Liner component for a grinding mill
US-9475058-B2 · Oct 25, 2016 · US
US10166547B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10166547-B2 |
| Application number | US-201515517696-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 12, 2015 |
| Priority date | Oct 14, 2014 |
| Publication date | Jan 1, 2019 |
| Grant date | Jan 1, 2019 |
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Official abstract text for this publication.
A lifter bar, method for making a lifter bar, a method for assembling a lifter bar and a grinding mill for ore grinding is provided. The lifter bar includes a lifter bar body having an outer surface conforming to the outer surface of the lifter bar and a fixing element for connecting the lifter bar to the shell of the grinding mill. The lifter bar body further includes a first portion and a second portion forming a continuous lifter bar body. The fixing element is embedded in the first portion such that it forms part of the fixing surface of the lifter bar. The second portion is made of polyurethane and forms 35-85% of the volume of the lifter bar.
Opening claim text (preview).
The invention claimed is: 1. A lifter bar configured to be mountable to a shell of a grinding mill for ore grinding, comprising: an outer surface comprising a fixing surface to be arranged against the shell of the grinding mill; a wear surface facing toward an interior portion of the grinding mill; a lifter bar body having an outer surface conforming to the outer surface of the lifter bar; and a fixing element for connecting the lifter bar to the shell of the grinding mill, the lifter bar body further comprising a first portion and a second portion forming a continuous lifter bar body, wherein the fixing element is embedded in the first portion such that the fixing element forms a part of the fixing surface of the lifter bar, wherein the first portion of the lifter bar body is made of rubber, wherein the second portion is made of polyurethane and forms 35-85% of a volume of the lifter bar. 2. The lifter bar according to claim 1 , wherein the first portion of the lifter bar body is recyclable. 3. The lifter bar according to claim 1 , wherein the second portion-is formed of polyurethane and forms 40-80% of the volume of the lifter bar. 4. The lifter bar according to claim 1 , wherein the lifter bar further comprises: a reinforced wearing plate attached to the second portion of the lifter bar body, the reinforced wearing plate comprising metal, wherein the reinforced wearing plate further comprises a wearing surface for forming a part of the outer surface of the lifter bar in a distal end of the second portion or in the vicinity of the second portion; and an attachment structure disposed on the reinforced wearing plate for attaching the reinforced wearing plate to the lifter bar body, the attachment structure protruding into the second portion of the lifter bar body for forming a connection with polyurethane. 5. The lifter bar according to claim 1 , wherein the fixing element is a mechanical fixing element. 6. The lifter bar according to claim 1 , wherein the fixing element is a lifter channel. 7. A grinding mill for ore grinding comprising multiple lifter bars arranged on a shell of the grinding mill, wherein the multiple lifter bars of the grinding mill are according to claim 1 . 8. The grinding mill according to claim 7 , wherein the grinding mill is configured to output an energy per ton of ore of 1-30 kWh/t. 9. The grinding mill according to claim 7 , wherein the grinding mill defines a circular profile having a diameter of 1-15 m. 10. The grinding mill according to claim 7 , wherein the grinding mill has a length of 1-15 m in a horizontal direction. 11. The grinding mill according to claim 7 , wherein the shell of the grinding mill has a thickness of 0.5-10 cm. 12. The grinding mill according to claim 7 , wherein the grinding mill is configured to grind an input material of which at least 80% has a particle size that is between 0.1-300 mm to a grinded output material of which 80% has a particle size that is between 0.02-3 mm. 13. The grinding mill according to claim 12 , wherein the grinding mill is configured to grind an input material of which at least 80% has a particle size that is between 1-250 mm. 14. The grinding mill according to claim 12 , wherein the grinding mill is configured to grind an input material of which at least 80% has a particle size that is between 80-220 mm. 15. The grinding mill according to claim 12 , wherein the grinding mill is configured to grind an input material of which at least 80% has a particle size that is between 0.1-300 mm to a grinded output material of which at least 80% has a particle size that is between 0.05-2.5 mm. 16. The grinding mill according to claim 12 , wherein the grinding mill is configured to grind an input material of which at least 80% has a particle size that is between 0.1-300 mm to a grinded output material of which at least 80% has a particle size that is between 0.2-2 mm. 17. The grinding mill according to claim 7 , wherein the grinding mill further comprises shell plates arranged between adjacent lifter bars. 18. The grinding mill according to claim 7 , wherein the grinding mill is configured to output a grinding energy per ton of ore of 3-20 kWh/t. 19. The grinding mill according to claim 7 , wherein the grinding mill defines a circular profile having a diameter of 1.5-10 m. 20. The grinding mill according to claim 7 , wherein the grinding mill has a length of 2-8 m.
using rubber or elastomeric material · CPC title
characterised by the choice of material · CPC title
Lifting devices (lifting devices associated with the lining for containers B02C17/22) · CPC title
Measuring, controlling or regulating · CPC title
Moulds, cores or other substrates · CPC title
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