WO2012113097A1 - 具可塑性太阳能集热板结构 - Google Patents

具可塑性太阳能集热板结构 Download PDF

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Publication number
WO2012113097A1
WO2012113097A1 PCT/CN2011/000282 CN2011000282W WO2012113097A1 WO 2012113097 A1 WO2012113097 A1 WO 2012113097A1 CN 2011000282 W CN2011000282 W CN 2011000282W WO 2012113097 A1 WO2012113097 A1 WO 2012113097A1
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WO
WIPO (PCT)
Prior art keywords
heat collecting
solar collector
collecting plate
manifold
water
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Application number
PCT/CN2011/000282
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English (en)
French (fr)
Inventor
陈文豪
Original Assignee
Chen Wen-Hao
Priority date (The priority date 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 date listed.)
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Publication date
Application filed by Chen Wen-Hao filed Critical Chen Wen-Hao
Priority to PCT/CN2011/000282 priority Critical patent/WO2012113097A1/zh
Priority to DE212011100202U priority patent/DE212011100202U1/de
Priority to US14/001,172 priority patent/US20140034043A1/en
Publication of WO2012113097A1 publication Critical patent/WO2012113097A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S10/00Solar heat collectors using working fluids
    • F24S10/70Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits
    • F24S10/73Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits the tubular conduits being of plastic material
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S10/00Solar heat collectors using working fluids
    • F24S10/70Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits
    • F24S10/72Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits the tubular conduits being integrated in a block; the tubular conduits touching each other
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S10/00Solar heat collectors using working fluids
    • F24S10/70Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits
    • F24S10/75Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits with enlarged surfaces, e.g. with protrusions or corrugations
    • F24S10/753Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits with enlarged surfaces, e.g. with protrusions or corrugations the conduits being parallel to each other
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S40/00Safety or protection arrangements of solar heat collectors; Preventing malfunction of solar heat collectors
    • F24S40/70Preventing freezing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S60/00Arrangements for storing heat collected by solar heat collectors
    • F24S60/30Arrangements for storing heat collected by solar heat collectors storing heat in liquids
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S80/00Details, accessories or component parts of solar heat collectors not provided for in groups F24S10/00-F24S70/00
    • F24S80/30Arrangements for connecting the fluid circuits of solar collectors with each other or with other components, e.g. pipe connections; Fluid distributing means, e.g. headers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S90/00Solar heat systems not otherwise provided for
    • F24S90/10Solar heat systems not otherwise provided for using thermosiphonic circulation
    • 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
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/44Heat exchange systems

Definitions

  • the invention relates to a plastic solar collector plate structure which is installed on a solar water heater to heat the water flow by utilizing the heat of the sun, and more particularly to a solar heat collecting plate with elastic pre-existing between the heat collecting manifolds. Background technique
  • the solar collector plate is generally formed as shown in FIG. 7.
  • the heat collecting plate 30 is integrally formed by a plurality of heat collecting manifolds 31, a water inlet pipe 32 and an outlet pipe 33 by plastic blow molding.
  • the heat collecting manifolds 31 can be arranged longitudinally between the inlet and outlet pipes 3233, and communicate with the inlet and outlet pipes 3233, and because the heat collecting plates 30 are integrally blow molded, each heat collecting portion can be made.
  • the tubes 31 are connected in series by ribs 34.
  • the heat collecting plate 30 is mounted on the solar water heater, so that the cold water to be heated can be dispersed and drained from the water inlet pipe 32 into the heat collecting manifolds 31, and when it slowly rises upward, it can absorb the sun.
  • the heat is used to heat the cold water, and the heated hot water can be discharged from the water outlet pipe 33 for storage in the water storage tank for use.
  • the heat collecting manifold 31 of the heat collecting plate 30 is formed by plastic blow molding, and is slightly elastic, but The sections of the heat collecting manifold 31 are all provided in a smooth circular shape, so that the inner wall cannot effectively provide the force, and a clear force receiving surface is not generated, and the ribs 34 connected between the heat collecting manifolds 31 are also When the water flow in the heat collecting manifold 31 is heated to a certain temperature to cause the heat collecting and contracting of the heat collecting manifold 31, the heat collecting manifold 31 may not expand smoothly because of the expansion.
  • the problem of easy cracking or popping from the pipe wall is as shown in Fig. 8, which makes the existing heat collecting plate 30 have a short life.
  • the heat collecting manifold of the existing solar collector plate has a smooth circular section, so that the inner wall cannot effectively provide the force, let alone produce a clear force surface. Therefore, when the water flow in the heat collecting manifold is heated to a certain temperature to cause thermal expansion and contraction of the heat collecting manifold, the heat collecting manifold may be easily detached from the pipe wall due to the inability to smoothly expand outward or The problem of breaking open, this is the technical problem to be solved.
  • the present invention is a plastic solar collector plate structure, which is integrally formed by a plurality of heat collecting manifolds, a water inlet pipe and a water outlet pipe by plastic blow molding.
  • the heat collecting manifolds can be arranged longitudinally between the inlet and outlet pipes, and communicate with the inlet and outlet pipes, and because the heat collecting plates are integrally blow molded, each collector manifold can be connected by ribs.
  • the heat collecting manifolds of the heat collecting plates are directly arranged in a hexagonal or octagonal shape which is arranged in a straight surface, so that each straight surface can be a force receiving portion, and the water collecting pipe of the heat collecting plate
  • the side ends are closed and closed by the transition of the connecting pipe, and can be outwardly connected from the most lateral side of the collecting manifold, and the other side of each collecting manifold is formed on one side of the rib.
  • the recessed portion is configured such that the other side surface can be relatively convex to form an elastic portion, and the recessed portion and the elastic portion are both formed in a V shape, thereby obtaining a plastic solar heat collecting plate structure.
  • the invention has a plastic solar heat collecting plate structure, and the heat collecting plate is integrally formed by a plurality of heat collecting manifolds, a water inlet pipe and a water outlet pipe by plastic blow molding, and each heat collecting manifold is Connected by the helper, where:
  • the outer circumference of the heat collecting manifold is arranged in a straight ring shape so that each of the straight faces can be a force receiving portion, and a concave portion is formed on one side of each of the heat collecting manifolds on one side of the heat collecting manifold. In order to make the other side relatively convex, each forming a resilient portion.
  • the plastic solar collector plate structure is characterized in that the recessed portion and the elastic portion are V-shaped.
  • the structure of the plastic solar collector plate is characterized in that the force receiving portion of the outer circumference of the heat collecting manifold is arranged in a hexagonal shape or an octagonal shape.
  • the structure has a plastic solar heat collecting plate structure, wherein the side end of the water outlet pipe of the heat collecting plate is closed, and can be opened from the side to the outside through the turning of the connecting pipe.
  • the structure has a plastic solar heat collecting plate structure, wherein the heat collecting plate is sleeved with a joint.
  • the plastic solar collector plate structure is characterized in that the outer periphery of the joint is provided with an inverted tooth portion.
  • the utility model has a plastic solar heat collecting plate structure, wherein the heat collecting plate is placed in a frame of the solar water heater, and is connected with the water storage tube, and a support leg is arranged at a bottom of the frame body, The hot plate is placed at the end of the water storage tube and the outlet pipe higher than the other end of the water inlet pipe, and is arranged in an oblique manner.
  • the invention provides a plastic solar heat collecting plate structure, wherein the outer circumference of the heat collecting manifold is formed in a hexagonal or octagonal shape which is arranged in a straight surface, so that each of the straight faces can be a force receiving portion, so if heat is generated during heating,
  • each of the force receiving portions can be used to provide internal pressure to apply the support, and the elasticity of the elastic portion of the heat collecting plate can be compressed and deformed, so that each side wall of the heat collecting manifold can be outwardly
  • the expansion deformation can avoid the problem that the heat collecting manifold is easily broken or burst due to the internal energy and the pressure cannot be vented, so that the service life of the heat collecting plate of the present invention can be further extended and durable in use.
  • Figure 1 is a perspective view of the heat collecting plate of the present invention
  • Figure 2 is a partial enlarged view of the circled portion of Figure 1 of the present invention.
  • Figure 3 is a cross-sectional view of the heat collecting plate of the present invention.
  • Figure 4 is a partial enlarged view of Figure 3 of the present invention.
  • Figure 5 is a state of use of the present invention.
  • Figure 6 is a thermal expansion deformation diagram of the heat collecting manifold of the present invention.
  • Figure 7 is a three-dimensional appearance of the existing structure
  • Figure 8 is a cracking state diagram of the existing collector manifold
  • Figure 9 is a partial enlarged view of the circled part in Figure 8.
  • Outlet pipe - 13 ribs one by one - 14
  • the collector plate 10 consists of multiple collector manifolds.
  • a water inlet pipe 12 and a water outlet pipe 13 are integrally formed by plastic blow molding, so that the heat collecting manifolds 11 can be longitudinally arranged between the inlet and outlet pipes 12 and 13 and with the inlet and outlet pipes.
  • each of the heat collecting manifolds 11 can be connected by the ribs 14, and the heat collecting manifolds 11 of the heat collecting plate 10 are
  • the outer circumference is directly formed into a hexagonal or octagonal shape which is arranged in a straight surface so that each of the straight faces can be a force receiving portion 111, and the side end of the water outlet pipe 13 of the heat collecting plate 10 is closed, and the connecting pipe is passed through the communicating pipe.
  • the turning of 15 can be made to pass outward from the top end of the second side of the heat collecting manifold 11, and on each side of each of the heat collecting manifolds 11, a recessed portion 141 is formed on one side of the rib 14 so as to
  • the other side surface may be relatively convex to form an elastic portion 142, and the concave portion 141 and the elastic portion 142 are both formed in a V shape.
  • the solar collector plate having plasticity of the present invention is mainly placed in the frame 20 of the solar water heater, and is connected with the water storage tube 21, and is also disposed at the bottom of the frame 20.
  • Supporting foot 22 so that the heat collecting plate 10 is provided with the water storage tank 21 and the water outlet
  • One end of the tube 13 is higher than the other end of the water inlet pipe 12, and is disposed in a diagonally disposed manner so that the cold water to be heated can be dispersed and drained from the water inlet pipe 12 into the respective heat collecting manifolds 11 by using the communication pipe principle of the water flow.
  • a joint 16 is disposed on the inlet and outlet holes of the water inlet pipe 12 and the most lateral two heat collecting manifolds 11.
  • the outer periphery of the joint 16 is provided with an inverted tooth portion 161 for utilizing the twisting of the inverted tooth portion 161. , can avoid the concern that the external water pipe is easy to fall off.
  • the outer circumference of the heat collecting manifold 11 is formed in a hexagonal or octagonal shape which is arranged in a straight surface, so that each of the straight faces can be a force receiving portion 111, so When the heating is caused by the phenomenon of heat expansion and contraction, the force receiving portion 111 can be used to provide internal pressure application, and the elasticity of the elastic portion 142 of the heat collecting plate 10 can be compressed and deformed.
  • Each side wall of the heat collecting manifold 11 is outwardly expanded and deformed as shown in Fig. 6. This relatively avoids the problem that the heat collecting manifold 11 is easily broken or burst due to internal energy and pressure cannot be vented.
  • the life of the heat collecting plate 10 of the present invention can be further extended, which is also more durable in use.
  • the present invention has indeed achieved a breakthrough structural design, and has improved creative content, while at the same time achieving industrial utilization and advancement, and the present invention is not found in any publication, and is also novel, when In accordance with the provisions of the relevant laws and regulations of the Patent Law, the patent application shall be filed according to law.

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  • Life Sciences & Earth Sciences (AREA)
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Description

具可塑性太阳能集热板结构
技术领域
本发明涉及安装在太阳能热水器上, 以利用太阳热度对水流进行加 热的具可塑性太阳能集热板结构, 尤指一种各集热歧管间具弹性预度的 太阳能集热板。 背景技术
目前常见的太阳能集热板, 多如图 7所示, 该集热板 30主要由多根 集热歧管 31、一入水管 32与一出水管 33以塑料吹塑的方式所一体成型 出, 使这些集热歧管 31均能纵向排列在入、 出水管 3233间, 并与入、 出水管 3233相通, 又因为集热板 30是一体吹塑而成, 故将能令每一集 热歧管 31间均以肋片 34而相接连。
在使用时,将集热板 30安装在太阳能热水器上, 让欲加热的冷水能 从入水管 32被分散引流到各集热歧管 31中, 当其缓慢向上流升时, 就 能吸收太阳的热度, 来将冷水加热, 该加热后的热水并能由出水管 33 流出, 以贮存在储水筒内备用。
然, 如上所述的现有结构于实际应用中仍存在有下述的问题点: 其 集热板 30的集热歧管 31虽以塑料吹塑而成, 而略具弹性, 但因为现有 集热歧管 31 的断面均设呈平顺的圆形, 而使其内壁无法有效的提供受 力, 更不会产生一明确的受力面, 而集热歧管 31间相连的肋片 34亦会 阻碍其扩张, 故当集热歧管 31 内的水流加热到一定温度, 使集热歧管 31产生热胀冷缩的现象时, 该集热歧管 31 即会因为无法顺利的往外膨 胀, 而有容易从管壁裂开或爆开的问题如图 8所示, 让该现有的集热板 30有使用寿命较短的缺憾。
所以,如何针对上述现有太阳能集热板所存在的缺点进行研发改良, 实为相关业界所需努力研发的目标, 本发明的发明人有鉴于此, 乃思及 创作的意念, 遂以多年的经验加以设计, 经多方探讨并试作样品试验, 及多次修正改良, 乃推出本发明。 发明内容
欲解决的技术问题点- 现有太阳能集热板的集热歧管的断面均设呈平顺的圆形, 而使其内 壁无法有效地提供受力, 更谈不上产生一明确的受力面, 故当集热歧管 内的水流加热到一定温度, 使集热歧管产生热胀冷缩的现象时, 该集热 歧管即会因为无法顺利地往外膨胀, 而容易从管壁裂开或爆开的问题, 此乃欲解决的技术问题点者。
解决问题的技术特点- 本发明是一种具可塑性太阳能集热板结构, 该集热板由多根集热歧 管、 一入水管及一出水管以塑料吹塑的方式所一体成型出, 使这些集热 歧管均能纵向排列在入、 出水管间, 并与入、 出水管相通, 且因为集热 板一体吹塑而成, 故能将每一集热歧管间以肋片相接连, 又集热板的各 集热歧管在吹塑时, 直接将其外周设呈直面环设的六角形或八角形状, 令每一直面均能成为一受力部, 集热板的出水管的侧端并封闭, 以通过 连通管的转折, 而能从最旁侧而集热歧管的顶端往外通设出, 另每一集 热歧管的两旁在肋片的其中一侧面上形成有一凹陷部, 以便另一侧面可 相对凸出, 以各形成一弹性部, 及该凹陷部与弹性部均设呈 V形状, 通 过此, 得到一种具可塑性太阳能集热板结构。
本发明一种具可塑性太阳能集热板结构,该集热板由多根集热歧管、 一入水管及一出水管以塑料吹塑的方式所一体成型出, 每一集热歧管间 并以助片相连, 其中:
该集热歧管的外周设呈直面环设状, 以便令每一直面均能成为一受 力部,而每一集热歧管的两旁在肋片的其中一侧面上则形成有一凹陷部, 以便令另一侧面可相对凸出, 各形成一弹性部。
所述的具可塑性太阳能集热板结构, 其中, 所述凹陷部与弹性部设 呈 V形状。
所述的具可塑性太阳能集热板结构, 其中, 所述集热歧管外周直面 环设的受力部设呈六角形或八角形状。
所述的具可塑性太阳能集热板结构, 其中, 所述集热板的出水管的 侧端是封闭, 通过连通管的转折, 而能从旁侧往外通设出。 所述的具可塑性太阳能集热板结构, 其中, 所述集热板上套设有接 头。
所述的具可塑性太阳能集热板结构, 其中, 所述接头外周设有倒齿 部。
所述的具可塑性太阳能集热板结构, 其中, 所述集热板置放在太阳 能热水器的框体内, 并与储水筒形成衔接的连通, 又在框体底部一方乃 设有支撑脚, 令集热板在设有储水筒与出水管的一端高过于另端的入水 管, 而呈一斜放形态设置。
对照先前技术的功效:
本发明提供具可塑性太阳能集热板结构, 其集热歧管外周设呈直面 环设的六角形或八角形状, 而令每一直面均能成为一受力部, 故在加热 若发生热涨冷缩的现象时, 即能利用该每一受力部来提供内部压力施加 撑抵, 再配合集热板弹性部可受力压缩变形的弹性, 就能令集热歧管的 每一边壁均往外扩张变形, 该相对能避免发生内部能量、 压力无法宣泄 所造成的集热歧管容易破裂或爆裂的问题, 让本发明的集热板的使用寿 命得以再被延长, 在使用上亦较耐用。 附图说明
图 1 : 是本发明集热板的立体外观图;
图 2: 是本发明图 1中画圈部分的局部放大图;
图 3: 是本发明集热板的剖面图;
图 4: 是本发明图 3的局部放大图;
图 5: 是本发明的使用状态图;
图 6: 是本发明集热歧管的热胀变形图;
图 7: 是现有结构的立体外观图;
图 8: 是现有集热歧管的裂开状态图;
图 9: 是图 8中画圈部分的局部放大图。
【主要元件符号说明】
本发明部分- 集热板 - 10 集热歧管- 11
受力部 - 111 入水管一- 12
出水管 - 13 肋片一一 - 14
凹陷部 - 141 弹性部一- 142
连通管 - 15 接头—— 16
倒齿部 - 161
框体 -20 储水筒一- 21
支撑脚 -22
现有部分:
集热板——― -30 集热歧管- 31
入水管 -32 出水管一- 33
肋片 -34 具体实施方式
为能对本发明的目的、 特征及功效能够有更进一步的了解与认识, 以下兹请配合【图式简单说明】列举实施例, 详述说明如后:
首先, 先请由图 1至图 4所示观之, 该集热板 10 由多根集热歧管
11、 一入水管 12及一出水管 13以塑料吹塑的方式所一体成型出, 使这 些集热歧管 11均能纵向排列在入、 出水管 12、 13间, 并与入、 出水管
12、 13相通, 且因为集热板 10是一体吹塑而成, 故将能令每一集热歧 管 11间以肋片 14相接连, 又集热板 10的各集热歧管 11在吹塑时, 直 接将其外周设呈直面环设的六角形或八角形状, 以便令每一直面均能成 为一受力部 111, 集热板 10的出水管 13的侧端封闭, 通过连通管 15的 转折,而能从最旁侧二集热歧管 11的顶端往外通设出, 另每一集热歧管 11的两旁在肋片 14的其中一侧面上形成有一凹陷部 141,以便令另一侧 面可相对凸出, 以各形成一弹性部 142, 及该凹陷部 141 与弹性部 142 均设呈 V形状。
续请由图 5所示观之, 本发明具可塑性的太阳能集热板主要置放在 太阳能热水器的框体 20内, 并与储水筒 21形成衔接的连通结构, 又在 框体 20底部一方设有支撑脚 22, 令集热板 10在设有储水筒 21与出水 管 13的一端高过于另端的入水管 12, 而呈一斜放形态设置, 以便利用 水流的连通管原理,让欲加热的冷水能从入水管 12被分散引流到各集热 歧管 11中,当其缓慢向上流升时,就能吸收太阳的热度,来将冷水加热, 该加热后的热水能经由出水管 13暨连通管 15, 而从最旁侧的二集热歧 管 11流出, 以贮存在储水筒 21内备用。
另, 入水管 12与最旁侧二集热歧管 11的入、 出水孔处均套设有一 接头 16, 该接头 16外周并设有倒齿部 161, 以便利用该倒齿部 161的崁 合, 能避免外接上的水管有容易脱落下的顾虑产生。
通过上述具体实施例的结构, 可得到下述的效益: 其集热歧管 11 外周设呈直面环设的六角形或八角形状, 而令每一直面均能成为一受力 部 111, 故在加热若发生热涨冷缩的现象时, 即能利用该每一受力部 111 来提供内部压力施加撑抵,再配合集热板 10弹性部 142可受力压縮变形 的弹性, 就能令集热歧管 11 的每一边壁均往外扩张变形请同时由图 6 所示观之, 该相对能避免发生内部能量、 压力无法宣泄所造成的集热歧 管 11容易破裂或爆裂的问题, 让本发明的集热板 10的使用寿命得以再 被延长, 该在使用上亦较耐用。
综上所述, 本发明确实已达突破性的结构设计, 而具有改良的创作 内容, 同时又能够达到产业上的利用性与进步性, 且本发明未见于任何 刊物, 亦具新颖性, 当符合专利法相关法条的规定, 依法提出专利申请。
以上所述, 仅为本发明的一较佳实施例而已, 当不能以之限定本发 明实施的范围; 即大凡依本发明申请专利范围所作的均等变化与修饰, 皆应仍属本发明专利涵盖的范围内。

Claims

权 利 要 求
1、 一种具可塑性太阳能集热板结构, 该集热板由多根集热歧管、 一入水管及一出水管以塑料吹塑的方式所一体成型出, 每一集热歧管间 并以助片相连, 其特征在于:
集热歧管的外周设呈直面环设状, 以便令每一直面均能成为一受力 部, 而每一集热歧管的两旁在肋片的其中一侧面上则形成有一凹陷部, 以便令另一侧面可相对凸出, 各形成一弹性部。
2、 根据权利要求 1所述的具可塑性太阳能集热板结构, 其特征在 于, 所述凹陷部与弹性部设呈 V形状。
3、 根据权利要求 1所述的具可塑性太阳能集热板结构, 其特征在 于, 所述集热歧管外周直面环设的受力部设呈六角形或八角形状。
4、 根据权利要求 1所述的具可塑性太阳能集热板结构, 其特征在 于, 所述集热板的出水管的侧端是封闭, 通过连通管的转折, 而能从旁 侧往外通设出。
5、 根据权利要求 1所述的具可塑性太阳能集热板结构, 其特征在 于, 所述集热板上套设有接头。
6、 根据权利要求 5所述的具可塑性太阳能集热板结构, 其特征在 于, 所述接头外周设有倒齿部。
7、 根据权利要求 1所述的具可塑性太阳能集热板结构, 其特征在 于, 所述集热板置放在太阳能热水器的框体内, 并与储水筒形成衔接的 连通, 又在框体底部一方乃设有支撑脚, 令集热板在设有储水筒与出水 管的一端高过于另端的入水管, 而呈一斜放形态设置。
PCT/CN2011/000282 2011-02-23 2011-02-23 具可塑性太阳能集热板结构 WO2012113097A1 (zh)

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