Patent · US9671755B2 · B2 · US
Assembly system utilizing a flat, elastic locking element
- (11) Publication number
- US9671755B2
- (21) Application number
- 14/508,268
- (22) Filing date
- 2014-10-07
- (30) Priority date
- 2013-10-09
- (43) Publication date
- 2017-06-06
- (45) Date of grant
- 2017-06-06
- (51) IPC
- F16B 21/12; F16B 21/20; G04B 13/02; G04B 17/06
- (52) CPC
- G04B Mechanically-driven clocks or watches; mechanical parts of clocks or watches in general; time pieces using the position of the sun, moon or stars: 13/022, 13/026, 17/066
- F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 21/125, 21/20
- G04D Apparatus or tools specially designed for making or maintaining clocks or watches: 1/00
- Y10T Technical subjects covered by former us classification: 29/49581
- (73) Assignee
- Nivarox Far SA
- (72) Inventors
- Marc STRANCZL; Daniel Mallet; Marco Verardo
- (54) Title
- Assembly system utilizing a flat, elastic locking element
- (57) Abstract
The invention relates to an assembly system including a member made of at least a first material including a staff and a shoulder, the staff of the member being received in an aperture of a part made of a second material having little or no plastic domain. According to the invention, the assembly system includes a locking element made of a third material arranged to elastically attach the part between the shoulder of said member and the locking element and in that the locking element is a washer whose internal wall radially grips the staff of said member and whose peripheral portion exerts an elastic radial force vertical to the shoulder of said member in order to secure the assembly of the member-part-locking element.
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Claims (21)
- An assembly system comprising: a member made of at least a first material including a staff and a shoulder, the staff of the member being received in the aperture of a part made of a second material, wherein the assembly system includes a locking element made of a third material arranged to elastically attach the part between the shoulder of said member and the locking element, and wherein the locking element is a washer whose internal wall radially grips the staff of said member and, after the washer is moved to contact the part in order to secure the member-part-locking element assembly, the washer is elastically deformed to exert an axial force to the shoulder of said member that is larger along peripheral portions of the washer than at radially inward portions of the washer, and wherein the second material is silicon-based.
- The assembly system according to claim 1, wherein the third material includes a metal or a metal alloy whose resistance to relaxation, after 10,000 hours at a temperature of 70° C. is equal to at least 50% of the applied force representing 75% of the stress necessary to obtain 0.2% plastic deformation of the third material in order to maintain the secure assembly of the member-part-locking element.
- The assembly system according to claim 2, wherein the third material includes copper, brass, and/or nickel silver.
- The assembly system according to claim 1, wherein the height (H) to width (L) ratio (H/L) of the locking element in cross-section in an axial plane is between 0.1 and 5.
- The assembly system according to claim 1, wherein the locking element is chamfered to prevent any breakage of the second material.
- The assembly system according to claim 1, wherein the second material includes silicon, quartz, silicon oxide, silicon nitride or silicon carbide.
- The assembly system according to claim 1, wherein said at least one first material includes a metal or a metal alloy.
- The assembly system according to claim 1, wherein the staff and the shoulder are in a single piece.
- A timepiece wherein the timepiece includes at least one assembly system according to claim 1.
- The timepiece according to claim 9, wherein the part made of a second material is a wheel set, pallets or a balance spring.
- A method of manufacturing an assembly system comprising the following steps: forming a member made of at least a first material including a staff and a shoulder, a part made of a second material with an aperture and a locking element in a form of a washer made from a third material and whose hole is smaller than the staff of said member; passing the staff of said member freely into the aperture of the part; placing the staff against the hole in the locking element and forcibly sliding the locking element against the staff using a tool to elastically deform the locking element so that the peripheral portion of the locking element is closest to the part; and stopping and removing said tool when a predefined force less than the yield strength of the third material is reached between the tool and the shoulder of said member, and wherein the second material is silicon-based.
- The method according to claim 11, wherein the stopping and removing is stopped when the force applied by said tool is comprised between 20% and 90% of the yield strength of the third material.
- The method according to claim 11, wherein the third material includes a metal or a metal alloy whose resistance to relaxation, after 10,000 hours at a temperature of 70°C. is equal to a least 50% of the force applied in the stopping and removing representing 75% of the stress necessary to obtain 0.2% plastic deformation of the third material in order to maintain the secure assembly of the member-part-locking element.
- The method according to claim 13, wherein the third material includes copper, brass, and/or nickel silver.
- The method according to claim 11, wherein the height (H) to width (L) ratio (H/L) of the locking element in cross-section in an axial plane is between 0.1 and 5.
- The method according to claim 11, wherein the locking element is chamfered to prevent any breakage of the second material.
- The method according to claim 11, wherein the second material includes silicon, quartz, silicon oxide, silicon nitride or silicon carbide.
- The method according to claim 11, wherein said at least first material includes a metal or a metal alloy.
- The method according to claim 11, wherein the part is a timepiece wheel set.
- The method according to claim 11, wherein the part is pallets of a timepiece.
- The method according to claim 11, wherein the part is a timepiece balance spring.
Description
This application claims priority from European Patent Application No. 13187833.2 filed Oct. 9, 2013, the entire disclosure of which is hereby incorporated herein by reference.
The invention relates to an assembly system utilising a substantially flat, elastic locking element making it possible to assemble a part made of a material which has no usable plastic domain, i.e. with a very limited plastic domain, to a member comprising a different type of material.
Current assemblies including a silicon-based part are generally secured by bonding. This type of operation requires extremely delicate application which makes it expensive.
It is an object of the present invention to overcome all or part of the aforecited drawbacks by providing an adhesive-free assembly which can secure a part made of a material with no plastic domain to a member comprising a ductile material, such as, for example, a metal or metal alloy.
To this end, the invention relates to an assembly system including a member made of at least a first material including a staff, a shaft or an arbor and a shoulder, the shaft of the member being received in the aperture of a part made of a second material, characterized in that the assembly system includes a locking element made of a third material arranged to elastically attach the part between the shoulder of said member and the locking element, and in that the locking element is a washer whose internal wall radially grips the shaft of said member and whose peripheral portion exerts an elastic axial force vertical to the shoulder of said member in order to secure the assembly of the member-part-locking member.
Citations (22)
- US2321157A
- US2421115A
- US3032807A
- US3762158A
- US3827232A
- US4834603A
- US4795930A
- US5195860A
- US5395193A
- US5584631A
- US5803692A
- US5833422A
- US6126308A
- US6672814B1
- US6705813B2
- US6997662B2
- EP1705533A1
- US20080037374A1
- EP2273322A1
- US20110005055A1
- EP2363762A1
- CH703961A2
Record as JSON
{
"publication_number": "US9671755B2",
"country": "US",
"kind": "B2",
"title": "Assembly system utilizing a flat, elastic locking element",
"abstract": "The invention relates to an assembly system including a member made of at least a first material including a staff and a shoulder, the staff of the member being received in an aperture of a part made of a second material having little or no plastic domain. According to the invention, the assembly system includes a locking element made of a third material arranged to elastically attach the part between the shoulder of said member and the locking element and in that the locking element is a washer whose internal wall radially grips the staff of said member and whose peripheral portion exerts an elastic radial force vertical to the shoulder of said member in order to secure the assembly of the member-part-locking element.",
"claims": [
"1. An assembly system comprising: a member made of at least a first material including a staff and a shoulder, the staff of the member being received in the aperture of a part made of a second material, wherein the assembly system includes a locking element made of a third material arranged to elastically attach the part between the shoulder of said member and the locking element, and wherein the locking element is a washer whose internal wall radially grips the staff of said member and, after the washer is moved to contact the part in order to secure the member-part-locking element assembly, the washer is elastically deformed to exert an axial force to the shoulder of said member that is larger along peripheral portions of the washer than at radially inward portions of the washer, and wherein the second material is silicon-based.",
"2. The assembly system according to claim 1, wherein the third material includes a metal or a metal alloy whose resistance to relaxation, after 10,000 hours at a temperature of 70° C. is equal to at least 50% of the applied force representing 75% of the stress necessary to obtain 0.2% plastic deformation of the third material in order to maintain the secure assembly of the member-part-locking element.",
"3. The assembly system according to claim 2, wherein the third material includes copper, brass, and/or nickel silver.",
"4. The assembly system according to claim 1, wherein the height (H) to width (L) ratio (H/L) of the locking element in cross-section in an axial plane is between 0.1 and 5.",
"5. The assembly system according to claim 1, wherein the locking element is chamfered to prevent any breakage of the second material.",
"6. The assembly system according to claim 1, wherein the second material includes silicon, quartz, silicon oxide, silicon nitride or silicon carbide.",
"7. The assembly system according to claim 1, wherein said at least one first material includes a metal or a metal alloy.",
"8. The assembly system according to claim 1, wherein the staff and the shoulder are in a single piece.",
"9. A timepiece wherein the timepiece includes at least one assembly system according to claim 1.",
"10. The timepiece according to claim 9, wherein the part made of a second material is a wheel set, pallets or a balance spring.",
"11. A method of manufacturing an assembly system comprising the following steps: forming a member made of at least a first material including a staff and a shoulder, a part made of a second material with an aperture and a locking element in a form of a washer made from a third material and whose hole is smaller than the staff of said member; passing the staff of said member freely into the aperture of the part; placing the staff against the hole in the locking element and forcibly sliding the locking element against the staff using a tool to elastically deform the locking element so that the peripheral portion of the locking element is closest to the part; and stopping and removing said tool when a predefined force less than the yield strength of the third material is reached between the tool and the shoulder of said member, and wherein the second material is silicon-based.",
"12. The method according to claim 11, wherein the stopping and removing is stopped when the force applied by said tool is comprised between 20% and 90% of the yield strength of the third material.",
"13. The method according to claim 11, wherein the third material includes a metal or a metal alloy whose resistance to relaxation, after 10,000 hours at a temperature of 70°C. is equal to a least 50% of the force applied in the stopping and removing representing 75% of the stress necessary to obtain 0.2% plastic deformation of the third material in order to maintain the secure assembly of the member-part-locking element.",
"14. The method according to claim 13, wherein the third material includes copper, brass, and/or nickel silver.",
"15. The method according to claim 11, wherein the height (H) to width (L) ratio (H/L) of the locking element in cross-section in an axial plane is between 0.1 and 5.",
"16. The method according to claim 11, wherein the locking element is chamfered to prevent any breakage of the second material.",
"17. The method according to claim 11, wherein the second material includes silicon, quartz, silicon oxide, silicon nitride or silicon carbide.",
"18. The method according to claim 11, wherein said at least first material includes a metal or a metal alloy.",
"19. The method according to claim 11, wherein the part is a timepiece wheel set.",
"20. The method according to claim 11, wherein the part is pallets of a timepiece.",
"21. The method according to claim 11, wherein the part is a timepiece balance spring."
],
"description_excerpt": "This application claims priority from European Patent Application No. 13187833.2 filed Oct. 9, 2013, the entire disclosure of which is hereby incorporated herein by reference.\n\nThe invention relates to an assembly system utilising a substantially flat, elastic locking element making it possible to assemble a part made of a material which has no usable plastic domain, i.e. with a very limited plastic domain, to a member comprising a different type of material.\n\nCurrent assemblies including a silicon-based part are generally secured by bonding. This type of operation requires extremely delicate application which makes it expensive.\n\nIt is an object of the present invention to overcome all or part of the aforecited drawbacks by providing an adhesive-free assembly which can secure a part made of a material with no plastic domain to a member comprising a ductile material, such as, for example, a metal or metal alloy.\n\nTo this end, the invention relates to an assembly system including a member made of at least a first material including a staff, a shaft or an arbor and a shoulder, the shaft of the member being received in the aperture of a part made of a second material, characterized in that the assembly system includes a locking element made of a third material arranged to elastically attach the part between the shoulder of said member and the locking element, and in that the locking element is a washer whose internal wall radially grips the shaft of said member and whose peripheral portion exerts an elastic axial force vertical to the shoulder of said member in order to secure the assembly of the member-part-locking member.",
"cpc": [
"G04B 13/022",
"F16B 21/125",
"F16B 21/20",
"G04B 13/026",
"G04B 17/066",
"G04D 1/00",
"Y10T 29/49581"
],
"ipc": [
"F16B 21/12",
"F16B 21/20",
"G04B 13/02",
"G04B 17/06"
],
"assignees": [
"Nivarox Far SA"
],
"inventors": [
"Marc STRANCZL",
"Daniel Mallet",
"Marco Verardo"
],
"filing_date": "2014-10-07",
"publication_date": "2017-06-06",
"grant_date": "2017-06-06",
"priority_date": "2013-10-09",
"application_number": "US-201414508268-A",
"family_id": "49322267",
"cited_by_count": 0,
"citations": [
"US2321157A",
"US2421115A",
"US3032807A",
"US3762158A",
"US3827232A",
"US4834603A",
"US4795930A",
"US5195860A",
"US5395193A",
"US5584631A",
"US5803692A",
"US5833422A",
"US6126308A",
"US6672814B1",
"US6705813B2",
"US6997662B2",
"EP1705533A1",
"US20080037374A1",
"EP2273322A1",
"US20110005055A1",
"EP2363762A1",
"CH703961A2"
]
}
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