Abstract:
A mold assembly for manufacturing concrete blocks in an automated dry-cast block machine. The mold assembly includes a plurality of liner plates which together form a mold cavity, wherein at least one of the liner plates includes an internal network of shafts which is configured to receive and provide a flow path for heated fluid to pass through to heat the at least one liner plate.
Abstract:
A masonry block molded by a masonry block machine employing a mold assembly having a plurality of liner plates, at least one of which is moveable; the masonry block including a first transverse face, a second transverse face opposing the first transverse face, a first major face joining the first transverse face to the second transverse face, a second major face opposing the first major face and joining the first transverse face to the second transverse face, a first end face joining the first major face to the second major face, and a second end face opposing the first end face and joining the first major face to the second major face, wherein the first end face comprises a non-planar face configured to engage and overlap with a non-planar end face of a similar masonry block.
Abstract:
A mold assembly for manufacturing concrete blocks and which is adapted for use in a concrete block machine. The mold assembly includes a plurality of liner plates forming at least a first mold cavity, wherein at least a first liner plate is moveable, and a drive assembly. The drive assembly includes a first drive element having a first end and coupled to the first moveable liner plate proximate to a second end, and an actuator assembly. The actuator assembly includes a second drive element selectively coupled to the first drive element proximate to the first end, wherein the actuator assembly is configured to drive the second drive element along a first axis so as to cause at least the second end of the first drive element to move along a second axis and cause the first moveable liner plate to move toward and away from an interior of the first mold cavity.
Abstract:
A masonry block molded by a masonry block machine employing a mold assembly having a plurality of liner plates, at least one of which is moveable. The masonry block includes a first transverse face, a second transverse face opposing the first transverse face, at least one aperture extending through the masonry block between the first and second transverse faces, a first end face joining the first and second transverse faces, a second end face opposite the first end face and joining the first and second transverse faces, a first major face joining the first end and second end faces, and a second major face opposing the first major face and joining the first and second end faces. A molded utility opening extends through the first major face to the at least one aperture and adapted to receive a utility device, wherein the first major face and molded utility opening are formed during a molding process by action of a moveable liner plate having a mold element which is a negative of the molded utility opening.
Abstract:
A masonry block molded by a masonry block machine employing a mold assembly having a plurality of liner plates, at least one of which is moveable; the masonry block including a first transverse face, a second transverse face opposing the first transverse face, a first major face joining the first transverse face to the second transverse face, a second major face opposing the first major face and joining the first transverse face to the second transverse face, a first end face joining the first major face to the second major face, and a second end face opposing the first end face and joining the first major face to the second major face, wherein the first end face comprises a non-planar face configured to engage and overlap with a non-planar end face of a similar masonry block and is formed during a molding process through action of a moveable liner plate having a negative of the non-planar end face.
Abstract:
A mold assembly for manufacturing concrete blocks that is adapted for use in a concrete block machine. The mold assembly includes a plurality of liner plates, each having a major surface, the liner plates configured such that the major surfaces form a mold cavity having a desired form, and wherein at least one of the liner plates is moveable. A gear drive assembly is selectively coupled to the at least one moveable liner plate and configured to move the at least one moveable liner plate toward and away from an interior of the mold cavity. A stabilizer assembly is operatively coupled to the gear drive assembly and is configured to support the gear drive assembly as it moves the at least one moveable liner plate.
Abstract:
A mold assembly for manufacturing concrete blocks that is adapted for use in a concrete block machine. The mold assembly includes a plurality of liner plates, each having a major surface, the liner plates configured such that the major surfaces form a mold cavity having a desired form, and wherein at least one of the liner plates is moveable. A gear drive assembly is selectively coupled to the at least one moveable liner plate and configured to move the at least one moveable liner plate toward and away from an interior of the mold cavity. A stabilizer assembly is operatively coupled to the gear drive assembly and is configured to support the gear drive assembly as it moves the at least one moveable liner plate.
Abstract:
One aspect of the present invention provides a mold assembly for manufacturing concrete blocks that is adapted for use in a concrete block machine. The mold assembly comprises a plurality of liner plates and a gear drive assembly. Each liner plate has a major surface and the liner plates are configured such that the major surfaces form a mold cavity, wherein at least one of the liner plates is moveable. The gear drive assembly is selectively coupled to the at least one moveable liner plate and is configured to move the at least one moveable liner plate in a first direction toward an interior of the mold cavity by applying a force in a second direction different from the first direction, and to move the liner plate in a direction away from the interior of the mold cavity by applying a force in a direction opposite the second direction.
Abstract:
One aspect of the present invention provides a mold assembly for manufacturing concrete blocks that is adapted for use in a concrete block machine. The mold assembly comprises a plurality of liner plates and a gear drive assembly. Each liner plate has a major surface and the liner plates are configured such that the major surfaces form a mold cavity, wherein at least one of the liner plates is moveable. The gear drive assembly is selectively coupled to the at least one moveable liner plate and is configured to move the at least one moveable liner plate in a first direction toward an interior of the mold cavity by applying a force in a second direction different from the first direction, and to move the liner plate in a direction away from the interior of the mold cavity by applying a force in a direction opposite the second direction.
Abstract:
A concrete block machine including a mold having at least one mold cavity, a feedbox driven back and forth between retracted and extended positions, wherein the feedbox is positioned over a top of the mold deposits concrete in the at least one mold cavity when at the extended position, a cutoff bar coupled to the feedbox and including a moveable cutoff element, and a drive system. The drive system is coupled to the moveable cutoff element and moves the moveable cutoff element to adjust a distance between the moveable cutoff element and the top of the mold as the feedbox is driven from the extended position to the retracted position such that the moveable cutoff element removes varying amounts of concrete deposited in the mold cavity so that a depth of concrete remaining in the mold cavity varies in a desired fashion in a direction of movement of the feedbox.