Patent · US4274286A · A · US
Powder flowability test equipment
- (11) Publication number
- US4274286A
- (21) Application number
- US-6415079-A
- (22) Filing date
- 1979-08-06
- (30) Priority date
- 1979-08-06
- (43) Publication date
- 1981-06-23
- (45) Date of grant
- 1981-06-23
- (52) CPC
- G01N Investigating or analysing materials by determining their chemical or physical properties: 11/02, 2001/1006, 33/0091
- (73) Assignee
- LEPETIT SPA
- (54) Title
- Powder flowability test equipment
- (57) Abstract
An apparatus for measuring the flowability of powder utilizes a container having a bottom wall with an opening therein. The bottom wall may be changed to provide openings of different sizes. The test consists of allowing the powder to flow through successively smaller holes. The smallest hole size through which the powder will freely flow is a measure of its flowability.
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Claims (9)
- A powder flowability test device which essentially consists in a cylinder which is fitted at the bottom with a disk containing a central hole of varying diameter closed by a removable plate, said cylinder having an inside diameter which is larger than the largest hole diameter.
- A powder flowability test device as claimed in claim 1 characterized in that it comprises several disks, each one containing a hole of different diameter to be inset in the fixed cylinder.
- A powder flowability test device as claimed in claim 1 characterized in that it comprises a plate containing several holes of different diameter distributed in one or more rows over which the open cylinder may be moved.
- A powder flowability test device of claim 2 wherein the diameters of the holes are selected within a sequence of increasing size comprised from about 4 to about 40 mm, and the difference in diameter between two consecutive holes ranges from about 0.5 to about 3 mm.
- A powder flowability test device as claimed in claims 1 including a detecting system that stops the shutter when the powder begins to flow.
- A powder flowability test device as claimed in claim 5 wherein the detecting system is a photoelectric cell.
- A powder flowability test device comprising a horizontal plate for supporting a powder fill, said plate having a hole of variable diameter; means for containing the powder fill on the plate over the hole, said means having dimensions larger than the largest hole diameter; and means for shutting said hole, said shutting means being releasable to open said hole, thereby allowing powder to flow through the hole without shaking the hole; whereby a cavity is formed in the powder fill on the plate when the powder flows through said hole.
- A method of measuring intrinsic flowability of a powder comprising: (a) disposing a powder fill on a plate having a closeable hole therethrough; (b) opening the hole to allow powder above the hole to flow therethrough; (c) observing the resulting formation of a cavity in the powder fill when powder flows through the hole; (d) repeating steps (a) through (c) with a smaller hole when powder flow occurs, and repeating steps (a) through (c) with a larger hole when powder flow does not occur; and (e) determining the size of the smallest hole through which the powder flows until a cavity is formed in the powder fill.
- Method of claim 11 wherein the cavity in step (e) is a cavity of conical or cylindrical shape in the whole thickness of the fill.
Citations (1)
- US3376753A
Record as JSON
{
"publication_number": "US4274286A",
"country": "US",
"kind": "A",
"title": "Powder flowability test equipment",
"abstract": "An apparatus for measuring the flowability of powder utilizes a container having a bottom wall with an opening therein. The bottom wall may be changed to provide openings of different sizes. The test consists of allowing the powder to flow through successively smaller holes. The smallest hole size through which the powder will freely flow is a measure of its flowability.",
"claims": [
"1. A powder flowability test device which essentially consists in a cylinder which is fitted at the bottom with a disk containing a central hole of varying diameter closed by a removable plate, said cylinder having an inside diameter which is larger than the largest hole diameter.",
"2. A powder flowability test device as claimed in claim 1 characterized in that it comprises several disks, each one containing a hole of different diameter to be inset in the fixed cylinder.",
"3. A powder flowability test device as claimed in claim 1 characterized in that it comprises a plate containing several holes of different diameter distributed in one or more rows over which the open cylinder may be moved.",
"4. A powder flowability test device of claim 2 wherein the diameters of the holes are selected within a sequence of increasing size comprised from about 4 to about 40 mm, and the difference in diameter between two consecutive holes ranges from about 0.5 to about 3 mm.",
"5. A powder flowability test device as claimed in claims 1 including a detecting system that stops the shutter when the powder begins to flow.",
"6. A powder flowability test device as claimed in claim 5 wherein the detecting system is a photoelectric cell.",
"7. A powder flowability test device comprising a horizontal plate for supporting a powder fill, said plate having a hole of variable diameter; means for containing the powder fill on the plate over the hole, said means having dimensions larger than the largest hole diameter; and means for shutting said hole, said shutting means being releasable to open said hole, thereby allowing powder to flow through the hole without shaking the hole; whereby a cavity is formed in the powder fill on the plate when the powder flows through said hole.",
"8. A method of measuring intrinsic flowability of a powder comprising: (a) disposing a powder fill on a plate having a closeable hole therethrough; (b) opening the hole to allow powder above the hole to flow therethrough; (c) observing the resulting formation of a cavity in the powder fill when powder flows through the hole; (d) repeating steps (a) through (c) with a smaller hole when powder flow occurs, and repeating steps (a) through (c) with a larger hole when powder flow does not occur; and (e) determining the size of the smallest hole through which the powder flows until a cavity is formed in the powder fill.",
"9. Method of claim 11 wherein the cavity in step (e) is a cavity of conical or cylindrical shape in the whole thickness of the fill."
],
"cpc": [
"G01N 11/02",
"G01N 2001/1006",
"G01N 33/0091"
],
"assignees": [
"LEPETIT SPA"
],
"filing_date": "1979-08-06",
"publication_date": "1981-06-23",
"grant_date": "1981-06-23",
"priority_date": "1979-08-06",
"application_number": "US-6415079-A",
"family_id": "22053903",
"citations": [
"US3376753A"
]
}
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