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    • 4. 发明申请
    • MATERIAL HANDLING APPARATUS
    • US20080044270A1
    • 2008-02-21
    • US11834804
    • 2007-08-07
    • Dennis Mead
    • Dennis Mead
    • B66C1/00
    • B66F9/122
    • A material handling apparatus for use with a material carrier board including an aperture, the material handling apparatus being configured to couple to a lifting portion of a lift truck that includes forks, the material handling apparatus including a mount configured to be coupled to the lifting portion of the lift truck, a backrest having a bottom edge and a front face, a scissor structure coupled to the mount and to the backrest, the scissor structure being configured to operate between extended and retracted states, wherein when the scissor structure is operated from the retracted state to the extended state, the backrest is extended from a proximal end of the forks towards a distal end of the forks, a stop plate including horizontal and vertical planar portions, the stop plate being attached to the bottom edge of the backrest, the stop plate being attached to the backrest such that the horizontal planar portion is substantially perpendicular to the front face of the backrest, the vertical planar portion is substantially parallel to and offset from the front face of the backrest, the horizontal planar portion of the stop plate forming an aperture, a first actuator coupled to the mount and the scissor structure being configured to actuate the scissor structure between the extended and retracted states, a second actuator coupled to the backrest, a stud coupled to the second actuator and configured to operate between extended and retracted states along an axis that is substantially parallel to the front face of the backrest, the stud being configured to extend through the aperture formed in the stop plate and through the aperture formed in the carrier board when the stud is actuated from the retracted to the extended state, wherein the material handling apparatus is configured to pull the carrier board onto the forks by, when the stud is in the extended state, actuating the scissor portion from an extended state to a retracted state.
    • 5. 发明授权
    • Case flow roller bed system
    • 表壳辊床系统
    • US07510066B2
    • 2009-03-31
    • US11433687
    • 2006-05-12
    • John D. GoffredoDennis Mead
    • John D. GoffredoDennis Mead
    • B65G13/00
    • B65G1/08B65G1/023B65G13/11B65G47/8823
    • A case flow system includes a case flow roller bed having a proximal portion having a front end, a plurality of laterally extending axles disposed parallel to said front end and longitudinally spaced apart from each other, and a plurality of wheels disposed in a spaced-apart pattern along each of said axles, a distal portion having a rear end, and a movable stop member positioned between the proximal portion and distal portion of the case flow roller bed; at least one lower bar extending laterally and at least partially across the front end of the proximal portion of the case flow roller bed; and a fixed upper bar extending laterally across the front end of the proximal portion of the case flow roller bed, the fixed bar being vertically spaced apart from and above the lower bar so as to define a gap therebetween.
    • 壳体流动系统包括壳体流动辊床,其具有近端部分,该近端部分具有前端,多个横向延伸的轴线平行于所述前端设置并且彼此纵向间隔开;以及多个车轮,其间隔开设置 每个所述轴的图案,具有后端的远端部分和位于壳体流动辊床的近端部分和远端部分之间的可移动止动构件; 至少一个下部杆横向延伸并且至少部分地横过所述壳体流动辊床的近端部分的前端延伸; 以及横向延伸穿过壳体流动辊床的近端部分的前端的固定上杆,固定杆与下杆垂直地间隔开并且在下杆之间限定它们之间的间隙。
    • 6. 发明申请
    • Case flow system
    • 案例流程系统
    • US20070261934A1
    • 2007-11-15
    • US11433687
    • 2006-05-12
    • John GoffredoDennis Mead
    • John GoffredoDennis Mead
    • B65G13/00
    • B65G1/08B65G1/023B65G13/11B65G47/8823
    • A case flow system includes a case flow roller bed having a proximal portion having a front end, a plurality of laterally extending axles disposed parallel to said front end and longitudinally spaced apart from each other, and a plurality of wheels disposed in a spaced-apart pattern along each of said axles, a distal portion having a rear end, and a movable stop member positioned between the proximal portion and distal portion of the case flow roller bed; at least one lower bar extending laterally and at least partially across the front end of the proximal portion of the case flow roller bed; and a fixed upper bar extending laterally across the front end of the proximal portion of the case flow roller bed, the fixed bar being vertically spaced apart from and above the lower bar so as to define a gap therebetween.
    • 壳体流动系统包括壳体流动辊床,其具有近端部分,该近端部分具有前端,多个横向延伸的轴线平行于所述前端设置并且彼此纵向间隔开;以及多个车轮,其间隔开设置 每个所述轴的图案,具有后端的远端部分和位于壳体流动辊床的近端部分和远端部分之间的可移动止动构件; 至少一个下部杆横向延伸并且至少部分地横过所述壳体流动辊床的近端部分的前端延伸; 以及横向延伸穿过壳体流动辊床的近端部分的前端的固定上杆,固定杆与下杆垂直地间隔开并且在下杆之间限定它们之间的间隙。