JP2004159569A - Bed log perforating apparatus - Google Patents

Bed log perforating apparatus Download PDF

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Publication number
JP2004159569A
JP2004159569A JP2002329802A JP2002329802A JP2004159569A JP 2004159569 A JP2004159569 A JP 2004159569A JP 2002329802 A JP2002329802 A JP 2002329802A JP 2002329802 A JP2002329802 A JP 2002329802A JP 2004159569 A JP2004159569 A JP 2004159569A
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JP
Japan
Prior art keywords
firewood
punching
moving device
air cylinder
guide rail
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP2002329802A
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Japanese (ja)
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JP3839770B2 (en
Inventor
Takashi Fukushima
孝 福島
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Em Techno Kk
EM Techno KK
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Em Techno Kk
EM Techno KK
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Priority to JP2002329802A priority Critical patent/JP3839770B2/en
Publication of JP2004159569A publication Critical patent/JP2004159569A/en
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Publication of JP3839770B2 publication Critical patent/JP3839770B2/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a bed log perforating apparatus for forming with a simple structure small holes for water absorption on a bed log for Shiitake mushroom (dentinus edodes) cultivation. <P>SOLUTION: This bed log perforating apparatus has at least a pair of rollers 26 for holding the bed log 18 and a drive motor 30 for intermittently driving the rollers 26, sending guide rails 42 shakable with respect to the bed log 18, fixing members 44 fixed to the sending guide rails 42 in a shakable manner, and sending air cylinders 54 for moving the fixing members 44 along the sending guide rails 42. Further, the apparatus has positioning members 46 for positioning the sending guide rails 42 in almost right angle with respect to the bed log 18, and punching air cylinders 48 formed on the fixing members 44 and hammering projections 51 for hammering them into the bed log 18. <P>COPYRIGHT: (C)2004,JPO

Description

【0001】
【発明の属する技術分野】
この発明は、椎茸栽培用のほだ木に吸水用の小孔を明けるほだ木穿孔装置に関する。
【0002】
【従来の技術】
椎茸栽培用のほだ木は、椎茸の栽培に適した水分が原木に含まれているのが好ましい。しかし、椎茸の生育が2期目以降になるとほだ木が乾燥してくるため、ほだ木に水分を与えることが必要となる。水分を与える方法として、例えばほだ木を水中に浸漬することが考えられるが、単にほだ木を水中に浸漬しただけではほだ木の木口から水分が浸透するだけで、中心付近まで効率よく水分が行き渡らない。そこで、ほだ木の側面に吸水用の小さい孔を形成する水分補給方法がある。従来、この孔を形成するために、金槌等の工具でほだ木表面をたたいて孔をあけていた。
【0003】
【発明が解決しようとする課題】
上記従来の技術の場合、金槌でほだ木をたたくのは数が多く労力がかかり、作業効率もよくなかった。そこで、孔を明ける機械で穿孔することも考えられるが、ほだ木は均一の大きさではなく、曲がったり形が異なるため、機械による自動化が困難であった。
【0004】
この発明は上記従来の問題点に鑑みてなされたものであり、簡単な構造で、椎茸栽培用のほだ木に吸水用の小さい孔を形成することができるほだ木穿孔装置を提供することを目的とする。
【0005】
【課題を解決するための手段】
この発明は、椎茸菌が植菌されたほだ木を保持する少なくとも一対のローラと、上記ローラを間欠で駆動する駆動モータと、上記ほだ木に対向して設けられ揺動可能な送り用ガイドレールと、上記送り用ガイドレールに摺動可能に取り付けられた取付部材と、上記取付部材を上記送り用ガイドレールに沿って移動させる送り用移動装置と、上記取付部材に設けられ上記ほだ木の表面に複数箇所で当接して上記ほだ木の表面に対して上記送り用ガイドレールを略直角に位置させる位置決め部材と、上記取付部材に設けられ上記ほだ木に先端部材を打ち付けるパンチング用移動装置と、上記パンチング用移動装置の先端部材に取り付けられ上記ほだ木に打ち込まれる打込用突起とが設けられているほだ木穿孔装置である。
【0006】
上記取付部材には、上記ほだ木に先端部材例えばロッドが打ち付けられるパンチング用移動装置が設けられ、上記パンチング用移動装置の先端部材には打込用突起が設けられている。また、上記送り用移動装置は送り用エアーシリンダであり、上記パンチング用移動装置はパンチング用エアーシリンダである。
【0007】
また、上記ローラの近傍には、上記ほだ木の下側に位置するほだ木の排出用当接部材と、上記排出用当接部材を昇降させる排出用エアーシリンダが設けられていると良い。
【0008】
この発明のほだ木穿孔装置は、一対のローラにほだ木を載置し、送り用移動装置を作動させると取付部材が送り用ガイドレールに沿ってほだ木に向かって移動する。このとき取付部材に設けられた位置決め部材がほだ木に当接し、ほだ木の形状に合わせて送り用ガイドレールと取付部材が揺動し、ほだ木の表面に対してほぼ直角でほだ木の中心に向かう方向となる。次にパンチング用移動装置を作動させ、ほだ木表面に打込用突起を打ち込み小孔を形成する。その後、ローラを回転させてほだ木を軸方向に一定角度回転させて、再びパンチング用移動装置で小孔を形成する。これを繰り返して、ほだ木を一定間隔で一周して小孔を形成する。そして、排出用エアーシリンダを作動させて排出用当接部材を上昇させてほだ木をローラから持ち上げて側方へ排出する。
【0009】
【発明の実施の形態】
以下、この発明の実施形態について図面に基づいて説明する。図1〜図3はこの発明の一実施形態を示すもので、この実施形態のほだ木穿孔装置10は、作業場等に置かれる枠状の本体12が設けられ、本体12の下部14にはキャスター16が設けられている。
【0010】
本体12の高さ方向中心付近の位置には、ほだ木18を保持するほぼ水平な保持台20が設けられている。保持台20の上面20aには、保持台20の長手方向に沿って一対の回転軸22が設けられ、回転軸22の両端部は、保持台20に固定された二対の軸受24にそれぞれ回転可能に軸支されている。各回転軸22には、軸受24の少し内側にローラ26が各々固定されている。また、回転軸22の、一方のローラ26、例えば図1において右側に位置するローラ26と軸受24の間には、プーリ28が固定されている。
【0011】
保持台20の下面20bには、プーリ28の近傍に、駆動モータ30が設けられている。駆動モータ30の駆動軸31は、回転軸22に対して平行に位置し、図示しないベルトでプーリ28と連結されている。なお、回転軸22にはプーリ28ではなくスプロケットが取り付けられてもよく、その場合は駆動モータ30の駆動軸31とチェーンで連結される。駆動モータ30は、一定時間回転して一旦停止する間欠動作を繰り返すように図示しない制御装置により制御される。
【0012】
保持台20の上面20aには、プーリ28と反対側に位置する軸受24のわずかに外側に、棒状の排出用当接部材32が設けられている。排出用当接部材32は、一対の回転軸22に対して長手方向が略直角に位置し、保持台20の側縁部側に位置する端部が保持台20に軸支されている。排出用当接部材32の下方には、排出用エアーシリンダ34が保持台20を貫通するようにして揺動可能に設けられ、排出用エアーシリンダ34のロッド36の先端は、排出用当接部材32の下側面のほぼ中間付近に軸支されている。保持台20の側縁部には、排出されたほだ木18を受ける排出台35が設けられている。
【0013】
本体12の上部38には、一対の回転軸22の中心に対向し回転軸22に対して平行に揺動軸40が設けられている。揺動軸40には、揺動軸40の長手方向に沿ってほぼ等間隔の3個所に、レール状の送り用ガイドレール42が下垂して軸支されている。送り用ガイドレール42には、板状の取付部材44が上下方向に摺動可能に取り付けられている。
【0014】
取付部材44の下端部付近には、取付部材44に対して直角に側方へ突出する保持部45が形成され、保持部45の下部には、ほだ木18の長手方向と直角な方向へ下向きに且つ対称的に開いた位置決め部材46が設けられている。取付部材44の上端部付近には、パンチング用エアーシリンダ48が固定部材50を介して取り付けられている。パンチング用エアーシリンダ48の先端部材であるロッド49の先には、鋭利な打込用突起51が取り付けられている。
【0015】
各送り用ガイドレール42の、図1において左側の側縁部には、第一連結部材52を介して送り用エアーシリンダ54が設けられている。また、送り用エアーシリンダ54のロッド56の先端は、第二連結部材58を介して取付部材44に固定されている。
【0016】
次に、この実施形態のほだ木穿孔装置10の動作作用について以下に説明する。まず、ほだ木18を、保持台20の二対のローラ26に載置する。次に送り用エアーシリンダ54を作動させてロッド56を下降させると、取付部材44は送り用ガイドレール42に沿って下降し、位置決め部材46がほだ木18の表面に当接して止まる。このとき、ほだ木18の形状に合わせて位置決め部材46の両側面がほだ木18に均等に当接するように、送り用ガイドレール42が揺動軸40を中心に揺動する。これにより、パンチング用エアーシリンダ48がほだ木18表面に対してほぼ直角に、ほだ木18の中心に向かう方向に位置する。次にパンチング用エアーシリンダ48を作動させてロッド49を下降させ、ロッド49に取り付けられた打込用突起51をほだ木18の表面に打ち込み、小孔を形成する。
【0017】
次にパンチング用エアーシリンダ48のロッド49を上昇させ、ローラ26を駆動モータ30により一定角度駆動させ、ほだ木18を回転させて停止させる。
そしてパンチング用エアーシリンダ48を再び作動させてほだ木18に打込用突起51を打ち込んで小孔を形成する。このとき、駆動モータ30はほだ木18の直径にかかわらず所定角度回動し、小孔の間隔が一定となるように制御する。例えばほだ木18の直径が太い場合は、細い場合よりもほだ木18の回転角度が小さくなる。そして、この動作を繰り返して、ほだ木18の側周面を一周してほぼ等間隔に小孔を3列形成する。
【0018】
この後、送り用エアーシリンダ54のロッド56を上昇させて位置決め部材46をほだ木18から離す。一本のほだ木18の穿孔が終了した後、排出用エアーシリンダ34を作動させて排出用当接部材32を揺動軸を中心に傾斜させて起こし、ローラ26に載置されているほだ木18の下端部を押し上げて、側方の排出台35に移動させる。そして、移動させたほだ木18を所定の位置に収容し、次のほだ木18をローラ26にセットする。
【0019】
この実施形態のほだ木穿孔装置10によれば、簡単な構成で、複雑な形状のほだ木18に、吸水用の小孔を全周にわたってほぼ均等に形成することができる。
乾燥したほだ木18に、小孔から水を染み込ませることにより、内側に効率よく水分を与えることができ、2期目以降の椎茸栽培が良好となり、十分な収穫が得られる。パンチング用エアーシリンダ48は、位置決め部材51がほだ木18の表面に複数箇所で当接するように揺動可能に設けられているため、ほだ木18に対して直角に対向させて確実にほだ木18に小孔を形成することができる。小孔を形成したほだ木18は、排出用当接部材32により簡単に排出することができ、作業効率がよい。
【0020】
なお、この発明のほだ木穿孔装置は上記実施の形態に限定されるものではなく、送り用エアーシリンダやパンチング用エアーシリンダの数は3個に限らず自由に設定可能であり、ほだ木の小孔を形成する列の位置や一列に設ける数は、調整することができる。また、送り用移動装置やパンチング用移動装置は適宜選択可能なものであり、他の駆動装置に置き換えても良く、一種類の移動装置により駆動するものでも良い。さらに、本体の大きさ、キャスターの有無なども変更可能である。
【0021】
【発明の効果】
この発明のほだ木穿孔装置は、簡単な構成で、ほだ木に対して確実に、効率よく吸水用の小孔を形成することができる。これにより、乾燥したほだ木には、小孔から効率的に水を染み込ませることができ、ほだ木の内側に十分な水分を与えられ、椎茸栽培が良好となる。
【図面の簡単な説明】
【図1】この発明の一実施形態のほだ木穿孔装置の正面図である。
【図2】この実施形態のほだ木穿孔装置の左側面図である。
【図3】この実施形態のほだ木穿孔装置の右側面図である。
【符号の説明】
10 ほだ木穿孔装置
12 本体
18 ほだ木
20 保持台
22 回転軸
24 軸受
26 ローラ
28 プーリ
30 駆動モータ
32 排出用当接部材
34 排出用エアーシリンダ
35 排出台
36,49,56 ロッド
40 揺動軸
42 送り用ガイドレール
44 取付部材
46 位置決め部材
48 パンチング用エアーシリンダ
51 打込用突起
52 第一連結部材
54 送り用エアーシリンダ
58 第二連結部材
[0001]
TECHNICAL FIELD OF THE INVENTION
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a firewood punching apparatus for forming small holes for absorbing water in firewood for cultivating shiitake mushrooms.
[0002]
[Prior art]
The firewood for cultivating Shiitake mushrooms preferably contains water suitable for cultivation of Shiitake mushrooms. However, after the second stage of growth of the shiitake mushrooms, the firewood becomes dry, and it is necessary to provide water to the firewood. As a method of giving water, for example, immersing the firewood in water is conceivable, but simply immersing the firewood in water only allows water to penetrate from the mouth of the firewood, and efficiently to the vicinity of the center Moisture does not spread. Therefore, there is a water replenishing method in which small holes for absorbing water are formed on the sides of the firewood. Conventionally, in order to form this hole, a hole such as a hammer was used to strike the surface of the wooden shovel to make the hole.
[0003]
[Problems to be solved by the invention]
In the case of the above-mentioned conventional technique, hitting a pallet tree with a hammer is large in number, labor is required, and work efficiency is not good. Therefore, it is conceivable to use a machine for drilling holes, but it is difficult to automate by using a machine because the firewood is not uniform in size and is bent or has a different shape.
[0004]
The present invention has been made in view of the above-mentioned conventional problems, and provides a firewood drilling device capable of forming a small hole for absorbing water in a firewood for cultivating shiitake mushrooms with a simple structure. With the goal.
[0005]
[Means for Solving the Problems]
The present invention provides at least a pair of rollers for holding a firewood inoculated with Shiitake fungi, a drive motor for intermittently driving the rollers, and a rockable feeder provided facing the firewood. A guide rail, a mounting member slidably mounted on the feed guide rail, a feed moving device for moving the mount member along the feed guide rail, and a rail mounted on the mounting member. A positioning member that contacts the surface of the tree at a plurality of locations to position the feed guide rail at a substantially right angle to the surface of the tree; and punching that is provided on the mounting member and strikes a tip member on the tree. And a driving protrusion attached to a tip member of the punching moving device and driven into the firewood.
[0006]
The mounting member is provided with a punching moving device for striking a tip member, for example, a rod, on the wood, and the tip member of the punching moving device is provided with a driving projection. The moving device for feeding is a pneumatic cylinder for feeding, and the moving device for punching is a pneumatic cylinder for punching.
[0007]
In addition, it is preferable that a discharge contact member for the sawdust positioned below the firewood and a discharge air cylinder for raising and lowering the discharge contact member are provided near the roller.
[0008]
In the firewood punching device according to the present invention, when the firewood is placed on a pair of rollers and the feed moving device is operated, the mounting member moves toward the firewood along the feed guide rail. At this time, the positioning member provided on the mounting member comes into contact with the firewood, the feed guide rail and the mounting member swing in accordance with the shape of the firewood, and are almost perpendicular to the surface of the firewood. The direction is toward the center of the tree. Next, the moving device for punching is operated, and a driving protrusion is driven into the surface of the wood to form a small hole. After that, the rollers are rotated to rotate the wood in the axial direction by a certain angle, and the small holes are formed again by the punching moving device. By repeating this, small holes are formed by making a round around the firewood at regular intervals. Then, the discharge air cylinder is actuated to raise the discharge contact member, lift the firewood from the roller, and discharge it to the side.
[0009]
BEST MODE FOR CARRYING OUT THE INVENTION
Hereinafter, embodiments of the present invention will be described with reference to the drawings. 1 to 3 show an embodiment of the present invention. A firewood drilling device 10 according to this embodiment is provided with a frame-shaped main body 12 placed in a work place or the like. A caster 16 is provided.
[0010]
At a position near the center of the main body 12 in the height direction, a substantially horizontal holding table 20 for holding the firewood 18 is provided. A pair of rotating shafts 22 are provided on the upper surface 20 a of the holding table 20 along the longitudinal direction of the holding table 20, and both ends of the rotating shaft 22 are respectively rotated by two pairs of bearings 24 fixed to the holding table 20. It is supported as much as possible. Rollers 26 are fixed to the respective rotating shafts 22 slightly inside bearings 24. A pulley 28 is fixed between the bearing 24 and one of the rollers 26 of the rotating shaft 22, for example, the roller 26 located on the right side in FIG.
[0011]
A drive motor 30 is provided on the lower surface 20 b of the holding base 20 near the pulley 28. The drive shaft 31 of the drive motor 30 is located parallel to the rotation shaft 22 and is connected to the pulley 28 by a belt (not shown). Note that a sprocket may be attached to the rotating shaft 22 instead of the pulley 28, and in this case, the sprocket is connected to the drive shaft 31 of the drive motor 30 by a chain. The drive motor 30 is controlled by a control device (not shown) so as to repeat an intermittent operation in which the drive motor 30 rotates for a predetermined time and temporarily stops.
[0012]
On the upper surface 20a of the holding base 20, a rod-shaped discharge contact member 32 is provided slightly outside the bearing 24 located on the side opposite to the pulley 28. The discharge contact member 32 is positioned at a substantially right angle in the longitudinal direction with respect to the pair of rotation shafts 22, and an end located on the side edge side of the holding table 20 is supported by the holding table 20. A discharge air cylinder 34 is provided below the discharge contact member 32 so as to be swingable so as to penetrate the holding table 20, and a tip of a rod 36 of the discharge air cylinder 34 is connected to the discharge contact member. 32 is supported by the lower surface substantially at the center. At a side edge portion of the holding table 20, a discharge table 35 for receiving the discharged firewood 18 is provided.
[0013]
On the upper portion 38 of the main body 12, a swing shaft 40 is provided to face the center of the pair of rotation shafts 22 and to be parallel to the rotation shafts 22. Rail-like feed guide rails 42 are suspended from the swing shaft 40 at three substantially equal intervals along the longitudinal direction of the swing shaft 40. A plate-shaped attachment member 44 is attached to the feed guide rail 42 so as to be slidable in the vertical direction.
[0014]
A holding portion 45 is formed near the lower end of the mounting member 44 so as to protrude laterally at a right angle to the mounting member 44, and a lower portion of the holding portion 45 extends in a direction perpendicular to the longitudinal direction of the fir tree 18. A positioning member 46 is provided which opens downward and symmetrically. An air cylinder for punching 48 is mounted via a fixing member 50 near the upper end of the mounting member 44. A sharp driving projection 51 is attached to the tip of a rod 49 which is a tip member of the air cylinder 48 for punching.
[0015]
A feed air cylinder 54 is provided on the left side edge of each feed guide rail 42 in FIG. Further, the tip of the rod 56 of the feeding air cylinder 54 is fixed to the mounting member 44 via the second connecting member 58.
[0016]
Next, the operation and operation of the pallet punch 10 of this embodiment will be described below. First, the firewood 18 is placed on the two pairs of rollers 26 of the holding table 20. Next, when the feed air cylinder 54 is actuated to lower the rod 56, the mounting member 44 is lowered along the feed guide rail 42, and the positioning member 46 comes into contact with the surface of the jog 18 and stops. At this time, the feed guide rail 42 swings about the swing shaft 40 so that both side surfaces of the positioning member 46 abut on the shoe tree 18 in accordance with the shape of the shoe tree 18. As a result, the punching air cylinder 48 is positioned substantially at right angles to the surface of the firewood 18 in a direction toward the center of the firewood 18. Next, the rod 49 is lowered by operating the air cylinder 48 for punching, and the driving projections 51 attached to the rod 49 are driven into the surface of the wood 18 to form small holes.
[0017]
Next, the rod 49 of the air cylinder 48 for punching is raised, the roller 26 is driven at a fixed angle by the drive motor 30, and the sawwood 18 is rotated and stopped.
Then, the punching air cylinder 48 is operated again to drive the driving projection 51 into the firewood 18 to form a small hole. At this time, the drive motor 30 is rotated by a predetermined angle irrespective of the diameter of the jog 18 and controlled so that the interval between the small holes is constant. For example, when the diameter of the wood 18 is large, the rotation angle of the wood 18 becomes smaller than when the diameter is small. Then, this operation is repeated, and three rows of small holes are formed at substantially equal intervals around the side peripheral surface of the firewood 18.
[0018]
Thereafter, the rod 56 of the feed air cylinder 54 is raised to separate the positioning member 46 from the jog 18. After the perforation of the single firewood 18 is completed, the discharge air cylinder 34 is operated to raise the discharge contact member 32 by tilting it around the swing axis, and the discharge air cylinder 34 is placed on the roller 26. The lower end of the tree 18 is pushed up and moved to the side discharge stand 35. Then, the moved firewood 18 is stored in a predetermined position, and the next firewood 18 is set on the roller 26.
[0019]
According to the firewood drilling device 10 of this embodiment, small holes for water absorption can be formed almost uniformly over the entire circumference of the firewood 18 having a complicated shape with a simple configuration.
By infiltrating the dried firewood 18 with water from the small holes, water can be efficiently given to the inside, and the cultivation of shiitake mushrooms in the second and subsequent stages is improved, and a sufficient harvest is obtained. The punching air cylinder 48 is swingably provided so that the positioning member 51 abuts on the surface of the firewood 18 at a plurality of positions. Small holes can be formed in the sap 18. The firewood 18 having the small holes can be easily discharged by the discharge contact member 32, and the working efficiency is good.
[0020]
It should be noted that the firewood punching device of the present invention is not limited to the above embodiment, and the number of feed air cylinders and punching air cylinders is not limited to three and can be freely set. The positions of the rows in which the small holes are formed and the number of rows provided in one row can be adjusted. The moving device for feeding and the moving device for punching can be appropriately selected, and may be replaced by another driving device, or may be driven by one type of moving device. Further, the size of the main body, the presence or absence of casters, and the like can be changed.
[0021]
【The invention's effect】
ADVANTAGE OF THE INVENTION The firewood punching apparatus of this invention can form small holes for water absorption reliably and efficiently in firewood with a simple structure. As a result, the dried firewood can be effectively infiltrated with water from the small holes, sufficient water can be given to the inside of the firewood, and the cultivation of shiitake becomes good.
[Brief description of the drawings]
FIG. 1 is a front view of a firewood punching device according to an embodiment of the present invention.
FIG. 2 is a left side view of the firewood punching device of this embodiment.
FIG. 3 is a right side view of the firewood punching device of the embodiment.
[Explanation of symbols]
REFERENCE SIGNS LIST 10 firewood punching device 12 main body 18 firewood 20 holding stand 22 rotating shaft 24 bearing 26 roller 28 pulley 30 drive motor 32 discharge contact member 34 discharge air cylinder 35 discharge stand 36, 49, 56 rod 40 swing Shaft 42 Feeding guide rail 44 Mounting member 46 Positioning member 48 Punching air cylinder 51 Driving projection 52 First connecting member 54 Feeding air cylinder 58 Second connecting member

Claims (3)

椎茸菌が植菌されたほだ木を保持する少なくとも一対のローラと、上記ローラを間欠で駆動する駆動モータと、上記ほだ木に対向して設けられ揺動可能な送り用ガイドレールと、上記送り用ガイドレールに摺動可能に取り付けられた取付部材と、上記取付部材を上記送り用ガイドレールに沿って移動させる送り用移動装置と、上記取付部材に設けられ上記ほだ木の表面に複数箇所で当接して上記ほだ木の表面に対して上記送り用ガイドレールを略直角に位置させる位置決め部材と、上記取付部材に設けられ上記ほだ木に先端部材を打ち付けるパンチング用移動装置と、上記パンチング用移動装置の先端部材に取り付けられ上記ほだ木に打ち込まれる打込用突起とが設けられていることを特徴とするほだ木穿孔装置。At least a pair of rollers that hold the firewood inoculated with Shiitake fungi, a drive motor that drives the rollers intermittently, and a swingable guide rail that is provided facing the firewood, A mounting member slidably mounted on the feed guide rail, a feed moving device for moving the mount member along the feed guide rail, and a surface of the shingle provided on the mount member. A positioning member that abuts at a plurality of locations and positions the feed guide rail at a substantially right angle with respect to the surface of the shingle; and a punching moving device that is provided on the mounting member and strikes the tip member against the shingle. And a driving projection attached to a distal end member of the punching moving device and driven into the firewood. 上記送り用移動装置は送り用エアーシリンダであり、上記パンチング用移動装置はパンチング用エアーシリンダであることを特徴とする請求項1記載のほだ木穿孔装置。The firewood punching device according to claim 1, wherein the moving device for feeding is an air cylinder for feeding, and the moving device for punching is an air cylinder for punching. 上記ローラの近傍には、上記ほだ木の下側に位置する排出用当接部材と上記排出用当接部材を昇降する排出用エアーシリンダが設けられていることを特徴とする請求項1記載のほだ木穿孔装置。The discharge roller according to claim 1, further comprising a discharge contact member located below the firewood and a discharge air cylinder that moves the discharge contact member up and down near the roller. A wood punch.
JP2002329802A 2002-11-13 2002-11-13 Hidagi drilling device Expired - Fee Related JP3839770B2 (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104509372A (en) * 2014-12-23 2015-04-15 漳州益利食用菌科技有限公司 Automatic perforation machine for mushroom bags
KR101604603B1 (en) * 2015-07-13 2016-03-18 (주)미래멀티텍 Mushroom cultivation automation devices

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105409588B (en) * 2015-12-10 2018-05-25 重庆福悦安科技有限公司 Bacterial stick holing device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104509372A (en) * 2014-12-23 2015-04-15 漳州益利食用菌科技有限公司 Automatic perforation machine for mushroom bags
KR101604603B1 (en) * 2015-07-13 2016-03-18 (주)미래멀티텍 Mushroom cultivation automation devices

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