F26B25/14

Seed treatment method incorporating an incline mixing conveyor

A seed treatment system incorporates an incline conveyor to mix freshly treated seed. A metered seed flow is maintained. A treatment applicator positioned above a tail end of the incline conveyor applies a seed treatment to the metered seed flow to form a treated seed flow. The treated seed flow freefalls into a transition zone and pre-mixes before moving upward within the incline conveyor. An eddy may form within the treated seed flow due to a partial obstruction within the incline conveyor. A prescribed amount of the treated seed flow backflows into the eddy in a cascading manner. Backflow movement may be contrary to conveyance of a substantial amount of the treated seed up through the incline conveyor. The seed treatment distributes about the treated seed flow within the incline conveyor. The treated seed flow discharges with complete cleanout at a head end of the incline conveyor.

FREEZE-DRYING TRAY ASSEMBLY

Assemblies, systems, and methods for preventing contamination and alteration of a biological material during and after freeze-drying processes are disclosed. Tray assemblies configured to hold the biological material in a container during a freeze-drying process include a tray and complementary lid. The lid can include compressible leg members configured to transition from an extended configuration to a compressed configuration in response to a downward force applied against the lid when the lid is positioned above the tray. A gap exists between an upper edge of the tray and an underside of the lid when the leg members are extended. With the legs extended and the tray assembly open, the tray assembly is freeze-dried. After freeze-drying is complete, the legs can be compressed and the lid sealed against the tray, enclosing the biological material within the assembly, and protecting it from contamination and ambient air exposure within and outside the chamber.

On-job-site method of and system for providing class-A fire-protection to wood-framed buildings during construction
10267034 · 2019-04-23 · ·

A method of and system for on-job-site spray coating of clean fire inhibiting liquid chemical (CFIC) liquid all over the exposed interior surfaces of raw and treated lumber, sheathing and wood used in a completed section of a wood-framed assemblies in a wood-framed building during its construction phase. The system includes a liquid spray pumping subsystem having a reservoir tank for holding a supply of the CFIC liquid; and a hand-held liquid spray nozzle for spraying the CFIC liquid from the reservoir tank, over the exposed interior wood surfaces of lumber and sheathing used in a completed section of a wood-framed assembly in a wood-framed building during construction phase. The CFIC-coated wood surfaces suppress fire ignition and suppression by interfering with free radicals (H+, OH, O) produced during the combustion phase of a fire.

Paint baking oven and paint baking method
10267562 · 2019-04-23 · ·

A paint baking oven bakes a wet coating film applied to a vehicle body while conveying the vehicle body. The vehicle body has a main shell body to which side doors are attached via hinges. The topcoat paint baking oven includes a oven body and a hot air supplier that supplies hot air into the oven body. The oven body is configured to include a first oven body and a second oven body. The first oven body has a side-to-side width corresponding to a body width of the vehicle body in a state of closing the side doors. The second oven body has a width wider than the side-to-side width of the first oven body. The width of the second oven body corresponds to a body width of the vehicle body in a state of opening the side doors.

Paint baking oven and paint baking method
10267562 · 2019-04-23 · ·

A paint baking oven bakes a wet coating film applied to a vehicle body while conveying the vehicle body. The vehicle body has a main shell body to which side doors are attached via hinges. The topcoat paint baking oven includes a oven body and a hot air supplier that supplies hot air into the oven body. The oven body is configured to include a first oven body and a second oven body. The first oven body has a side-to-side width corresponding to a body width of the vehicle body in a state of closing the side doors. The second oven body has a width wider than the side-to-side width of the first oven body. The width of the second oven body corresponds to a body width of the vehicle body in a state of opening the side doors.

Methods of designing and constructing Class-A fire-protected multi-story wood-framed buildings
10260232 · 2019-04-16 · ·

A method of and system for designing and constructing high-density multi-story wood-framed buildings, and Class-A fire-protected building components, and methods and factories for producing the same in an economical manner. An on-job-site method is provided for treating wood-framed buildings so that such wood-framed buildings demonstrate Class-A fire-protection and improved defense against total fire destruction.

Methods of designing and constructing Class-A fire-protected multi-story wood-framed buildings
10260232 · 2019-04-16 · ·

A method of and system for designing and constructing high-density multi-story wood-framed buildings, and Class-A fire-protected building components, and methods and factories for producing the same in an economical manner. An on-job-site method is provided for treating wood-framed buildings so that such wood-framed buildings demonstrate Class-A fire-protection and improved defense against total fire destruction.

VENTED COVER PLATE FOR AN ARRAY OF SYRINGES

A cover plate for use in lyophilization processes is provided. The cover plate includes a base portion and a plurality of protuberances which project from the base portion. The protuberances are adapted to fit in one or more delivery containers, such as syringe barrels. The cover plate permits the escape of vapor from the one or more delivery containers during a lyophilization process. In addition, the cover plate prevents the escape of lyophilizate from the one or more delivery containers during a lyophilization process. Vent features provided to provide enhanced and preferred venting operations during lyophilization processes.

Centrifugal machine for drying granular solid materials
10180283 · 2019-01-15 ·

The present invention relates to a centrifugal machine (1) for drying granular solid materials, comprising a hopper (2), a centrifuging mechanism (3), associated to the hopper (2), provided with a rotary helical device (6) enabling the transport of the granular solid materials. Said centrifuging mechanism (3) is also provided with a perforated rotary piece (7), surrounding the rotary helical device (6) configured to remove, by centrifugal force, free liquids adhered to the surface of the granular solid materials. Additionally, the machine (1) comprises a solid outlet duct (5) and a solid collecting chamber (8), arranged between the centrifuging mechanism (3) and the solid outlet duct (5), capable of receiving the centrifuging granular solid materials from the rotary piece (7). The solid collecting chamber (8) is provided with a solid conducting rotor (9), which comprises radial blades (10) configured to push the granular solid materials and impart an increase in tangential velocity to them. The rotary helical device (6) and the rotary piece (7) are configured to allow adjustments of angular velocity.

Centrifugal machine for drying granular solid materials
10180283 · 2019-01-15 ·

The present invention relates to a centrifugal machine (1) for drying granular solid materials, comprising a hopper (2), a centrifuging mechanism (3), associated to the hopper (2), provided with a rotary helical device (6) enabling the transport of the granular solid materials. Said centrifuging mechanism (3) is also provided with a perforated rotary piece (7), surrounding the rotary helical device (6) configured to remove, by centrifugal force, free liquids adhered to the surface of the granular solid materials. Additionally, the machine (1) comprises a solid outlet duct (5) and a solid collecting chamber (8), arranged between the centrifuging mechanism (3) and the solid outlet duct (5), capable of receiving the centrifuging granular solid materials from the rotary piece (7). The solid collecting chamber (8) is provided with a solid conducting rotor (9), which comprises radial blades (10) configured to push the granular solid materials and impart an increase in tangential velocity to them. The rotary helical device (6) and the rotary piece (7) are configured to allow adjustments of angular velocity.