Steering column mounting component for a motor vehicle, associated assembly and manufacturing process

A one-piece metallic mounting bracket for the steering column simplifies and reduces costs by integrating a snail-shaped cross-section, addressing the complexity and expense of existing systems, while providing pivot and balancing functions.

FR3167611A1Pending Publication Date: 2026-04-24JTEKT COLUMN SYST FRANCE SAS
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Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
JTEKT COLUMN SYST FRANCE SAS
Filing Date
2024-10-17
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing steering column fixing systems for motor vehicles are complex and expensive due to their numerous parts, particularly the use of sheet metal pivots, metal and plastic spacers, and balancing springs, which complicate manufacturing and increase costs.

Method used

A one-piece metallic mounting bracket for the steering column, comprising a first part fixed to the column, a second part with a cylindrical receiving housing, and a third connecting part, allowing the column to rotate relative to the vehicle support, simplified by machining a sheet metal blank into a snail-shaped cross-section.

Benefits of technology

The solution simplifies the assembly, reduces manufacturing complexity and costs, and eliminates the need for additional plastic parts, while ensuring pivot and balancing functions, thus making the system more economical and efficient.

✦ Generated by Eureka AI based on patent content.

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Abstract

Steering column mounting component for a motor vehicle support, associated assembly and manufacturing method. The present invention relates to a mounting component (18) for a steering column (12) on a support (14) of a motor vehicle, the mounting component (10) comprising: a. a first part (22) for mounting on the steering column (12), b. a second part (24) forming a cylindrical housing (34) for receiving a fixing and tightening screw (16), and c. a third connecting part (26) linking the first part (22) and the second part (24); the first part (22), the second part (24) and the third part (26) being a single unit. Figure for the abstract: Figure 1
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Description

Title of the invention: A steering column mounting bracket for a motor vehicle, associated assembly and manufacturing process

[0001] The present invention relates to a fixing piece for a steering column on a vehicle support.

[0002] A motor vehicle usually includes a steering wheel that is adjustable for reach, particularly for driver comfort. For this purpose, the steering wheel is mounted on a steering column and is adjustable in height and / or in longitudinal direction.

[0003] Such a steering column is generally fixed to the motor vehicle by a plurality of fixing points.

[0004] In particular, the lower end of the column axis is usually fixed to a support by a lower fixing point allowing the column axis to rotate relative to the support to allow height adjustment of the column.

[0005] This lower fixing point generally comprises a sheet metal pivot fixed to the column axis, a metal spacer and two plastic spacers fixing the metal spacer to the pivot; the metal spacer defining a housing for receiving a fixing and tightening screw fixed to the support.

[0006] Such a fixing point is not entirely satisfactory, as it is complex and expensive to manufacture due in particular to its large number of parts.

[0007] In addition, the column axis is usually also fixed by upper fixing points.

[0008] In order to ensure the balancing of the column during the steering wheel position adjustment phase, it is known to integrate balancing springs at the level of said upper fixing points.

[0009] Such an assembly is therefore complex.

[0010] The aim of the invention is then to simplify the fixing of a steering column on a support of a vehicle.

[0011] To this end, the invention relates to a mounting bracket for a steering column on a support of a motor vehicle, the mounting bracket comprising:

[0012] a. a first part intended to be fixed to the steering column,

[0013] b. a second part forming a cylindrical receiving housing intended to receive a fixing and tightening screw, and

[0014] c.a third connecting part linking the first part and the second part;

[0015] the first part, the second part and the third part being in one piece.

[0016] According to other advantageous aspects of the invention, the fastening part comprises one or more of the following features, taken individually or in all technically possible combinations:

[0017] - the first part comprising a first end and a second end and the second part comprising a first end and a second end, the third part comprising at least a portion extending from the second end of the first part to the second end of the second part;

[0018] - each portion of the third part has an arc-shaped cross-section circle extending between the second end of the first part and the second end of the second part;

[0019] - the cross-section of the first part comprises a main segment including the second end and extending parallel to a longitudinal direction and a secondary segment including the first end and not parallel to the longitudinal direction;

[0020] - the second part has a cross-section in the shape of a circular arc extending from the first end to the second end of the second part.

[0021] - the fixing part is made of a metallic material.

[0022] The invention also relates to an assembly comprising:

[0023] a. a steering column comprising a column axis;

[0024] b. a support fixed to a motor vehicle;

[0025] c. a fixing and tightening screw; and

[0026] d. a fastening part having the above characteristics;

[0027] the first part of the fixing piece being fixed to the column axis,

[0028] the fixing and tightening screw being received in the receiving housing of the second part of the fixing piece and fixing the fixing piece to the support.

[0029] According to other advantageous aspects of the invention, the assembly comprises one or more of the following features, taken individually or in all technically possible combinations:

[0030] - the first part of the fixing piece is welded onto the column shaft;

[0031] - the steering column is fixed to the support only by the connection secured by the fixing and tightening screw received in the fixing part attached to the column axis.

[0032] The invention also relates to a method for manufacturing a fastener having the above characteristics, the method comprising the following steps:

[0033] a. supply of a sheet metal blank; and

[0034] b. machining of the sheet metal side so as to define the first, second and third parts.

[0035] The invention will become clearer upon reading the following description, given solely by way of non-limiting example, and made with reference to the drawings in which:

[0036] [Fig-1] [Fig.1] is a schematic side view of an assembly according to the invention, the assembly including a fixing piece;

[0037] [Fig.2] [Fig.2] is a schematic perspective view of the fastening piece of the [Fig. 1] ; and

[0038] [Fig.3] [Fig.3] is a perspective view with a cross-section of the fastening piece of [Fig.2],

[0039] Fig. 1 shows an assembly 10 according to the invention.

[0040] The assembly 10 is more particularly arranged in a vehicle, in particular a motor vehicle.

[0041] An orthogonal frame is defined with an elevation direction Z, corresponding to a top-bottom axis of the vehicle when the assembly 10 is arranged in the vehicle, a longitudinal direction X perpendicular to the elevation direction Z and a transverse direction Y perpendicular to the longitudinal direction X and to the elevation direction Z.

[0042] As can be seen in [Fig.1], the assembly 10 includes a steering column 12, a support 14 (illustrated by alternating dashes in [Fig.1]), a fixing and tightening screw 16 and a fixing piece 18.

[0043] The steering column 12 includes, for example, a steering column axis 20 extending along a column axis C.

[0044] Preferably, the steering column 12 is adjustable along the longitudinal direction X and / or in height, for example so as to adjust the inclination of the column axis C with respect to the longitudinal direction X.

[0045] In particular, the axis 20 of the steering column is, for example, a telescopic body, generally of revolution about a longitudinal axis of revolution.

[0046] Axis 20, for example, is intended to be kinematically connected, on the one hand, to a steering wheel (not shown) of the vehicle and, on the other hand, to a Cardan joint (not shown). It should be noted that a Cardan joint is a mechanical device allowing the coupling of two shafts whose geometric axes intersect at a single point.

[0047] The support 14 is fixed to the motor vehicle.

[0048] Advantageously, the support 14 defines a housing (not visible in the Figures), in particular having a cross-section, that is to say in a plane YZ perpendicular to the longitudinal direction X, in the shape of an inverted U with in particular side walls perpendicular to a top wall.

[0049] The fixing and tightening screw 16 extends for example along the transverse direction Y.

[0050] In particular, in the assembled configuration illustrated in [Fig.1], the fixing and tightening screw 16 is preferably fixed to the support 14.

[0051] More specifically, the fixing and tightening screw 16 extends, along the transverse direction Y, between the two side walls of the housing of the support 14.

[0052] As illustrated in [Fig.1], in the assembled configuration, the fixing piece 18 fixes the steering column 12 to the support 14.

[0053] Preferably, in the assembled configuration, the steering column 12 is fixed to the support 14 only by the connection ensured by the fixing and tightening screw 16 received in the fixing piece 18 fixed the steering column 12.

[0054] More specifically, in the assembled configuration illustrated in [Fig.1], the fixing piece 18 constitutes a pivot connection of the axis 20 of the steering column 12 on the support 14 around a pivot axis P parallel to the transverse direction Y, in particular to allow height adjustment of the steering column 12.

[0055] In other words, the fixing piece 18 fixes the axis 20 of the steering column 12 on the support 14 while allowing one degree of rotational freedom around the pivot axis P which is parallel to the transverse direction Y.

[0056] The fastening piece 18 comprises a first part 22, a second part 24 and a third connecting part 26 linking the first part 22 and the second part 24.

[0057] The first part 22, the second part 24 and the third part 26 are in one piece, and preferably came from matter.

[0058] The fixing piece 18 is preferably made of a metallic material, for example steel or aluminium.

[0059] For example, the first part 22, the second part 24 and the third part 26 are defined by machining, in particular by bending and stamping, of the same side of sheet metal, as will be explained in more detail later.

[0060] In particular, the first part 22, the third part 26 and the second part 24 extend in continuity with one another, more precisely along the longitudinal direction X.

[0061] In other words, the first part 22 comprises a first end 22A, called the free end, and a second end 22B connected to the third part 26. The second part 24 comprises a first end 24A, called the free end, and a second end 24B connected to the third part 26. Each of said ends 22A, 22B, 24A, 24B extends in particular perpendicularly to the longitudinal direction X.

[0062] In the assembled configuration, the first part 22 is fixed on the steering column 12, and more precisely on the axis 20 of the steering column 12.

[0063] More specifically, the first part 22 is welded onto the axis 20 of the steering column 12.

[0064] In particular, as illustrated in [Fig. 1], the first end 22A is fixed to the axis 20 of the steering column 12 by weld beads.

[0065] As can be seen in [Fig.3], the first part 22 of the fastener 18 has, for example, a cross-section, i.e. in a plane XZ perpendicular to the transverse direction Y, of the shape of a polygonal line, in particular extending from the first end 22A to the second end 22B.

[0066] More specifically, the cross-section of the first part 22 comprises a main segment 28 including the second end 22B and extending parallel to the longitudinal direction X and a secondary segment 30 including the first end 22A and not parallel to the longitudinal direction X, for example extending parallel to the elevation direction Z.

[0067] In the particular embodiment illustrated in the Figures, the cross-section of the first part 22 also includes an additional segment 32 connecting the main segment 28 and the secondary segment 30.

[0068] For example, said additional segment 32 extends at an angle with respect to the longitudinal direction X and the elevation direction Z.

[0069] The second part 24 forms a reception housing 34.

[0070] In the particular embodiment illustrated in the Figures, the receiving housing 34 is cylindrical in shape and extends around a housing axis T, in particular parallel to the transverse direction Y.

[0071] In particular, the second part 24 has a cross-section in the shape of an arc of a circle centered on a center PI substantially on the housing axis T, the arc of a circle extending from the first end 24A to the second end 24B of the second part 24.

[0072] For example, the cross-section of the second part 24 is an arc of a circle with a radius between 0.5 cm and 3.5 cm.

[0073] For example, the cross-section of the second part 24 is an arc of a circle with a central angle greater than 270°, and preferably between 290° and 360°.

[0074] In an alternative (not illustrated), the second part 24 has a cross-section of a different shape than an arc of a circle, for example in a broken line.

[0075] In particular, in the assembled configuration, the housing axis T is substantially coincident with the pivot axis P.

[0076] More specifically, in the assembled configuration, the fixing and tightening screw 16 is received in the receiving housing 34 of the second part 24 of the fixing piece 18 and fixing the fixing piece 18 to the support 14 so as to allow the rotation of the axis 20 of the steering column 12 relative to the support 14.

[0077] As can be seen in [Fig.2], the third part 26 comprises, for example, at least one portion 27 extending from the second end 22B of the first part 22 to the second end 24B of the second part 24.

[0078] For example, in the embodiment illustrated in the Figures, the third part 26 comprises two portions 27.

[0079] In particular, each of the portions 27 of the third part 26 has a cross-section in the shape of an arc of a circle centered on a center P2 and the second end 24B of the second part 24.

[0080] For example, the cross-section of each portion 27 of the third part 26 is an arc of a circle with a radius between 1.0 cm and 4.0 cm.

[0081] For example, the cross-section of each portion 27 of the third part 26 is an arc of a circle with a central angle between 80° and 100°.

[0082] In an alternative (not illustrated), each of the portions 27 of the third part 26 has a cross-section of a different shape than an arc of a circle, for example in a broken line.

[0083] Each portion 27 of the third part 26 forms, for example, a spring.

[0084] In particular, in the assembled configuration, each portion 27 is suitable for serving as rotation support, while elastically deforming, especially during upward or downward adjustment of the steering column.

[0085] As can be seen in [Fig.3], the main segment 28 of the first part 22, one of the portions 27 of the third part 26 and the second part 24 together preferably form a snail-shaped cross-section, that is to say, substantially spiral-shaped.

[0086] A manufacturing process for the fastening part 18 will now be described.

[0087] The process includes a first step of manufacturing a sheet blank, preferably metallic, for example in steel or aluminium.

[0088] The process then includes a second machining step of the sheet metal side so as to define the first 22, the second 24 and the third 26 parts.

[0089] In particular, during this second machining stage, the sheet metal side is for example cut and bent, notably so as to define the snail-shaped cross-section.

[0090] More specifically, the unfolded sheet metal side extends for example between the first end 22A of the first part 22 and the first end 24A of the second part 24. Said sheet metal side is then folded and in particular rolled up on itself.

[0091] In addition, during this second machining stage, the sheet metal side is for example stamped.

[0092] A method for assembling the set 10 will now be described.

[0093] The method includes in particular a first step of supplying a steering column 12 comprising a shaft 20, a support 14, a fixing screw and clamping 16 and a fixing piece 18 as described above, and in particular manufactured according to the manufacturing process written above.

[0094] The method then includes a step of fixing the fixing piece 18 on the shaft 20 of the steering column 12, and for example by welding the first end 22A of the first part 22 of the fixing piece 18 on the shaft 20 of the steering column 12.

[0095] The method then includes a step of inserting the screw 16 into the support 14 and into the receiving housing 34.

[0096] Preferably, the steering column 12 is thus fixed to the support 14 only by the connection ensured by the fixing and tightening screw 16 received in the fixing piece 18 fixed to the steering column 12.

[0097] A method for adjusting the position of the steering column 12 will now be described.

[0098] A locking mechanism in position (not shown in the figures) of the steering column 12 is first unlocked by the user, in particular using a locking and unlocking lever.

[0099] Next, the steering column 12 is adjusted in position, in particular in height and / or depth, in particular by moving the steering wheel of the car (not shown in the figures).

[0100] Preferably, when adjusting the height of the steering column 12, the axis 20 of the steering column 12 pivots on the support 14 around the pivot axis P via the fixing piece 18.

[0101] In particular, during the height adjustment of the steering column 12, each portion 27 of the third part 26 of the fixing piece 18 serves as a rotation support, while elastically deforming.

[0102] In addition, during the height adjustment of the steering column 12, the fixing piece 18 ensures the balancing of the steering column 12 in its vertical position.

[0103] Then, when the desired position is reached, the user locks the locking mechanism in position, in particular using the locking and unlocking handle.

[0104] Such an assembly 10 is particularly advantageous.

[0105] In particular, the fixing piece 18 is manufactured in one piece and is thus simple and economical to manufacture.

[0106] Furthermore, the manufacture of said fixing part 18 by machining a sheet metal side avoids the use of additional plastic parts, which limits the risks of friction generated in particular by the plastic spacers of the prior art.

[0107] In addition, due to its snail shape, the fixing piece 18 makes it possible to ensure both the pivot function and the balancing function of the steering column in its vertical position when the adjustment mechanism is unlocked.

[0108] Thus, such a fixing piece 18 makes it possible to reduce the number of parts of the assembly 10, by eliminating the need to use balancing springs and / or to arrange front fixing points.

[0109] Such an assembly 10 is therefore simpler and more economical than that of the prior art.

Claims

Demands

1. A fixing piece (18) for a steering column (12) on a support (14) of a motor vehicle, the fixing piece (10) comprising: a. a first part (22) intended to be fixed on the steering column (12), b. a second part (24) forming a receiving housing (34) intended to receive a fixing and tightening screw (16), and c. a third connecting part (26) linking the first part (22) and the second part (24); the first part (22), the second part (24) and the third part (26) being of one piece.

2. Fastening piece (18) according to claim 1, wherein the first part (22) comprises a first end (22A) and a second end (22B) and the second part (24) comprises a first end (24A) and a second end (24B), the third part (26) comprises at least a portion (27) extending from the second end (22B) of the first part (22) to the second end (24B) of the second part (24).

3. Fastening piece (18) according to claim 2, wherein each portion (27) of the third part (26) has a cross-section in the shape of an arc of a circle extending between the second end (22B) of the first part (22) and the second end (24B) of the second part (24).

4. Fastening piece (18) according to claim 2 or 3, wherein the cross-section of the first part (22) comprises a main segment (28) including the second end (22B) and extending parallel to a longitudinal direction (X) and a secondary segment (30) including the first end (22A) and not parallel to the longitudinal direction (X).

5. Fastening piece (18) according to any one of claims 2 to 4, wherein the second part (24) has a cross-section in the shape of an arc of a circle extending from the first end (24A) to the second end (24B) of the second part (24).

6. Fastening piece (18) according to any one of the preceding claims made of a metallic material.

7. Assembly (10) comprising: a. a steering column (12) including a column shaft (20); b. a support (14) fixed to a motor vehicle; c. a fixing and tightening screw (16); and d. a fixing piece (18) according to any one of the preceding claims; the first part (22) of the fixing piece (18) being fixed to the column shaft (20), the fixing and tightening screw (16) being received in the receiving housing (34) of the second part (24) of the fixing piece (18) and fixing the fixing piece (18) to the support (14).

8. Assembly (10) according to claim 7, wherein the first part (22) of the fixing piece (18) is welded onto the column shaft (20).

9. Assembly (10) according to claim 7 or 8, wherein the steering column (12) is fixed to the support (14) solely by the connection made by the fixing and clamping screw (16) received in the fixing piece (18) fixed to the column shaft (20).

10. A method for manufacturing a fastener (18) according to any one of claims 1 to 6, the method comprising the following steps: has. b. supply of a sheet metal blank; and machining of the sheet metal side so as to define the first (22), second (24) and third (26) parts.

Citation Information

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