Bumper cross member with weakening around a tie-down socket.

The bumper crossmember with structural weakenings addresses inhomogeneous energy absorption and installation issues by ensuring uniform deformation and safer impact management.

FR3126935B1Active Publication Date: 2025-09-26STELLANTIS AUTO SAS
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Patent Information

Application Number
FR2021009624
Authority / Receiving Office
FR · FR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-09-14
Publication Date
2025-09-26
Estimated Expiration
2041-09-14

AI Technical Summary

Technical Problem

Existing bumper beams with lashing sleeves experience inhomogeneous energy absorption due to increased rigidity, leading to non-symmetrical deformation and potential injury risks, especially in repairable impacts, and difficulty in fixing the lashing sleeve.

Method used

A bumper crossmember with structural weakenings in the fixing zone, featuring a central part connecting two boxes, each with deformations forming a reception space for the lashing sleeve, ensuring uniform energy absorption and accommodating the lashing socket.

Benefits of technology

The crossmember provides homogeneous energy absorption capacity and reduces injury risks by allowing symmetrical deformation around the lashing sleeve, while facilitating its installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a bumper cross member (1) for a shock absorption system of a motor vehicle, the cross member (1) having at least one attachment zone (2) designed to allow the attachment of a lashing sleeve (3) to the cross member (1), the attachment zone (2) having a bore (8) for the attachment of a towing hook through the bore (8) in the lashing sleeve (3), the cross member (1) having, at least in the attachment zone (2), a central portion (4) connecting two boxes (5), the bore (8) being provided at least in the central portion (4), at least one box (5) having in the attachment zone (2) at least one structural weakening (9) shaped to facilitate, in the event of a repairable impact suffered by the cross member (1), the deformation of the attachment zone (2) around the lashing sleeve (3) fixed to the attachment zone (2). (Figure 1)
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Description

Title of the invention: Bumper cross member having weakenings around a lashing socket.

[0001] The technical field concerns bumper cross members equipped with a lashing socket and vehicles equipped with such cross members.

[0002] In terms of road safety, automobile manufacturers must take into account multiple concerns and regulations when developing new vehicles. In particular, automobile manufacturers must ensure the safety of vehicle passengers in the event of a collision but also protect other more vulnerable road users such as pedestrians. Finally, it is appropriate to seek to control the repair costs of vehicles when they undergo urban impacts, called reparability impacts, i.e. impacts suffered at low speeds of around 15 to 20 kilometers per hour.

[0003] The behavior of motor vehicles in these three situations is regulated and tested by implementing standardized test procedures. The requirements in terms of results in these tests are ever more numerous and more difficult to satisfy and oblige automobile manufacturers to constantly innovate. To meet the requirements mentioned above, automobile manufacturers have thus developed shock absorption systems, also called SAC, which as a general rule comprise a bumper beam connected to the chassis of the vehicle, by means of absorbers arranged between the bumper beam and a side member. The SAC and in particular the beam are designed to deform by absorbing part of the energy released during an impact, in particular a repairable impact.

[0004] In addition to the regulations and constraints relating to behavior in the event of impacts, the bumper beam must, by regulation, include means for attaching a towing hook. For example, document FR3074750 describes such means using a lashing sleeve attached to the rear of the bumper beam, an opening in the bumper beam allowing the passage of the towing hook. However, attaching a lashing sleeve to a bumper beam considerably stiffens the bumper beam around the lashing sleeve and increases the inertia around the sleeve due to the addition of material.

[0005] Also, in the event of an impact, particularly in the event of a repairable impact, the deformation of the beam is not symmetrical since the portion of the beam around the lashing sleeve, generally positioned near one end of the bumper beam, deforms less easily due to its increased rigidity. The capacity of the beam to absorb energy is therefore not homogeneous. This inhomogeneity in the beam's absorption capacity represents a defect in behavior that is detrimental in the event of a repairable impact. Furthermore, the more rigid portions may represent areas likely to more easily cause injuries to pedestrians in the event of an impact.

[0006] Finally, in the case of a beam obtained by extrusion and therefore forming a profile, it is not always easy to fix the lashing sleeve due to lack of space available for this purpose.

[0007] The object of the present invention is to overcome the problems set out above. In this technical context, one aim of the present invention is to provide a bumper crossmember allowing the integration of a lashing socket while having a homogeneous energy absorption capacity across the entire crossmember.

[0008] For this purpose, the present invention relates to a bumper crossmember for a shock absorption system of a motor vehicle, the crossmember having at least one fixing zone designed to allow the fixing of a lashing sleeve on the crossmember, the fixing zone having a bore for the fixing of a towing hook through the bore in the lashing sleeve, the crossmember having, at least in the fixing zone, a central part connecting two boxes, the bore being provided at least in the central part, at least one box having in the fixing zone at least one structural weakening shaped to facilitate, in the event of a repairable impact suffered by the crossmember, the deformation of the fixing zone around the lashing sleeve fixed on the fixing zone.

[0009] The invention also relates to a vehicle equipped with a cross member according to the invention.

[0010] Thus, the cross member according to the invention has a particular shape that is frequently used and which has two boxes intended to absorb the energy of an impact connected by a central part. The cross member according to the invention has a fixing zone in which the lashing sleeve can be fixed. Each structural weakening provided in the fixing zone makes it possible to compensate for the stiffening caused by the lashing sleeve. Thus, in the event of a repairable impact, the weakened boxes deform more in the fixing zone than the rest of the cross member. The cross member according to the invention therefore makes it possible to integrate a lashing sleeve while having a uniform energy absorption capacity across the entire cross member.

[0011] According to one embodiment of the invention, the crosspiece is formed by extrusion of material, and in that each box comprises an opening made in the fixing zone forming a structural weakening.

[0012] Advantageously, each opening has a bean- or peanut-shaped rim.

[0013] According to one possibility, at least one weakening consists of a deformation of at least one box so as to form a receiving space for the socket. lashing, the reception space being partially delimited between each deformation and the central part. Thus, the formation of a reception space makes it possible to free up space for the lashing socket.

[0014] Advantageously, the reception space has a U-shaped or V-shaped contour following a cross-section of the cross-member, the branches of the U, respectively of the V, being intended to be oriented, when the cross-member is mounted on a vehicle, towards the passenger compartment of the vehicle.

[0015] According to one embodiment, at least one weakening is formed by shaping the fixing zone after extrusion of the crosspiece by applying at least one stress exerted on the periphery of at least one opening in order to deform the corresponding box in the fixing zone.

[0016] According to one possibility of the invention, when at least one weakening consists of a deformation of at least one box so as to form a receiving space for the lashing socket, the receiving space being delimited in part between each deformation and the central part, stresses are exerted on at least two openings in order to move the openings away from each other and to form the receiving space.

[0017] According to one possibility, the reception space has a cylindrical or truncated cone shape whose small base is delimited by the central part of the crosspiece.

[0018] The invention will be better understood on reading the detailed description which follows, given solely by way of non-limiting example and made with reference to the appended drawings in which:

[0019] [Fig-1] [Fig. 1] represents a perspective view and of the rear face of a fixing zone of a crosspiece according to the invention;

[0020] [Fig.2] [Fig.2] represents a front view of the fixing area of ​​[Fig.l].

[0021] In these figures, the same references are used to designate the same elements.

[0022] A bumper crossmember 1, partially illustrated in the figures, is intended to be installed on a chassis of a vehicle according to the invention by means of shock absorbers, to thus form a shock absorption system. The crossmember 1 is, for example, made of metal, in particular steel or aluminum alloy. The crossmember 1 is, for example, obtained by extrusion of material and thus forms a profile 2, as illustrated in [Fig.l].

[0023] The cross member 1 has at least one fixing zone 2, visible in the figures, designed to allow the fixing of a lashing sleeve 3, illustrated in the figures, on the cross member 1, the lashing sleeve 3 being designed to lash a towing hook, not illustrated. The fixing on the cross member 1 of the lashing sleeve 3 is advantageously carried out by welding.

[0024] In the embodiment illustrated in the figures, the cross member 1 has, at least in the fixing zone 2, a central part 4 connecting two boxes 5 each extending along the length of the cross member 1. The boxes 5 each delimit an empty space 6 that is generally parallelepiped, visible in [Fig.l]. The boxes 5 are designed to deform in the event of an impact, in particular a repairable impact, in order to absorb at least part of the energy released during the impact. The central part 4 also extends along the cross member 1 between two generally flat faces 7, a rear face intended to face the passenger compartment of the vehicle and a front face, opposite the rear face.

[0025] As illustrated in the figures, the fixing zone 2 has a bore 8 for fixing a towing hook, not illustrated, through the bore 8 in the lashing sleeve 3. The bore 8 is provided at least in the central part 4. In the example illustrated in the figures, the bore 8 has a circular shape whose radius is chosen to allow the lashing sleeve 3 to be accommodated in the bore 8.

[0026] In the fixing zone 2, the boxes 5 have structural weakenings 9 shaped to facilitate deformation of the fixing zone 2 around the lashing sleeve 3 fixed to the crosspiece 1, when the crosspiece 1 undergoes an impact, in particular a repairable impact.

[0027] In the example illustrated in the figures, each weakening 9 comprises at least one opening 10 formed in a box 5, in the fixing zone 2. In the embodiment illustrated in the figures, the openings 10 have a peanut- or bean-shaped perimeter, as illustrated in [Fig.2].

[0028] In the embodiment illustrated in the figures, at least one weakening 9 consists of a deformation 11 of at least one box 5 so as to form a receiving space 12 for the lashing sleeve 3. In this case, each box 5 has a deformation 11 located around the lashing sleeve 3. The receiving space 12 is thus delimited in part between the deformations 11 and the central part 4. The receiving space 12 has, along a cross section of the cross member at the level of the lashing sleeve 3, a U-shaped contour. The branches of the U are intended to be oriented, when the cross member 1 is mounted on a vehicle, towards the passenger compartment of the vehicle. The receiving space 12 comprises a portion forming a cylinder 13 between the deformations 11 and the central part 4.When the boxes 5 are distant from each other, as illustrated in the figures, the reception space 12 extends on either side of the fixing zone 2 between the boxes 5 and the central part 4.

[0029] In order to obtain the deformations 11, at least one weakening 9 is formed by shaping the fixing zone 2, after extrusion of the crosspiece 1, by the application of at least one stress exerted on the periphery of at least one opening 10 in view to deform the corresponding box 5 in the fixing zone 2. Each stress is advantageously exerted along a transverse axis of the cross member 1 oriented from top to bottom when the cross member 1 is installed on the vehicle. Before the application of the stress, the opening 10 has an oblong shape, the final peanut or bean shape of the opening 10 resulting from the deformation 11 of the box 5. In the example illustrated in the figures, at least two stresses are exerted on at least two openings 10 in order to move them away from each other along the transverse axis of the cross member 1 to form the reception space 12.

[0030] Thus, the deformations 11 of the boxes 5 make it possible to free the reception space 12 to fix a lashing sleeve 3 there. In addition, thanks to each weakening 9 provided in the boxes 5, the crosspiece 1 according to the invention has a homogeneous energy absorption capacity over the entire crosspiece 1.

[0031] The invention is not limited to the embodiment of the crosspiece described above, only by way of example, but other embodiments can be designed by those skilled in the art without departing from the scope and scope of the present invention.

Claims

Claims

1. Bumper crossmember (1) for a shock absorption system of a motor vehicle, the crossmember (1) having at least one attachment zone (2) designed to allow the attachment of a lashing sleeve (3) to the crossmember (1), the attachment zone (2) having a bore (8) for the attachment of a towing hook through the bore (8) in the lashing sleeve (3), the crossmember (1) having, at least in the attachment zone (2), a central portion (4) connecting two boxes (5), the bore (8) being provided at least in the central portion (4), at least one box (5) having in the attachment zone (2) at least one structural weakening (9) shaped to facilitate, in the event of a repairable impact suffered by the crossmember (1), the deformation of the attachment zone (2) around the lashing sleeve (3) fixed to the attachment zone (2), characterized in that the crossmember (1) is formed by extrusion of material,and in that each box (5) has an opening (10) formed in the fixing zone (2) forming a structural weakening (9).,

2. Crosspiece (1) according to claim 1, characterized in that each opening (10) has a bean-shaped or peanut-shaped perimeter.

3. Cross member (1) according to one of claims 1 or 2, characterized in that at least one weakening (9) consists of a deformation (11) of at least one box (5) so as to form a receiving space (12) for the lashing sleeve (3), the receiving space (12) being delimited in part between each deformation (11) and the central part (4).

4. Crossmember (1) according to claim 3, characterized in that the receiving space (12) has a U-shaped or V-shaped contour following a cross-section of the crossmember (1), the branches of the U, respectively of the V, being intended to be oriented, when the crossmember is mounted on a vehicle, towards the passenger compartment of the vehicle.

5. Cross member (1) according to one of claims 1 to 4, characterized in that at least one weakening (9) is formed by shaping the fixing zone (2) after extrusion of the cross member (1) by applying at least one stress exerted on the periphery of at least one opening (10) in order to deform the corresponding box (5) in the fixing zone (2).

6. Sleeper (1) according to claim 5 in combination with claim 3, characterized in that stresses are exerted on at least two openings (10) in order to move the openings (10) away from each other and to form the receiving space (12).

7. Crosspiece (1) according to claim 6, characterized in that the receiving space (12) has a cylindrical or truncated cone shape, the small base of which is delimited by the central part (4) of the crosspiece (1).

8. Vehicle equipped with a cross member (1) according to one of claims 1 to 7.