Abstract:
A clean pneumatic conveying shield includes a shield body used for picking up an expanded material from an expanded material discharge port and pneumatically conveying the expanded material to the next process and provided with a hollow closed inner cavity, an outlet pipeline positioned in the middle of the top of the shield body and communicated with the inner cavity of the shield, and at least 2 inlet pipelines positioned at the top of the shield body, arranged around the outlet pipeline and communicated with the inner cavity of the shield. The shield body is provided with a splitter plate corresponding to each inlet pipeline and capable of rotating, an upper partition plate positioned above each splitter plate and a lower partition plate positioned below each splitter plate.
Abstract:
A receiver having a horizontally elongated chamber within a housing, the chamber having a convex triangular cross-section and a dump flap defining a bottom vertex of the triangular cross-section, with a horizontal air/vacuum resin material inlet connecting to the chamber, and a horizontal air/vacuum outlet leading from and connected to the chamber.
Abstract:
A plenum of distributing a flow of air from an air source includes ports extending from a face element of a body. The ports are configured to direct the flow of air out of the plenum, and the ports are arranged on the face element in a first row having first length, a second row having a second length, and a third row having a third length. The first row is positioned proximate to the top element, the third row is positioned proximate to the bottom element, and the second row is positioned between the first row and the third row. In addition, the second length is greater than the first length and the third length, and a shape of the face element is configured to accommodate the first length of the first row, the second length of the second row, and the third length of the third row.
Abstract:
A device for maintaining a pneumatic conveyance line can include a body having one or more wings. In some examples, the body is configured to be positioned between opposing rails of a pneumatic conveyance track with the one or more wings positioned on a respective opposing rail of the track. The wings can carry one or more agents for at least one of cleaning and lubricating the track. As the device is pushed along the track, the device can clean and/or lubricate the track.
Abstract:
A device for maintaining a pneumatic conveyance line can include a body having one or more wings. In some examples, the body is configured to be positioned between opposing rails of a pneumatic conveyance track with the one or more wings positioned on a respective opposing rail of the track. The wings can carry one or more agents for at least one of cleaning and lubricating the track. As the device is pushed along the track, the device can clean and/or lubricate the track.
Abstract:
A plenum of distributing a flow of air from an air source includes ports extending from a face element of a body. The ports are configured to direct the flow of air out of the plenum, and the ports are arranged on the face element in a first row having first length, a second row having a second length, and a third row having a third length. The first row is positioned proximate to the top element, the third row is positioned proximate to the bottom element, and the second row is positioned between the first row and the third row. In addition, the second length is greater than the first length and the third length, and a shape of the face element is configured to accommodate the first length of the first row, the second length of the second row, and the third length of the third row.
Abstract:
Apparatus and methods are disclosed for uptake and transport of particulate matter in a gas stream. The apparatus includes a receiver for the particulate matter connected with a gravity feed input channel assembly with a passive metering orifice therein. An in-line aeration and distribution chamber assembly is connected with an outlet from the input channel assembly and includes a chamber with plural discrete gas intake passageways opening thereinto. An outlet channel exits the chamber and is connectable with a vacuum suction source for directing a gas stream having the particulate matter entrained therein from the apparatus.
Abstract:
A system supports an outlet, within a storage silo, of a pneumatic conveyor. The outlet comprises a horizontal section, a vertical section, and an elbow interconnecting the sections. The system comprises a vertical support for suspending and centering the outlet, and a horizontal support for selectively supporting the outlet upon the silo floor. The horizontal support has clamp assemblies mounted on the horizontal section, and sets of removable support legs respectively attachable to the clamp assemblies. The horizontal support also has elbow clamp assemblies adjacent the elbow, and an elbow brace and a subframe each interconnecting the elbow clamp assemblies. Each of the support legs has a locking pin for locking that leg in a deployed position, and a storing hole for placing that leg in a stored position. The system further comprises a deflector, and sets of stanchions therefor respectively attached to the clamp assemblies of the horizontal support.
Abstract:
A delivery system deposits granular material being pneumatically conveyed within an entraining airflow to sequentially fill a storage silo from bottom to top. The delivery system has a series of vertical tubes and separators for conveying the entrained material upwardly from the bottom to the top of the silo. Each separator automatically selectively either separates the entrained material, by choking the airflow entraining the material within an outlet tube thereof, and automatically deposits the separated material through an outlet thereof; or else flows therethrough the entrained material without separation. A support system comprises a vertical support that vertically suspends and centers the delivery system within the silo and reinforces the silo, and a horizontal support that selectively supports the delivery system upon the silo floor.
Abstract:
An assembly for transferring solid particulate matter has a pressurized vessel for retaining a pre-determined quantity of the solid material. A transfer conduit connected to the vessel carries the solid material to a loading vessel, be it a processing tank, a storage vessel, or any other similar container. A discharge nozzle carried by a distant end of the transfer conduit is connected to a vacuum source, whereby a slight vacuum is created at the discharge opening. A separate dust removal conduit is secured immediately adjacent to the discharge nozzle for removal of the dust particles away from the discharge nozzle. The dust particles are collected in a separate vessel, which is mounted in a flow of air from the dust collection conduit and an exhaust fan. Mesh sleeves suspended in the vessel, capturing the dust particles on exterior surface thereof. Periodically, the dust particles are dislodged from the sleeves by blowing air through the sleeves. The dislodged dust particles are collected for disposal or recycling.