Pedestrian Shock Absorbing Device of a Motor Vehicle
The pedestrian impact absorber device addresses the limitations of existing systems by providing enhanced shock absorption for lower impacts and improved air cooling, while maintaining aesthetic appeal and controlling deformation based on impact intensity.
Patent Information
- Application Number
- FR2023014125
- Authority / Receiving Office
- FR · FR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-12-13
- Publication Date
- 2025-06-20
AI Technical Summary
Existing pedestrian shock absorber devices for motor vehicles are ineffective in absorbing impacts between a pedestrian and the lower part of the vehicle bumper, and they do not optimize air cooling of the powertrain during motion.
A pedestrian impact absorber device that extends transversely across the front end crossmember of a vehicle, featuring at least one air duct passing through the device and opening on both sides. This device includes a sleeve that secures it to the crossmember, allowing air to circulate and be directed towards the vehicle's radiator, while also being designed to deform easily during impacts to enhance shock absorption.
The device improves the absorption of shocks occurring between the lower part of the vehicle bumper and a pedestrian, optimizes air cooling of the powertrain, and allows for controlled crushing based on impact intensity, reducing physical harm to pedestrians and maintaining vehicle aesthetics.
Smart Images

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Abstract
Description
Title of the invention: Pedestrian shock absorber device for a motor vehicle Technical field
[0001] The invention relates to a pedestrian shock absorber device for a motor vehicle. The constant evolution of vehicle engines, both thermal and hybrid, requires the provision of means for cooling the powertrain of these vehicles, the efficiency of which must be improved accordingly. Such engines require increasing the number of air inlets at the front of the vehicles, or increasing their surface area. Prior art
[0002] FR2915933 discloses a motor vehicle whose front part comprises a powertrain supplied with air by means of an air supply circuit comprising an air filter and an air intake neck. The motor vehicle also comprises a front bumper in which is housed a shock absorber, also called a femur absorber, comprising a deformable part and intended to cushion the impact of the femur of a pedestrian, in the event of an accidental collision of the vehicle and the pedestrian. The shock absorber of FR2915933 extends transversely and in the upper part of the front bumper of the vehicle. In FR2915933, the air intake neck is formed in the thickness of the deformable part and has an elongated shape extending in a length portion of the deformable part of the shock absorber extending transversely relative to the longitudinal axis of the vehicle.Thus, in the event of a front impact of the vehicle with an obstacle, in particular with a pedestrian, the bumper deforms as well as the deformable part of the impact absorber, in particular due to the facilitated deformation of the air intake neck by radial compression. The impact absorber of FR2915933 and the radial deformation of the air intake neck in the event of an impact occurring opposite the air intake neck, contribute to improving the absorption of this impact by the impact absorber and to limiting the extent of the physical after-effects inflicted on a pedestrian due to this impact. That being said, these advantages are limited to an impact occurring opposite the air intake neck which extends over only part of the deformable part of the impact absorber. Furthermore, these advantages are limited to an impact occurring between an obstacle, in particular a pedestrian, and an upper part of the front bumper of a vehicle.The shock absorbing device of FR2915933 is essentially inoperative in the event of an impact between a pedestrian and a lower part of the vehicle bumper. Furthermore, these advantages are limited to an arrangement of the air inlet neck of the air supply circuit of a powertrain, the air supply circuit. further including an air filter. Finally, the radial deformation and crushing of the air intake neck in the event of an impact requires replacement of the shock absorber and the damaged swan neck for the air supply to the powertrain.
[0003] The invention aims to overcome all of these drawbacks.
[0004] The invention aims in particular to propose a pedestrian shock absorber device for a motor vehicle which makes it possible to improve the absorption of a shock occurring between a lower part of the front bumper of the vehicle and an obstacle, in particular a pedestrian, in particular a lower part of a lower limb of the pedestrian.
[0005] The invention also aims to propose a pedestrian shock absorber device making it possible to optimize the air cooling of the powertrain of the motor vehicle while in motion. Statement of the invention
[0006] The invention relates to a pedestrian impact absorber device - also called a pedestrian absorber or front pedestrian impact absorber or tibia absorber - of a motor vehicle, adapted to be able to be fixed to the front face of a front end crossmember of this vehicle, said crossmember comprising at least one air passage passing through said crossmember and opening out on the front face and on the rear face of said crossmember, characterized in that the pedestrian impact absorber device extends transversely relative to the vehicle and provides at least one air duct passing through the pedestrian impact absorber device and opening out on the front face and on the rear face of the pedestrian impact absorber device, and in that at least one air duct of the pedestrian impact absorber device has a sleeve extending said at least one air duct on the rear face of the pedestrian impact absorber device, the sleeve being shaped to be able to cooperate with one of the at least one air passage of the cross member so as to secure the pedestrian impact absorber device and the cross member, allow a passage of air circulating between the front face of the pedestrian impact absorber device and the rear face of the front end cross member and direct this circulation of air onto a radiator of the motor vehicle.
[0007] Throughout the text: - the terms “front”, “rear”, “right”, “left”, “top” and “bottom” are to be considered in relation to a vehicle in normal condition for progress, - the XYZ reference frame refers to a direct orthonormal reference frame XYZ classically used in automobile design, in which the X axis designates the front-rear longitudinal direction of the vehicle, oriented towards the rear, the Y axis designates the transverse direction and is oriented towards the right of the vehicle, the Z axis designates the vertical direction, and is oriented upwards.
[0008] The front end crossmember (also called a "small impact crossmember") of the vehicle is a structural element of the vehicle. The front end crossmember is a metal crossmember, extends to the front of the vehicle and is mounted integrally at the front end of the side members of the vehicle and transversely to them. A front end crossmember known from the prior art is formed from a continuous profile and free from any through air passage.
[0009] According to the invention, the front end crossmember has at least one air passage passing through said crossmember and opening at the front and rear of said crossmember. According to the invention, the air passage(s) passing through said front end crossmember allow the routing of an air flow created due to the progression of the vehicle towards the radiator of the vehicle. Said front end crossmember according to the invention comprising at least one air passage passing through said crossmember and opening at the front and rear of said crossmember makes it possible to improve the cooling of the powertrain of these vehicles, both thermal and hybrid.
[0010] According to certain embodiments of the invention, the front end crossmember having at least one through and through air passage, is provided with a pedestrian shock absorber device adapted to be able to be fixed to the front face of said crossmember.
[0011] According to certain embodiments of the invention, the pedestrian shock absorber device provides at least one air duct passing through the pedestrian shock absorber device and opening onto the front face and the rear face of the pedestrian shock absorber device. According to certain embodiments of the invention, at least one air duct of the pedestrian shock absorber device has a sleeve extending said at least one air duct axially on the rear face of the pedestrian shock absorber device. According to certain embodiments of the invention, at least one sleeve has an internal face of the same cross-section, along the axis of elongation of the sleeve, as the internal face of the duct that it extends. However, nothing prevents at least one sleeve from having an internal face of cross-section, along the axis of elongation of the sleeve, distinct (in shape and dimension) from that of the internal face of the duct that it extends.
[0012] According to the invention, the sleeve is shaped and dimensioned to be able to cooperate with one of the at least one air passages of the front end crossmember, by engaging said at least one sleeve in said air passage. By this engagement, the pedestrian impact absorber device is fixed to the front end crossmember. According to the invention, the sleeve cooperates by friction of the external face of the sleeve and the internal face of the air passage, whereby the pedestrian impact absorber device and the front end crossmember are secured. The cooperation of the sleeve and the air passage of the front end crossmember allows pre-assembly of the absorber device pedestrian impact absorber and the crossbar facilitating the operations of positioning the pedestrian impact absorber device in relation to the crossbar and their subsequent final assembly.
[0013] According to the invention, this connection is obtained without any significant reduction in the flow of air entering the front of the vehicle and also makes it possible to direct the flow of air onto the vehicle's radiator.
[0014] According to certain embodiments, the sleeve cooperates over its entire length with an air passage of the front end crossmember. However, nothing prevents the sleeve from cooperating with a passage of the front end crossmember over only a portion of the length of the sleeve. Nothing also prevents the sleeve from cooperating with only a portion of the length of the passage of the front end crossmember.
[0015] According to certain embodiments, at least one - in particular each - air duct of the pedestrian impact absorber device is of rectilinear tubular shape. According to these advantageous embodiments, each air duct of the pedestrian impact absorber device is free of a baffle capable of opposing the flow of air passing through the pedestrian impact absorber device and the front end crossmember.
[0016] According to certain embodiments, at least one - in particular each - air duct of the pedestrian shock absorber device is of rectilinear tubular shape and of transverse cross-section relative to an axis of elongation of said at least one air duct, chosen from a polygonal cross-section - in particular a rectangular or square cross-section - and a circular cross-section. Preferably, at least one - in particular each - air duct of the pedestrian shock absorber device is of rectilinear tubular shape and of rectangular transverse cross-section.
[0017] According to some of these embodiments, the axis of elongation of at least one air duct is inclined relative to a longitudinal axis of the vehicle, intersecting the axis of elongation of said at least one air duct, by an angle value (a) of between 10° and 30°. Depending on the height position of the pedestrian impact absorber device relative to the radiator of the vehicle, the air duct may be inclined downwards, for example if the pedestrian impact absorber device extends in the upper part relative to the radiator. But the air duct may be inclined upwards, for example if the pedestrian impact absorber device extends in a lower part relative to the radiator. According to these embodiments, the inclination of the air duct allows for easy deformation or crushing of the pedestrian impact absorber device during an impact, in particular during a frontal impact, between the vehicle and an obstacle, in particular a pedestrian.This results in an absorption of the stresses due to the impact which are improved. According to these embodiments, the inclination of the air duct allows an increase in the crushing rate of the pedestrian shock absorber device, in particular during an impact with a pedestrian, and a progressive crushing depending on the intensity of the impact. The device. pedestrian shock absorber therefore allows crushing to be controlled according to the intensity of the shock. In particular, in the case of a high-intensity shock, the areas of the pedestrian shock absorber device that do not have an air duct mainly absorb the shock. In the case of a low-intensity shock, the areas of the pedestrian shock absorber device that have an air duct mainly absorb the shock. In the case of an RCAR shock standardized by insurance companies, caused at a speed of 16 km / h, the areas of the pedestrian shock absorber device that have an air duct and those that do not have one combine to absorb the shock.
[0018] Advantageously, according to these embodiments, the inclination of the air duct - in particular the upward inclination of the air duct - allows visual masking of the radiator for a third person facing the vehicle. The advantage is therefore also aesthetic. The aesthetic quality of the vehicle perceived by the public is therefore improved.
[0019] According to certain embodiments, the pedestrian shock absorber device is formed from at least one thermoplastic material, in particular a thermoplastic material chosen from the group consisting of polypropylene (PP) and expanded polypropylene (EPP). Advantageously, the thermoplastic material of the pedestrian shock absorber device is chosen to be deformable upon impact in a first initial stroke of the impact and to be substantially incompressible in a second final stroke of the impact.
[0020] According to certain embodiments, the pedestrian shock absorber device has a largest dimension substantially equal to the largest dimension of the front end crossmember of the vehicle, this largest dimension extending along the Y axis of a direct orthonormal reference frame XYZ as defined in standard No. 0100112 when the absorber device is mounted on the vehicle.
[0021] According to some of these embodiments, the pedestrian shock absorber device has a larger dimension of between 800 mm and 1200 mm, in particular of between 900 mm and 1100 mm, in particular of the order of 1000 mm.
[0022] According to certain embodiments, the pedestrian shock absorber device has a height of between 100 mm and 140 mm, in particular between 110 mm and 130 mm, in particular of the order of 120 mm, this height extending along the Z axis of a direct orthonormal reference frame XYZ as defined in standard No. 0100112 when the absorber device is mounted on the vehicle.
[0023] According to certain embodiments, the pedestrian shock absorber device has a thickness of between 60 mm and 100 mm, in particular between 70 mm and 90 mm, in particular of the order of 80 mm, this thickness extending along the X axis of a direct orthonormal reference frame XYZ as defined in standard No. 0100112 when the absorber device is mounted on the vehicle.
[0024] The invention also extends to a front end crossmember having at least one air passage passing through said crossmember and opening at the front and rear of said front end crossmember. According to the invention, the air passage(s) passing through said front end crossmember allow the routing of an air flow created due to the progression of the vehicle towards the radiator of the vehicle. Said front end crossmember according to the invention comprising at least one air passage passing through said crossmember and opening at the front and rear of said crossmember makes it possible to improve the cooling of the powertrain of these vehicles, both thermal and hybrid.
[0025] According to certain embodiments, a crossmember according to the invention is adapted to be able to receive and cooperate with a pedestrian impact absorber device of this motor vehicle, the pedestrian impact absorber device being adapted to be able to be fixed to the front face of the front end crossmember of this vehicle, characterized in that the pedestrian impact absorber device extends transversely relative to the vehicle and provides at least one air duct passing through the pedestrian impact absorber device and opening out on the front face and the rear face of the pedestrian impact absorber device, and in that at least one air duct of the pedestrian impact absorber device has a sleeve extending said at least one air duct on the rear face of the pedestrian impact absorber device, the sleeve being shaped to be able to cooperate with one of the at least one air passage of the cross member so as to secure the pedestrian impact absorber device and the cross member, allow a passage of air circulating between the front face of the pedestrian impact absorber device and a rear face of the front end cross member and direct this circulation of air onto a radiator of the motor vehicle.
[0026] The invention also extends to a motor vehicle equipped with a pedestrian impact absorber device according to the invention and / or a front end cross member according to the invention. Brief description of the drawings
[0027] Other characteristics and advantages of the invention will become apparent from reading the description which follows. This description is purely illustrative and should be read in conjunction with the appended drawings in which:
[0028] [Fig. 1] is an exploded schematic representation of a pedestrian impact absorber according to the invention cooperating with a front end cross member of a motor vehicle;
[0029] [Fig.2] is a schematic cross-sectional representation of a first mode for producing an assembly formed of a pedestrian shock absorber device and a front end crossmember of a motor vehicle;
[0030] [Fig.3] is a schematic cross-sectional representation of a second embodiment of an assembly formed of a pedestrian impact absorber device and a front end cross member of a motor vehicle;
[0031] [Fig.4] is a schematic cross-sectional representation of a pedestrian impact absorber device in a first state before the occurrence of an impact and in a second state after the occurrence of an impact;
[0032] [Fig.5] is a schematic representation in longitudinal section along a vertical plane comprising the X and Z axes, of a front part of a motor vehicle comprising a transverse cooling assembly, the motor vehicle being equipped with a pedestrian impact absorber device according to the invention. Description of the embodiments
[0033] The exploded schematic view shown in [Fig.l] comprises a front end cross member 4 of a vehicle (not shown). The front end cross member 4 is formed from a rigid metal profile. Each longitudinal end 14 of the front end cross member 4 is mounted integral with one of the front longitudinal ends of the side members (not shown) of the vehicle. The two longitudinal ends 14 of the cross member 4 form, on the rear face 10 of the cross member 4, crushing pieces, extending in the extension of the side members, at the front longitudinal ends of the side members. The crushing pieces are adapted to be able to crush longitudinally (along the X axis of the vehicle) and are arranged to be able to preserve the integrity of the side members during an impact.
[0034] The axial end crossmember 4 shown comprises three passages 5.5', 5” passing through the front end crossmember 4 and opening onto the front face 3 and onto the face of the crossmember, each adapted and dimensioned to be able to cooperate with a hollow sleeve 7.7', 7” extending each conduit 6.6', 6” passing from front to rear through the pedestrian impact absorber device 1 according to the invention. According to the invention, the passages 5.5', 5” passing through the front end crossmember 4 are shaped and dimensioned to each receive one of the sleeves 7.7', 7” of the pedestrian impact absorber device 1 and to secure the pedestrian impact absorber device 1 and the front end crossmember 4 by simple relative engagement of one into the other. The pedestrian impact absorber device 1 is formed from at least one thermoplastic material, in particular a thermoplastic material chosen from the group formed by polypropylene (PP) and expanded polypropylene (EPP).The thermoplastic material of the pedestrian shock absorber device is deformable upon impact in a first initial stroke of the impact, but also to be substantially incompressible in a second final stroke of the impact.
[0035] The ducts 6,6',6” formed passing through the pedestrian impact absorber device 1 from front to rear and the sleeves 7,7',7” cooperating with the passages 5,5',5” passing through the front end crossmember 4 allow atmospheric air 13 to enter the front of the vehicle and guide this atmospheric air 13 towards the rear of the front end crossmember 4 and towards the radiator of the motor vehicle.
[0036] The schematic cross-sectional view of a first method of assembling a pedestrian impact absorber device 1 and a front end cross member 4 shown is shown in [Fig.2]. This view is a cross-sectional view in a plane passing through a conduit 6,6',6” and through a passage 5,5',5” of the axial end cross member. In this first method of assembly, the pedestrian impact absorber device 1 has a conduit 6, extended by a sleeve 7. The sleeve 7 is dimensioned to extend over the entire length of the passage 5 of the axial end cross member 4. However, nothing prevents the sleeve 7 from having a length greater than or slightly less than the length of the passage 5. That being said, the pedestrian impact absorber device 1 and the front end cross member 4 are integral.The cooperation of the sleeve(s) of the pedestrian impact absorber device 1 and the passage(s) of the front end crossmember 4 allows pre-assembly of the impact absorber device 1 and the end crossmember 4. This pre-assembly facilitates the subsequent assembly of these two elements. In the embodiment shown, the duct 6 passing through the pedestrian impact absorber device 1, the sleeve 7 extending the duct 6 and the passage 5 passing through the front end crossmember 4 are coaxial along an axis 13 of elongation of the duct 6, the sleeve 7 and the passage 5 and form a channel 16 for guiding atmospheric air with the same axis 13 of elongation. According to this embodiment, the channel 16 extends between a front inlet 17 made in a skin 15 of the vehicle 2, forming a shield and a rear air outlet 18 directed onto a radiator 11 of the motor vehicle 2.
[0037] In the embodiment shown, the axis 12 of elongation of the air guide channel 16 is inclined relative to the longitudinal axis of the vehicle, intersecting the axis 12 of elongation of the air guide channel 16. In this embodiment, the air intake and its orientation towards the radiator of the vehicle is improved and the aesthetic appearance of the vehicle is preserved since the orientation of the axis 12 of elongation of the air guide channel 16 does not coincide with the axis of vision of an individual looking at the vehicle.
[0038] Furthermore, taking into account this inclination, the apparent thickness (along the X axis of the vehicle) of material forming the pedestrian shock absorber device 1 is reduced due to the 6,6',6” conduits provided and the occurrence of an impact at the front of the vehicle with a pedestrian, along an axis parallel to the X axis of elongation of the vehicle allows for easier deformation of the pedestrian shock absorber device 1 and an improvement in shock absorption.
[0039] In the embodiment shown in [Fig.3], the axis 12 of elongation of the air guide channel 16 is inclined relative to the longitudinal axis of the vehicle, intersecting the axis 12 of elongation of the air guide channel 16. In this embodiment, the air intake and its orientation towards the radiator of the vehicle is improved. In this embodiment, the axis 12 of elongation of the air guide channel 16 is inclined downwards relative to the longitudinal axis of the vehicle. The sleeve 7 of the pedestrian impact absorber device 1 cooperates with the air passage 5 passing through the front end crossmember 4 so that the pedestrian impact absorber device 1 is maintained in a pre-assembled state with the front end crossmember 4 due to gravity. Final assembly of the pedestrian impact absorber device 1 and the front end crossmember 4 is facilitated due to this cooperation.
[0040] Furthermore, taking into account this inclination, the apparent thickness (along the X axis of the vehicle) of the material forming the pedestrian shock absorber device 1 is reduced due to the 6,6',6” conduits provided and the occurrence of an impact at the front of the vehicle with a pedestrian, along an axis parallel to the X axis of elongation of the vehicle allows for easier deformation of the pedestrian shock absorber device 1 and an improvement in the absorption of the impact.
[0041] [Fig. 4] is a schematic illustration of a pedestrian impact absorber device 1 in cross-section in a first state 19 before the occurrence of an impact and in a second state 20 after the occurrence of an impact. The pedestrian impact absorber device 1 according to the invention, in a first state 19 before the occurrence of an impact is as shown in [Fig. 2]. In this first state 19, the pedestrian impact absorber device 1 has a thickness (e) along the elongation axis X of the vehicle. In the second state 20 after the occurrence of an impact, the crushed impact absorber device 1 has a thickness (e' < e) along the elongation axis X of the vehicle. The thickness (e' < e) is non-zero and is representative of a compressibility limit of the pedestrian impact absorber device 1 according to the invention, reached when the impact occurs.
[0042] The front part of the motor vehicle 2 shown schematically in [Fig.5] is equipped with a pedestrian impact absorber device 1 having an air duct 6 passing through the pedestrian impact absorber device 1 and opening at the front and rear of the pedestrian impact absorber device 1. The pedestrian impact absorber device 1 is arranged above a plurality of lower air inlets 21. It opens at the lower part of a skin 15 of the vehicle 2, said skin 15 forming a shield. The pedestrian impact absorber device 1 has the effect of increasing the effective air inlet surface at the front of the motor vehicle 2. The air duct 6 of the pedestrian impact absorber device 1 cooperates with an air passage 5 passing through the front end crossmember 4 so as to direct an additional air flow towards a transverse cooling assembly comprising a case 22 for cooling the motor vehicle 2. The cooling of the powertrain of the motor vehicle 2 is improved without altering the aesthetic quality of the vehicle 2 as perceived by the public.
Claims
Claims
1. Device (1) for absorbing pedestrian impact of a motor vehicle (2), adapted to be able to be fixed to the front face (3) of a front end crossmember (4) of this vehicle, said front end crossmember (4) comprising at least one air passage (5, 5', 5”) passing through said front end crossmember (4) and opening out at the front face (3) and at the rear face (10) of said crossmember (4), characterized in that the device (1) for absorbing pedestrian impact extends transversely relative to the vehicle (2) and provides at least one air duct (6, 6', 6”) passing through the device (1) for absorbing pedestrian impact and opening out at the front face (8) and at the rear face (9) of the device (1) for absorbing pedestrian impact, and in that at least one air duct (6) of the device (1) for absorbing pedestrian impact has a sleeve (7, 7', 7”) extending said at least one duct (6.6',6”) of air in front (9) of the rear of the pedestrian shock absorber device (1), the sleeve (7.7',7”) being shaped to be able to cooperate with one of the at least one air passage (5.5',5”) of the cross member (4) so as to secure the pedestrian impact absorber device (1) and the cross member (4), allow a passage of air circulating between the front face (8) of the pedestrian impact absorber device (1) and the rear face (10) of the front end cross member (4) and direct this air circulation (13) onto a radiator (11) of the motor vehicle (2).,
2. Pedestrian shock absorber device (1) according to claim 1, characterized in that at least one in particular each air duct (6) of the pedestrian shock absorber device (1) is of rectilinear tubular shape.
3. Pedestrian shock absorber device (1) according to one of claims 1 or 2, characterized in that at least one - in particular each - air duct (6, 6', 6”) of the pedestrian shock absorber device (1) is of rectilinear tubular shape and of transverse cross-section relative to an axis (12) of elongation of said at least one air duct (6), chosen from a polygonal section - in particular a rectangular or square section - and a circular section.
4. Pedestrian shock absorber device (1) according to claim 3, characterized in that the axis (12) of elongation of at least one air duct (6) is inclined relative to a longitudinal axis of the vehicle, intersecting the axis (12) of elongation of said at least one air duct (6), by an angle value (a) of between 10° and 30°.
5. Pedestrian shock absorber device (1) according to one of claims 1 to 4, characterized in that it is formed from a material chosen from the group formed by polypropylene (PP) and expanded polypropylene (EPP),
6. Pedestrian shock absorber device (1) according to one of claims 1 to 5, characterized in that it has a largest dimension substantially equal to the largest dimension of the front end cross member of the vehicle.
7. Pedestrian shock absorber device (1) according to one of claims 1 to 6, characterized in that it has a largest dimension of between 800 mm and 1200 mm, in particular of between 900 mm and 1100 mm, in particular of the order of 1000 mm.
8. Pedestrian shock absorber device (1) according to one of claims 1 to 7, characterized in that it has a height of between 100 mm and 140 mm, in particular between 110 mm and 130 mm, in particular of the order of 120 mm.
9. Pedestrian shock absorber device (1) according to one of claims 1 to 8, characterized in that it has a thickness of between 60 mm and 100 mm, in particular between 70 mm and 90 mm, in particular of the order of 80 mm.
10. Front end crossmember (4) for a motor vehicle (2), characterized in that it comprises at least one air passage (5) passing through said front end crossmember (4) and opening onto the front face (3) and the rear face (13) of said front end crossmember (4).
11. Front end crossmember (4) for a motor vehicle (2) according to claim 10, characterized in that it is adapted to be able to receive and cooperate with a pedestrian impact absorber device (1) of this motor vehicle (2), the pedestrian impact absorber device (1) being adapted to be able to be fixed on the front face (3) of the front end crossmember (4) of this vehicle, characterized in that the pedestrian impact absorber device (1) extends transversely relative to the vehicle (2) and provides at least one air duct (6) passing through the pedestrian impact absorber device (1) and opening on the front face (8) and on the rear face (9) of the pedestrian impact absorber device (1), and in that at least one air duct (6) of the pedestrian impact absorber device (1) has a sleeve (7) extending said at least one air duct (6) on the rear face (9) of the pedestrian impact absorber device (1), the sleeve (9) being shaped to be able to cooperate with one of the at least one air passage (5) of the cross member (4) so as to secure the pedestrian shock absorber device (1) and the cross member (4), allow a passage of air circulating between the front face (8) of the pedestrian shock absorber device (1) and a rear face (10) of the front end cross member (4) and direct this circulation of air onto a radiator (11) of the motor vehicle (2).
12. Motor vehicle (2) equipped with a pedestrian shock absorber device (1) according to one of claims 1 to 9.
13. Motor vehicle (2) equipped with a front end cross member (4) according to one of claims 10 or 11.
Citation Information
Patent Citations
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