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    • 2. 发明公开
    • 수직축풍력 발전기에 사용하는 수직축 날개들부(분)용기
    • 使用垂直轴风力涡轮机(VAWT)的垂直轴风叶部分
    • KR1020140102459A
    • 2014-08-22
    • KR1020130015779
    • 2013-02-14
    • 박광현박재만권영구
    • 박광현박재만권영구
    • F03D3/00F03D3/04F03D11/00F03D11/02
    • Y02E10/74Y02P70/523F03D3/02F03D3/005F03D3/0409F03D15/00
    • As a measure for maximally using wind forces in generation of power, a container for vertical axis wind blades in use for a vertical axis wind turbine in which two to five vertical-axis blades are installed inside a tubular container is suggested. In particular, the container for vertical axis wind blades suitable for blades of a small sized vertical axis wind turbine has a function of amplifying wind forces, and can generate excellent rotating power and show a high wind force utilizing efficiency as compared with blades of an existing vertical axis wind turbine. Further, because the vertical blades are installed within the container for vertical axis wind blades, both a user and the vertical axis blades are safe and thereby a portable size of small-sized wind turbine, that is, a portable vertical axis wind turbine can be manufactured, and vertical axis wind turbines of various power generation capacities can be manufactured according to the size and number of the vertical axis blades installed in the container for vertical axis wind blades.
    • 作为最大限度地在风力发电中使用风力的措施,建议使用用于垂直轴风力涡轮机的垂直轴风叶的容器,其中将两至五垂直轴叶片安装在管状容器内。 特别地,适用于小型立轴风力发电机叶片的垂直轴风叶的容器具有放大风力的功能,与现有的叶片相比,可以产生优良的旋转动力并且利用效率显示高的风力 垂直轴风力发电机。 此外,由于垂直叶片安装在用于垂直轴风叶的容器内,用户和垂直轴叶片都是安全的,因此小型风力涡轮机的便携式尺寸,即便携式垂直轴风力涡轮机可以是 可以根据安装在用于垂直轴风叶的容器中的垂直轴叶片的尺寸和数量来制造各种发电量的垂直轴风力发电机。
    • 3. 发明公开
    • 내부 풍속차이에 기인하는 내부 압력 강하를 고려한 날개들의 용기와 이 용기내부에 설치되는 복합수직축 날개들
    • 考虑到内部风速诱导的内部压力差异的风叶的风险和构成本案例的复杂的垂直轴风叶
    • KR1020130017770A
    • 2013-02-20
    • KR1020110080395
    • 2011-08-12
    • 박광현박재만권영구
    • 박광현박재만권영구
    • F03D3/04F03D11/00F03D3/02
    • Y02E10/74Y02E70/30F03D3/0463F03D3/005F03D3/02F05B2240/12F05B2240/211
    • PURPOSE: A wing container customized to an internal pressure drop caused by differences of internal wind speed and a composite vertical axis wing installed therein are provided to generate an expanded amplification effect for a wind force by the differences of internal pressure caused by an increase of wind speed by applying Bernoulli's principle. CONSTITUTION: A wings container and a composite vertical axis wing installed therein comprise the composite vertical wing which rotates clockwise and is composed of six straight vertical blades and installed in the inlet of the container. The composite vertical axis wing set up in the outlet in the container has a greater rotation radius and weight than a wing set up in the inlet. The speed of a wind current passing through the inside of the container of the wings is determined by Bernoulli's principle based on an inversed ratio of the size of the inlet area to the size of the outlet area. The speed of the wind current in the section of the outlet with the composite vertical axis wing installed, therefore, is faster than the speed of the wind current in the section of the inlet on which the composite vertical axis wing is installed. The wind current of the container flowed in to fill up the slight pressure difference of the inside is merged with the wind current of the inside of container through a slot(T(10)) which is set up on the lower wall of the container in which the composite vertical axis wing of the outlet is installed. The wind with a more powerful wind force, therefore, passes through the vertical axis wing on the outlet.
    • 目的:提供定制为内部风速差异和安装在其中的复合垂直轴翼引起的内部压降的翼形容器,以通过由风增加引起的内部压力差异,为风力产生扩大的放大效应 速度通过应用伯努利的原则。 构成:安装在其中的翼形容器和复合垂直轴翼包括顺时针旋转并由六个直立的垂直叶片组成的复合垂直翼,并安装在容器的入口中。 设在容器出口处的复合垂直轴翼具有比设在入口中的翼更大的旋转半径和重量。 通过机翼的容器内部的风流的速度由伯努利的原理决定,其基于入口面积的大小与出口面积的大小的反比。 因此,安装复合垂直轴翼的出口部分的风流速度比安装复合立轴机翼的入口部分的风流速度要快。 流入以填充内部的轻微压力差的容器的风流通过设置在容器的下壁上的槽(T(10))与容器内部的风流合并, 安装出口的复合垂直轴翼。 因此,具有更强大风力的风通过出口上的垂直轴翼。
    • 4. 发明公开
    • 풍력을 최대로 활용하는 수직축 날개들부분을 설계하는 방법
    • 垂直风叶叶片的设计方法最佳利用风能
    • KR1020140095389A
    • 2014-08-01
    • KR1020130008309
    • 2013-01-24
    • 박광현박재만권영구
    • 박광현박재만권영구
    • F03D3/00F03D3/04F03D11/00
    • Y02E10/74F03D3/0409F03D3/005F03D3/02F05B2240/211
    • The present invention relates to a method for designing a windblade part among components of a wind power generator and, more specifically, to a method for designing the case of windblade part accommodating two to five vertical-axis windblade parts. The vertical-axis blades are installed on a tubular passage of wind (flow) in a case as much as required for use or generation capacity to have wind power use efficiency higher than that of one horizontal blade or a vertical-axis blade, wherein the horizontal blade or the vertical-axis blade is a blade part of the existing propeller-shaped horizontal-axis wind turbine (HAWT) or vertical-axis wind turbine (VAWT). Every rotating force generated in the arranged blades is transferred to one axis-gear of a wind turbine with asymmetry rotating force by coupling gears for connecting the rotating force and converting the direction of the rotating force. Also, Bernoulli′s principle is applied by making the size of an inlet area of the case of windblade parts larger than that of an outlet area.
    • 本发明涉及一种用于设计风力发电机的部件中的风叶部分的方法,更具体地,涉及一种用于设计容纳两个至五个垂直轴刮刀部件的风刀部分的情况的方法。 垂直轴叶片安装在一个管状通风道(流动)的情况下,尽可能多地使用或发电能力使风力使用效率高于一个水平叶片或垂直轴叶片,其中 水平叶片或垂直轴叶片是现有螺旋桨水平轴风力涡轮机(HAWT)或垂直轴风力涡轮机(VAWT)的叶片部分。 在布置的叶片中产生的每个旋转力通过用于连接旋转力并转换旋转力的方向的联接齿轮传递到具有不对称旋转力的风力涡轮机的一个轴齿轮。 此外,通过使风刀部件的入口面积的尺寸大于出口区域的尺寸来应用伯努利的原理。
    • 6. 发明公开
    • 바람의 흐름을 최대로 활용하는 휴대용 수직축 날개들의 배열과 결합에 관한 방법
    • 通过可变垂直轴风叶最佳利用风力的方案安排和联合的方法
    • KR1020110123487A
    • 2011-11-15
    • KR1020100043002
    • 2010-05-07
    • 박광현권영구
    • 박광현권영구
    • F03D3/06F03D11/00
    • Y02E10/74F03D3/0481F03D3/005F05B2240/12F05B2240/211
    • PURPOSE: A method of arranging and coupling portable vertical blades using the flow of wind to the maximum is provided to couple all torque of a plurality of vertical blades and transfer it to one vertical wind turbine. CONSTITUTION: A method of arranging and coupling portable vertical blades using the flow of wind to the maximum comprises following steps. A number of vertical blades(3,4) are arranged by the number required for generation along the flow path of wind. Torques of the blades arranged are efficiently coupled and synthesized using a saw-toothed wheel for changing direction. The synthesized torque is transferred to one wind turbine shaft. The vertical blades comprise rotating blades. The rotating blades can maintain and guide the flow of wind without scattering. The diameter of the rotating blade is 2cm ~ 30cm.
    • 目的:提供使用风向最大的便携式垂直叶片布置和联接的方法,以耦合多个垂直叶片的所有扭矩并将其转移到一个垂直风力涡轮机。 构成:使用风流最大程度地布置和联接便携式垂直叶片的方法包括以下步骤。 多个垂直叶片(3,4)沿风向流动所需的数量排列。 使用用于改变方向的锯齿轮有效地联接和合成所设置的叶片的扭矩。 合成的扭矩传递到一个风力涡轮机轴。 垂直叶片包括旋转叶片。 旋转刀片可以保持和引导风流而不散射。 旋转刀片的直径为2cm〜30cm。
    • 8. 发明公开
    • 실링성 및 충격흡수성이 우수한 라텍스 넌 겔 폼의 조성물 및 제조 방법
    • 具有超级密封和抗震吸收性能的非凝胶泡沫的组合物和制造方法
    • KR1020120004005A
    • 2012-01-12
    • KR1020100064617
    • 2010-07-06
    • 권영구
    • 권영구송영식유주형
    • C08L21/02C08K13/02C08J9/04B29C44/00
    • C08L21/02B29C44/3446C08J9/04C08L9/04C08L9/08C08L13/02
    • PURPOSE: A latex non gel foam composition is provided to have easily deforming property under low load, to improve sealing property by improved compression ratio, and to improve absorption property due to the improvement of open cell portion and the uniformity of foamed cells. CONSTITUTION: A latex non gel foam composition comprises 100.0 parts by weight latex emulsion, 100-150 parts by weight filler, 1-10 parts by weight surfactant, 5-10 parts by weight functional additive, 10-20 parts by weight thickener and 10-15 parts by weight foaming agent. The latex emulsion is one or more compound selected from styrene butadiene latex, acrylonitrile butadiene latex, methyl methacrylate butadiene latex, polyvinylacetate latex, chloroprene latex or isoprene latex.
    • 目的:提供一种胶乳非凝胶泡沫组合物,以在低负荷下容易变形,通过改善压缩比提高密封性能,并且由于开孔部分的改善和发泡细胞的均匀性而提高吸收性能。 构成:胶乳非凝胶泡沫组合物包含100.0重量份胶乳乳液,100-150重量份填料,1-10重量份表面活性剂,5-10重量份功能添加剂,10-20重量份增稠剂和10 -15重量份发泡剂。 胶乳乳液是选自苯乙烯丁二烯胶乳,丙烯腈丁二烯胶乳,甲基丙烯酸甲酯丁二烯胶乳,聚乙酸乙烯酯胶乳,氯丁二烯胶乳或异戊二烯胶乳中的一种或多种化合物。
    • 10. 发明授权
    • 실링성과 충격에 대한 흡수성, 슬로우 리바운드 특성을 지닌 저밀도 폴리우레탄 폼 시트의 제조방법
    • 具有密封性,冲击吸收性和缓慢回弹性的低密度聚氨酯泡沫板的制造方法
    • KR100944507B1
    • 2010-03-03
    • KR1020090100103
    • 2009-10-21
    • 권영구
    • 권영구권영우송영식
    • B29C41/26B29C41/30
    • B29C41/28B29C41/30B29C41/46B29D7/01B29K2075/00B29L2007/002
    • PURPOSE: A manufacturing method of a low density polyurethane foam sheet is provided to prevent damage to a product from the external impact. CONSTITUTION: A first base material film(2) is put on a conveyer belt(44) made of Teflon material. A polyurethane blowing composition(20) is injected on top of the first base material film. The inserted foam composition is casted using a casting roller(30) to have fixed thickness. A second base material film(40) is laminated on top of the casted first base material film using a high and interval controlling roll(41). A first heating part(50) foams in 25 ~ 60°C and a second heating part(60) foams in 70 ~ 100°C. Thermal dryers(70,71) foams in 100 ~ 130°C. The second base material film is eliminated. The low density polyurethane foam sheet that the second base material film is removed is transferred to a coating unit(90). The coating composition is spread on the surface of the low density polyurethane foam sheet.
    • 目的:提供低密度聚氨酯泡沫板的制造方法,以防止外部冲击对产品的损害。 构成:将第一基材膜(2)放在由特氟龙材料制成的传送带(44)上。 将聚氨酯吹塑组合物(20)注入第一基材薄膜的顶部。 插入的泡沫组合物使用流延辊(30)铸造以具有固定的厚度。 使用高间隔控制辊(41)将第二基材膜(40)层压在铸造的第一基材膜的顶部上。 第一加热部件(50)在25〜60℃发泡,第二加热部件(60)在70〜100℃下发泡。 热干燥器(70,71)在100〜130°C的泡沫。 第二基材膜被去除。 将第二基材膜除去的低密度聚氨酯泡沫片材转移到涂布单元(90)。 涂料组合物涂布在低密度聚氨酯泡沫板的表面上。