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    • 11. 发明授权
    • Ultraviolet/infrared absorbent low transmittance glass
    • 紫外线/红外吸收剂低透光率玻璃
    • US5952255A
    • 1999-09-14
    • US941366
    • 1997-09-30
    • Hiromitsu SetoYukihito NagashimaShigekazu Yoshii
    • Hiromitsu SetoYukihito NagashimaShigekazu Yoshii
    • C03C3/078C03C3/087C03C3/095C03C4/02C03C4/08
    • C03C3/095C03C3/087C03C4/02C03C4/082C03C4/085Y10S501/904Y10S501/905
    • The ultraviolet/infrared absorbent low transmittance glass has an almost neutral greenish color, middle visible light transmittance, low total solar energy transmittance, and low ultraviolet transmittance, and is suitable for a window of a vehicle or a building and capable of preventing degradation and discoloration of interior materials and protecting privacy. The glass consists of base glass including: 65 to 80 wt. % SiO.sub.2 ; 0 to 5 wt. % Al.sub.2 O.sub.3 ; 0 to 10 wt. % MgO; 5 to 15 wt. % CaO wherein a total amount of MgO and CaO is between sand 15 wt. %; 10 to 20 wt. % Na.sub.2 O; 0 to 5 wt. % K.sub.2 O wherein a total amount of Na.sub.2 O and K.sub.2 O is between 10 to 20 wt. %; and 0 to 5 wt. % B.sub.2 O.sub.3, and colorants including: 0.7 to 0.95 wt. % total iron oxide (T-Fe.sub.2 O.sub.3) expressed as Fe.sub.2 O.sub.3 ; 1.1 to 2.3% TiO.sub.2, 0 to 2.0% CeO.sub.2, 0.013 to 0.025 wt. % CoO; 0 to 0.0008% Se; and 0.01 to 0.07% NiO. A visible light transmittance (YA) in a range from 25% to 45% and a total solar energy transmittance is in a range from 10% to 40% at a thickness between 3.1 and 5 mm.
    • 紫外线/红外吸收剂低透光率玻璃具有几乎中性的绿色,中等的可见光透射率,低的太阳能透光率,低的紫外线透射率,并且适用于车辆或建筑物的窗户并且能够防止降解和变色 的室内材料和保护隐私。 该玻璃由基础玻璃组成,包括:65至80wt。 %SiO2; 0至5wt。 %Al2O3; 0〜10重量% %MgO; 5至15wt。 %CaO,其中MgO和CaO的总量在砂15重量%之间。 %; 10〜20重量% %Na2O; 0至5wt。 %K 2 O,其中Na 2 O和K 2 O的总量为10至20wt。 %; 和0-5重量% %B 2 O 3,着色剂包括:0.7〜0.95重量% 以Fe2O3表示的总氧化铁(T-Fe2O3)%; 1.1〜2.3%TiO 2,0〜2.0%CeO 2,0.013〜0.025重量% %CoO; 0〜0.0008%Se; 和0.01〜0.07%的NiO。 25%〜45%范围内的可见光透射率(YA)和总太阳能透射率在3.1〜5mm之间的厚度范围为10%〜40%。
    • 12. 发明申请
    • Glass Article and Method of Producing the Same
    • 玻璃制品及其制造方法
    • US20090181843A1
    • 2009-07-16
    • US12084072
    • 2006-10-31
    • Hiromitsu SetoAkihiro KoyamaYukihito Nagashima
    • Hiromitsu SetoAkihiro KoyamaYukihito Nagashima
    • C03C3/095
    • C03C3/087C03C4/02Y10T428/315
    • The present invention provides a glass article using a glass composition including a base glass composition and colorants. The base glass composition includes, expressed in mass %: 65 to 80% of SiO2; 0 to 5% of Al2O3; 0 to 10% of MgO; 0 to 15% of CaO; 5 to 15% of MgO+CaO; 10 to 18% of Na2O; 0 to 5% of K2O; 10 to 20% of Na2O+K2O; and 0 to 5% of B2O3, and the colorants consist essentially of, expressed in mass %: 0.6% to 1.0% of T-Fe2O3; 0.026 to 0.8% of TiO2; 0 to 2.0% of CeO2; 0.01 to 0.03% of CoO; 0 to 0.0008% of Se; and 0.06 to 0.20% of NiO. The glass article has a grayish color tone, and has a visible light transmittance in a range of 15% to 40%, which is measured with the illuminant A at a thickness of 3.1 mm.
    • 本发明提供一种使用玻璃组合物的玻璃制品,所述玻璃组合物包括基础玻璃组合物和着色剂。 基础玻璃组成包括以质量%表示:65〜80%的SiO 2; 0〜5%的Al2O3; 0〜10%的MgO; 0〜15%的CaO; 5〜15%的MgO + CaO; 10〜18%的Na2O; 0〜5%K2O; 10-20%Na2O + K2O; 和0〜5%的B2O3,着色剂基本上由质量%表示:0.6%〜1.0%的T-Fe2O3; 0.026〜0.8%的TiO2; 0〜2.0%的CeO2; 0.01〜0.03%的CoO; 0〜0.0008%的Se; 和0.06〜0.20%的NiO。 玻璃制品具有灰色色调,并且具有15%至40%范围内的可见光透射率,其以3.1mm的厚度用光源A测量。
    • 13. 发明授权
    • Glass article and method of producing the same
    • 玻璃制品及其制造方法
    • US08017537B2
    • 2011-09-13
    • US12084072
    • 2006-10-31
    • Hiromitsu SetoAkihiro KoyamaYukihito Nagashima
    • Hiromitsu SetoAkihiro KoyamaYukihito Nagashima
    • C03C3/087B32B17/00C03B32/00C03B27/044
    • C03C3/087C03C4/02Y10T428/315
    • The present invention provides a glass article using a glass composition including a base glass composition and colorants. The base glass composition includes, expressed in mass %: 65 to 80% of SiO2; 0 to 5% of Al2O3; 0 to 10% of MgO; 0 to 15% of CaO; 5 to 15% of MgO+CaO; 10 to 18% of Na2O; 0 to 5% of K2O; 10 to 20% of Na2O+K2O; and 0 to 5% of B2O3, and the colorants consist essentially of, expressed in mass %: 0.6% to 1.0% of T-Fe2O3; 0.026 to 0.8% of TiO2; 0 to 2.0% of CeO2; 0.01 to 0.03% of CoO; 0 to 0.0008% of Se; and 0.06 to 0.20% of NiO. The glass article has a grayish color tone, and has a visible light transmittance in a range of 15% to 40%, which is measured with the illuminant A at a thickness of 3.1 mm.
    • 本发明提供一种使用玻璃组合物的玻璃制品,所述玻璃组合物包括基础玻璃组合物和着色剂。 基础玻璃组成包括以质量%表示:65〜80%的SiO 2; 0〜5%的Al2O3; 0〜10%的MgO; 0〜15%的CaO; 5〜15%的MgO + CaO; 10〜18%的Na2O; 0〜5%K2O; 10-20%Na2O + K2O; 和0〜5%的B2O3,着色剂基本上由质量%表示:0.6%〜1.0%的T-Fe2O3; 0.026〜0.8%的TiO2; 0〜2.0%的CeO2; 0.01〜0.03%的CoO; 0〜0.0008%的Se; 和0.06〜0.20%的NiO。 玻璃制品具有灰色色调,并且具有15%至40%范围内的可见光透射率,其以3.1mm的厚度用光源A测量。
    • 15. 发明授权
    • Ultraviolet/infrared absorbent low transmittance glass
    • US06436860B1
    • 2002-08-20
    • US09761585
    • 2001-01-18
    • Hiromitsu SetoShigekazu Yoshii
    • Hiromitsu SetoShigekazu Yoshii
    • C03C3087
    • The ultraviolet/infrared absorbent low transmittance glass has a grayish, almost neutral color shade, low visible light transmittance, low total solar energy transmittance, and low ultraviolet transmittance, and is suitable for a rear window of a vehicle and capable of protecting privacy. The glass consists of base glass including: 65 to 80 wt. % SiO2; 0 to 5 wt. % Al2O3; 0 to 10 wt. % MgO; 5 to 15 wt. % CaO wherein a total amount of MgO and CaO is 5 to 15 wt. %; 10 to 18 wt. % Na2O; 0 to 5 wt. % K2O wherein a total amount of Na2O and K2O is 10 to 20 wt. %; and 0 to 5 wt. % B2O3, and colorants including: 1.0 to 1.6 wt. % total iron oxide (T-Fe2O3) expressed as Fe2O3; more than 0.019 wt. % and equal to or less than 0.05 wt. % CoO; more than 0.0008 wt. % and equal to or less than 0.003 wt. % Se; and more than 0.05 wt. % and equal to or less than 0.1 wt. % NiO. The glass with any one of thicknesses between 1.8 mm and 5 mm has a visible light transmittance (YA) measured by the C.I.E. illuminant “A” in a range from 5 to 25%, a solar energy transmittance (TG) of 5 to 25%, and an ultraviolet transmittance (Tuv) specified by ISO of not greater than 15%.
    • 17. 发明授权
    • Near infrared absorbent green glass composition, and laminated glass using the same
    • 近红外吸收剂绿色玻璃组合物和使用其的夹层玻璃
    • US07820575B2
    • 2010-10-26
    • US10581980
    • 2004-12-24
    • Yukihito NagashimaHiromitsu SetoHarunori MurakamiHiroyuki Tanaka
    • Yukihito NagashimaHiromitsu SetoHarunori MurakamiHiroyuki Tanaka
    • C03C3/095C03C3/087B32B17/10
    • C03C3/095C03C3/091C03C4/02C03C4/082Y10T428/269Y10T428/31616Y10T428/31627
    • The present invention provides a near-infrared absorbent green glass composition which contains basic glass components and 0.6 to 1.3% total iron oxide amount in terms of Fe2O3 (T-Fe2O3), 0 to 2.0% CeO2 and, 300 ppm or less MnO expressed in units of mass and wherein a mass ratio (FeO ratio) of FeO converted into Fe2O3 relative to the T-Fe2O3 is from 0.21 to 0.35. Further the glass composition satisfies at least one of the following a) and b):a) when the glass composition is formed to have a thickness in the range of 1.3 to 2.4 mm, a visible light transmittance is at least 80%, a total solar energy transmittance is 62% or less, a dominant wavelength is from 500 to 540 nm, and an integrated value obtained by integrating transmittance of every 1 nm in the wavelength from 1100 to 2200 nm is 62000 or less; b) when the glass composition is formed to have a thickness in the range of 3 to 5 mm, a visible light transmittance is at least 70%, a total solar energy transmittance is 45% or less, a dominant wavelength is from 495 to 540 nm, and an integrated value obtained as above is 62000 or less.
    • 本发明提供一种近红外吸收性绿色玻璃组合物,其包含碱性玻璃成分,以Fe2O3(T-Fe2O3)换算为0.6〜1.3%的总铁氧化物量,CeO 2为0〜2.0%,MnO为300ppm以下, 其中相对于T-Fe 2 O 3转化为Fe 2 O 3的FeO的质量比(FeO比)为0.21〜0.35。 此外,玻璃组合物满足以下a)和b)中的至少一个:a)当玻璃组合物形成为具有1.3至2.4mm范围内的厚度时,可见光透射率为至少80%,总共 太阳能透射率为62%以下,主波长为500〜540nm,通过将波长为1100〜2200nm的每1nm的透射率积分而得到的积分值为62000以下。 b)当玻璃组合物形成为厚度在3至5mm的范围内时,可见光透射率为至少70%,总太阳能透射率为45%以下,主波长为495〜540 nm,并且如上获得的积分值为62000以下。
    • 18. 发明申请
    • Near Infrared Absorbent Green Glass Composition, And Laminated Glass Using The Same
    • 近红外吸收剂绿色玻璃组合物和使用其的层压玻璃
    • US20080026211A1
    • 2008-01-31
    • US10581980
    • 2004-12-24
    • Yukihito NagashimaHiromitsu SetoHarunori MurakamiHiroyuki Tanaka
    • Yukihito NagashimaHiromitsu SetoHarunori MurakamiHiroyuki Tanaka
    • C03C4/08C03C27/12C03C3/087C03C3/089C03C3/091C03C3/095
    • C03C3/095C03C3/091C03C4/02C03C4/082Y10T428/269Y10T428/31616Y10T428/31627
    • The present invention provides a near-infrared absorbent green glass composition which contains basic glass components and 0.6 to 1.3% total iron oxide amount in terms of Fe2O3 (T-Fe2O3), 0 to 2.0% CeO2 and, 300 ppm or less MnO expressed in units of mass and wherein a mass ratio (FeO ratio) of FeO converted into Fe2O3 relative to the T-Fe2O3 is from 0.21 to 0.35. Further the glass composition satisfies at least one of the following a) and b): a) when the glass composition is formed to have a thickness in the range of 1.3 to 2.4 mm, a visible light transmittance is at least 80%, a total solar energy transmittance is 62% or less, a dominant wavelength is from 500 to 540 nm, and an integrated value obtained by integrating transmittance of every 1 nm in the wavelength from 1100 to 2200 nm is 62000 or less; b) when the glass composition is formed to have a thickness in the range of 3 to 5 mm, a visible light transmittance is at least 70%, a total solar energy transmittance is 45% or less, a dominant wavelength is from 495 to 540 nm, and an integrated value obtained as above is 62000 or less.
    • 本发明提供一种近红外吸收性绿色玻璃组合物,其含有碱性玻璃成分,以Fe 2 O 3(T-3)计为0.6〜1.3%的总氧化铁量, Fe 2 O 3 3),0〜2.0%CeO 2 2,300ppm以下MnO,以质量单位表示,其中质量比 相对于T-Fe 2 O 3 3转化成Fe 2 O 3 O 3的FeO(FeO比)为 从0.21到0.35。 此外,玻璃组合物满足以下a)和b)中的至少一个:a)当玻璃组合物形成为具有1.3至2.4mm范围内的厚度时,可见光透射率为至少80%,总共 太阳能透射率为62%以下,主波长为500〜540nm,通过将波长为1100〜2200nm的每1nm的透射率积分而得到的积分值为62000以下。 b)当玻璃组合物形成为厚度在3至5mm的范围内时,可见光透射率为至少70%,总太阳能透射率为45%以下,主波长为495〜540 nm,并且如上获得的积分值为62000以下。
    • 19. 发明授权
    • Method for shifting absorption peak wavelength of infrared radiation absorbing glass
    • 红外辐射吸收玻璃的吸收峰值波长偏移的方法
    • US06612133B2
    • 2003-09-02
    • US09792585
    • 2001-02-26
    • Koichi SakaguchiHiromitsu SetoYukihito Nagashima
    • Koichi SakaguchiHiromitsu SetoYukihito Nagashima
    • C03C1500
    • C03C3/087C03C3/095C03C4/082Y10S501/904
    • A method for shifting the absorption peak wavelength in the wavelength range 900-1600 nm of an infrared radiation absorbing glass from less than 1100 nm to 1100 nm or longer without substantially changing the tint of the glass, comprising the step of irradiating with ultraviolet light of 400 nm or shorter at an energy density of 1.0×106 J/m2/hr or more to increase the content of FeO in the irradiated glass by reducing Fe (III) to Fe (II), the ultraviolet light irradiated glass thereby comprising 0.02 wt. % or more FeO in terms of Fe2O3. The glass to be irradiated comprises, in % by weight: 65 to 80% SiO2, 0 to 5% Al2O3, 0 to 10% MgO, 5 to 15% CaO, 10 to 18% Na2O, 0 to 5% K2O, 5 to 15% MgO+CaO, 10 to 20% Na2O+K2O, and 0 to 5% B2O3; 0.02% or more total iron oxide (T-Fe2O3) in terms of Fe2O3, 0 to 2.0% CeO2, 0 to 1.0% TiO2, 0 to 0.005% CoO, and 0 to 0.005% Se.
    • 一种使红外线吸收玻璃的波长900〜1600nm的吸收峰值波长从小于1100nm移动到1100nm以上的方法,而基本上不改变玻璃的色调,该方法包括以下步骤: 400nm或更短,能量密度为1.0×10 6 J / m 2 / hr以上,通过将Fe(III)还原为Fe(II),使紫外线照射玻璃含有0.02重量%,从而提高被照射玻璃中的FeO含量。 以Fe2O3计的FeO%以上。 待照射的玻璃包含:重量%:65〜80%SiO 2,0〜5%Al 2 O 3,0〜10%MgO,5〜15%CaO,10〜18%Na 2 O,0〜5%K 2 O,5〜 15%MgO + CaO,10〜20%Na2O + K2O,0〜5%B2O3; 以Fe2O3为0〜2.0%,TiO 2为0〜1.0%,CoO 0〜0.005%,Co为0〜0.005%的总氧化铁(T-Fe2O3)为0.02%以上。
    • 20. 发明授权
    • Medical imaging apparatus
    • 医疗成像装置
    • US06335979B1
    • 2002-01-01
    • US09199491
    • 1998-11-25
    • Hiromitsu SetoTomoyasu Komori
    • Hiromitsu SetoTomoyasu Komori
    • G06K900
    • G16H40/63G06F19/00
    • A list of a plurality of reference images is displayed. Parameters pertaining to signal acquisition, image generation, and image display are related to each of these reference images. When the operator selects one desired reference image from the list, a signal is acquired and an image is generated and displayed in accordance with the parameters related to the selected reference image. The only operation which the operator must perform is to select a reference image visually close to a desired medical image. The apparatus automatically sets detailed signal acquisition parameters, image generation parameters, and image display parameters which the operator need not know.
    • 显示多个参考图像的列表。 与信号采集,图像生成和图像显示有关的参数与这些参考图像中的每一个相关。 当操作者从列表中选择一个期望的参考图像时,获取信号并且根据与所选择的参考图像相关的参数来生成和显示图像。 操作者必须执行的唯一操作是在视觉上选择与期望的医学图像近似的参考图像。 该设备自动设置操作者不需要知道的详细信号采集参数,图像生成参数和图像显示参数。