Abstract: A wall panel system of the present invention includes a plurality of inter-connecting tongue-and-groove panels which are framed by top, bottom, and side channel members to form walls which may be easily erected and taken down. The bottom channel member has a back leg, a front leg, and a bottom surface extending between the back and front legs. The top channel member can either be an integral, one-piece assembly or a two-piece assembly. In the one piece assembly, the top channel member is substantially similar to the bottom channel member. The two piece top channel member includes a fixed member and a locking leg mountable to the fixed member. The fixed member includes a back leg, an upper surface, and a rearwardly facing groove in the upper surface. The locking leg includes a finger which is received in the groove. The locking leg can have either a single panel or have or a pair of spaced apart arms.
Type:
Grant
Filed:
February 24, 2000
Date of Patent:
January 7, 2003
Assignee:
The GSI Group
Inventors:
Thomas Stuthman, Brian Dust, Corey Knight, Eugene Pollock
Abstract: A drive (D) for an auger conveyor (FC) is disclosed where the auger conveyor comprises a conveyor conduit (11) and a centerless helical coil auger (15) disposed within the conduit. The auger has a longitudinal axis and a plurality of spaced, helical flights (17). The drive (D) is a drive screw (23) substantially coaxial with the auger and having a plurality of flights in face-to-face engagement with corresponding flights of the auger. A drive member (47) is in driving engagement with the drive screw with the drive screw and the drive member being mounted for rotation about the longitudinal axis. A power drive (27) is rotatably drives the drive screw about its longitudinal axis so as to effect movement (either axial or rotational movement) of the auger relative to the conveyor conduit. A method of driving the auger is also disclosed.
Abstract: Apparatus for drawing a sample of grain from a stream of grain flowing along a path is described in which a tube extends into the grain flow path for diverting a portion of the flowing grain along the path to a sample collection station. The diverter diverts only a portion of the grain flowing along the path and the balance of the grain flowing along said sampling path is permitted to flow. A collector is provided for collecting at least a portion of the grain flowing to the sample collection station so as to accumulate grain for a sample that is representative of all of the grain flowing along the path for the time that the grain is being collected for the sample.