Method for assembling at least two parts by means of main and secondary definitive connections and assembly obtained using this method
10995782 · 2021-05-04
Assignee
Inventors
Cpc classification
B23P19/12
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/49895
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16B5/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T29/49963
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T29/49948
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T29/49943
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B64F5/10
PERFORMING OPERATIONS; TRANSPORTING
F16B5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T29/49956
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F16B5/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B21D39/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method for assembling at least two parts, connected by main and secondary definitive connections arranged in predetermined positions, includes: secondary definitive connections each housed in secondary definitive holes passing through the parts to be assembled, made independently of one another before the parts are assembled, main definitive connections each housed in main definitive holes passing through the parts to be assembled, made during the same operation while the parts are held in place by the secondary definitive connections.
Claims
1. A method for assembling at least two parts, connected by definitive connections arranged in predetermined positions, the method comprising: positioning the at least two parts to be assembled; putting in place secondary definitive connections that are each positioned in a location corresponding to one of the predetermined positions, each of said definitive connections being housed in secondary definitive holes passing through the at least two parts to be assembled, made independently of one another before the at least two parts are assembled, wherein the number of secondary definitive connections and the locations thereof is determined in such a way that the at least two parts to be assembled do not become deformed and remain pressed against one another during assembly; and putting in place main definitive connections that are each positioned in a location corresponding to one of the predetermined positions not occupied by one of the secondary definitive connections in such a way that all of the determined positions are occupied by a main definitive connection or a secondary definitive connection, wherein each of the main definitive connections is housed in main definitive holes passing through the parts to be assembled, made during the same operation while the at least two parts are held in place by the secondary definitive connections, wherein each main definitive connection comprises a shaft with a diameter determined as a function of the diameters of the main definitive holes in such a way as to obtain fitting with a clearance, with an undefined clearance or with interference between the shaft of the main definitive connection and the main definitive holes, and wherein each secondary definitive connection comprises a shaft with a diameter which is smaller than the diameters of the secondary definitive holes in such a way as to create a clearance between the shaft of the secondary definitive connection and the secondary definitive holes to allow insertion of each secondary definitive connection in the secondary definitive holes even if the secondary definitive holes are not perfectly aligned.
2. The assembly method according to claim 1, wherein, for at least one of the secondary definitive connections, the diameters of the secondary definitive holes are equal to the diameters of the main definitive holes, and wherein the shaft of the secondary definitive connection has a diameter which is smaller than the diameter of the shafts of the main definitive connections.
3. The assembly method according to claim 1, wherein, for at least one of the secondary definitive connections, the shaft of the secondary definitive connection has a diameter equal to or greater than the diameter of the shafts of the main definitive connections, and wherein the diameters of the secondary definitive holes are greater than the diameters of the main definitive holes.
4. The assembly method according to claim 1, wherein, for at least one of the secondary definitive connections, at least one of the secondary definitive holes has an open end shaped to match the shape of the secondary definitive connection.
5. The assembly method according to claim 1, wherein at least one of the at least two parts is reinforced in the vicinity of at least one secondary definitive connection.
6. A method for assembling at least two parts, connected by definitive connections arranged in predetermined positions, the method comprising: positioning the at least two parts to be assembled; putting in place secondary definitive connections that are each positioned in a location corresponding to one of the predetermined positions, each of said definitive connections being housed in secondary definitive holes passing through the at least two parts to be assembled, made independently of one another before the at least two parts are assembled, wherein the number of secondary definitive connections and the locations thereof is determined in such a way that the at least two parts to be assembled do not become deformed and remain pressed against one another during assembly; and putting in place main definitive connections that are each positioned in a location corresponding to one of the predetermined positions not occupied by one of the secondary definitive connections in such a way that all of the determined positions are occupied by a main definitive connection or a secondary definitive connection, wherein each of the main definitive connections is housed in main definitive holes passing through the parts to be assembled, made during the same operation while the at least two parts are held in place by the secondary definitive connections, wherein at least one of the secondary definitive connections is a screwed connection with a view to gradually tightening the various secondary definitive connections so as to gradually correct the alignment of the secondary definitive holes.
7. The assembly method according to claim 6, wherein the secondary definitive connections are positioned in at least one installation zone corresponding to a zone where the assembly is subjected to lower stresses.
8. A method for assembling at least two parts, connected by definitive connections arranged in predetermined positions, the method comprising: positioning the at least two parts to be assembled; putting in place secondary definitive connections that are each positioned in a location corresponding to one of the predetermined positions, each of said definitive connections being housed in secondary definitive holes passing through the at least two parts to be assembled, made independently of one another before the at least two parts are assembled, wherein the number of secondary definitive connections and the locations thereof is determined in such a way that the at least two parts to be assembled do not become deformed and remain pressed against one another during assembly; and putting in place main definitive connections that are each positioned in a location corresponding to one of the predetermined positions not occupied by one of the secondary definitive connections in such a way that all of the determined positions are occupied by a main definitive connection or a secondary definitive connection, wherein each of the main definitive connections is housed in main definitive holes passing through the parts to be assembled, made during the same operation while the at least two parts are held in place by the secondary definitive connections, wherein, for at least one secondary definitive connection, a spacing between the secondary definitive connection and an adjacent main definitive connection is smaller than a spacing between two adjacent main definitive connections.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further features and advantages will emerge from the following description of the invention, which is provided merely by way of example, with reference to the appended drawings in which:
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DETAILED DESCRIPTION
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(13) The first and second parts 32.1, 32.2 comprise first and second contact faces 36.1, 36.2 which are in contact with one another when the first and second parts 32.1, 32.2 are assembled.
(14) Each main definitive connection 34 is a rivet, a crimped connection or a screwed connection and comprises a shaft 38 of diameter D1. For each main definitive connection 34, each part 32.1, 32.2 comprises a main definitive hole 40.1, 40.2. Thus, each main definitive connection 34 is housed in a first main definitive hole 40.1 made in the first part 32.1 and a second main definitive hole 40.2 made in the second part 32.2. These first and second main definitive holes 40.1, 40.2 are coaxial and have the same diameter. In one configuration, the diameter D1 of the shaft 38 of the main definitive connection 34 is determined as a function of the diameters d1 of the main definitive holes 40.1, 40.2 in such a way as to obtain fitting with a clearance, an undefined clearance or with interference between the shaft 38 and the main definitive holes 40.1, 40.2. This standard fitting clearance may be zero, negative or positive depending on the needs defined by a design team. In this case, the main definitive holes 40.1, 40.2 have a diameter d1 equal to the diameter D1 of the shaft 38 of the main definitive connection 34.
(15) According to one configuration, each main definitive connection comprises a countersunk head 42 housed in a chamfer 44 provided at the first main definitive hole 40.1.
(16) The parts 32.1, 32.2 and the main definitive connections 34 will not be described further here since they may be identical to those found in the prior art.
(17) According to one embodiment, before the main definitive connections 34 are put in place, the first and second parts 32.1, 32.2 are held in place in an assembly position (corresponding to their positions after assembly) by means of the secondary definitive connections 46, as shown in
(18) According to one feature of the invention, the first and second secondary definitive holes 50.1, 50.2 have diameters d2, d2′ which are almost identical. For each secondary definitive connection 46, the diameter D2 of the secondary definitive connection 46 is smaller than the diameters d2, d2′ of the first and second secondary definitive holes 50.1, 50.2 so as to allow insertion of the secondary definitive connection 46 even if the first and second secondary definitive holes 50.1, 50.2 are not perfectly aligned, as shown in
(19) According to one embodiment, the first secondary definitive hole 50.1 has a diameter d2 equal to (manufacturing tolerances aside) the diameter d2′ of the second secondary definitive hole 50.2.
(20) According to a first configuration, for at least one of the secondary definitive connections, the diameters d2, d2′ of the first and second secondary definitive holes 50.1, 50.2 are equal to (manufacturing tolerances aside) the diameters of the main definitive holes 40.1, 40.2. According to this first configuration, the shaft 48 of the secondary definitive connection 46 has a diameter which is smaller than the diameter of the shafts 38 of the main definitive connections 34.
(21) According to a second configuration, for at least one of the secondary definitive connections 46, the shaft 48 of the secondary definitive connection 46 has a diameter equal or greater than the diameter of the shafts 38 of the main definitive connections 34 and the diameters d2, d2′ of the first and second secondary definitive holes 50.1, 50.2 are greater than the diameters of the main definitive holes 40.1, 40.2.
(22) For at least one of the secondary definitive connections 46, at least one of the first and second secondary definitive holes 50.1, 50.2 has an open end shaped to match the shape of the secondary definitive connection 46. Thus, according to one configuration visible in
(23) As in the case of the temporary connections of the prior art, the number of secondary definitive connections 46 and the locations thereof are determined in such a way that the first and second parts 32.1, 32.2 do not become deformed and remain pressed closely against one another while the main definitive connections 34 are being put in place. The number of secondary definitive connections 46 is between 10 and 30% of the total number of main and secondary definitive connections 34, 46.
(24) The secondary definitive connections 46 are also positioned according to the need to hold in place additional parts, such as local reinforcements.
(25) According to one feature of the invention, at least one of the secondary definitive connections 46 is a screwed connection. Thus, it is possible to gradually tighten the various secondary definitive connections 46 so as to correct the alignment of the first and second secondary definitive holes 50.1, 50.2. According to one embodiment, the secondary definitive connections 46 are screwed connections sold under the trade mark Hi-Lite.
(26) The first and second secondary definitive holes 50.1, 50.2 may be misaligned and/or the clearance between the shafts 48 of the secondary definitive connections 46 and the first and second secondary definitive holes 50.1, 50.2 may be greater than the standard fitting clearance.
(27) According to a first configuration, the secondary definitive connections 46 are positioned in at least one installation zone 56 corresponding to a zone where the assembly 30 is subjected to lower stresses.
(28) According to a second configuration, the secondary definitive connections 46 are configured to compensate for the fact that the first and second secondary definitive holes 50.1, 50.2 may be misaligned and/or that the clearance between the shafts 48 of the secondary definitive connections 46 and the first and second secondary definitive holes 50.1, 50.2 may be greater than the standard fitting clearance. Thus, the secondary definitive connections 46 are screwed connections sold under the trade mark Hi-Lite and/or are made of titanium and/or have shafts 48 with a diameter greater than the diameter of the shafts 38 of the main definitive connections 34 so as to be able to increase the tightening torque.
(29) According to a third configuration, at least one of the parts 32.1, 32.2 is reinforced in the vicinity of at least one secondary definitive connection 46 so as to compensate for the fact that the first and second secondary definitive holes 50.1, 50.2 may be misaligned and/or that the clearance between the shafts 48 of the secondary definitive connections 46 and the first and second secondary definitive holes 50.1, 50.2 may be greater than the standard fitting clearance.
(30) According to a fourth configuration, for at least one secondary definitive connection 46, the spacing E1′ between the secondary definitive connection 46 and an adjacent main definitive connection 34 is smaller than a spacing E1 between two adjacent main definitive connections 34 so as to compensate for the fact that the first and second secondary definitive holes 50.1, 50.2 may be misaligned and/or that the clearance between the shafts 48 of the secondary definitive connections 46 and the first and second secondary definitive holes 50.1, 50.2 may be greater than the standard fitting clearance.
(31) These different configurations may be combined.
(32) According to an aspect of the invention, the method for assembling at least two parts, connected by a determined number of main and secondary definitive connections 34, 46, arranged in predetermined positions, comprises a step of making the first secondary definitive holes 50.1 in the first part 32.1 independently of the second secondary definitive holes 50.2 in the second part 32.2 before the first and second parts 32.1, 32.2 are assembled, as shown in
(33) The first and second parts 32.1, 32.2 are positioned in such a way as to approximately align the first and second secondary definitive holes 50.1, 50.2 so as to allow insertion of the secondary definitive connections 46. The latter are gradually tightened so as to gradually align the first and second secondary definitive holes 50.1, 50.2. The secondary definitive connections 46 may then be definitively tightened. To reduce defects in alignment between the first and second secondary definitive holes 50.1, 50.2, the latter may be made with small dimensional tolerances.
(34) As in the prior art, the main definitive connections 34 are each put in place in a location corresponding to one of the predetermined positions of the definitive connections not occupied by one of the secondary definitive connections, in such a way that all the determined positions of the definitive connections are occupied by a main definitive connection 34 or a secondary definitive connection 46. According to one aspect, the main definitive connections 34 are put in place starting with those closest to the secondary definitive connections 46 and moving gradually further away. For each main definitive connection 34, the main definitive holes 40.1, 40.2 are made during the same drilling operation while the parts 32.1, 32.2 are held in place by the secondary definitive connections 46. Thus, the first and second main definitive holes 40.1, 40.2 of each definitive connection 34 are perfectly coaxial and have the same diameter. After the drilling step, the main definitive connection 34 is put in place in the first and second main definitive holes 40.1, 40.2, as shown in
(35) The drilling step may be performed using a drilling template or a programmed robotic arm.
(36) An aspect of the invention dispenses with the steps of putting in place and removal of the temporary connections, and of re-machining of the pre-holes, thereby reducing the time taken for and the costs of assembly.
(37) According to another advantage, the secondary definitive connections 46 do not project with respect to the temporary connections of the prior art, thereby limiting the risks of collision with a drilling tool.
(38) While at least one exemplary embodiment of the present invention(s) is disclosed herein, it should be understood that modifications, substitutions and alternatives may be apparent to one of ordinary skill in the art and can be made without departing from the scope of this disclosure. This disclosure is intended to cover any adaptations or variations of the exemplary embodiment(s). In addition, in this disclosure, the terms “comprise” or “comprising” do not exclude other elements or steps, the terms “a” or “one” do not exclude a plural number, and the term “or” means either or both. Furthermore, characteristics or steps which have been described may also be used in combination with other characteristics or steps and in any order unless the disclosure or context suggests otherwise. This disclosure hereby incorporates by reference the complete disclosure of any patent or application from which it claims benefit or priority.