-
公开(公告)号:US12041964B2
公开(公告)日:2024-07-23
申请号:US17189904
申请日:2021-03-02
Applicant: SHENZHEN SMOORE TECHNOLOGY LIMITED
Inventor: Xiaoping Li , Changyong Yi , Zhenlong Jiang
IPC: A24F1/00 , A24F40/46 , A24F40/485 , A24F47/00 , A61M11/04 , A61M15/06 , C04B35/00 , A24F40/10 , H05B3/12 , H05B3/22
CPC classification number: A24F1/00 , A24F40/46 , A24F40/485 , A24F47/00 , A61M11/042 , A61M15/06 , C04B35/00 , A24F40/10 , A61M2205/3653 , H05B3/12 , H05B3/22 , H05B2203/003 , H05B2203/021
Abstract: The present disclosure provides an electronic cigarette atomizer, including an atomization assembly and a liquid reservoir engaging with the atomization assembly; the liquid reservoir includes a liquid storage cavity; wherein the atomization assembly includes a lower holder, an upper holder installed on the lower holder, and a heating assembly clamped between the lower and the upper holders; the heating assembly includes a porous body and at least one heater engaging with the porous body, and the porous body has an atomizing surface and a liquid-absorbing surface; and the liquid-absorbing surface communicates with the liquid storage cavity, and an atomization cavity is formed between the atomizing surface and the lower holder. In the present disclosure, the heating assembly is a porous body and is clamped by the upper holder and the lower holder, thus, the structure is stable and the assembly of the heating assembly is facilitated.
-
公开(公告)号:US20190135704A1
公开(公告)日:2019-05-09
申请号:US15807508
申请日:2017-11-08
Applicant: APPLIED Materials, Inc.
Inventor: Kaushal GANGAKHEDKAR , Jennifer Y. SUN , Xiao-Ming HE
IPC: C04B35/64 , C04B35/622 , H01J37/32
CPC classification number: C04B35/64 , C04B35/50 , C04B35/505 , C04B35/62222 , C04B41/009 , C04B41/5031 , C04B41/5032 , C04B41/5042 , C04B41/5045 , C04B41/5055 , C04B41/87 , C04B2235/3217 , C04B2235/3222 , C04B2235/3224 , C04B2235/3225 , C04B2235/3244 , C04B2235/3246 , C04B2235/3418 , C04B2235/445 , C04B2235/6562 , C04B2235/6565 , C04B2235/6567 , H01J37/32467 , H01J37/32495 , C04B35/00 , C04B35/10 , C04B35/581 , C04B35/44 , C04B41/0072 , C04B41/4527
Abstract: Methods comprise performing two or more thermal cycles on an article comprising a body and a ceramic coating. Each thermal cycle of the two or more thermal cycles comprise heating the ceramic article to a target temperature at a first ramping rate. Each thermal cycle further comprises maintaining the article at the target temperature for a first duration of time and then cooling the article to a second target temperature at a second ramping rate. The method further comprises submerging the article in a bath for a second duration of time to remove the particles from the ceramic coating.
-
公开(公告)号:US20180290918A1
公开(公告)日:2018-10-11
申请号:US15575736
申请日:2016-06-06
Applicant: COSENTINO RESEARCH & DEVELOPMENT, S.L.
Inventor: José Manuel BENITO LÓPEZ
CPC classification number: C03C10/0018 , C03B1/02 , C03B32/02 , C03C2204/00 , C04B33/04 , C04B33/131 , C04B33/24 , C04B33/323 , C04B35/00 , C04B35/6261 , C04B35/62655 , C04B35/64 , C04B2235/3472 , C04B2235/36 , C04B2235/5436 , C04B2235/604 , C04B2235/6565 , C04B2235/6567 , C04B2235/662 , C04B2235/77 , C04B2235/80 , C04B2235/94
Abstract: The invention relates to a high-performance compacted ceramic material, comprising between 40%-85% by weight of glassy phase, having a density between 2.3 and 3.0 g/cm3, and characterized in that it has an internal porosity of less than 4% by volume. This material is highly resistant to mechanical and chemical action, sparingly permeable and prevents staining, so it is ex tremely suitable as a building material, particularly for kitchen countertops.
-
公开(公告)号:US20180280872A1
公开(公告)日:2018-10-04
申请号:US15938198
申请日:2018-03-28
Applicant: NGK INSULATORS, LTD.
Inventor: Takashi NORO
CPC classification number: B01D53/86 , B01J35/04 , B01J37/08 , B23K1/0014 , B23K26/21 , B23K35/02 , B23K35/0244 , B23K2101/38 , C04B35/565 , C04B35/58092 , C04B35/6263 , C04B35/6316 , C04B37/02 , C04B37/025 , C04B38/0009 , C04B38/0012 , C04B41/009 , C04B41/52 , C04B41/89 , C04B2111/0081 , C04B2111/94 , C04B2235/3826 , C04B2235/3891 , C04B2235/428 , C04B2235/5436 , C04B2235/665 , C04B2235/96 , C04B2235/9607 , C04B2237/08 , C04B2237/365 , C04B2237/406 , C04B2237/706 , C04B2237/708 , F01N3/2013 , F01N3/2828 , C04B35/00 , C04B38/0006 , C04B41/4539 , C04B41/4572 , C04B41/4578 , C04B41/5059 , C04B41/5071 , C04B41/5096
Abstract: A conductive honeycomb structure, comprising: a columnar ceramic honeycomb structure portion comprising an outer peripheral side wall and partition walls each disposed inside the outer peripheral side wall and defining a plurality of cells penetrating from one bottom surface to another bottom surface to form flow paths; a pair of electrode layers disposed on an outer surface of the outer peripheral side wall across a central axis of the honeycomb structure portion; and a pair of metal terminals joined to the respective electrode layers via one or more welded portions, wherein each of the one or more welded portions comprises a welded area of from 2 to 50 mm2.
-
公开(公告)号:US20180273432A1
公开(公告)日:2018-09-27
申请号:US15906173
申请日:2018-02-27
Applicant: NGK Insulators, Ltd.
Inventor: Shingo Tokuda , Shuji Ueda
CPC classification number: C04B38/0006 , B01D46/2444 , B01D46/2451 , B01D46/2462 , B01D46/247 , B01D53/86 , B01D2255/915 , B01J35/04 , B01J37/0215 , C04B38/0009 , C04B41/009 , C04B41/5024 , C04B41/86 , C04B41/87 , C04B2111/00793 , C04B35/00 , C04B35/195 , C04B35/565 , C04B35/46 , C04B14/4656 , C04B14/4693 , C04B41/4539 , C04B41/457 , C04B41/5059
Abstract: A circumferential coating material to be applied to a circumferential surface of a honeycomb structure made of ceramics formed by extrusion, the circumferential coating material including a ceramic raw material that forms a circumferential coating layer, wherein the ceramic raw material contains: a ceramic mixture of first ceramic particles having particulate shapes, and second ceramic particles having particulate shapes and an average particle diameter different from an average particle diameter of the first ceramic particles; and a fiber material having an elongated strip-like shape, wherein the ceramic mixture has particle size distribution including at least two local maximum values, and the fiber material has an average fiber length ranging from 30 to 100 μm in a longitudinal direction.
-
公开(公告)号:US20180272323A1
公开(公告)日:2018-09-27
申请号:US15765212
申请日:2016-09-30
Inventor: Steven MULLENS , Lidia PROTASOVA , Jasper LEFEVERE
CPC classification number: B01J29/40 , B01J2/08 , B01J2/20 , B01J27/14 , B01J29/084 , B01J29/18 , B01J29/7007 , B01J35/04 , B01J35/06 , B01J35/08 , B01J37/0009 , B01J37/038 , B28B1/001 , B28B3/20 , C04B35/01 , C04B35/622 , C04B38/008 , C04B2111/00181 , C04B2111/0081 , C07C1/20 , C07C11/02 , C07C2521/08 , C07C2521/16 , C07C2529/40 , C07C2529/80 , C07C2529/84 , C10G3/44 , C10G3/49 , C10G2400/20 , C04B35/00 , C04B38/0058 , C04B38/08
Abstract: A catalytic composition is built up from a ceramic material including a catalytic material and a first inorganic binder and a second inorganic binder and a catalytic structure made thereof. Preferably, the structure is made by a colloidal ceramic shaping technique. The structure is usable for catalytic or ion exchange applications as well. It is demonstrated that the catalytic structures have excellent mechanical, physicochemical and catalytic properties.
-
公开(公告)号:US20180102237A1
公开(公告)日:2018-04-12
申请号:US15835923
申请日:2017-12-08
Applicant: Applied Materials, Inc.
Inventor: Jennifer Y. Sun , Biraja P. Kanungo , Tom Cho
IPC: H01J37/32 , C23C4/134 , C23C4/11 , C04B41/50 , C04B41/00 , C23C16/44 , C04B41/87 , C04B35/00 , C04B35/10 , C04B35/581 , C04B41/45
CPC classification number: H01J37/32495 , C04B41/009 , C04B41/5045 , C04B41/87 , C23C4/11 , C23C4/134 , C23C16/4404 , Y10T428/131 , Y10T428/26 , C04B35/00 , C04B35/10 , C04B35/581 , C04B41/4527 , C04B41/5031 , C04B41/5042
Abstract: An article includes a body that is coated with a ceramic coating. The ceramic coating may include Y2O3 in a range between about 45 mol % to about 99 mol %, ZrO2 in a range between about 0 mol % to about 55 mol %, and Al2O3 in a range between about 0 mol % to about 10 mol %. The ceramic coating may alternatively include Y2O3 in a range between about 30 mol % to about 60 mol %, ZrO2 in a range between about 0 mol % to about 20 mol %, and Al2O3 in a range between about 30 mol % to about 60 mol %.
-
公开(公告)号:US09878518B2
公开(公告)日:2018-01-30
申请号:US14873311
申请日:2015-10-02
Applicant: NGK Insulators, Ltd.
Inventor: Yunie Izumi , Yoshimasa Kobayashi
IPC: B32B7/02 , C04B37/02 , B32B7/04 , B32B9/00 , B32B9/04 , H01B5/02 , H01B5/16 , C04B38/00 , C04B37/00
CPC classification number: B32B7/02 , B32B7/04 , B32B9/005 , B32B9/041 , B32B2307/202 , C04B37/005 , C04B37/006 , C04B37/023 , C04B38/0019 , C04B2237/068 , C04B2237/122 , C04B2237/123 , C04B2237/365 , C04B2237/582 , C04B2237/708 , C04B2237/72 , H01B5/02 , H01B5/16 , C04B35/00
Abstract: A joined body 20 includes a first member 21 which is a ceramic containing Si, a second member 22, and a joining portion 30 which is formed of an electrically conductive oxide containing a Fe3O4 phase and which joins the first member 21 and the second member 22. In the joined body 20, no reaction layer is preferably formed at a joining interface between the electrically conductive oxide and the first member 21. The joining portion 30 is preferably formed to have a multilayer structure in which from the first matter 21 to the second member 22, a first layer containing a first oxide of a transition metal, a second layer containing an electrically conductive oxide of a transition metal having a low valence as compared to that of the first oxide, and a mixed layer containing a transition metal and an oxide thereof are formed.
-
公开(公告)号:US20180010235A1
公开(公告)日:2018-01-11
申请号:US15712094
申请日:2017-09-21
Applicant: Applied Materials, Inc.
Inventor: Jennifer Y. Sun , Vahid Firouzdor , Biraja Prasad Kanungo , Tom K. Cho , Vedapuram S. Achutharaman , Ying Zhang
IPC: C23C14/08 , C04B35/00 , C04B35/505 , C04B35/622 , C04B41/50 , C04B41/52 , C04B41/87 , C04B41/89 , H01J37/32 , C23C14/46 , C23C14/58 , C04B41/00
CPC classification number: C23C14/088 , C04B35/00 , C04B35/505 , C04B35/62222 , C04B41/009 , C04B41/4529 , C04B41/5045 , C04B41/52 , C04B41/87 , C04B41/89 , C04B2235/3217 , C04B2235/3222 , C04B2235/3225 , C04B2235/3246 , C04B2235/3418 , C04B2235/3826 , C04B2235/3873 , C04B2235/428 , C04B2235/445 , C23C14/08 , C23C14/083 , C23C14/46 , C23C14/5806 , H01J37/32477 , Y10T428/26 , Y10T428/265 , C04B35/10 , C04B35/50 , C04B35/14 , C04B35/584 , C04B35/565 , C04B41/5032 , C04B41/5042 , C04B41/5035 , C04B2103/54
Abstract: An article comprises a body and a conformal protective layer on at least one surface of the body. The conformal protective layer is a plasma resistant rare earth oxide film having a thickness of less than 1000 μm, wherein the plasma resistant rare earth oxide film is selected from a group consisting of an Er—Y composition, an Er—Al—Y composition, an Er—Y—Zr composition, and an Er—Al composition.
-
公开(公告)号:US09839869B2
公开(公告)日:2017-12-12
申请号:US14389369
申请日:2012-03-30
Applicant: Takafumi Kasuga , Misako Makino , Saiduzzaman Md
Inventor: Takafumi Kasuga , Misako Makino , Saiduzzaman Md
IPC: B01D39/14 , B01D39/20 , B01D39/06 , B01D50/00 , B01D46/24 , C04B41/85 , C04B35/565 , C04B37/00 , C04B41/00 , C04B41/50 , F01N3/022 , C04B35/626 , C04B111/00
CPC classification number: B01D46/2429 , B01D46/2418 , B01D46/2451 , B01D2046/2433 , B01D2046/2481 , B01D2046/2485 , B01D2046/2492 , C04B35/565 , C04B35/6263 , C04B37/005 , C04B41/009 , C04B41/5089 , C04B41/85 , C04B2111/00793 , C04B2235/5224 , C04B2235/526 , C04B2235/528 , C04B2235/5436 , C04B2235/5445 , C04B2235/5472 , C04B2237/083 , C04B2237/09 , C04B2237/365 , F01N3/0222 , F01N2330/06 , Y02T10/20 , C04B35/00 , C04B38/0006 , C04B14/4625 , C04B41/5059
Abstract: The honeycomb filter of the present invention comprises a ceramic honeycomb substrate formed from a porous body of sintered ceramic particles, and a filter layer formed on the surface of the cell walls, wherein a portion of the filter layer penetrates from the surface of the cell walls into pores formed by the ceramic particles to form inter-particle filtration bodies, these inter-particle filtration bodies are formed from a plurality of spherical ceramic particles and crosslinking bodies which bind the spherical ceramic particles to each other, and the spherical ceramic particles and the crosslinking bodies form a three-dimensional network structure.
-
-
-
-
-
-
-
-
-