Abstract:
A method of controlling the vibration of a vibratory separator, the method including providing a vibratory separator having a frame and a plurality of force generators coupled to the frame and a control unit operatively connected to each of the plurality of force generators, and independently controlling each of the plurality of force generators. Independently controlling each of the plurality of force generators controls a motion profile of the vibratory separator.
Abstract:
A method of controlling the vibration of a vibratory separator, the method including providing a vibratory separator having a frame and a plurality of force generators coupled to the frame and a control unit operatively connected to each of the plurality of force generators, and independently controlling each of the plurality of force generators. Independently controlling each of the plurality of force generators controls a motion profile of the vibratory separator.
Abstract:
A coated screen has a screen frame. A screen mesh having a top surface and a bottom surface may be attached to the upper side of the screen frame and may extend the length and the width of the screen frame. A surface of the screen mesh may have a coating. The coating is at least one of hydrophilic, oleophilic, hydrophobic or oleophobic. A method of manufacturing a coated screen includes attaching a mesh to a screen frame. The mesh has a top surface and a bottom surface. A hydrophilic coating may be applied to the top surface of the mesh. A method of coating a screen includes applying a coating to a surface of a screen mesh wherein the coating is at least one of hydrophilic, oleophilic, hydrophobic or oleophobic.
Abstract:
An apparatus and a method filters particles using a screen assembly with an inner section, an outer section and a screen material. The inner section and the outer section form an opening. The screen material is stretched across the opening and is supported by the inner section. The inner section is flexible relative to the outer section. When particles are introduced to the screen material, the inner section flexes to reduce strain on the screen material.
Abstract:
An apparatus and a method filters particles using a screen assembly with an inner section, an outer section and a screen material. The inner section and the outer section form an opening. The screen material is stretched across the opening and is supported by the inner section. The inner section is flexible relative to the outer section. When particles are introduced to the screen material, the inner section flexes to reduce strain on the screen material.
Abstract:
A system and a method separate fluid and solids of a slurry using a cross-flow shaker (10) as part of a solids removal system. The system has a head pipe (12) to impart head pressure to the slurry. An intake pipe (14) is connected to the head pipe (12) to interface between the head pipe (12) and a cross-flow chamber (18). Separating screens (20A-20D) are set into the cross-flow chamber (18) to allow fluid to separate as the slurry flows tangentially across the surface of the separating screens (20A-20D). The cross-flow chamber (18) is vibrated by vibration motors (30). The flow of slurry through the cross-flow chamber (18) is restricted by an orifice (34) in an end cap (32) creating back pressure. The solids and the remaining fluid exit the cross-flow chamber (18) through the orifice (34) in the end cap (32).
Abstract:
An apparatus has a frame with a screen portion and a discharge portion adjacent thereto. The frame has a bottom surface and a substantially planar top surface. The top surface extends from the screen portion to the discharge portion. An opening located in the screen portion of the frame extends through the frame from the top surface to the bottom surface. A spout formed in the discharge portion has a shape of a hollow cylinder and extends through the frame from the top surface to the bottom surface. A system has a separator with an inlet into which material to be separated enters. A unitary screen frame has a screen portion and a discharge spout with a planar top surface extending from the screen portion to the discharge spout. A first portion of the material entering the inlet flows from the planar top surface to the discharge spout.
Abstract:
An apparatus has a frame with a screen portion and a discharge portion adjacent thereto. The frame has a bottom surface and a substantially planar top surface. The top surface extends from the screen portion to the discharge portion. An opening located in the screen portion of the frame extends through the frame from the top surface to the bottom surface. A spout formed in the discharge portion has a shape of a hollow cylinder and extends through the frame from the top surface to the bottom surface. A system has a separator with an inlet into which material to be separated enters. A unitary screen frame has a screen portion and a discharge spout with a planar top surface extending from the screen portion to the discharge spout. A first portion of the material entering the inlet flows from the planar top surface to the discharge spout.