Conbination scale
US-2016370222-A1 · Dec 22, 2016 · US
US10018496B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10018496-B2 |
| Application number | US-201615202203-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 5, 2016 |
| Priority date | Jul 2, 2015 |
| Publication date | Jul 10, 2018 |
| Grant date | Jul 10, 2018 |
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Official abstract text for this publication.
A hopper has a gate pivotable to open and close the lower opening of a hopper body, wherein opposing side parts more spaced apart than a width of the body are extending from the gate, and the opposing side parts of the gate are externally fitted pivotably to fulcrum shafts protruding from outer side surfaces of the hopper body. The hopper further includes regulating members interposed between the outer side surfaces of the body and the opposing side parts of the gate. The regulating members are configured to regulate movements of the gate in pivotal directions thereof and are detachably engaged with the fulcrum shafts circumferentially around the fulcrum shafts.
Opening claim text (preview).
The invention claimed is: 1. A hopper, comprising. a body having openings on upper and lower sides thereof; and a gate pivotable to open and close the lower opening of the body, wherein the body of the hopper comprises fulcrum shafts protruding from outer side surfaces on both sides thereof, the gate comprises opposing side parts spaced apart at an interval greater in dimension than a width of the body between the outer side surfaces, the opposing side parts of the gate being externally fitted pivotably to the fulcrum shafts on the outer side surfaces of the body, the hopper further comprises regulating members interposed between the outer side surfaces of the body and the opposing side parts of the gate, the regulating members being configured to regulate movements of the gate in axial directions of the fulcrum shafts to prevent the opposing side parts from falling off the fulcrum shafts, and the regulating members are detachably engaged with the fulcrum shafts circumferentially around the fulcrum shafts. 2. The hopper as claimed in claim 1 , wherein the opposing side parts of the gate comprise fulcrum portions externally fitted to the fulcrum shafts of the body of the hopper, and the fulcrum portions comprise fulcrum bosses and flanged bearings removably inserted in the fulcrum bosses from inner sides of the opposing side parts. 3. The hopper as claimed in claim 1 , wherein the body of the hopper comprises mounting shafts protruding from the outer side surfaces of the body, the regulating members are pivotably and removably fitted to the mounting shafts, and the regulating members are pivoted around the mounting shafts to be detachably engaged with the fulcrum shafts circumferentially around the fulcrum shafts. 4. The hopper as claimed in claim 1 , further comprising stoppers configured to abut the regulating members to deter displacements of the) regulating members engaged with the fulcrum shafts in directions in which the engagements with the fulcrum shafts are released. 5. The hopper as claimed in claim 4 , wherein the body of the hopper comprises support pins protruding from the outer side surfaces of the body, the stoppers are externally fitted removably to the support pins, and the hopper further comprises retaining pieces configured to prevent the stoppers from falling off the support pins. 6. The hopper as claimed in claim 4 , comprising the gates provided in a pair, wherein the gates are pivoted, in opposite directions to open and close the lower opening of the body of the hopper, the regulating members are separately interposed between the outer side surfaces of the body and the opposing side parts of the gates, and the stopper singly provided deters displacements of the regulating members on the outer side surfaces in the directions in which the engagements with the fulcrum shafts are released. 7. A combination scale, comprising: a dispersing feeder configured to radially disperse and deliver articles to be weighed received from outside; a plurality of linear feeders configured to deliver outwardly the articles dispersed in and delivered from the dispersing feeder; and a plurality of feeding hoppers configured to hold and discharge the articles delivered from the linear feeders; and a plurality of weighing hoppers configured to hold and weigh the articles discharged from the feeding hoppers, wherein the feeding hoppers and the weighing hoppers each comprise: a body having openings on upper and lower sides thereof; and a gate pivotable to open and close the lower opening of the body; the bodies of the feeding hoppers and the weighing hoppers each have fulcrum shafts protruding from outer side surfaces on both sides of the body, the gates each comprise opposing side parts spaced apart at an interval greater in dimension than a width of the body between the outer side surfaces, the opposing side parts in each of the gates being externally. fitted pivotably to the fulcrum shafts on the outer side surfaces of the body, the feeding hoppers and the weighing hoppers each further comprise regulating members interposed between the outer side surfaces of the body and the opposing side parts of the gate, the regulating members being configured to regulate movement of the gate in axial directions of the fulcrum shafts to prevent the opposing side parts from falling off the fulcrum shafts, and the regulating members are detachably engaged with the fulcrum shafts circumferentially around the fulcrum shafts. 8. The combination scale as claimed in claim 7 , wherein the opposing side parts in each of the gates comprise fulcrum portions externally fitted to the fulcrum shafts of the body of the hopper, and the fulcrum portions comprise fulcrum bosses and flanged bearings removably inserted in the fulcrum bosses from inner sides of the opposing side parts. 9. The combination scale as claimed in claim 7 , wherein the bodies of the hoppers each comprise mounting shafts protruding from the outer side surfaces of the body, the regulating members are pivotably and removably fitted to the mounting shafts, and the regulating members are pivoted around the mounting shafts to be detachably engaged with the fulcrum shafts circumferentially around the fulcrum shafts. 10. The combination scale as claimed in claim 7 , wherein the feeding hoppers and the weighing hoppers each further comprise stoppers configured to abut the regulating members to deter displacements of the regulating members engaged with the fulcrum shafts in directions in which the engagements with the fulcrum shafts are released. 11. The combination scale as claimed in claim 10 , wherein the bodies of the hoppers each comprise support pins protruding from the outer side surfaces thereof, the stoppers are externally fitted removably to the support pins, and the feeding hoppers and the weighing hoppers each further comprise retaining pieces configured to prevent the stoppers from falling off the support pins. 12. The combination scale as claimed in claim 10 , wherein the feeding hoppers and the weighing hoppers each comprise the gates provided in a pair, the gates are pivoted in opposite directions to each other to open and close the lower opening of the body of the hopper, the regulating members are separately interposed between the outer side surfaces of the body and the opposing side parts of the gates, and the stopper singly provided deters displacements of the regulating members on the outer side surfaces in the directions in which the engagements with the fulcrum shafts are released. 13. The combination scale as claimed in claim 7 , further comprising a plurality of memory hoppers configured to hold and discharge the articles received from the weighing hoppers, wherein the memory hoppers each comprise: a body having openings on upper and lower sides thereof; and a gate pivotable to open and close the lower opening of the body, the bodies of the memory hoppers each have fulcrum shafts protruding from outer side surfaces on both sides of the body, the gates of the memory hoppers each have opposing side parts spaced apart at an interval greater in dimension than a width of the body between the outer side surfaces, the opposing side parts in each of the gates of the memory hoppers being externally fitted pivotably to the fulcrum shafts on the outer side surfaces of the body, the memory hoppers each further comprise regulating members interposed between the outer side surfaces of the body and the opposing side parts of the gate, the regulating members of the memory hoppers being configured to regulate movement of the, gates in the axial d
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