JP3226069U - Compacted wooden pier with heating module - Google Patents

Compacted wooden pier with heating module Download PDF

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JP3226069U
JP3226069U JP2019002650U JP2019002650U JP3226069U JP 3226069 U JP3226069 U JP 3226069U JP 2019002650 U JP2019002650 U JP 2019002650U JP 2019002650 U JP2019002650 U JP 2019002650U JP 3226069 U JP3226069 U JP 3226069U
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凱 王
凱 王
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【課題】優れた機械性能、発熱性能と防腐耐磨性能を持ち、変形が発生しにくく、別荘ガーデン、バドミントン館、さらに砂漠などの多種のシーンに利用できる圧密木桟道を提供する。【解決手段】加熱モジュールを備えた圧密木桟道であって、主キール及び主キールに平行に配列された圧密木桟道板2を含み、圧密木桟道板は上から順に第1の圧密木層20、第1の熱可塑性樹脂膜層21、グラフェン電熱層22、第2の熱可塑性樹脂膜層23及び第2の圧密木層24を含み、グラフェン電熱層には外部電源線に接続される電源線3が接続され、第1の圧密木層の内側又は第2の圧密木層の内側にはコネクタスロット25が設置され、電源線の外端部には電源コネクタ30が接続され、電源コネクタはコネクタスロット内に嵌設される。【選択図】図2PROBLEM TO BE SOLVED: To provide a compacted wooden path which has excellent mechanical performance, heat generation performance, antiseptic abrasion resistance performance, is hard to be deformed, and can be used in various kinds of scenes such as a villa garden, a badminton building, and a desert. SOLUTION: This is a consolidation tree lane provided with a heating module, which includes a main keel and a consolidation tree lane board 2 arranged in parallel with the main keel, and the consolidation tree lane board is a first consolidation tree layer in order from the top. , A first thermoplastic resin film layer 21, a graphene electric heating layer 22, a second thermoplastic resin film layer 23 and a second consolidation tree layer 24, and the graphene electric heating layer is connected to an external power supply line. 3 is connected, a connector slot 25 is installed inside the first consolidation tree layer or inside the second consolidation tree layer, a power connector 30 is connected to the outer end of the power line, and the power connector is a connector. It is fitted in the slot. [Selection diagram] Figure 2

Description

本考案は、庭園建築技術分野に属し、特に加熱モジュールを備えた圧密木桟道に関する。   TECHNICAL FIELD The present invention belongs to the field of garden construction technology, and particularly relates to a compacted wooden path having a heating module.

従来の景観桟道は、一般に木桟道であり、等間隔をおいて対応した支持ビームが設けられ、支持ビームの両側に縦梁が設けられ、支持ビームと縦梁を支持機構により支持する役割を果たす。屋外の景観である桟道は、雨の日の後、桟道板が湿っていて、人が桟道を歩くと滑りやすく安全性が劣ってなり、特に冬は桟道板で凍りやすく、歩きにくくなる。これに対し、特許文献1及び2にて提供される加熱装置は、桟道板を加熱して、湿気や氷が付着した桟道板に熱を受けて乾燥させるが、加熱管の敷設が面倒で、北の冬は水道管の中の水も凍りやすく、桟道板を直接加熱することができない。   The conventional landscape lane is generally a wooden lane, and corresponding support beams are provided at equal intervals, vertical beams are provided on both sides of the support beam, and the support beam and the vertical beam play a role of being supported by a support mechanism. . In the outdoor pier, the lane board is wet after a rainy day, and when a person walks on the lane, it becomes slippery and inferior in safety. Especially, in winter, the lane board is liable to be frozen and hard to walk. On the other hand, the heating devices provided in Patent Documents 1 and 2 heat the gangway plate and heat the lane plate to which moisture or ice adheres to dry the gangway plate, but the laying of the heating tube is troublesome, In the northern winter, the water in the water pipes is also liable to freeze, and it is not possible to directly heat the board.

床にグラフェン加熱膜を設置することで暖房が行われる従来技術はあるが、グラフェン膜の桟道での応用に関する報告は見られない。景観桟道は、室内環境と異なるため、それは開放的な環境で天気変化の影響を受けやすく、従来の複合木材床は景観桟道に用いると周囲環境の温度、湿度変化に伴って乾燥収縮と湿潤膨張が生じやすく、木材が変形し、反りと亀裂が生じ、その機械性能が低下し、変形が大きくなる。   Although there is a conventional technique in which heating is performed by installing a graphene heating film on the floor, there is no report regarding the application of the graphene film in a lane. Since the landscape pier is different from the indoor environment, it is susceptible to weather changes in an open environment, and when the conventional composite timber floor is used for the landscape pier, it shrinks dry and wet with changes in temperature and humidity of the surrounding environment. Tends to occur, the wood is deformed, warpage and cracks are generated, its mechanical performance is deteriorated, and the deformation is increased.

中国実用新案CN207633186UChina utility model CN207633186U 中国実用新案CN207633191UChina utility model CN207633191U

上記の技術的課題を解決するために、本考案は、優れた機械性能、発熱性能と防腐耐磨性能を持ち、変形が発生しにくく、別荘ガーデン、バドミントン館、さらに砂漠などの多種のシーンに利用できる加熱モジュールを備えた圧密木桟道を提供する。   In order to solve the above technical problems, the present invention has excellent mechanical performance, heat generation performance and antiseptic abrasion resistance, does not easily deform, and is suitable for various scenes such as villa gardens, badminton halls, and deserts. Providing a consolidated wood pier with available heating modules.

本考案の具体的な技術的解決手段は、以下のとおりである。   The concrete technical solution of the present invention is as follows.

本考案にて提供される加熱モジュールを備えた圧密木桟道は、主キール及び前記主キールに平行に配列された圧密木桟道板を含み、前記圧密木桟道板は上から順に第1の圧密木層、第1の熱可塑性樹脂膜層、グラフェン電熱層、第2の熱可塑性樹脂膜層及び第2の圧密木層を含み、前記グラフェン電熱層には外部電源線に接続される電源線が接続され、前記第1の圧密木層の内側又は第2の圧密木層の内側にはコネクタスロットが設置され、前記電源線の外端部には電源コネクタが接続され、前記電源コネクタは前記コネクタスロット内に嵌設される。   A compaction wooden path provided with a heating module provided in the present invention includes a main keel and a consolidation wooden path plate arranged in parallel with the main keel, and the consolidation wooden path plate is a first consolidation tree in order from the top. Layer, a first thermoplastic resin film layer, a graphene electric heating layer, a second thermoplastic resin film layer and a second consolidation tree layer, and the graphene electric heating layer is connected to a power supply line connected to an external power supply line. A connector slot is installed inside the first consolidation tree layer or inside the second consolidation tree layer, a power connector is connected to an outer end of the power line, and the power connector is the connector slot. It is fitted inside.

さらに、前記圧密木桟道板は、第1の圧密木層、第1の熱可塑性樹脂膜層、グラフェン電熱層、第2の熱可塑性樹脂膜層及び第2の圧密木層を順に重ねた高周波加熱圧密による複合木板であり、前記第1の圧密木層と第2の圧密木層の完成品は含水率2−3%である。熱周波加熱圧密技術により、当該圧密木桟道板の含水率が目標値に達しやすくなり、操作も簡単に制御できるようになった。   Further, the compaction wood lane board is a high-frequency heating device in which a first consolidation wood layer, a first thermoplastic resin film layer, a graphene electric heating layer, a second thermoplastic resin film layer, and a second consolidation wood layer are stacked in this order. It is a composite wooden board by consolidation, and the finished product of the first consolidation tree layer and the second consolidation tree layer has a water content of 2-3%. The heat frequency heating consolidation technology has made it easier for the moisture content of the consolidation wood lane board to reach the target value and the operation can be easily controlled.

さらに、前記第1の圧密木層と第2の圧密木層は単層の無垢板又は多層の無垢板である。   Further, the first consolidated wood layer and the second consolidated wood layer are single-layer solid boards or multilayer solid boards.

前記第1の圧密木層の内面と第2の圧密木層の内面の反射度は少なくとも50%であり、好ましくは70−80%である。又は、前記第1の圧密木層の内面と第2の圧密木層の内面の両方に樹脂塗料が塗装されており、前記樹脂塗料の反射度は少なくとも50%であり、好ましくは70−80%である。当該技術手段における反射度は、前記グラフェン加熱層の熱輻射反射率を下げ、桟道表面への熱伝達の減少を回避するように制限される。   The reflectivity of the inner surface of the first consolidation wood layer and the inner surface of the second consolidation wood layer is at least 50%, preferably 70-80%. Alternatively, a resin paint is applied to both the inner surface of the first consolidation wood layer and the inner surface of the second consolidation wood layer, and the reflectance of the resin paint is at least 50%, preferably 70-80%. Is. The reflectivity in the technical means is limited so as to reduce the thermal radiation reflectivity of the graphene heating layer and avoid the reduction of heat transfer to the surface of the jetty.

本考案に係る圧密木の素材は、従来の一般的な各種の木床板材料を用いることができる。幾つかの示例において、木板作製用の原料は、ポプラ、しなのきとラジアータパインの中の1種又は複数種から選択する。1つの好ましい技術手段では、前記第1の圧密木層と第2の圧密木層はしなのきであり、前記しなのきの反射度は更に要求に合致する。   As the material of the consolidated wood according to the present invention, various conventional general wooden floor board materials can be used. In some illustrative examples, the raw material for making wood boards is selected from one or more of poplar, shinano and radiata pine. In one preferred technical measure, said first and second consolidation wood layers are shinashi, and the reflectivity of said shinashi further meets the requirements.

さらに、前記グラフェン電熱層は、ポリエステル薄膜基材を含み、前記ポリエステル薄膜基材の上面にグラフェン発熱体が印刷され、前記グラフェン発熱体に前記電源線が接続される。前記グラフェン電熱層の上下面にいずれもPI膜が接着される。   Further, the graphene electrothermal layer includes a polyester thin film base material, a graphene heating element is printed on an upper surface of the polyester thin film base material, and the power supply line is connected to the graphene heating element. A PI film is adhered to both upper and lower surfaces of the graphene electrothermal layer.

さらに、前記グラフェン発熱体のエッジから前記第1の圧密木層と第2の圧密木層のエッジまでの距離は1−3cmである。   Further, the distance from the edge of the graphene heating element to the edges of the first consolidation tree layer and the second consolidation tree layer is 1-3 cm.

さらに、前記第1の熱可塑性樹脂膜層と第2の熱可塑性樹脂膜層はいずれもPVB膜であり、前記PVB膜は厚さ0.5−0.9mm、粘度15.6−16.4Pa・s、弾性率8−90×10Paである。 Further, the first thermoplastic resin film layer and the second thermoplastic resin film layer are both PVB films, and the PVB film has a thickness of 0.5-0.9 mm and a viscosity of 15.6-16.4 Pa. -S and the elastic modulus is 8-90x10 < 6 > Pa.

また、1つの改良された技術手段では、前記電源コネクタは防水電線オスコネクタである。前記第1の圧密木層の内側又は第2の圧密木層の内側にさらに第2のコネクタスロットが設置され、前記防水電線オスコネクタは導線を介してそれと向かい合って接する防水電線メスコネクタに接続され、前記防水電線メスコネクタが前記第2のコネクタスロット内に嵌設される。   Also, in one improved technical means, the power connector is a waterproof wire male connector. A second connector slot is further installed inside the first compacted wood layer or inside the second compacted wood layer, and the waterproof electric wire male connector is connected to a waterproof electric wire female connector which faces and contacts with the conductor wire through a conductor wire. The waterproof electric wire female connector is fitted in the second connector slot.

さらに、前記コネクタスロットと第2のコネクタスロットは前記圧密木桟道板の同一の縦方向沿線位置の前側と後側にそれぞれ設置され、前記導線位置に対応した前記第1の圧密木層の内側又は第2の圧密木層の内側に導線を収容するラインスロットが設置される。   Furthermore, the connector slot and the second connector slot are respectively installed on the front side and the rear side of the same longitudinal rail position on the compaction wooden path plate, and inside the first compaction wooden layer corresponding to the conductor position or A line slot for accommodating the lead wire is installed inside the second consolidated wood layer.

もう1つの改良された技術手段では、前記桟道に太陽光蓄電機構が設置され、前記太陽光蓄電機構は太陽光発電パネル、充電コントローラ、インバータ及び蓄電池を含み、前記太陽光発電パネルはブラケットを介して前記圧密木桟道の側辺又は前記圧密木桟道の側面にあるガードレールに架設され、前記太陽光発電パネルが前記蓄電池に接続され、前記蓄電池はインバータに接続されて、前記外部電源線に接続される。   In another improved technical means, a solar power storage mechanism is installed in the lane, the solar power storage mechanism includes a solar power generation panel, a charge controller, an inverter, and a storage battery, and the solar power generation panel is provided via a bracket. Installed on a side of the compaction wooden path or on a guardrail on the side of the compaction wooden path, the solar power generation panel is connected to the storage battery, the storage battery is connected to an inverter, and is connected to the external power line. It

本考案にて提供される加熱モジュールを備えた圧密木桟道は、木材の良質な性能、防水・割れ防止性能を有する。当該桟道板は直接スティッチングして敷設されており、敷設作業が簡単で、施工工程が簡素化され、設置される太陽光発電は安全性が高い。当該圧密木桟道は、例えば別荘ガーデン、バドミントン館、さらに砂漠のような多くの応用シーンに適用する。南の方でも、コケがよく出てくる桟道の場合での応用も非常に理想的である。   The compacted wooden path provided with the heating module provided by the present invention has good performance of wood and waterproof / crack preventing performance. Since the corridor plate is laid by stitching directly, the laying work is simple, the construction process is simplified, and the installed photovoltaic power generation is highly safe. The compacted wooden path applies to many application scenes such as villa gardens, badminton pavilions, and even deserts. Even in the south, the application in the case of a jetty where moss often appears is very ideal.

実施例1の圧密木桟道の構造を示す図である。It is a figure which shows the structure of the compaction wooden path of Example 1. 実施例1の圧密木桟道の爆発した状態を示す図である。It is a figure which shows the state which the compaction wooden gallery of Example 1 exploded. 実施例1の圧密木桟道の構造全体を示す図である。It is a figure which shows the whole structure of the compaction wooden path of Example 1. 実施例2のグラフェン電熱層の構造を示す図である。5 is a diagram showing a structure of a graphene electrothermal layer of Example 2. FIG. 実施例3の第1の圧密木層と内部電線及び電線コネクタの構造を示す図である。It is a figure which shows the structure of the 1st compaction tree layer of Example 3, an internal electric wire, and an electric wire connector. 実施例3の防水オスコネクタと防水メスコネクタとの対向接続の構造を示す図である。It is a figure which shows the structure of the opposing connection of the waterproof male connector and waterproof female connector of Example 3. 実施例4の圧密木桟道の構造を示す図である。It is a figure which shows the structure of the compaction wooden path of Example 4. 実施例4の太陽光蓄電機構の構造を示す図である。It is a figure which shows the structure of the solar energy storage mechanism of Example 4.

以下、図面を組み合わせて本考案の加熱モジュールを備えた圧密木桟道の解決手段について詳しく説明する。   Hereinafter, the means for solving the compacted wooden path provided with the heating module of the present invention will be described in detail with reference to the drawings.

本考案に係る加熱モジュールを備えた圧密木桟道は、図1に示すように、主キール1及び主キール1に平行に配列された圧密木桟道板2を含む。   As shown in FIG. 1, a compaction wooden path provided with a heating module according to the present invention includes a main keel 1 and a consolidation wooden path plate 2 arranged in parallel with the main keel 1.

図2−3に示すように、圧密木桟道板2は上から順に第1の圧密木層20、第1の熱可塑性樹脂膜層21、グラフェン電熱層22、第2の熱可塑性樹脂膜層23及び第2の圧密木層24を含み、グラフェン電熱層22には外部電源線6に接続される電源線3が接続され、第1の圧密木層20の内側又は第2の圧密木層24の内側にはコネクタスロット25が設置され、電源線3の外端部には電源コネクタ30が接続され、電源コネクタ30はコネクタスロット25内に嵌設される。なお、ここで記載した電源コネクタ30は電源ラッチ(プラグ)同様の接続構造であるか、又はUSB同様の接続構造であってもよい。   As shown in FIG. 2-3, the consolidation tree lane board 2 includes a first consolidation tree layer 20, a first thermoplastic resin film layer 21, a graphene electric heating layer 22, and a second thermoplastic resin film layer 23 in order from the top. And the second consolidation tree layer 24, the power supply line 3 connected to the external power supply line 6 is connected to the graphene electric heating layer 22, and the inside of the first consolidation tree layer 20 or the second consolidation tree layer 24. The connector slot 25 is installed inside, the power supply connector 30 is connected to the outer end of the power supply line 3, and the power supply connector 30 is fitted in the connector slot 25. The power supply connector 30 described here may have a connection structure similar to a power supply latch (plug) or a connection structure similar to a USB.

圧密木桟道板2は、第1の圧密木層20、第1の熱可塑性樹脂膜層21、グラフェン電熱層22、第2の熱可塑性樹脂膜層23及び第2の圧密木層24を順に重ねた高周波加熱圧密による複合木板であり、第1の圧密木層20と第2の圧密木層24の完成品は含水率2−3%である。本考案に係る桟道板の第1の圧密木層と第2の圧密木層は予め高周波高温圧密による木板である。高周波高温超短時間にわたって圧縮し得た独立圧密木層は、強度が高く、変形せず、反発しなく、防水性能を有し、再び高周波低温二次圧密によりグラフェン電熱層をその中に押圧し、高温による電熱層の損傷を回避する。また、高周波加熱圧密により木材の含水率をより良く制御し、目的の含水率の圧密木を取得し、室内バスケットボール場の応用シーンでは、前記圧密木の含水率を2%制御するなど、異なる環境応用を用いることができる。   The consolidated wooden board 2 includes a first consolidated wooden layer 20, a first thermoplastic resin film layer 21, a graphene electrothermal layer 22, a second thermoplastic resin film layer 23, and a second consolidated wooden layer 24, which are stacked in this order. It is a composite wooden board by high frequency heating and consolidation, and the finished product of the first consolidation wooden layer 20 and the second consolidation wooden layer 24 has a water content of 2-3%. The first consolidated wood layer and the second consolidated wood layer of the pedestal board according to the present invention are wood boards that have been previously subjected to high-frequency high-temperature consolidation. The high-temperature, high-temperature, and ultra-short-time compressed independent wood layer has high strength, does not deform, does not repel, has waterproof performance, and again presses the graphene electric heating layer into it by high-frequency low-temperature secondary consolidation. Avoid the damage of electric heating layer due to high temperature. In addition, the moisture content of wood is better controlled by high-frequency heating consolidation, the consolidation tree with the desired moisture content is acquired, and in the application scene of the indoor basketball field, the moisture content of the consolidation tree is controlled by 2%, etc. Applications can be used.

なお、本考案に係る第1の圧密木層20と第2の圧密木層24は単層の無垢板又は多層の無垢板である。   The first consolidated wood layer 20 and the second consolidated wood layer 24 according to the present invention are single-layer solid boards or multilayer solid boards.

第1の圧密木層20の内面と第2の圧密木層24の内面の反射度は少なくとも50%であり、好ましくは70−80%である。又は、第1の圧密木層20の内面と第2の圧密木層24の内面の両方に樹脂塗料が塗装されており、前記樹脂塗料の反射度は少なくとも50%であり、好ましくは70−80%である。熱輻射が桟道板面に良く伝達できないことを回避するため、前記電圧層圧密木層に向かう反射度を制限することで、熱伝達の効率をさらに向上させる。   The reflectivity of the inner surface of the first consolidated wood layer 20 and the inner surface of the second consolidated wood layer 24 is at least 50%, preferably 70-80%. Alternatively, a resin paint is applied to both the inner surface of the first consolidation wood layer 20 and the inner surface of the second consolidation wood layer 24, and the reflectance of the resin paint is at least 50%, preferably 70-80. %. In order to avoid that the heat radiation cannot be well transferred to the surface of the lane plate, the efficiency of heat transfer is further improved by limiting the reflectivity toward the voltage layer consolidation tree layer.

1つの好ましい示例では、第1の圧密木層20と第2の圧密木層24はしなのきである。   In one preferred example, the first consolidated wood layer 20 and the second consolidated wood layer 24 are made of Siren.

実施例1を基に、本実施例はさらにグラフェン電熱層の具体的な構造を記述する。図4に示すように、グラフェン電熱層22は、ポリエステル薄膜基材を含み、前記ポリエステル薄膜基材の上面にグラフェン発熱体220が印刷され、前記グラフェン発熱体に電源線3が接続される。前記グラフェン電熱層の上下面にいずれもPI膜が接着される。   Based on Example 1, this example further describes the specific structure of the graphene electrothermal layer. As shown in FIG. 4, the graphene electrothermal layer 22 includes a polyester thin film base material, a graphene heating element 220 is printed on an upper surface of the polyester thin film base material, and the power line 3 is connected to the graphene heating element. A PI film is adhered to both upper and lower surfaces of the graphene electrothermal layer.

グラフェン発熱体220のエッジから第1の圧密木層20と第2の圧密木層22のエッジまでの距離は1−3cmである。   The distance from the edge of the graphene heating element 220 to the edge of the first consolidation tree layer 20 and the second consolidation tree layer 22 is 1-3 cm.

なお、本考案に係るグラフェン発熱体220の印刷構造は、蛇行回折した複数のグラフェンストリップを並列に構成されてもよく、一例では、図4に示すように、グラフェン発熱体220が複数並列したグラフェンストリップであり、その片側に導電アルミホイルストリップ又は銅ストリップ221が設置され、電源線3が221に接続される。   In addition, the printing structure of the graphene heating element 220 according to the present invention may include a plurality of meandering diffracted graphene strips arranged in parallel. In one example, as shown in FIG. It is a strip, and a conductive aluminum foil strip or a copper strip 221 is installed on one side thereof, and the power supply line 3 is connected to 221.

本実施例は、さらに熱可塑性樹脂層に対して限定が行われる。前記第1の熱可塑性樹脂膜層と第2の熱可塑性樹脂膜層はいずれもエチレン−酢酸ビニル系共重合物又はポリオレフィン系材料のいずれか1つ又は複数の混合物を含む。前記ポリオレフィン系材料はポリエチレン、ポリプロピレン、改質ポリエチレン、改質ポリプロピレン又はエチレンセルを含むエチレン系エラストマーのいずれか1つ又は少なくとも2つの混合物である。1つの具体的な示例では、第1の熱可塑性樹脂膜層21と第2の熱可塑性樹脂膜層23はいずれもPVB膜であり、前記PVB膜は厚さ0.5−0.9mm、粘度15.6−16.4Pa・s、弾性率8−90×10Paである。 This example is further limited to the thermoplastic resin layer. Each of the first thermoplastic resin film layer and the second thermoplastic resin film layer contains any one or a mixture of ethylene-vinyl acetate copolymer or polyolefin material. The polyolefin-based material is any one or a mixture of at least two of polyethylene, polypropylene, modified polyethylene, modified polypropylene, or an ethylene elastomer containing ethylene cells. In one specific example, the first thermoplastic resin film layer 21 and the second thermoplastic resin film layer 23 are both PVB films, and the PVB film has a thickness of 0.5 to 0.9 mm and a viscosity of 0.5 to 0.9 mm. It is 15.6-16.4 Pa · s and the elastic modulus is 8-90 × 10 6 Pa.

実施例1を基に、本実施例は、さらに平行に配列した複数の桟道板をスティッチングした場合の電線接続構造を改良する。図5−6に示すように、電源コネクタ30は防水電線オスコネクタである。第1の圧密木層20の内側又は第2の圧密木層24の内側にさらに第2のコネクタスロット26が設置され、前記防水電線オスコネクタは導線35を介してそれと向かい合って接する防水電線メスコネクタ31に接続され、防水電線メスコネクタ31が第2のコネクタスロット26内に嵌設される。   Based on the first embodiment, the present embodiment further improves the electric wire connection structure in the case of stitching a plurality of rail plates arranged in parallel. As shown in FIGS. 5-6, the power supply connector 30 is a waterproof electric wire male connector. A second connector slot 26 is further installed inside the first consolidation tree layer 20 or inside the second consolidation tree layer 24, and the waterproof cable male connector is in contact with the waterproof cable female connector facing each other through a conductor 35. The waterproof wire female connector 31 is fitted in the second connector slot 26.

コネクタスロット25と第2のコネクタスロット26は前記圧密木桟道板の同一の縦方向沿線位置の前側と後側にそれぞれ設置され、導線35位置に対応した第1の圧密木層20の内側又は第2の圧密木層24の内側に導線35を収容するラインスロット27が設置される。   The connector slot 25 and the second connector slot 26 are respectively installed on the front side and the rear side of the same longitudinal woodline position of the above-mentioned compaction wood lane plate, and inside or on the inside of the first consolidation wood layer 20 corresponding to the position of the conducting wire 35. A line slot 27 for accommodating the conductive wire 35 is installed inside the second consolidated wood layer 24.

桟道板を配列してスティッチングした場合、防水電線オスコネクタと防水電線メスコネクタを向かい合って接すればよい。   When arranging the stitch boards and performing stitching, the waterproof electric wire male connector and the waterproof electric wire female connector may face each other and be in contact with each other.

実施例1を基に、本実施例は、以下のように給電電源をさらに改良する。図7−8に示すように、前記桟道に太陽光蓄電機構が設置され、前記太陽光蓄電機構は太陽光発電パネル50、充電コントローラ51、インバータ52及び蓄電池53を含み、前記太陽光発電パネル50はブラケットを介して前記圧密木桟道の側辺又は前記圧密木桟道の側面にあるガードレールに架設され、太陽光発電パネル50が蓄電池53に接続され、蓄電池53はインバータ52に接続されて、外部電源線6に接続される。前記充電コントローラは太陽光発電パネル50の動作状態を制御する。   Based on the first embodiment, the present embodiment further improves the power supply source as follows. As shown in FIGS. 7-8, a solar power storage mechanism is installed on the lane, and the solar power storage mechanism includes a solar power generation panel 50, a charge controller 51, an inverter 52, and a storage battery 53. Is installed via a bracket on a guard rail on the side of the compaction wooden path or on the side of the compaction wooden path, the photovoltaic power generation panel 50 is connected to a storage battery 53, the storage battery 53 is connected to an inverter 52, and an external power source is connected. Connected to line 6. The charge controller controls the operating state of the photovoltaic panel 50.

当該桟道は、森林地帯や公園で使用されるため、これらの環境には防火要件が高く、直接給電される市電220Vは危険であるが、太陽光発電パネルの24V安全電力により桟道板の安全性を向上させることができる。   Since the corridor is used in forest areas and parks, fire protection requirements are high in these environments, and 220V city electricity supplied directly is dangerous, but the safety of the corridor board is 24V due to the 24V safety power of the photovoltaic panels. Can be improved.

以上に記載した実施形態は、当該技術的解決手段の保護範囲に制限されるものではない。上記実施形態の精神と原則の範囲内で行われたいかなる修正、同等な置換と改良など、いずれも当該技術的解決手段の保護範囲に含まれるべきである。
The embodiments described above are not limited to the protection scope of the technical solution. Any modifications, equivalent substitutions and improvements made within the spirit and principle of the above-described embodiments should be included in the protection scope of the technical solution.

Claims (10)

主キール(1)及び主キール(1)に平行に配列された圧密木桟道板(2)を含み、圧密木桟道板(2)は上から順に第1の圧密木層(20)、第1の熱可塑性樹脂膜層(21)、グラフェン電熱層(22)、第2の熱可塑性樹脂膜層(23)及び第2の圧密木層(24)を含み、グラフェン電熱層(22)には外部電源線(6)に接続される電源線(3)が接続され、第1の圧密木層(20)の内側又は第2の圧密木層(24)の内側にはコネクタスロット(25)が設置され、電源線(3)の外端部には電源コネクタ(30)が接続され、電源コネクタ(30)はコネクタスロット(25)内に嵌設されること、を特徴とする加熱モジュールを備えた圧密木桟道。   It includes a main keel (1) and a consolidation tree lane board (2) arranged in parallel to the main keel (1), wherein the consolidation tree lane board (2) is a first consolidation tree layer (20), a first order The thermoplastic resin film layer (21), the graphene electric heating layer (22), the second thermoplastic resin film layer (23), and the second consolidation wood layer (24) are included in the graphene electric heating layer (22). A power supply line (3) connected to the power supply line (6) is connected, and a connector slot (25) is installed inside the first consolidation tree layer (20) or inside the second consolidation tree layer (24). The power supply connector (30) is connected to the outer end of the power supply line (3), and the power supply connector (30) is fitted into the connector slot (25). Compacted wooden pier. 圧密木桟道板(2)は、第1の圧密木層(20)、第1の熱可塑性樹脂膜層(21)、グラフェン電熱層(22)、第2の熱可塑性樹脂膜層(23)及び第2の圧密木層(24)を順に重ねた高周波加熱圧密による複合木板であり、第1の圧密木層(20)と第2の圧密木層(24)の完成品は含水率2−3%であること、を特徴とする請求項1に記載の加熱モジュールを備えた圧密木桟道。   The consolidated wooden board (2) includes a first consolidated wooden layer (20), a first thermoplastic resin film layer (21), a graphene electric heating layer (22), a second thermoplastic resin film layer (23) and It is a composite wooden board by high-frequency heating consolidation in which a second consolidation tree layer (24) is laminated in order, and the finished product of the first consolidation tree layer (20) and the second consolidation tree layer (24) has a water content of 2-3. %, A consolidation tree lane with a heating module according to claim 1. 第1の圧密木層(20)と第2の圧密木層(24)は単層の無垢板又は多層の無垢板であり、
第1の圧密木層(20)の内面と第2の圧密木層(24)の内面の反射度は少なくとも50%であり、好ましくは70−80%である。又は、第1の圧密木層(20)の内面と第2の圧密木層(24)の内面の両方に樹脂塗料が塗装されており、前記樹脂塗料の反射度は少なくとも50%であり、好ましくは70−80%であること、を特徴とする請求項1−2のいずれか1つに記載の加熱モジュールを備えた圧密木桟道。
The first consolidated wood layer (20) and the second consolidated wood layer (24) are single-layer solid boards or multilayer solid boards,
The reflectivity of the inner surface of the first consolidated wood layer (20) and the inner surface of the second consolidated wood layer (24) is at least 50%, preferably 70-80%. Alternatively, a resin paint is applied to both the inner surface of the first consolidation wood layer (20) and the inner surface of the second consolidation wood layer (24), and the reflectance of the resin paint is at least 50%, preferably Is 70-80%, The consolidation tree pier provided with the heating module according to any one of claims 1-2.
第1の圧密木層(20)と第2の圧密木層(24)はしなのきであること、を特徴とする請求項1−2のいずれか1つに記載の加熱モジュールを備えた圧密木桟道。   Consolidation with a heating module according to any one of claims 1-2, characterized in that the first consolidation wood layer (20) and the second consolidation wood layer (24) are made of shishinashi. Wood pier. グラフェン電熱層(22)は、ポリエステル薄膜基材を含み、前記ポリエステル薄膜基材の上面にグラフェン発熱体(220)が印刷され、前記グラフェン発熱体に電源線(3)が接続される。前記グラフェン電熱層の上下面にいずれもPI膜が接着されること、を特徴とする請求項1に記載の加熱モジュールを備えた圧密木桟道。   The graphene electrothermal layer (22) includes a polyester thin film substrate, a graphene heating element (220) is printed on an upper surface of the polyester thin film substrate, and a power line (3) is connected to the graphene heating element. The compacted wooden path with the heating module according to claim 1, wherein a PI film is adhered to both upper and lower surfaces of the graphene electrothermal layer. グラフェン発熱体(220)のエッジから第1の圧密木層(20)と第2の圧密木層(22)のエッジまでの距離は1−3cmであること、を特徴とする請求項1に記載の加熱モジュールを備えた圧密木桟道。   The distance from the edge of the graphene heating element (220) to the edge of the first consolidation tree layer (20) and the second consolidation tree layer (22) is 1-3 cm. Compacted wood pier with heating module of. 第1の熱可塑性樹脂膜層(21)と第2の熱可塑性樹脂膜層(23)はいずれもPVB膜であり、前記PVB膜は厚さ0.5−0.9mm、粘度15.6−16.4Pa・s、弾性率8−90×10Paであること、を特徴とする請求項1に記載の加熱モジュールを備えた圧密木桟道。 Both the first thermoplastic resin film layer (21) and the second thermoplastic resin film layer (23) are PVB films, and the PVB film has a thickness of 0.5-0.9 mm and a viscosity of 15.6-. The compacted wooden path provided with the heating module according to claim 1, wherein the heating module has a modulus of 16.4 Pa · s and an elastic modulus of 8 to 90 × 10 6 Pa. 電源コネクタ(30)は防水電線オスコネクタである。第1の圧密木層(20)の内側又は第2の圧密木層(24)の内側にさらに第2のコネクタスロット(26)が設置され、前記防水電線オスコネクタは導線(35)を介してそれと向かい合って接する防水電線メスコネクタ(31)に接続され、防水電線メスコネクタ(31)が第2のコネクタスロット(26)内に嵌設されること、を特徴とする請求項1に記載の加熱モジュールを備えた圧密木桟道。   The power supply connector (30) is a waterproof electric wire male connector. A second connector slot (26) is further installed inside the first consolidated wood layer (20) or inside the second consolidated wood layer (24), and the waterproof electric wire male connector is provided with a conductor (35). The heating according to claim 1, which is connected to a waterproof electric wire female connector (31) facing and in contact therewith, and wherein the waterproof electric wire female connector (31) is fitted into the second connector slot (26). Compacted wooden pier with modules. コネクタスロット(25)と第2のコネクタスロット(26)は前記圧密木桟道板の同一の縦方向沿線位置の前側と後側にそれぞれ設置され、導線(35)位置に対応した第1の圧密木層(20)の内側又は第2の圧密木層(24)の内側に導線(35)を収容するラインスロット(27)が設置されること、を特徴とする請求項8に記載の加熱モジュールを備えた圧密木桟道。   The connector slot (25) and the second connector slot (26) are respectively installed on the front side and the rear side of the same longitudinal railroad track position of the above-mentioned compaction tree lane plate, and the first consolidation tree corresponding to the conductor (35) position. 9. A heating module according to claim 8, characterized in that a line slot (27) for accommodating the conductor (35) is installed inside the layer (20) or inside the second consolidated wood layer (24). A compacted wooden pier equipped. 前記桟道に太陽光蓄電機構が設置され、前記太陽光蓄電機構は太陽光発電パネル(50)、充電コントローラ(51)、インバータ(52)及び蓄電池(53)を含み、前記太陽光発電パネル(50)はブラケットを介して前記圧密木桟道の側辺又は前記圧密木桟道の側面にあるガードレールに架設され、太陽光発電パネル(50)が蓄電池(53)に接続され、蓄電池(53)はインバータ(52)に接続されて、外部電源線(6)に接続されること、を特徴とする請求項1に記載の加熱モジュールを備えた圧密木桟道。
A solar power storage mechanism is installed on the path, and the solar power storage mechanism includes a solar power generation panel (50), a charge controller (51), an inverter (52) and a storage battery (53). ) Is installed via a bracket to a guard rail on the side of the compaction wooden path or on the side of the compaction wooden path, the photovoltaic panel (50) is connected to the storage battery (53), and the storage battery (53) is an inverter ( 52) Connected to the external power supply line (6) by being connected to 52), The consolidated wooden lane with a heating module according to claim 1.
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