion 32c and the roll 21, thereby reducing the penetration amount of the molding material M. As shown in FIG. 14, the molding material M can be prevented from protruding to the edge of the sheet-like material S and the intermittent projection St is generated, and the yield in sheet molding can be improved.

なお、本発明のシート成形装置のその他の構成及び作用は、上記先願発明のシート成形装置と同様であるが、上記本発明のシート成形装置の構成は、上記先願発明のシート成形装置以外の従来から汎用されているシート成形装置、例えば、一対の側壁部の内面のうち、押出口側部分の内面同士の左右間隔が、上下方向において一定になるように構成されているシート成形装置や、押圧部材41を備えたセミオープンバンク型(ここで、材料貯留部3の上方を開放するように構成したシート成形装置(オープンバンク型)に対して、押圧部材41によって材料貯留部3の上方から材料貯留部3に貯留された被成形材料Mに与圧を付与するように構成したシート成形装置を「セミオープンバンク型」と呼んでいる。)のシート成形装置以外のシート成形装置、例えば、上記オープンバンク型や材料貯留部が閉鎖された空間として構成されるクローズドバンク型のシート成形装置にも適用することができ、これを排除しないものである。   The other configurations and operations of the sheet forming apparatus of the present invention are the same as those of the sheet forming apparatus of the prior application, but the configuration of the sheet forming apparatus of the present invention is other than the sheet forming apparatus of the prior application. The sheet forming apparatus that has been widely used in the past, for example, among the inner surfaces of the pair of side wall portions, the sheet forming apparatus configured such that the left-right spacing between the inner surfaces of the extrusion port side portions is constant in the vertical direction, The semi-open bank type provided with the pressing member 41 (here, the sheet forming apparatus (open bank type) configured to open the upper portion of the material storage portion 3 is positioned above the material storage portion 3 by the pressing member 41. The sheet forming apparatus configured to apply a pressure to the molding material M stored in the material storage unit 3 is called a “semi-open bank type”. Forming apparatus, for example, it can be applied to the closed bank type sheet forming device configured as above open bank type and material reservoir is enclosed space, but does not exclude it.

以上、本発明のシート成形装置について、その実施形態に基づいて説明したが、本発明は上記実施例に記載した構成に限定されるものではなく、その趣旨を逸脱しない範囲において適宜その構成を変更することができるものである。   As described above, the sheet forming apparatus of the present invention has been described based on the embodiments thereof, but the present invention is not limited to the configurations described in the above examples, and the configuration is appropriately changed without departing from the spirit of the present invention. Is something that can be done.

本発明のシート成形装置は、シート成形における歩留まりを向上することができるという特性を有していることから、オープンバンク型、セミオープンバンク型、クローズドバンク型の各種シート成形装置の用途に好適に用いることができる。   Since the sheet forming apparatus of the present invention has the characteristic that the yield in sheet forming can be improved, it is suitable for use in various sheet forming apparatuses of open bank type, semi-open bank type and closed bank type. Can be used.

1 材料押出部
2 材料圧延部
3 材料貯留部
3G 側壁部
3S 内面
4 圧力印加部
11 押出口
21 ロール
21a 軸心
31 押出口側部分
31S 内面
32 ロール間側部分
32S 内面
41 押圧部材
Ds 材料押出方向(被成形材料の押出方向)
M 被成形材料
Wd 一対の押出口側部分の各々の内面における下端部同士の左右間隔
Wf 一対のロール間側部分の各々の内面における前端部同士の左右間隔
Wm 押出口の左右方向の幅
Wt 一対の押出口側部分の各々の内面における上端部同士の左右間隔
DESCRIPTION OF SYMBOLS 1 Material extrusion part 2 Material rolling part 3 Material storage part 3G Side wall part 3S Inner surface 4 Pressure application part 11 Extrusion port 21 Roll 21a Axis 31 Extrusion port side part 31S Inner surface 32 Inter-roll side part 32S Inner surface 41 Press member Ds Material extrusion direction (Extrusion direction of molding material)
M Molding material Wd Left-right distance between the lower ends of each inner surface of the pair of extrusion side portions Wf Left-right distance between front end portions of each inner surface of the pair of roll-side portions Wm Width of the extrusion port in the left-right direction Wt Left and right spacing between the upper ends of the inner surfaces of the extrusion port side portions

Claims (4)

被成形材料を押出口から前方に押し出す材料押出部と、前記材料押出部から押し出される被成形材料を受け入れて一対のロールにてシート状に成形して払い出す材料圧延部と、前記材料押出部と前記材料圧延部との間において前記材料押出部から押し出される被成形材料を一時的に貯留する材料貯留部とが設けられたシート成形装置において、前記材料貯留部における左右両側を区画する一対の側壁部が、前記一対のロールの共有接線を挟んで押出口側の押出口側部分と、ロール側のロール間側部分とを備えて構成され、前記一対の側壁部の内面のうち、少なくとも前記押出口側部分の内面が、押出口の曲線形状に倣った曲面形状に形成されてなり、かつ、前記一対の側壁部のロール間側部分のロール側の先端部に、対向する内面同士が平面視して平行となる平行内面部分を設け、該平行内面部分の被成形材料の押出方向の長さが、ロールの直径の15%以下に設定してなることを特徴とするシート成形装置。 A material extruding unit for extruding a molding material forward from an extrusion port; a material rolling unit for receiving the molding material extruded from the material extruding unit; In the sheet forming apparatus provided with a material storage part for temporarily storing the molding material extruded from the material extruding part between the material rolling part and the material rolling part, The side wall portion includes an extrusion port side portion on the extrusion port side across the shared tangent of the pair of rolls, and an inter-roll side portion on the roll side, and at least the inner surface of the pair of side wall portions, the inner surface of the extrusion port side portion, Ri Na is formed in a curved shape following the curved shape of the extrusion port, and the roll side of the tip portion of the roll between the side portions of said pair of side wall portions, the inner surfaces facing each other Plane And provided parallel internal surface portions become parallel to extrusion direction length of the molding material of the parallel inner surface parts, sheet forming device according to claim Rukoto a set to less than 15% of the diameter of the roll. 被成形材料を押出口から前方に押し出す材料押出部と、前記材料押出部から押し出される被成形材料を受け入れて一対のロールにてシート状に成形して払い出す材料圧延部と、前記材料押出部と前記材料圧延部との間において前記材料押出部から押し出される被成形材料を一時的に貯留する材料貯留部とが設けられたシート成形装置において、前記材料貯留部における左右両側を区画する一対の側壁部が、前記一対のロールの共有接線を挟んで押出口側の押出口側部分と、ロール側のロール間側部分とを備えて構成され、前記一対の側壁部の内面のうち、少なくとも前記押出口側部分の内面が、押出口の曲線形状に倣った曲面形状に形成されてなり、かつ、前記一対の側壁部の内面のうち、少なくとも前記押出口側部分の内面同士の左右方向の間隔である左右間隔が、下方側ほど広くなるように構成されてなることを特徴とするシート成形装置。 A material extruding unit for extruding a molding material forward from an extrusion port; a material rolling unit for receiving the molding material extruded from the material extruding unit; In the sheet forming apparatus provided with a material storage part for temporarily storing the molding material extruded from the material extruding part between the material rolling part and the material rolling part, The side wall portion includes an extrusion port side portion on the extrusion port side across the shared tangent of the pair of rolls, and an inter-roll side portion on the roll side, and at least the inner surface of the pair of side wall portions, the inner surface of the extrusion port side portion, Ri Na is formed in a curved shape following the curved shape of the extrusion port, and, among inner surfaces of the pair of side wall portions, the left-right direction of the inner surfaces of at least the extrusion port side portion Lateral spacing is spacing, sheet forming device according to claim Rukoto a is configured to be wider lower side. 前記一対の側壁部のロール間側部分の内面が、前記押出口側部分の内面に連続する曲面形状に形成されてなることを特徴とする請求項1又は2記載のシート成形装置。 3. The sheet forming apparatus according to claim 1, wherein the inner surface of the portion between the rolls of the pair of side wall portions is formed in a curved surface shape continuous with the inner surface of the extrusion port side portion. 前記材料貯留部が、上部が開口するように構成され、前記材料貯留部に貯留されている被成形材料に対して、上部から押圧部材を押圧することにより圧力を印加する圧力印加部が設けられていることを特徴とする請求項1、2は3記載のシート成形装置。 The material reservoir is configured so that an upper portion is opened, and a pressure application unit is provided that applies pressure to the molding material stored in the material reservoir by pressing a pressing member from above. it has sheet forming apparatus according to claim 1, 2 or 3 wherein.
JP2012246180A 2012-11-08 2012-11-08 Sheet forming device Active JP5871323B2 (en)

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