会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Airconditioning device
    • 空调设备
    • US06520247B2
    • 2003-02-18
    • US09846947
    • 2001-05-01
    • Göran Hultmark
    • Göran Hultmark
    • F24F101
    • F24F1/0011F24F13/078F24F13/26F24F2001/0037F24F2001/0051F24F2221/28
    • An air-conditioning device especially for ceiling placement with low build-in height and comprising at least one preferably vertically oriented heat exchanger, with substantially horizontal percolation of the room air and at least one ventilation channel for fresh air provided substantially parallel to and within a small distance from the heat exchanger, at its outlet side, a downwards open air chamber provided between the ventilation channel and the heat exchanger, and air nozzles provided in the channel side wall of the ventilation channel facing the air chamber, which are directed towards the outlet of the air chamber. The ventilation channel is provided with a preferably convex channel wall which diametrically extends substantially from the upper corner of the ventilation channel to the lower corner of the ventilation channel. The heat exchanger and the ventilation channel are arranged with a downwards, diverging open air space. Along the ventilation channel are provided at least a row with, in the diverging air space upper portion, debauching nozzles for ventilating air. The channel wall is formed and directed so that the streams of ventilating air through the nozzles is provided to, according to the coanda effect, temporary adhere along the whole channel wall before the streams continue horizontally along the ceiling.
    • 一种空调装置,特别用于具有低内置高度的天花板放置,并且包括至少一个优选垂直取向的热交换器,具有基本上水平的室内空气渗透和用于新鲜空气的至少一个通风通道, 距热交换器较小的距离,其出口侧,设置在通风通道和热交换器之间的向下敞开的空气室,以及设置在朝向空气室的通风通道的通道侧壁中的空气喷嘴, 出风口。 通风通道设置有优选的凸通道壁,其基本上从通气通道的上角直径延伸到通气通道的下角。 热交换器和通风通道布置有向下,分散的露天空间。 沿通气通道设置有至少一排,在发散空气空间上部具有用于使空气通风的去空气喷嘴。 通道壁被形成和定向,使得通过喷嘴的通风空气流被设置成根据共同作用效应沿着整个通道壁临时粘附在流沿着天花板水平延伸之前。
    • 2. 发明授权
    • Method for manufacturing an absorbent layer for solar collectors, a device for performing the method and an absorbent layer for solar collectors
    • 太阳能集热器用吸收层的制造方法,太阳能收集体的吸收层的实施方法和吸收层
    • US06171458B2
    • 2001-01-09
    • US09265495
    • 1999-03-10
    • Göran Hultmark
    • Göran Hultmark
    • C23C1408
    • C23C14/562C23C14/0057C23C14/0063C23C14/06C23C14/085F24S70/25Y02E10/40Y02P80/24
    • A spectral selective absorbing surface on solar collector elements has a very high solar absorbing ability, in the range of 96% to 97% and a low thermal emittance, in the order of 10%, and can be produced with high capacity in industrial scale. A reactive gas in an amount of 1 to 50 cm 3/min kW, preferably 10 cm 3/min kW, distributed in the coating zone provides that the metal layer deposed onto the receiving material partly oxidizes during the deposition, whereby a layer is obtained that comprises a grain mixture of metallic material and metal oxide, whereby 40% to 80%, preferably about 50%, of metallic material is embedded into the metal oxide closest to the receiving material. The metallic material is successively decreased to about zero at the surface of the layer by increasing the addition of oxygen at the end of the coating zone. The metal is selected from the group consisting of nickel, chromium, cobalt, molybdenum, or the similar, or a mixture thereof, preferably a nickel-chromium-alloy where the ratio of chromium is 4 to 30%, preferably about 20%, and the grain size is
    • 太阳能收集器元件上的光谱选择吸收表面具有非常高的太阳能吸收能力,在96%至97%的范围内,低发射率为10%左右,并且可以在工业规模的高容量下生产。 分布在涂层区域中的量为1〜50cm 3 /分钟kW,优选为10cm 3 / min·kW的反应性气体使得沉积在接收材料上的金属层在沉积期间部分氧化,由此获得层 其包括金属材料和金属氧化物的晶粒混合物,由此将40%至80%,优选约50%的金属材料嵌入最接近接收材料的金属氧化物中。 金属材料通过增加涂层区末端氧的添加,在层的表面上连续地降低至约零。 金属选自镍,铬,钴,钼或类似物,或其混合物,优选铬铬合金,其中铬的比率为4至30%,优选约20%,以及 晶粒尺寸<0.005mm,优选0.001mm。