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公开(公告)号:US20240342668A1
公开(公告)日:2024-10-17
申请号:US18677069
申请日:2024-05-29
发明人: Nathan Louis Bollen , Andrew David Zdeblick , Jack Richardson , Andrew Terajewicz , Brandon J. Suleski
IPC分类号: B01F25/42 , B01F23/451 , B01F25/00 , B01F25/31 , B01F35/75 , B01F101/14 , B67C11/02 , B67D3/00
CPC分类号: B01F25/42 , B01F23/451 , B01F25/12 , B01F25/31 , B01F35/75415 , B67C11/02 , B67D3/0012 , B01F2025/9321 , B01F2101/14
摘要: A mixing funnel for mixing fluids is provided. In one embodiment, the mixing funnel includes a tray having a fluid inlet arranged to receive a primary fluid flow, and first and second fluid passages configured to receive primary fluid flow from the fluid inlet such that the flow is divided to flow along the first and second fluid passages. The first and second fluid passages can be arranged to direct the primary fluid flow to a mixing area. The tray can further include a fluid outlet arranged to receive the primary fluid flow from the mixing area and to deliver the fluid to a container.
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公开(公告)号:US11845050B2
公开(公告)日:2023-12-19
申请号:US16646878
申请日:2018-08-31
申请人: Henkel AG & Co. KGaA
IPC分类号: B01F25/00 , B01F33/84 , G06F16/9035 , A45D44/00 , B01F23/47 , B01F25/42 , B01F35/83 , B01F35/71 , H04W4/80 , B01F101/21
CPC分类号: B01F33/8442 , A45D44/00 , B01F23/47 , B01F25/42 , B01F35/717611 , B01F35/831 , G06F16/9035 , A45D2044/007 , B01F2101/21 , H04W4/80
摘要: A system and a method for generating a liquid mixture are provided. The system may comprise: a plurality of reservoirs, wherein the reservoirs are configured to hold a plurality of viscous liquids; at least one mixing device, wherein the mixing device is configured to mix at least two liquids from the plurality of reservoirs, and wherein the mixing device includes a static mixer; a plurality of peristaltic pumps configured to deliver the liquids from the reservoirs to the mixing device; at least one electronic system, wherein the electronic system is configured to receive at least one user-specific information regarding a mixing ratio of the at least two liquids from a computer app on at least one mobile device, and wherein the system is configured to mix the at least two liquids according to the predefined mixing ratio by employing the plurality of peristaltic pumps and the static mixer.
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公开(公告)号:US20230416490A1
公开(公告)日:2023-12-28
申请号:US18346248
申请日:2023-07-02
发明人: Amalia Gil , Domenic Di Mondo , Radek Rybicki
IPC分类号: C08J11/12 , C10M109/02 , C08L91/06 , B01J8/02 , C08J11/10 , B01J19/24 , B01J27/19 , B29B17/00 , B29B17/04 , C08J11/16 , C10G1/10 , C10G1/02 , B01J19/18 , B09B3/40 , B01F25/42 , B01F25/4314
CPC分类号: C08J11/12 , C10M109/02 , C08L91/06 , B01J8/0221 , C08J11/10 , B01J19/245 , B01J8/0278 , B01J8/0285 , B01J27/19 , B29B17/00 , B29B17/04 , C08J11/16 , C10G1/10 , C10G1/02 , B01J19/1818 , B01J19/242 , B01J19/2415 , B09B3/40 , B01F25/42 , B01F25/43141 , C08J2323/06 , B01J2208/0084 , B29K2023/06 , B01J2208/00176 , B01J2208/00407 , B01J2208/00831 , C10G2300/1003 , B01J2208/027 , B01J2523/00 , C10N2050/10
摘要: A system for continuously treating recycled polymeric material includes a hopper configured to feed the recycled polymeric material into the system. An extruder can turn the recycled polymeric material in a molten material. In some embodiments, the extruder uses thermal fluids, electric heaters, and/or a separate heater. The molten material is depolymerized in a reactor. In some embodiments, a catalyst is used to aid in depolymerizing the material. In certain embodiments, the catalyst is contained in a permeable container. The depolymerized molten material can then be cooled via a heat exchanger. In some embodiments, multiple reactors are used. In certain embodiments, these reactors are connected in series. In some embodiments, the reactor(s) contain removable static mixer(s) and/or removable annular inserts.
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公开(公告)号:US11739191B2
公开(公告)日:2023-08-29
申请号:US17361329
申请日:2021-06-29
发明人: Amalia Gil , Domenic Di Mondo , Radek Rybicki
IPC分类号: C08J11/12 , C10M109/02 , C08L91/06 , B01J8/02 , C08J11/10 , B01J19/24 , B01J27/19 , B29B17/00 , B29B17/04 , C08J11/16 , C10G1/10 , C10G1/02 , B01J19/18 , B09B3/40 , B01F25/42 , B01F25/4314 , C10N50/10 , B01F101/00
CPC分类号: C08J11/12 , B01F25/42 , B01F25/43141 , B01J8/0221 , B01J8/0278 , B01J8/0285 , B01J19/1818 , B01J19/242 , B01J19/245 , B01J19/2415 , B01J27/19 , B09B3/40 , B29B17/00 , B29B17/04 , C08J11/10 , C08J11/16 , C08L91/06 , C10G1/02 , C10G1/10 , C10M109/02 , B01F2101/2805 , B01J2208/0084 , B01J2208/00176 , B01J2208/00407 , B01J2208/00831 , B01J2208/027 , B01J2219/00761 , B01J2523/00 , B29K2023/06 , C08J2323/06 , C10G2300/1003 , C10N2050/10 , Y02W30/62 , B01J2523/00 , B01J2523/17 , B01J2523/31 , B01J2523/51 , B01J2523/68 , B01J2523/842
摘要: A system for continuously treating recycled polymeric material includes a hopper configured to feed the recycled polymeric material into the system. An extruder can turn the recycled polymeric material in a molten material. In some embodiments, the extruder uses thermal fluids, electric heaters, and/or a separate heater. The molten material is depolymerized in a reactor. In some embodiments, a catalyst is used to aid in depolymerizing the material. In certain embodiments, the catalyst is contained in a permeable container. The depolymerized molten material can then be cooled via a heat exchanger. In some embodiments, multiple reactors are used. In certain embodiments, these reactors are connected in series. In some embodiments, the reactor(s) contain removable static mixer(s) and/or removable annular inserts.
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公开(公告)号:US11933545B2
公开(公告)日:2024-03-19
申请号:US17459813
申请日:2021-08-27
CPC分类号: F28D20/00 , B01F25/42 , F28D20/0056 , F28F21/02 , F28F21/04 , G05D23/13 , H05B1/0297 , F28D2020/0021 , F28D2020/0026 , F28D2020/0069 , F28D2020/0078 , F28D2020/0086
摘要: A thermal energy storage system utilizes a high temperature storage segment having flow passages extending through the storage segment whereby a working fluid can extract energy from the storage system for powering conventional downstream equipment. A mixing manifold cooperates with an outlet manifold for reducing the temperature of the working fluid to a temperature safe for the downstream equipment. The mixing manifold, an outlet manifold, an inlet manifold and a support base for the high temperature storage segment, are all of a high temperature tolerant material allowing the high temperature storage segment to operate at temperatures in excess of 1000° C. and preferably to temperatures above 1400° C. The temperature of the working fluid provided to the conventional equipment can be managed to be below a maximum temperature which in many cases may be about 700° C.
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公开(公告)号:US11911732B2
公开(公告)日:2024-02-27
申请号:US16839366
申请日:2020-04-03
IPC分类号: B01F23/47 , B01D21/00 , B01D21/28 , B01D21/32 , C02F1/00 , C02F1/34 , B01F25/42 , B01F35/21 , B01F35/221 , E21B21/06 , E21B41/00 , E21B49/08 , C02F103/10 , B01F101/00
CPC分类号: B01F23/47 , B01D21/0012 , B01D21/283 , B01D21/32 , B01F25/42 , B01F35/2113 , B01F35/2136 , B01F35/2211 , C02F1/004 , C02F1/008 , C02F1/34 , E21B21/066 , E21B41/0057 , E21B49/08 , B01F23/471 , B01F2101/305 , C02F2103/10 , C02F2201/005 , C02F2209/03 , C02F2209/09 , C02F2209/40
摘要: Systems and methods for processing one or more waste fluids by measuring one or more properties of a waste fluid and adjusting the flow and/or flowability of the waste fluid based on the measurement are disclosed. The one or more properties of the waste fluid can include a viscosity of the waste fluid, a pressure of the waste fluid, and/or or a difference in pressure of the waste fluid. Adjusting the flow and/or flowability of the waste fluid can include adjusting the one or more properties of the waste fluid and/or affecting the direction of flow of the waste fluid in a manner which changes the destination of the waste fluid.
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公开(公告)号:US11850619B2
公开(公告)日:2023-12-26
申请号:US17470555
申请日:2021-09-09
申请人: The Boeing Company
CPC分类号: B05B7/0408 , B01F25/42 , B05B7/12 , B05B7/26 , B25J15/0019 , B01F2101/2305
摘要: A robot end effector (100) for dispensing an extrudable substance (102) comprises a chassis (110), a static mixer (101), and cartridge bays (122), extending from the chassis (110). Each of the cartridge bays (122) is shaped to receive a corresponding one of the two-part cartridges (104). Fluidic communication between the selected one of the two-part cartridges (104) and the static mixer (101) is established when the cartridge bays (122) are moved to a predetermined position with respect to the chassis (110). The robot end effector (100) comprises a dispensing valve (130), attached to the chassis (110), and a head assembly (150), comprising pairs of fittings (152). Each of the pairs of fittings (152) is configured to selectively supply compressed air from a pressure source (199) to contents of a corresponding one of the two-part cartridges (104).
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公开(公告)号:US12005408B1
公开(公告)日:2024-06-11
申请号:US18300860
申请日:2023-04-14
发明人: Nathan Louis Bollen , Andrew David Zdeblick , Jack Richardson , Andrew Terajewicz , Brandon J. Suleski
IPC分类号: B67C11/02 , B01F23/451 , B01F25/00 , B01F25/31 , B01F25/42 , B01F35/75 , B67D3/00 , B01F101/14
CPC分类号: B01F25/42 , B01F23/451 , B01F25/12 , B01F25/31 , B01F35/75415 , B67C11/02 , B67D3/0012 , B01F2025/9321 , B01F2101/14
摘要: A mixing funnel for mixing fluids is provided. In one embodiment, the mixing funnel includes a tray having a fluid inlet arranged to receive a primary fluid flow, and first and second fluid passages configured to receive primary fluid flow from the fluid inlet such that the flow is divided to flow along the first and second fluid passages. The first and second fluid passages can be arranged to direct the primary fluid flow to a mixing area. The tray can further include a fluid outlet arranged to receive the primary fluid flow from the mixing area and to deliver the fluid to a container.
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公开(公告)号:US11918541B2
公开(公告)日:2024-03-05
申请号:US17353334
申请日:2021-06-21
申请人: Biosafe S.A.
IPC分类号: A61J1/20 , A01N1/02 , A61J1/10 , A61J1/16 , A61M1/02 , B01F25/42 , B01F31/55 , B01F35/513 , B01F35/90 , B01F35/92 , B01F101/23
CPC分类号: A61J1/2003 , A01N1/0242 , A61J1/10 , A61J1/165 , A61M1/025 , B01F25/42 , B01F31/55 , B01F35/513 , B01F35/92 , A61M2205/36 , B01F2035/99 , B01F2101/23
摘要: A device and a method for mixing a fluid in a specimen bag is provided herein. In one embodiment, the device includes a mechanism for creating a first vortex and a second vortex. The first vortex is on a first side of a bag containing the fluid, and the second vortex is on a second side of the bag. The mechanism includes a first inflatable airbag and a second inflatable airbag. The first inflatable airbag is configured to create the first vortex when inflated and the second inflatable airbag is deflated. The second inflatable airbag is configured to create the second vortex when inflated and the first inflatable airbag is deflated.
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公开(公告)号:US11911712B2
公开(公告)日:2024-02-27
申请号:US16652204
申请日:2018-09-21
发明人: Tibor Nagy
CPC分类号: B01D15/168 , B01F25/42 , B01F35/2211 , B01F35/7176 , G01N30/34 , G05D21/02
摘要: A method for preparing an aqueous solution of a defined pH comprising an acid, a base and optionally one or more additives is provided. The method comprises the steps of:
a) calculating the theoretical concentrations of acid and base for the solution to have the defined pH using the Henderson-Hasselbach equation in combination with the Debye Huckel theory for a range of different additive concentrations; b) preparing a sample of the buffer for the range of additive concentrations and measuring the actual pH for each additive concentration; c) calculating a value for delta pH, ΔpH, being the difference between the theoretical pH and the actual pH, for each additive concentration; d) generating a mathematical model describing the relationship of ΔpH with additive concentration; e) selecting the defined pH and additive concentrations; f) using the mathematical model generated in step d) to calculate ΔpH for the defined pH and additive concentration; g) calculating a ΔpH-corrected pH by summing the defined pH and delta pH; h) using the ΔpH-corrected pH to calculate the concentrations of acid and base using the Henderson-Hasselbach equation in combination with the Debye Huckel theory; i) preparing the solution using the concentrations calculated in step h).
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