Soapsuds generation apparatus
    3.
    发明授权

    公开(公告)号:US12011676B1

    公开(公告)日:2024-06-18

    申请号:US17835829

    申请日:2022-06-08

    申请人: Kevin Keep

    发明人: Kevin Keep

    摘要: An apparatus to generate soapsuds is described. The apparatus features a character lid, a lid attachment member, a holding member, an agitator, and a soap dispenser. The holding member includes a chamber portion sized to retain one or more soap tablets. The chamber portion has an opening, a closed end including an outlet, and lateral surfaces extending between the opening and the closed end. The agitator is rotationally coupled to the holding member and positioned under the outlet of the holding member. The soap dispenser includes a housing that encapsulates the agitator residing within a lower quadrant of the interior area of the housing. The housing includes apertures formed within the closed end to allow for soapsuds and soapy water passage through the opening and the outlet of the holding member, which causes the agitator to mix the soapy water residing within the interior area to generate soapsuds.

    Mixing machine and related methods

    公开(公告)号:US11420168B2

    公开(公告)日:2022-08-23

    申请号:US16648073

    申请日:2018-07-27

    发明人: Ludo Debergh

    摘要: A mixing machine (1) for the mixing of a homogeneous mixture with one or more components to obtain a viscous mixture, comprising a mixing chamber (2) which is divided in a push (A), a mixing (B) and a discharge zone (C), and wherein the mixing chamber (2) comprises the following parts: multiple walls, consisting of one or more top plates (22) with multiple inflow channels (10, 11, 12), one or more bottom plates (24) and multiple side walls (6); an outlet mouth (18); an outlet valve (13); several rotors (5); in and out sliding push and/or mixing blades (3, 4); and a self-cleaning system (16, 17); characterised in that the rotors (5) are integrated in the side walls (6) of the mixing chamber (2); the rotors are equipped with transit channels (30) for the in and out sliding push or mixing blades (3, 4); and the self-cleaning system comprises a cleaning plate (16) and a driving mechanism (17) wherein the cleaning plate (16) can move longitudinally through the mixing chamber (2).

    Mixer rotor pin with hole
    5.
    发明授权

    公开(公告)号:US11344854B2

    公开(公告)日:2022-05-31

    申请号:US16817365

    申请日:2020-03-12

    申请人: KNAUF GIPS KG

    发明人: Cass Drebenstedt

    摘要: An apparatus for inserting and removing a mixer rotor pin includes at least one rotor pin with a transverse bore, as well as a rod dimensioned for slidably engaging the transverse bore. The apparatus also includes a mixer rotor pin insertion and removal tool having a tool body. A bottom of the tool has a slot for selectively engaging the aforementioned rod upon insertion of the rod into the transverse bore, and a top of the tool has a non-circular socket for accommodating a driver tool.

    METHOD FOR CONTINUOUS THERMAL SEPARATION OF A MULTI-COMPONENT SUBSTANCE

    公开(公告)号:US20230011152A1

    公开(公告)日:2023-01-12

    申请号:US17783101

    申请日:2020-12-09

    发明人: Agnar Hellenes

    摘要: A method for thermal separation of a substance flowing into a treatment chamber by use of a separation apparatus includes a vessel and a heating device. The vessel has a vessel wall with an inner surface enclosing a treatment chamber of a length lc, a height H and a width W. The vessel includes at least one substance inlet and at least one first outlet and at least one second outlet for non-evaporable and evaporable parts, respectively. The heating device is arranged outside the treatment chamber and a rotary mechanism includes a rotatable axle arranged within the treatment chamber directed along the treatment chamber's length h and a mixing device of radial diameter dmd and axial length Imd fixed to the rotatable axle and extending perpendicular to the rotatable axle. The method includes: A. heating the inner surface (la) by use of the heating device to transfer thermal energy to a minimum peripheral volume (Vp) of the treatment chamber confined between the mixing device and the inner surface (la), B. rotating the rotary mechanism by use of a rotary drive operably fixed to the rotatable axle to a peripheral rotation velocity (vp) measured at a radial outer boundary of the mixing device's which exceeds a minimum peripheral rotation velocity (vp,mm) of 5 meters per second, C. feeding the substance into the treatment chamber through the at least one substance inlet using a feeding device, wherein the substance includes two or more components, where at least one of the components is evaporable at an evaporation temperature (Te), and D. adjusting at least one of an input power of the heating device, the flow of the substance fed into at least one of the at least one substance inlet, an input power of the rotary drive and an output flow of a non-evaporated part of the substance released from the at least one first outlet, such that a total thermal energy transferred into at least part of the minimum peripheral volume (Vp) results in an operational temperature (Top) that exceeds the evaporation temperature (Te) during operation, and wherein the amount of thermal energy transferred into the part of the minimum peripheral volume (Vp) by the heating device constitutes more than 60% of the total thermal energy transferred.