Patent · US11815425B2 · B2 · US
Jig for vibration test of rotor blade
- (11) Publication number
- US11815425B2
- (21) Application number
- 17/450,475
- (22) Filing date
- 2021-10-11
- (30) Priority date
- 2019-04-12
- (43) Publication date
- 2023-11-14
- (45) Date of grant
- 2023-11-14
- (52) CPC
- G01M Testing static or dynamic balance of machines or structures; testing of structures or apparatus, not otherwise provided for: 15/14, 5/0016, 5/0066, 7/027
- F01D Non-positive displacement machines or engines, e.g. steam turbines: 21/003, 25/00, 25/04, 25/285, 5/26, 5/30
- F05D Indexing scheme for aspects relating to non-positive-displacement machines or engines, gas-turbines or jet-propulsion plants: 2260/96, 2270/334
- G01N Investigating or analysing materials by determining their chemical or physical properties: 3/32
- (73) Assignee
- IHI CORP
- (54) Title
- Jig for vibration test of rotor blade
- (57) Abstract
Provided is a jig for a vibration test of a rotor blade, for use in the vibration test for evaluating high cycle fatigue characteristics of the rotor blade for an aircraft engine, and the jig is provided with a jig body holding a dovetail portion of a fan blade and fixed onto an excitation table of a shaker, and a hydraulic jack that applies a load in a blade span direction to the fan blade to fix the fan blade to the jig body. Consequently, in the vibration test for evaluating the high cycle fatigue characteristics of the rotor blade, a test simulating an actual operation state can be carried out, the rotor blade can be efficiently excited to reach a large deformation region, and high cycle fatigue failure can occur without any increase in test cost.
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Claims (9)
- A jig for a vibration test of a rotor blade, for use in the vibration test for evaluating high cycle fatigue characteristics of the rotor blade, comprising: a jig body holding a dovetail portion of the rotor blade and fixed onto an excitation table of a shaker, and a force applying section that applies a load in a span direction to the dovetail portion of the rotor blade to fix the rotor blade to the jig body, wherein the force applying section includes a top plate and a plurality of bolts; in the top plate, a holding groove is formed into which the dovetail portion of the rotor blade with a blade tip up is fitted from below; and the plurality of bolts are arranged on opposite sides of the rotor blade on the jig body and screw portions of the plurality of bolts extend through the top plate and are screwed into screw holes of the jig body.
- The jig for the vibration test of the rotor blade according to claim 1, wherein the jig body is fixed onto the excitation table of the shaker so that a position of the jig body is adjustable.
- The jig for the vibration test of the rotor blade according to claim 1, comprising a load measuring section that measures the load applied from the force applying section to the dovetail portion of the rotor blade, wherein the plurality of bolts are strain gauge embedded type.
- The jig for the vibration test of the rotor blade according to claim 3, wherein the jig body is fixed onto the excitation table of the shaker so that a position of the jig body is adjustable.
- The jig for the vibration test of the rotor blade according to claim 1, wherein support plates are inserted into spaces between the jig body and the top plate in opposite end portions of the top plate.
- The jig for the vibration test of the rotor blade according to claim 5, wherein each of the support plates is a load cell or a strain gauge is attached to each of the support plates.
- The jig for the vibration test of the rotor blade according to claim 6, wherein the holding groove is opened in a center of a flat surface of the top plate.
- The jig for the vibration test of the rotor blade according to claim 6, wherein the top plate is formed of pieces divided into two at a center in a longitudinal direction.
- The jig for the vibration test of the rotor blade according to claim 6, wherein the top plate is formed of a top plate body with one of two long sides being divided, and a divided piece.
Citations (38)
- CN108519204A
- CN206710048U
- EP3121586A1
- JP2000356565A
- JP2002257672A
- JP2003227774A
- JP2003270081A
- JP2004077163A
- JP2004117323A
- JP2004271475A
- JP2015028340A
- JP2018179616A
- JP2019196965A
- JP5556678B2
- JP6142074B2
- JPH05142130A
- JPH0617604A
- JPH10253490A
- US2005268728A1
- US2009151458A1
- US2011000308A1
- US2014115892A1
- US2015153310A1
- US2019094104A1
- US2019234828A1
- US2019314942A1
- US2020003654A1
- US2020011760A1
- US2020209100A1
- US2021108619A1
- US2021215644A1
- US2021396155A1
- US2022010780A1
- US2022090991A1
- US2023055216A1
- US2023060931A1
- US3690160A
- US8650961B2
Record as JSON
{
"publication_number": "US11815425B2",
"country": "US",
"kind": "B2",
"title": "Jig for vibration test of rotor blade",
"abstract": "Provided is a jig for a vibration test of a rotor blade, for use in the vibration test for evaluating high cycle fatigue characteristics of the rotor blade for an aircraft engine, and the jig is provided with a jig body holding a dovetail portion of a fan blade and fixed onto an excitation table of a shaker, and a hydraulic jack that applies a load in a blade span direction to the fan blade to fix the fan blade to the jig body. Consequently, in the vibration test for evaluating the high cycle fatigue characteristics of the rotor blade, a test simulating an actual operation state can be carried out, the rotor blade can be efficiently excited to reach a large deformation region, and high cycle fatigue failure can occur without any increase in test cost.",
"claims": [
"1. A jig for a vibration test of a rotor blade, for use in the vibration test for evaluating high cycle fatigue characteristics of the rotor blade, comprising: a jig body holding a dovetail portion of the rotor blade and fixed onto an excitation table of a shaker, and a force applying section that applies a load in a span direction to the dovetail portion of the rotor blade to fix the rotor blade to the jig body, wherein the force applying section includes a top plate and a plurality of bolts; in the top plate, a holding groove is formed into which the dovetail portion of the rotor blade with a blade tip up is fitted from below; and the plurality of bolts are arranged on opposite sides of the rotor blade on the jig body and screw portions of the plurality of bolts extend through the top plate and are screwed into screw holes of the jig body.",
"2. The jig for the vibration test of the rotor blade according to claim 1, wherein the jig body is fixed onto the excitation table of the shaker so that a position of the jig body is adjustable.",
"3. The jig for the vibration test of the rotor blade according to claim 1, comprising a load measuring section that measures the load applied from the force applying section to the dovetail portion of the rotor blade, wherein the plurality of bolts are strain gauge embedded type.",
"4. The jig for the vibration test of the rotor blade according to claim 3, wherein the jig body is fixed onto the excitation table of the shaker so that a position of the jig body is adjustable.",
"5. The jig for the vibration test of the rotor blade according to claim 1, wherein support plates are inserted into spaces between the jig body and the top plate in opposite end portions of the top plate.",
"6. The jig for the vibration test of the rotor blade according to claim 5, wherein each of the support plates is a load cell or a strain gauge is attached to each of the support plates.",
"7. The jig for the vibration test of the rotor blade according to claim 6, wherein the holding groove is opened in a center of a flat surface of the top plate.",
"8. The jig for the vibration test of the rotor blade according to claim 6, wherein the top plate is formed of pieces divided into two at a center in a longitudinal direction.",
"9. The jig for the vibration test of the rotor blade according to claim 6, wherein the top plate is formed of a top plate body with one of two long sides being divided, and a divided piece."
],
"cpc": [
"G01M 15/14",
"F01D 21/003",
"F01D 25/00",
"F01D 25/04",
"F01D 25/285",
"F01D 5/26",
"F01D 5/30",
"F05D 2260/96",
"F05D 2270/334",
"G01M 5/0016",
"G01M 5/0066",
"G01M 7/027",
"G01N 3/32"
],
"assignees": [
"IHI CORP"
],
"filing_date": "2021-10-11",
"publication_date": "2023-11-14",
"grant_date": "2023-11-14",
"priority_date": "2019-04-12",
"application_number": "US-202117450475-A",
"family_id": "72751984",
"citations": [
"CN108519204A",
"CN206710048U",
"EP3121586A1",
"JP2000356565A",
"JP2002257672A",
"JP2003227774A",
"JP2003270081A",
"JP2004077163A",
"JP2004117323A",
"JP2004271475A",
"JP2015028340A",
"JP2018179616A",
"JP2019196965A",
"JP5556678B2",
"JP6142074B2",
"JPH05142130A",
"JPH0617604A",
"JPH10253490A",
"US2005268728A1",
"US2009151458A1",
"US2011000308A1",
"US2014115892A1",
"US2015153310A1",
"US2019094104A1",
"US2019234828A1",
"US2019314942A1",
"US2020003654A1",
"US2020011760A1",
"US2020209100A1",
"US2021108619A1",
"US2021215644A1",
"US2021396155A1",
"US2022010780A1",
"US2022090991A1",
"US2023055216A1",
"US2023060931A1",
"US3690160A",
"US8650961B2"
]
}
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