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公开(公告)号:US12091766B2
公开(公告)日:2024-09-17
申请号:US17311231
申请日:2019-12-03
申请人: NIPPON DENKAI, LTD.
发明人: Toshio Kawasaki , Tsuyoshi Onuma , Yasuhiro Endo
CPC分类号: C25D1/04 , B32B15/00 , B32B15/01 , B32B15/20 , C22C9/00 , C25D3/38 , C25D5/60 , C25D5/605 , H01M4/661 , Y02E60/10 , Y10T428/12431 , Y10T428/12903
摘要: An electrolytic copper foil having higher electrical conductivity, and a method for producing the same are provided. The electrolytic copper foil has a carbon content of 5 ppm or less, a sulfur content of 3 ppm or less, an oxygen content of 5 ppm or less, and a nitrogen content of 0.5 ppm or less; has a total content of carbon, sulfur, oxygen, nitrogen, and hydrogen of 15 ppm or less; and has a number of grains of 8.0 to 12.0/μm2, the number of grains changing to 0.6 to 1.0/μm2 by heating the electrolytic copper foil at 150° C. for 1 hour. A method for producing this electrolytic copper foil includes cleaning a copper raw material; dissolving the copper raw material after the cleaning to obtain an electrolytic solution having a total organic carbon of 10 ppm or less; and electrolyzing the electrolytic solution to obtain the electrolytic copper foil.
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公开(公告)号:US20240287649A1
公开(公告)日:2024-08-29
申请号:US18519490
申请日:2023-11-27
发明人: Peter POLCIK , Jurgen RAMM
IPC分类号: C22C1/04 , B22F3/087 , B22F3/105 , B22F5/04 , B22F9/04 , B32B15/00 , B32B15/01 , C22C1/047 , C22C19/03 , C22C19/07 , C23C14/00 , C23C14/02 , C23C14/08 , C23C14/14 , C23C14/16 , C23C14/32 , C23C14/34 , C23C28/00 , C23C28/02 , C23C28/04 , C23C30/00 , F01D5/28 , F01D25/00
CPC分类号: C22C1/0433 , B22F3/087 , B22F3/105 , B22F5/04 , B22F9/04 , B32B15/00 , B32B15/01 , C22C1/0416 , C22C1/047 , C22C19/03 , C22C19/07 , C23C14/0021 , C23C14/0036 , C23C14/025 , C23C14/027 , C23C14/08 , C23C14/081 , C23C14/083 , C23C14/085 , C23C14/14 , C23C14/16 , C23C14/325 , C23C14/3414 , C23C28/02 , C23C28/022 , C23C28/028 , C23C28/048 , C23C28/30 , C23C28/321 , C23C28/325 , C23C28/345 , C23C28/36 , C23C30/00 , C23C30/005 , F01D5/28 , F01D5/284 , F01D5/288 , F01D25/005 , B22F2003/1051 , C22C1/0458 , C22C2200/00 , F05D2220/30 , F05D2220/32 , F05D2230/30 , F05D2230/90 , F05D2300/175 , F05D2300/21 , F05D2300/611 , Y10T428/12458 , Y10T428/1259 , Y10T428/12597 , Y10T428/12604 , Y10T428/12611 , Y10T428/12639 , Y10T428/12667 , Y10T428/12771
摘要: A superalloy target wherein the superalloy target has a polycrystalline structure of random grain orientation, the average grain size in the structure is smaller than 20 μm, and the porosity in the structure is smaller than 10%. Furthermore, the invention includes a method of producing a superalloy target by powder metallurgical production, wherein the powder-metallurgical production starts from alloyed powder (s) of a superalloy and includes the step of spark plasma sintering (SPS) of the alloyed powder (s).
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公开(公告)号:US12022613B2
公开(公告)日:2024-06-25
申请号:US17747653
申请日:2022-05-18
发明人: Yong Wan Ji , Jin Uk Lee , Eun Sun Kim , Young Hun You
CPC分类号: H05K1/115 , B32B15/00 , H05K1/0298 , H05K1/11 , H05K2201/09854
摘要: A printed circuit board includes: a first insulating layer having a recess portion in one surface of the first insulating layer; a first circuit pattern embedded in the first insulating layer and being in contact with a lower surface of the recess portion; a second insulating layer disposed on the one surface of the first insulating layer to be disposed in at least a portion of the recess portion; and a via penetrating through at least a portion of the second insulating layer, disposed in the recess portion, and connected to the first circuit pattern.
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公开(公告)号:US20240032516A1
公开(公告)日:2024-02-01
申请号:US18235649
申请日:2023-08-18
申请人: Koppert B.V.
发明人: Thomas Volkert Marie Groot , Kirsten Eva Elisabeth Oude Lenferink , Yvonne Maria van Houten , Adelmar Emmanuel van Baal , Hans Hoogerbrugge
CPC分类号: A01K67/033 , B32B15/00 , B32B3/266 , B32B1/00 , B32B27/08 , B32B7/04 , A01N63/16 , A01G7/00 , B32B2255/10 , B32B2307/31 , B32B2307/41 , B32B2250/03 , B32B2255/205 , B32B2307/7242 , B32B2307/7246 , B32B2250/24 , B32B2439/06 , A01K2227/706
摘要: This invention relates to a system for releasing beneficial mites and the use of such a system. Mite species that can be used beneficially for human purposes may for example be employed in the control of pests, such as in field of agriculture, including agricultural production systems for plant products, agricultural production systems for animal products, and animal husbandry, or in the field of storage of food products. The system of the invention may find use in any of these fields.
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公开(公告)号:US11724479B2
公开(公告)日:2023-08-15
申请号:US17899905
申请日:2022-08-31
发明人: Paul B. Allard , Lakshya J. Deka , Eric J. Dherde , Gustavo Frattini , Alberto R. Gomes , Lynne F. Hunter , Dustin M. Miller , Abhay Naik , Karen J. Querfurth , Jerry M. Visin
IPC分类号: B32B3/10 , B32B15/00 , F25D23/02 , F25D23/08 , B32B7/12 , B32B15/08 , B32B15/04 , B29C65/72 , F25D23/06 , B32B7/08
CPC分类号: B32B15/00 , B32B7/12 , B32B15/043 , B32B15/08 , F25D23/02 , F25D23/085 , B29C65/72 , B32B7/08 , B32B2509/00 , B32B2509/10 , F25D23/021 , F25D23/064 , F25D23/08 , F25D2201/14 , Y10T428/24777
摘要: An operable panel for an appliance includes a metallic outer wrapper having a perimetrical wrapper edge that partially defines a perimetrical breaker channel, an inner liner and a plurality of corner brackets disposed proximate the perimetrical wrapper edge. Each corner bracket cooperates with the perimetrical wrapper edge to fully define the perimetrical breaker channel. A trim breaker is adhered to the metallic outer wrapper and the corner brackets at the perimetrical breaker channel and having a liner channel that receives a portion of the inner liner. The trim breaker extends between the inner liner and the outer wrapper. An insulation material is disposed within an insulating cavity defined between the inner liner and the outer wrapper.
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公开(公告)号:US11718924B2
公开(公告)日:2023-08-08
申请号:US16505431
申请日:2019-07-08
IPC分类号: C25D13/02 , B32B15/00 , C25D13/20 , C25D13/22 , B33Y10/00 , C04B37/00 , C04B37/02 , C25D13/12
CPC分类号: C25D13/02 , B32B15/00 , B33Y10/00 , C04B37/001 , C04B37/025 , C25D13/12 , C25D13/20 , C25D13/22 , C04B2235/5296 , C04B2235/775 , C04B2235/787 , C04B2235/9653 , C04B2237/083 , C04B2237/32 , C04B2237/402 , Y10T428/12458 , Y10T428/24802 , Y10T428/24992 , Y10T428/252
摘要: A method for forming a ceramic according to one embodiment includes electrophoretically depositing a plurality of layers of particles of a non-cubic material. The particles of the deposited non-cubic material are oriented in a common direction.
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7.
公开(公告)号:US11685083B2
公开(公告)日:2023-06-27
申请号:US16867055
申请日:2020-05-05
IPC分类号: B29C43/10 , B32B15/20 , B32B27/34 , B32B7/12 , B32B27/32 , B32B7/00 , B32B15/08 , B32B27/06 , B29C43/36 , B22F3/12 , B32B15/00 , B32B27/00 , B22F3/15 , B32B15/04 , B32B27/36 , B29K67/00 , B29K77/00 , B29K305/02 , B29K305/10 , B29L9/00 , B29C43/32
CPC分类号: B29C43/10 , B22F3/1241 , B22F3/15 , B29C43/3642 , B32B7/00 , B32B7/12 , B32B15/00 , B32B15/04 , B32B15/08 , B32B15/20 , B32B27/00 , B32B27/06 , B32B27/32 , B32B27/322 , B32B27/34 , B32B27/36 , B29C2043/3222 , B29C2043/3647 , B29K2023/04 , B29K2067/003 , B29K2077/00 , B29K2305/02 , B29K2305/10 , B29L2009/003 , B32B2307/00 , B32B2307/546 , B32B2307/7242 , B32B2307/7244 , B32B2307/732 , B32B2439/00 , B32B2439/06 , B32B2439/46
摘要: There is disclosed a sealable, flexible membrane for encapsulating a part to be isostatically pressed at an elevated temperature. The membrane includes at least one first layer of polymeric film having a melting point above the elevated temperature, and at least one second layer disposed on the first layer. The second layer comprising a metal. In one embodiment, the metal comes into contact with the part to be isostatically pressed. The membrane, which typically has a thickness ranging from 10 to about 500 μm, and is impermeable to the flow of liquids and gases when sealed, can be used to warm press parts up to about 350° C. and pressures ranging from 5,000 psi to 100.000 psi. Methods to isostatically press parts using this sealable, flexible membrane are also disclosed. Bags made from the sealable, flexible membrane that are used in isostatic presses are also disclosed.
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公开(公告)号:US20190252086A1
公开(公告)日:2019-08-15
申请号:US16315332
申请日:2017-07-24
发明人: Kazuhiro KATO , Yuki HORIE
CPC分类号: G21F1/125 , B32B9/00 , B32B15/00 , B32B15/04 , B32B2307/204 , B32B2307/412 , B32B2307/418 , B32B2551/00 , G02B1/115 , G02B1/116 , G02B5/26 , G02B5/28
摘要: The object of the invention is to obtain a solar radiation shielding member that has a good visible light transmittance and shows no redness when viewed from the front and when obliquely viewed, without impairing the solar radiation transmittance. A solar radiation shielding member, wherein a first dielectric film, a first metal film, a second dielectric film, a second metal film, a third dielectric film, a third metal film, and a fourth dielectric film are stacked on a transparent substrate; the first dielectric film comprises at least two dielectric layers containing a layer having a refractive index of 2.4 or greater, and the first dielectric film as a whole has a refractive index in a range of 1.8-2.0; the second dielectric film has an optical film thickness of 165-201 nm; the third dielectric film has an optical film thickness of 147-182 nm; the fourth dielectric film has an optical film thickness of 75-120 nm; a geometric film thickness of the first metal film, the second metal film, and the third metal film is 30-40 nm in total; a geometric film thickness of the second metal film is in a range of 1.01-1.55 relative to a geometric film thickness of each of the first metal film and the third metal film.
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公开(公告)号:US20180223534A1
公开(公告)日:2018-08-09
申请号:US15506487
申请日:2015-08-18
发明人: Ji-Hyun CHUN
CPC分类号: E04D1/30 , B32B3/04 , B32B15/00 , B32B2255/06 , B32B2255/20 , B32B2419/06 , E04D1/18 , E04D1/28 , E04D1/34 , E04D13/103 , E04D2001/005 , E04D2001/308 , E04D2001/3458 , E04H9/16 , H05B3/26
摘要: A snow-melting roof tile according to an embodiment of the present invention comprises: a metal roof tile including a main cover part, a first bending part bent vertically and located at a first edge in a first direction of the main cover part and, and a second bending part bent vertically and located at a second edge in the first direction, opposite to the first edge of the main cover part; a heat generation part located an upper portion or lower portion of the metal roof tile; and a fixing part for fixing the heat generation part to the metal roof tile, wherein the heat generation part can generate heat to heat the metal roof tile, thereby melting snow on the metal roof tile.
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10.
公开(公告)号:US20180216238A1
公开(公告)日:2018-08-02
申请号:US15314808
申请日:2014-05-30
发明人: Koichiro Tanaka
CPC分类号: C23C28/021 , B32B7/04 , B32B7/12 , B32B15/00 , B32B15/08 , B32B15/09 , B32B15/18 , B32B15/20 , B32B27/06 , B32B27/281 , B32B27/36 , B32B2250/02 , B32B2255/06 , B32B2255/20 , B32B2255/205 , B32B2255/28 , B32B2307/202 , B32B2307/212 , B32B2307/714 , B32B2307/732 , B32B2457/00 , C23C18/54 , C23C28/02 , C23C30/00 , C25D3/12 , C25D3/32 , C25D3/562 , C25D5/12 , C25D5/505 , C25D7/0614 , H05K9/00 , H05K9/0088
摘要: A metal foil for electromagnetic shielding 10, comprising a base 1 consisting of a metal foil, an underlayer 2 including Ni formed on one or both surfaces of the base, and a Sn—Ni alloy layer 3 formed on a surface of the underlayer, wherein the Sn—Ni alloy layer includes 20 to 80 weight % of Sn, and when a total deposition amount of Sn is represented by TSn [μg/dm2], a percentage of Sn in the Sn—Ni alloy is represented by ASn [weight %], a total deposition amount of Ni is represented by TNi [μg/dm2], and a percentage of Ni in the Sn—Ni alloy is represented by ANi [weight %], TSn: 500 to 91000 μg/dm2, TNi: 2200 to 236000 μg/dm2, 170000=>{TNi−TSn×(ANi/ASn)}=>1700.
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