Abstract:
A conveyor belt includes a carrying-side cover plate and a running-side cover plate. The cover plates conjointly define a belt body having a plurality of reinforcement elements embedded therein. The belt body has edge zones and is closable so as to cause the edge zones to overlap and be in mutual contact engagement to form a tube conveyor belt or a pocket conveyor belt. The carrying-side cover plate has a chevron profile arrangement which includes a plurality of diagonal elements extending in both a longitudinal direction and a transverse direction of the conveyor belt. Each two of the diagonal elements conjointly defines a pair with multiple pairs defining a V-formation having a tip aligned in a direction opposite to the direction of movement of the belt.
Abstract:
An arrangement continuously and non-destructively monitors a conveyor system having a continuous conveyor belt with a carrying-side cover plate and a running-side cover plate, each made of a polymeric material with elastic properties. The arrangement further includes drums wherein the above-mentioned components form, in conjunction with the conveyor belt, a material-conveying top strand (A) and a material-conveying or material-free bottom strand (B). A conductor loop packet with continuous conductor loops is embedded in the conveyor belt. An electronic slit protection system contactlessly detects damage to the conveyor belt. The slit protection system is an electrical system including an interrogation station and a slit monitoring station and is connected to a central controller which controls the entire conveyor system. The arrangement is equipped, as part of a conductor loop packet, with sequential conductor loops and a sequential slit protection system.
Abstract:
A conveyor belt, in particular a tubular conveyor belt or a pipe conveyor belt or a pouch conveyor belt, which has a belt body that has a carrying-side cover sheet, a profiling that is formed substantially perpendicular to the surface of the carrying-side cover sheet being formed on the carrying-side cover sheet, the profiling having a number of transverse-strip profiling regions along a longitudinal direction of the carrying-side cover sheet.
Abstract:
The invention relates to a conveyor belt (100), in particular a tubular conveyor belt or a pocket conveyor belt, having a belt body (10), which has a cover plate (11) on the carrying side for receiving conveyable material to be transported, wherein a profiling formed substantially in the direction (Z) perpendicular to the surface (21) of the cover plate (11) on the carrying side is formed on the cover plate (11) on the carrying side. The profiling (14) has a plurality of transverse strip profiling regions (15) along a longitudinal direction (X) of the cover plate (11) on the carrying side, wherein the profiling (14) has a plurality of chevron profiling regions (16) in addition to the transverse strip profiling regions (15) along the longitudinal direction (X) of the cover plate (11) on the carrying side.
Abstract:
An arrangement continuously and non-destructively monitors a conveyor system having a continuous conveyor belt with a carrying-side cover plate and a running-side cover plate, each made of a polymeric material with elastic properties. The arrangement further includes drums wherein the above-mentioned components form, in conjunction with the conveyor belt, a material-conveying top strand (A) and a material-conveying or material-free bottom strand (B). A conductor loop packet with continuous conductor loops is embedded in the conveyor belt. An electronic slit protection system contactlessly detects damage to the conveyor belt. The slit protection system is an electrical system including an interrogation station and a slit monitoring station and is connected to a central controller which controls the entire conveyor system. The arrangement is equipped, as part of a conductor loop packet, with sequential conductor loops and a sequential slit protection system.
Abstract:
A pipe belt system comprising one or more thermoplastic elastomeric (TPE) layers and a reinforcement layer is disclosed. The one or more thermoplastic elastomeric (TPE) layers have a first modulus of elasticity and a first stiffness and formed across a width of the belt. The reinforcement layer is formed proximate to the one or more TPE layers and has a second modulus of elasticity and a second stiffness. The pipe belt is configured to have an open state where the belt is substantially flat and a closed state where the belt is formed having a circular shape and partially overlaps itself. The pipe belt has a combined modulus of elasticity based on the first modulus of elasticity and the second modulus of elasticity and a combined stiffness based on the first stiffness and the second stiffness.
Abstract:
A pipe belt system comprising one or more thermoplastic elastomeric (TPE) layers and a reinforcement layer is disclosed. The one or more thermoplastic elastomeric (TPE) layers have a first modulus of elasticity and a first stiffness and formed across a width of the belt. The reinforcement layer is formed proximate to the one or more TPE layers and has a second modulus of elasticity and a second stiffness. The pipe belt is configured to have an open state where the belt is substantially flat and a closed state where the belt is formed having a circular shape and partially overlaps itself. The pipe belt has a combined modulus of elasticity based on the first modulus of elasticity and the second modulus of elasticity and a combined stiffness based on the first stiffness and the second stiffness.
Abstract:
A conveyor belt includes a carrying-side cover plate and a running-side cover plate. The cover plates conjointly define a belt body having a plurality of reinforcement elements embedded therein. The belt body has edge zones and is closable so as to cause the edge zones to overlap and be in mutual contact engagement to form a tube conveyor belt or a pocket conveyor belt. The carrying-side cover plate has a chevron profile arrangement which includes a plurality of diagonal elements extending in both a longitudinal direction and a transverse direction of the conveyor belt. Each two of the diagonal elements conjointly defines a pair with multiple pairs defining a V-formation having a tip aligned in a direction opposite to the direction of movement of the belt.