TWM597538U - Solar panel movable heating device - Google Patents

Solar panel movable heating device Download PDF

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Publication number
TWM597538U
TWM597538U TW109201777U TW109201777U TWM597538U TW M597538 U TWM597538 U TW M597538U TW 109201777 U TW109201777 U TW 109201777U TW 109201777 U TW109201777 U TW 109201777U TW M597538 U TWM597538 U TW M597538U
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Taiwan
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solar panel
heating
heating device
conveying direction
sliding
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TW109201777U
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Chinese (zh)
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林聰欣
張倧瑋
廖繼彬
張文俊
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韶陽科技股份有限公司
光宇材料股份有限公司
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Priority to TW109201777U priority Critical patent/TWM597538U/en
Publication of TWM597538U publication Critical patent/TWM597538U/en

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/20Waste processing or separation
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/82Recycling of waste of electrical or electronic equipment [WEEE]

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Abstract

一種太陽能板移動加熱裝置,適用於承載一太陽能板,該太陽能板移動加熱裝置包含一滑移單元及一加熱台單元。該滑移單元包括數個沿一輸送方向間隔設置的轉動件,每一轉動件可繞自身軸線自由轉動,由該等轉動件形成一適用於承載該太陽能板的運送面。該加熱台單元包括一可沿一頂底方向上下移動且能沿該輸送方向移動的加熱台,該頂底方向實質上垂直於該輸送方向,該加熱台適用於對該太陽能板加熱且具有至少一推塊。藉由該加熱台朝下移動至鄰近於該太陽能板且該至少一推塊接觸該太陽能板,而能帶動該太陽能板沿該輸送方向移動。A solar panel mobile heating device is suitable for carrying a solar panel. The solar panel mobile heating device includes a sliding unit and a heating table unit. The sliding unit includes several rotating members spaced along a conveying direction, each rotating member can freely rotate around its own axis, and the rotating members form a transport surface suitable for carrying the solar panel. The heating table unit includes a heating table movable up and down in a top-bottom direction and movable in the conveying direction. The top-bottom direction is substantially perpendicular to the conveying direction. The heating table is suitable for heating the solar panel and has at least One push block. By moving the heating table downward to be adjacent to the solar panel and the at least one pushing block contacts the solar panel, the solar panel can be driven to move in the conveying direction.

Description

太陽能板移動加熱裝置Solar panel mobile heating device

本新型是有關於一種固體廢物之處理,特別是指一種用來處理太陽能板回收的太陽能板移動加熱裝置。The present invention relates to the treatment of solid waste, especially a solar panel mobile heating device for processing solar panel recycling.

太陽能發電是全球目前主要的再生能源,無需燃料且能維持環境永續發展。太陽能板主要是在太陽能電池模組夾入上下兩層的乙烯醋酸乙烯酯膠 (EVA),並以玻璃板和絶緣背板封裝形成的一種複合材結構。由於太陽能板含有感電元件和有毒物質,易產生外洩或污染等問題,要如何處理廢棄太陽能板是目前很緊迫的課題。Solar power generation is currently the world's main renewable energy source, requiring no fuel and maintaining sustainable environmental development. The solar panel is mainly a composite structure formed by sandwiching two layers of ethylene vinyl acetate (EVA) on the solar cell module and encapsulating it with a glass plate and an insulating backplane. Since solar panels contain electro-sensitive components and toxic substances, which are prone to leakage or pollution, how to deal with abandoned solar panels is currently a pressing issue.

參閱圖1與圖2,以日本特許第6271686號公報為例的一種太陽能模組回收系統1,包括一用來載送一太陽能模組100的滾輪組11、一位於該滾輪組11前段的切刀裝置12、一位於該滾輪組11中段的刮刀裝置13,及數支位於該切刀裝置12與該刮刀裝置13之間的紅外線加熱管14。該滾輪組11具有多組上下相向轉動的滾輪111,透過一馬達15帶動數個互相嚙合的齒輪16來帶動該等滾輪111旋轉,進而能將該太陽能模組100載送至該切刀裝置12及該刮刀裝置13進行預切割與切斷作業,並在切斷作業前,先利用該等紅外線加熱管14對該太陽能模組100加熱,便於讓該刮刀裝置13順利將該太陽能模組100的電池模組與絕緣背板同時自玻璃板刮除剝離,便於下一階段的回收作業。Referring to FIGS. 1 and 2, a solar module recycling system 1 exemplified by Japanese Patent No. 6271686 includes a roller set 11 for carrying a solar module 100, and a cut located at the front of the roller set 11 The knife device 12, a scraper device 13 located in the middle of the roller set 11, and several infrared heating tubes 14 located between the knife device 12 and the scraper device 13. The roller set 11 has a plurality of rollers 111 that rotate upward and downward. A motor 15 drives a plurality of intermeshing gears 16 to drive the rollers 111 to rotate, and then the solar module 100 can be carried to the cutter device 12 And the scraper device 13 performs pre-cutting and cutting operations, and before the cutting operation, the infrared heating tubes 14 are used to heat the solar module 100 to facilitate the scraper device 13 to smoothly The battery module and the insulating back sheet are scraped off from the glass plate at the same time, which is convenient for the next stage of recovery operation.

由於該太陽能模組100各組件的阻氧性、耐化性皆相當優異,要讓各組件互相分離的難度頗高,本案申請人基於精益求精的精神,研發出一種用來承載運送廢棄太陽能板且結構創新的太陽能板移動加熱裝置。Due to the excellent oxygen resistance and chemical resistance of each component of the solar module 100, it is difficult to separate the components from each other. Based on the spirit of excellence, the applicant in this case has developed a method for carrying and transporting waste solar panels and Innovative solar panel mobile heating device.

因此,本新型之目的,即在提供一種結構創新的太陽能板移動加熱裝置。Therefore, the purpose of the present invention is to provide a solar panel mobile heating device with innovative structure.

於是,本新型太陽能板移動加熱裝置,適用於承載一太陽能板,該太陽能板移動加熱裝置包含一滑移單元及一加熱台單元。Therefore, the novel solar panel mobile heating device is suitable for carrying a solar panel. The solar panel mobile heating device includes a sliding unit and a heating table unit.

該滑移單元包括數個沿一輸送方向間隔設置的轉動件,每一轉動件可繞自身軸線自由轉動,由該等轉動件形成一適用於承載該太陽能板的運送面。該加熱台單元包括一可沿一頂底方向上下移動且能沿該輸送方向移動的加熱台,該頂底方向實質上垂直於該輸送方向,該加熱台適用於對該太陽能板加熱且具有一板體,及形成於該板體的至少一推塊。藉由該加熱台朝下移動至該板體鄰近於該太陽能板且該至少一推塊接觸該太陽能板,而能帶動該太陽能板沿該輸送方向移動。The sliding unit includes several rotating members spaced along a conveying direction, each rotating member can freely rotate around its own axis, and the rotating members form a transport surface suitable for carrying the solar panel. The heating table unit includes a heating table movable up and down along a top-bottom direction and movable in the conveying direction. The top-bottom direction is substantially perpendicular to the conveying direction. The heating table is suitable for heating the solar panel and has a A plate body, and at least one push block formed on the plate body. By moving the heating table downward until the panel body is adjacent to the solar panel and the at least one push block contacts the solar panel, the solar panel can be driven to move in the conveying direction.

本新型之功效在於:藉由該加熱台朝下移動至該板體鄰近於該太陽能板且該至少一推塊接觸該太陽能板,在利用該至少一推塊推動該太陽能板沿該輸送方向移動的過程中,該加熱台能對該太陽能板持續加熱,便於回收作業的進行。The effect of the present invention lies in that the heating table moves downwards until the plate body is adjacent to the solar panel and the at least one push block contacts the solar panel, and the at least one push block is used to push the solar panel to move in the conveying direction During the process, the heating platform can continuously heat the solar panel, which is convenient for the recovery operation.

參閱圖3至圖5,本新型太陽能板移動加熱裝置的一實施例,適用於承載一太陽能板9,該太陽能板移動加熱裝置包含一滑移單元2及一加熱台單元3。3 to 5, an embodiment of the novel solar panel mobile heating device is suitable for carrying a solar panel 9. The solar panel mobile heating device includes a sliding unit 2 and a heating table unit 3.

該滑移單元2包括兩側板21、數滑移件22及數轉動件23。該等側板21沿一橫方向W間隔設置,每一側板21沿一輸送方向L延伸,該輸送方向L與該橫方向W實質上互相垂直。該等滑移件22沿該輸送方向L間隔設置於該等側板21的後半部。較佳地,每一滑移件22由兩個可繞自身軸線自由轉動的滾軸221組合而成,且每一滑移件22的該等滾軸221分別可轉動地設置於該等側板21,每一滑移件22的該等滾軸221之間形成有一間隙D,該間隙D在該橫方向W的距離大於每一滾軸221的長度,該間隙D可供一入料裝置伸入以將該太陽能板9自動送入該滑移單元2。該等轉動件23沿該輸送方向L間隔設置於該等側板21的前半部。每一轉動件23可繞自身軸線自由轉動,每一轉動件23可轉動地設置於該等側板21,由該等滑移件22與該等轉動件23形成一用來承載該太陽能板9的運送面20。該等轉動件23與該等滾軸221均是一種無動力滾輪。The sliding unit 2 includes two side plates 21, a sliding member 22 and a rotating member 23. The side plates 21 are spaced apart along a lateral direction W, and each side plate 21 extends along a conveying direction L, which is substantially perpendicular to the lateral direction W. The sliding members 22 are spaced apart in the rear half of the side plates 21 along the conveying direction L. Preferably, each sliding member 22 is composed of two rollers 221 that can freely rotate around its own axis, and the rollers 221 of each sliding member 22 are respectively rotatably disposed on the side plates 21 , A gap D is formed between the rollers 221 of each sliding member 22, the distance of the gap D in the lateral direction W is greater than the length of each roller 221, the gap D can be inserted into a feeding device In order to automatically feed the solar panel 9 into the sliding unit 2. The rotating members 23 are arranged at intervals in the front half of the side plates 21 along the conveying direction L. Each rotating member 23 can freely rotate around its own axis, and each rotating member 23 is rotatably disposed on the side plates 21. The sliding members 22 and the rotating members 23 form a support for the solar panel 9.运面20。 20. The rotating members 23 and the rollers 221 are both a kind of unpowered rollers.

參閱圖3、圖4與圖6,該加熱台單元3包括一支撐架30、一加熱台31、一升降機構32及一平移機構33。該支撐架30沿一頂底方向H架高於該滑移單元2的頂側且具有兩條在該橫方向W相間隔的導軌301,該等導軌301與該滑移單元2沿該輸送方向L同向延伸。該加熱台31可操作地設置於該支撐架30且可沿該頂底方向H上下移動且能沿該輸送方向L移動,該頂底方向H、該輸送方向L與該橫方向W實質上互相垂直。該加熱台31適用於對該太陽能板9加熱,該加熱台31具有一板體311、形成於該板體311的至少一推塊312,及數加熱元件313。如圖4所示,本實施例的該推塊312數量為三,且分別設置於左、中、右三個位置,每一推塊312具有一用來抵靠於該太陽能板9的一側邊91的推抵面3121,因此,推動效果較佳。Referring to FIGS. 3, 4 and 6, the heating table unit 3 includes a support frame 30, a heating table 31, a lifting mechanism 32 and a translation mechanism 33. The supporting frame 30 is higher than the top side of the sliding unit 2 along a top-bottom direction H and has two guide rails 301 spaced apart in the lateral direction W. The guide rails 301 and the sliding unit 2 are along the conveying direction L extends in the same direction. The heating table 31 is operably disposed on the support frame 30 and can move up and down along the top-bottom direction H and can move along the conveying direction L, the top-bottom direction H, the conveying direction L and the lateral direction W are substantially mutually vertical. The heating platform 31 is suitable for heating the solar panel 9. The heating platform 31 has a plate body 311, at least one push block 312 formed on the plate body 311, and heating elements 313. As shown in FIG. 4, the number of the pushing blocks 312 in this embodiment is three, and they are respectively disposed at three positions of left, center, and right. Each pushing block 312 has a side for abutting against the solar panel 9 The edge 91 pushes against the surface 3121, so the pushing effect is better.

參閱圖5、圖6與圖7,該板體311具有在該頂底方向H反向設置的一頂面3111與一底面3112,及連接於該頂面3111與該底面3112的兩端面3113,該等端面3113在該輸送方向L反向設置。每一推塊312由該底面3112朝下延伸且較佳地還延伸至該板體311的其中一該端面3113,且每一推塊312的推抵面3121反向於其中一該端面3113,更佳地,該等推塊312與該板體311是由導熱良好的金屬材質一體成型。但在其他變化例中,該推塊312的數量也能為一、二或四以上,或每一推塊312並未延伸至該板體311的其中一該端面3113,都同樣具有能推動該太陽能板9的作用,不以此為限。該板體311還具有數個相間隔且分別供該等加熱元件313安裝的容孔3114,在本實施例中,該等容孔3114在該輸送方向L上間隔設置,且每一加熱元件313是一種加熱管,利用該等加熱元件313能使該加熱台31對該太陽能板9加熱,但在其他變化例中,該等加熱元件313也能是加熱線圈或薄膜加熱片。Referring to FIGS. 5, 6 and 7, the board 311 has a top surface 3111 and a bottom surface 3112 disposed in the top-bottom direction H reversely, and two end surfaces 3113 connected to the top surface 3111 and the bottom surface 3112, The end surfaces 3113 are reversely arranged in the conveying direction L. Each pushing block 312 extends downward from the bottom surface 3112 and preferably extends to one of the end surfaces 3113 of the plate body 311, and the pushing surface 3121 of each pushing block 312 is opposite to one of the end surfaces 3113. More preferably, the push blocks 312 and the plate body 311 are integrally formed of a metal material with good thermal conductivity. However, in other variations, the number of the pushing blocks 312 can also be one, two, or more than four, or each pushing block 312 does not extend to one of the end surfaces 3113 of the plate 311, which also has the ability to push the The function of the solar panel 9 is not limited to this. The plate body 311 also has a plurality of spaced-apart holes 3114 for mounting the heating elements 313 respectively. In this embodiment, the holes 3114 are spaced apart in the conveying direction L, and each heating element 313 It is a kind of heating tube, and the heating elements 31 can be used to heat the solar panel 9 by using the heating elements 313. However, in other variations, the heating elements 313 can also be heating coils or thin film heaters.

參閱圖3、圖4與圖6,該升降機構32設置於該支撐架30且用來帶動該加熱台31沿該頂底方向H上下移動,在本實施例中,該升降機構32是一種馬達與螺桿的組合。該平移機構33設置於該等導軌301且用來帶動該升降機構32與該加熱台31沿該等導軌301移動,在本實施例中,該平移機構33是一種馬達與齒輪齒條的組合。Referring to FIGS. 3, 4 and 6, the lifting mechanism 32 is provided on the support frame 30 and is used to drive the heating table 31 to move up and down along the top-bottom direction H. In this embodiment, the lifting mechanism 32 is a motor Combination with screw. The translation mechanism 33 is disposed on the guide rails 301 and used to drive the lifting mechanism 32 and the heating platform 31 to move along the guide rails 301. In this embodiment, the translation mechanism 33 is a combination of a motor and a rack and pinion.

參閱圖3、圖6與圖8,藉由該升降機構32帶動該加熱台31沿該頂底方向H朝下移動至該板體311的底面3112貼靠於該太陽能板9且該等推塊312的該等推抵面3121接觸該太陽能板9的側邊91,再利用該平移機構33帶動該升降機構32與該加熱台31同步沿該輸送方向L移動,進而能推動該太陽能板9沿該輸送方向L移動。3, 6 and 8, the lifting mechanism 32 drives the heating table 31 to move downward along the top-bottom direction H to the bottom surface 3112 of the plate body 311 abutting against the solar panel 9 and the push blocks The pushing surfaces 3121 of 312 contact the side 91 of the solar panel 9, and then use the translation mechanism 33 to drive the lifting mechanism 32 and the heating table 31 to move along the conveying direction L simultaneously, which can push the solar panel 9 along The conveyance direction L moves.

本新型藉由該加熱台31的該等推塊312推著該太陽能板9一起沿該輸送方向L移動,該加熱台31始終能保持與該太陽能板9直接接觸的加熱狀態,因此,加熱效果較佳。In the present invention, the pushing blocks 312 of the heating platform 31 push the solar panel 9 to move along the conveying direction L. The heating platform 31 can always maintain the heating state in direct contact with the solar panel 9. Therefore, the heating effect Better.

在本實施例的其他變化例中,能夠省略該支撐架30並使該升降機構32與該平移機構33改用壓缸,或者採用鏈條輪、皮帶輪或其他傳動機構,同樣能達成驅動該加熱台31沿該頂底方向H上下移動與沿該輸送方向L移動的相同作用。In other variations of this embodiment, the support frame 30 can be omitted and the lifting mechanism 32 and the translation mechanism 33 can be replaced with pressure cylinders, or chain wheels, pulleys, or other transmission mechanisms can be used to drive the heating platform. 31 Moving up and down along the top-bottom direction H has the same effect as moving along the conveying direction L.

綜上所述,藉由該加熱台31朝下移動至該板體311鄰近於該太陽能板9且該等推塊312接觸該太陽能板9,便於將該太陽能板9自動載送至各工作站進行回收作業,且在利用該等推塊312推動該太陽能板9沿該輸送方向L移動的過程中,該加熱台31能對該太陽能板9持續加熱,加熱效果較佳。因此,確實能達成本新型之目的。In summary, by moving the heating table 31 downward to the plate body 311 adjacent to the solar panel 9 and the push blocks 312 contacting the solar panel 9, it is convenient to automatically carry the solar panel 9 to each workstation During the recycling operation, and during the movement of the solar panel 9 along the conveying direction L by the pushing blocks 312, the heating platform 31 can continuously heat the solar panel 9 and the heating effect is better. Therefore, it can indeed achieve the purpose of new cost.

惟以上所述者,僅為本新型之實施例而已,當不能以此限定本新型實施之範圍,凡是依本新型申請專利範圍及專利說明書內容所作之簡單的等效變化與修飾,皆仍屬本新型專利涵蓋之範圍內。However, the above are only examples of the new model, and the scope of implementation of the new model cannot be limited by this. Any simple equivalent changes and modifications made according to the patent application scope and patent specification content of the new model are still classified as Within the scope of this new patent.

2:滑移單元 20:運送面 21:側板 22:滑移件 221:滾軸 23:轉動件 3:加熱台單元 30:支撐架 301:導軌 31:加熱台 311:板體 3111:頂面 3112:底面 3113:端面 3114:容孔 312:推塊 3121:推抵面 313:加熱元件 32:升降機構 33:平移機構 9:太陽能板 91:側邊 D:間隙 H:頂底方向 L:輸送方向 W:橫方向 2: Sliding unit 20: Delivery surface 21: side panel 22: Slip piece 221: roller 23: Rotating parts 3: heating table unit 30: Support frame 301: rail 31: Heating table 311: board body 3111: top surface 3112: Underside 3113: end face 3114: Tolerance 312: Push block 3121: Push to face 313: Heating element 32: Lifting mechanism 33: translation mechanism 9: Solar panel 91: Side D: clearance H: top-bottom direction L: conveying direction W: horizontal direction

本新型之其他的特徵及功效,將於參照圖式的實施方式中清楚地呈現,其中: 圖1是一示意圖,說明日本特許第6271686號公報的一種太陽能電池模組的回收裝置; 圖2是一示意圖,說明該太陽能電池模組的回收裝置的一馬達帶動數齒輪以連動數輸送輥相向轉動; 圖3是本新型太陽能板移動加熱裝置的一實施例適用於承載一太陽能板的一示意圖; 圖4是該實施例的一側視圖; 圖5是一立體分解圖,說明該實施例的一滑移單元與一加熱台用於承載該太陽能板; 圖6是一類似於圖3的視圖,說明該實施例的一升降機構帶動該加熱台下降; 圖7是該實施例沿著一輸送方向剖切的一不完整的剖視圖;及 圖8是一類似於圖6的視圖,說明該實施例的一平移機構帶動該升降機構與該加熱台沿該輸送方向移動。 Other features and functions of the present invention will be clearly presented in the embodiments with reference to the drawings, in which: FIG. 1 is a schematic diagram illustrating a solar cell module recovery device of Japanese Patent No. 6271686; 2 is a schematic diagram illustrating that a motor of the recovery device of the solar cell module drives the number gear to rotate the numbered conveying rollers oppositely; 3 is a schematic diagram of an embodiment of the new solar panel mobile heating device suitable for carrying a solar panel; Figure 4 is a side view of the embodiment; FIG. 5 is an exploded perspective view illustrating a sliding unit and a heating table of the embodiment for supporting the solar panel; 6 is a view similar to FIG. 3, illustrating that a lifting mechanism of the embodiment drives the heating table down; 7 is an incomplete cross-sectional view of the embodiment taken along a conveying direction; and FIG. 8 is a view similar to FIG. 6, illustrating that a translation mechanism of the embodiment drives the lifting mechanism and the heating table to move in the conveying direction.

2:滑移單元 2: Sliding unit

20:運送面 20: Delivery surface

21:側板 21: side panel

22:滑移件 22: Slip piece

23:轉動件 23: Rotating parts

3:加熱台單元 3: heating table unit

30:支撐架 30: Support frame

301:導軌 301: rail

31:加熱台 31: Heating table

311:板體 311: board body

3111:頂面 3111: top surface

3112:底面 3112: Underside

312:推塊 312: Push block

3121:推抵面 3121: Push to face

313:加熱元件 313: Heating element

32:升降機構 32: Lifting mechanism

33:平移機構 33: translation mechanism

9:太陽能板 9: Solar panel

91:側邊 91: Side

H:頂底方向 H: top-bottom direction

L:輸送方向 L: conveying direction

Claims (10)

一種太陽能板移動加熱裝置,適用於承載一太陽能板,該太陽能板移動加熱裝置包含: 一滑移單元,包括數個沿一輸送方向間隔設置的轉動件,每一轉動件可繞自身軸線自由轉動,由該等轉動件形成一適用於承載該太陽能板的運送面;及 一加熱台單元,包括一可沿一頂底方向上下移動且能沿該輸送方向移動的加熱台,該頂底方向實質上垂直於該輸送方向,該加熱台適用於對該太陽能板加熱且具有一板體,及形成於該板體的至少一推塊,藉由該加熱台朝下移動至該板體鄰近於該太陽能板且該至少一推塊接觸該太陽能板,而能帶動該太陽能板沿該輸送方向移動。 A solar panel mobile heating device is suitable for carrying a solar panel. The solar panel mobile heating device includes: A sliding unit, including a plurality of rotating members arranged at intervals in a conveying direction, each rotating member can freely rotate around its own axis, and the rotating members form a transport surface suitable for carrying the solar panel; and A heating table unit includes a heating table movable up and down in a top-bottom direction and movable in the conveying direction, the top-bottom direction is substantially perpendicular to the conveying direction, the heating table is suitable for heating the solar panel and has A plate body and at least one push block formed on the plate body are moved downward by the heating platform to the plate body adjacent to the solar panel and the at least one push block contacts the solar panel to drive the solar panel Move in this conveying direction. 如請求項1所述的太陽能板移動加熱裝置,其中,該加熱台的板體具有在該頂底方向反向設置的一頂面與一底面,及連接於該頂面與該底面的兩端面,該等端面在該輸送方向反向設置,該至少一推塊形成於該底面且具有一用來抵靠於該太陽能板的一側邊的推抵面。The solar panel mobile heating device according to claim 1, wherein the plate body of the heating table has a top surface and a bottom surface which are reversely arranged in the top and bottom directions, and both end surfaces connected to the top surface and the bottom surface The end faces are oppositely arranged in the conveying direction, the at least one pushing block is formed on the bottom face and has a pushing face for abutting against one side of the solar panel. 如請求項2所述的太陽能板移動加熱裝置,其中,該至少一推塊還延伸至該板體的其中一該端面,且該至少一推塊的推抵面反向於其中一該端面。The solar panel mobile heating device according to claim 2, wherein the at least one pushing block further extends to one of the end surfaces of the panel body, and the pushing surface of the at least one pushing block is opposite to one of the end surfaces. 如請求項1所述的太陽能板移動加熱裝置,其中,該板體還具有數個相間隔的容孔,該加熱台單元還包括數個分別安裝於該等容孔內的加熱元件。The solar panel mobile heating device according to claim 1, wherein the panel body further has a plurality of spaced-apart holes, and the heating table unit further includes a plurality of heating elements respectively installed in the holes. 如請求項4所述的太陽能板移動加熱裝置,其中,該等容孔在該輸送方向上間隔設置。The solar panel moving heating device according to claim 4, wherein the receiving holes are arranged at intervals in the conveying direction. 如請求項1所述的太陽能板移動加熱裝置,其中,該加熱台單元包括三個間隔設置的該推塊。The solar panel mobile heating device according to claim 1, wherein the heating table unit includes three push blocks arranged at intervals. 如請求項1所述的太陽能板移動加熱裝置,其中,該滑移單元還包括兩側板,及數個沿該輸送方向間隔設置於該等側板的滑移件,該等滑移件位於該等側板的後半部,該等轉動件位於該等側板的前半部,每一滑移件由兩個可繞自身軸線轉動的滾軸組合而成,且每一滑移件的該等滾軸分別可轉動地設置於該等側板,每一轉動件可轉動地設置於該等側板,由該等滑移件與該等轉動件形成該運送面。The solar panel moving heating device according to claim 1, wherein the sliding unit further includes two side plates, and a plurality of sliding pieces arranged at intervals on the side plates along the conveying direction, and the sliding pieces are located in the In the rear half of the side plate, the rotating parts are located in the front half of the side plates. Each sliding part is composed of two rollers that can rotate around its own axis, and the rollers of each sliding part can be respectively Rotatingly disposed on the side plates, each rotating member is rotatably disposed on the side plates, and the conveying surface is formed by the sliding members and the rotating members. 如請求項7所述的太陽能板移動加熱裝置,其中,每一滑移件的該等滾軸之間形成有一間隙,且該間隙大於每一滾軸的長度。The solar panel moving heating device according to claim 7, wherein a gap is formed between the rollers of each sliding member, and the gap is greater than the length of each roller. 如請求項1所述的太陽能板移動加熱裝置,其中,該滑移單元的每一轉動件是一種無動力滾輪。The solar panel moving heating device according to claim 1, wherein each rotating part of the sliding unit is an unpowered roller. 如請求項1所述的太陽能板移動加熱裝置,其中,該加熱台單元還包括一用來帶動該加熱台沿該頂底方向移動的升降機構,及一連接於該升降機構且用來帶動該升降機構與該加熱台沿該輸送方向移動的平移機構。The solar panel moving heating device according to claim 1, wherein the heating platform unit further includes a lifting mechanism for driving the heating platform to move in the top-bottom direction, and a lifting mechanism connected to the lifting mechanism and for driving the heating platform A translation mechanism for the lifting mechanism and the heating table to move in the conveying direction.
TW109201777U 2020-02-18 2020-02-18 Solar panel movable heating device TWM597538U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI819933B (en) * 2022-12-23 2023-10-21 財團法人工業技術研究院 Thermal decomposition device and thermal decomposition method applied thereto

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI819933B (en) * 2022-12-23 2023-10-21 財團法人工業技術研究院 Thermal decomposition device and thermal decomposition method applied thereto

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