Vehicle operation pedal device
The notched welding reference hole in the bumper bracket reduces the moment arm and material thickness, addressing weight and cost issues in vehicle operation pedals, while ensuring precision and productivity.
Patent Information
- Application Number
- JP2022170436
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-10-25
- Publication Date
- 2025-09-24
- Estimated Expiration
- 2042-10-25
AI Technical Summary
The existing bumper bracket design in vehicle operation pedals requires a thicker plate thickness and increased weight due to the protruding welding reference holes, leading to a longer moment arm and higher material costs.
The bumper bracket is designed with a notched welding reference hole that is spaced laterally from the weld, reducing the protrusion and moment arm length, and allows for a thinner plate thickness and improved productivity through punching.
This design reduces the moment arm length, enabling a lighter and less costly bumper bracket while maintaining positional accuracy for protected components, and eliminates the need for a separate punching process.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a vehicle operation pedal device. [Background technology]
[0002] A vehicle operation pedal device such as a brake pedal may be provided with sensors, switches, and the like (hereinafter referred to as sensors) for detecting pedal operation. In such a pedal device, in order to protect the sensors from loads that may be inadvertently applied, such as a kick by a passenger's foot, a bumper bracket is provided on the side of the sensors where such loads may be inadvertently applied (see Patent Documents 1 to 3). The bumper bracket is fixed to the pedal arm by welding. To ensure the positional accuracy of the bumper bracket relative to the pedal arm during such welding, a welding reference hole is formed in the bumper bracket.
[0003] FIG. 4 shows an example of a bumper bracket attached to a brake pedal. In FIG. 4, bumper bracket B is fixed to the side of pedal arm P by welding. A weld bead W is formed at the welded portion. Bumper bracket B is fixed so as to protrude from the side of pedal arm P, preventing sensors from being affected by inadvertent loads such as a kick from an occupant. In the case of FIG. 4, bumper bracket B has a flat portion F that moves in contact with and away from an operating portion (not shown) of a stop lamp switch (not shown) to turn the stop lamp switch on and off in response to brake pedal operation. A welding reference hole H is formed on the side of flat portion F away from weld bead W. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2016-99794 [Patent Document 2] Japanese Patent Publication No. 2022-29564 [Patent Document 3] Japanese Patent Publication No. 2022-29565 Summary of the Invention [Problem to be solved by the invention]
[0005] Bumper bracket B is formed by stamping from a steel plate as a base material, and welding reference holes H are formed in predetermined locations of bumper bracket B by punching. In order to perform the punching process, welding reference holes H must be located at a predetermined distance or more from the outline of bumper bracket B. Therefore, the tip of welding reference hole H protrudes from bumper bracket B, forming protruding end E. As a result, the amount of protrusion of bumper bracket B from pedal arm P increases, and the moment arm becomes longer when the load point of an inadvertently applied load is at protruding end E. Therefore, in order for bumper bracket B to withstand the load, the plate thickness of bumper bracket B must be increased. As a result, the weight and cost of bumper bracket B increase.
[0006] The object of the present invention is to reduce the moment arm length of a load applied to the bumper bracket when the load point of an inadvertently applied load is at the protruding end by shortening the amount of protrusion of the bumper bracket in a vehicle operating pedal device equipped with a bumper bracket having a welding reference hole formed therein. [Means for solving the problem]
[0007] A first aspect of the present invention provides a vehicle operation pedal device that swings around a support portion of the pedal arm when a pedal foot at the end of a pedal arm is depressed, and that includes a bumper bracket that protrudes laterally from the pedal arm and is fixed by welding, protecting components that require protection and are located adjacent to the fixed position from inadvertently applied loads. The bumper bracket has a welding reference hole drilled in its tip, spaced laterally from the weld to the pedal arm, which serves as a reference position when welding the bumper bracket to the pedal arm. The welding reference hole has a notch shape that is open on the side away from the weld, and the opening direction of the notch shape as viewed from the center of the welding reference hole is the direction in which the tip of the bumper bracket protrudes adjacent to the welding reference hole on the side away from the weld if the welding reference hole were formed without the notch shape.
[0008] A second aspect of the present invention provides a vehicle operation pedal device that swings around a support portion of the pedal arm when the pedal foot at the end of the pedal arm is depressed, and includes a bumper bracket that protrudes laterally from the pedal arm and is fixed by welding, protecting components that require protection and are located adjacent to the fixed position from inadvertently applied loads. The bumper bracket has a welding reference hole drilled at its tip, spaced laterally from the weld to the pedal arm, which serves as a reference position when welding the bumper bracket to the pedal arm. The welding reference hole has a notch shape that is open on the side away from the weld, and the opening direction of the notch shape as viewed from the center of the welding reference hole is a direction away from the weld on an extension of a line connecting the center of the welding reference hole and the closest point to the center of the welding reference hole in the weld.
[0009] The third invention of the present invention is the first or second invention, wherein the bumper bracket is provided with a precision control portion that requires control of positional accuracy on the bumper bracket in order to perform a function other than its original function of protecting against inadvertently applied loads, and the welding reference hole is formed on the bumper bracket on the side away from the weld with respect to the precision control portion.
[0010] A fourth aspect of the present invention is the first or second aspect of the present invention, wherein the minimum value of the opening width of the opening portion of the notch shape is smaller than the diameter of the welding reference hole.
[0011] The fifth invention of the present invention is the first or second invention, wherein the two tip portions of the bumper bracket that form the opening in the cutout shape are each chamfered to reduce the amount of protrusion away from the weld. [Effects of the Invention]
[0012] According to the present invention, by forming the welding reference hole in a notched shape, there is no tip of the bumper bracket adjacent to the welding reference hole that protrudes away from the weld. This reduces the amount of lateral protrusion of the bumper bracket, thereby reducing the maximum value of the moment arm when the bumper bracket receives an inadvertent load. As a result, the strength of the bumper bracket can be reduced, allowing for a thinner plate thickness and a smaller weld strength. Furthermore, by forming the welding reference hole in a notched shape, the welding reference hole can be formed by punching, which is the process used to form the exterior shape of the bumper bracket. This eliminates the need for a separate punching process, thereby improving the productivity of the bumper bracket. [Brief explanation of the drawings]
[0013] [Figure 1] 1 is a perspective view showing a main part of an embodiment of the present invention. [Figure 2] FIG. 4 is an enlarged plan view of a bumper bracket portion in the embodiment. [Figure 3] FIG. 10 is an explanatory diagram illustrating the operation of the embodiment. [Figure 4] FIG. 3 is a plan view corresponding to FIG. 2 showing the prior art of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0014] <Configuration of one embodiment> FIG. 1 shows one embodiment of the present invention. This embodiment shows an example in which the present invention is applied to a brake pedal of a vehicle. In the figure, the directions indicated by arrows indicate the front-to-rear, up-down, and left-to-right directions when the front of the vehicle is defined as the front. This also applies to FIG. 2 and subsequent figures.
[0015] As is well known, a vehicle operation pedal device 10, which is a brake pedal, has a pedal arm 11 fixed to an instrument panel (not shown) or a dash panel (not shown) of a vehicle via a pedal bracket (not shown). Specifically, bosses 14 fixed to both sides of the pedal arm 11 are fitted onto a support shaft (corresponding to a support portion) 15 spanning a pair of left and right pedal brackets. The pedal arm 11 is penetrated by the support shaft 15 between the left and right bosses 14. The boss 14 is provided at the upper end of the pedal arm 11. In FIG. 1 , the boss 14 and the support shaft 15 are hidden behind the pedal arm 11, and only the right side of the pedal arm 11 is visible. The support shaft 15 is shown in a broken state.
[0016] A pedal step 12 with a substantially flat tread surface facing the occupant is fixed to the lower end of the pedal arm 11. Therefore, when the occupant presses the pedal step 12 downward with their foot, the pedal arm 11 is swung downward about the support shaft 15. This swing operates the vehicle's brakes. A return spring (not shown) is disposed between the pedal arm 11 and the pedal bracket, and when the occupant releases the pedal step 12, the pedal arm 11 is swung upward about the support shaft 15 by the biasing force of the return spring and returns to its initial position. In the returned position, the pedal arm 11 abuts against a stopper (not shown) to prevent further swinging.
[0017] 1 and 2, a bumper bracket 13 is fixed by welding to the pedal arm 11 at a position adjacent to the boss portion 14 on the right side surface thereof. The bumper bracket 13 has a flange portion 13b formed by bending downward at its left end, and is welded to the pedal arm 11 at this flange portion 13b. The tip of the bumper bracket 13 protrudes to the right. A weld bead (also called a welded portion) 16 is formed between the flange portion 13b of the bumper bracket 13 and the pedal arm 11 due to the welding.
[0018] <Shape of bumper bracket 13> The tip of the bumper bracket 13 is bent upward in a crank shape between the flange portion 13b and the tip. A flat surface 13a, indicated by a phantom circle, is formed on the upper surface distal to the bent portion. The flat surface 13a faces upward, and a stop lamp switch (not shown) is disposed in that direction. The stop lamp switch is fixed to the pedal bracket. Therefore, when the pedal arm 11 is swung downward as described above, the flat surface 13a separates from the operation portion of the stop lamp switch, switching the stop lamp switch from an OFF state to an ON state. The position of the flat surface 13a determines the timing of turning the stop lamp switch on and off, so relatively high positional accuracy is required. Therefore, the flat surface 13a is a precision-controlled portion that requires positional accuracy control. The stop lamp switch is protected by the bumper bracket 13 from loads inadvertently applied, such as a kick by a vehicle occupant, and corresponds to a component requiring protection in the present invention.
[0019] A welding reference hole 13c is drilled in the bumper bracket 13 adjacent to the flat portion 13a. The welding reference hole 13c is provided at the tip of the bumper bracket 13, spaced from the weld portion 16. The welding reference hole 13c is a hole into which a jig fits when welding the bumper bracket 13 to the pedal arm 11 and serves as a reference position for operating a welding torch. Therefore, the position of the welding reference hole 13c is determined by the size and shape of the bumper bracket 13 and the position of the welding portion. While conventional welding reference holes 13c are simple circular holes as described with reference to FIG. 4 , the welding reference hole 13c in this embodiment has a notched shape that opens toward the tip of the bumper bracket 13. The opening direction of the notched shape is a direction DR away from the weld bead 16, on an extension of a line L that connects the center C of the welding reference hole 13c to the closest point 16a of the weld bead 16 to the center C of the welding reference hole 13c. This direction DR is the direction in which protruding end E of bumper bracket B adjacent to welding reference hole H protrudes away from weld bead W when welding reference hole H is formed without a notch shape as shown in Figure 4. Opening width OW of the notch shape is made smaller than diameter D of welding reference hole 13c. In addition, two tip ends 13e of opening 13d that form the notch shape are each chamfered to have an R-shape, reducing the amount of protrusion toward the opposite side of weld bead 16.
[0020] <Effects of one embodiment> According to the above embodiment, by forming the welding reference hole 13c in a notched shape, the protruding end E that protrudes away from the weld bead W in the conventional bumper bracket B of FIG. 4 is eliminated. Furthermore, the protruding amount of the tip end 13e of the notched opening 13d is reduced by the rounded shape. As a result, when a load is applied to the tip end 13e of the bumper bracket 13 due to a kick from the occupant's foot FO, as shown by the arrow in FIG. 3, the bending stress acting on the bumper bracket 13 is reduced by the amount of protrusion of the tip end 13e of the bumper bracket 13 away from the weld bead 16. This is because the moment arm when a load is applied to the tip end 13e (see FIG. 2) or the protruding end E (see FIG. 4) of the bumper bracket 13 is ML2 in the conventional bumper bracket of FIG. 4, whereas it is ML1 in the present embodiment of FIG. 2, resulting in a shorter length. That is, ML2 > ML1.
[0021] Therefore, in this embodiment, it is possible to reduce the strength of bumper bracket 13, the plate thickness, and the welding strength. Also, by forming welding reference hole 13c in a notched shape, welding reference hole 13c can be formed by punching, which is the outer shape of bumper bracket 13, eliminating the need to set up a separate punching process for welding reference hole 13c, and improving the productivity of bumper bracket 13.
[0022] In this embodiment, flat portion 13a, which is an accuracy control portion, is located closer to weld bead 16 than welding reference hole 13c. This makes it easier to control the positional accuracy of flat portion 13a. Also, welding reference hole 13c can be formed in a notched shape without being affected by the presence of flat portion 13a.
[0023] In this embodiment, the minimum value of the opening width OW of the opening 13d in the notch shape is set to be smaller than the diameter D of the welding reference hole 13c. Therefore, even if the welding reference hole 13c has a notch shape, it can maintain its function as the welding reference hole 13c.
[0024] <Other embodiments> While specific embodiments have been described above, the present invention is not limited to those in terms of appearance and configuration, and various modifications, additions, and deletions are possible. For example, in the above embodiments, the vehicle operation pedal device is applied to a brake pedal, but it may also be applied to other pedals, such as a clutch pedal. Furthermore, while the above embodiments illustrate one example of the brake pedal structure, the present invention may also be applied to brake pedals of other structures. In the above embodiments, the component requiring protection is the stop lamp switch, but it may also be another component, such as a stroke sensor that detects the amount of pedal arm operation. In the above embodiments, the flat surface for operating the stop lamp switch provided on the bumper bracket is designated as the precision-controlled component, but the operating component for the stroke sensor provided on the bumper bracket may also be designated as the precision-controlled component. Furthermore, a precision-controlled component is not essential to the present invention.
[0025] <Effects of the above embodiments corresponding to each invention> Finally, the effects of the above embodiments corresponding to the first invention and subsequent inventions in the "Means for Solving the Problems" section will be listed below.
[0026] According to the first aspect of the present invention, by forming the welding reference hole in a notched shape, there is no tip of the bumper bracket adjacent to the welding reference hole that protrudes away from the weld. This reduces the amount of lateral protrusion of the bumper bracket, thereby reducing the maximum value of the moment arm when the bumper bracket is subjected to an inadvertent load. As a result, the strength of the bumper bracket can be reduced, allowing for a thinner plate, and the weld strength can also be reduced. Furthermore, by forming the welding reference hole in a notched shape, the welding reference hole can be formed by punching, which is the process used to form the exterior shape of the bumper bracket. This eliminates the need for a separate punching process, thereby improving the productivity of the bumper bracket.
[0027] According to the second invention, it is possible to achieve the same effects as those of the first invention.
[0028] According to the third aspect of the present invention, the precision control portion can be placed closer to the weld than the welding reference hole. This makes it easier to ensure the positional precision of the precision control portion. Furthermore, the welding reference hole can be formed in a notched shape without being affected by the presence of the precision control portion.
[0029] According to the fourth invention, the minimum opening width of the opening portion in the notch shape is made smaller than the diameter of the welding reference hole, so that the welding reference hole can maintain its function as a welding reference hole even if it is made into a notch shape.
[0030] According to the fifth aspect of the present invention, the tip of the bumper bracket that forms the opening in the notch shape is chamfered, thereby reducing the amount of protrusion of the tip of the opening away from the weld. This further reduces the maximum value of the moment arm when the bumper bracket receives an inadvertent load, further enhancing the effects of the first aspect of the present invention. [Explanation of symbols]
[0031] 10 Vehicle operation pedal device 11 Pedal arm 12 Pedal foot 13 Bumper bracket 13a Flat part (quality control part) 13b Flange 13c Welded reference hole 13d open area 13e Tip 14 Boss section 15 Support shaft (support part) 16 Weld bead (weld) 16a Closest point to the center of the welding reference hole DR direction OW open width FO Foot ML Moment arm length
Claims
1. A vehicle operation pedal device that swings around a support portion of the pedal arm when a pedal step portion at an end of the pedal arm is depressed, a bumper bracket that protrudes laterally from the pedal arm and is fixed by welding, and that protects a member that needs protection and is provided adjacent to the fixed position from a load that is inadvertently applied; The bumper bracket has a welding reference hole drilled at a tip end spaced laterally from the welded portion to the pedal arm, the welding reference hole serving as a reference position when welding the bumper bracket to the pedal arm, The welding reference hole has a notched shape with an open side away from the welded portion, The opening direction of the notch shape as viewed from the center of the welding reference hole is a direction away from the welded portion at the tip end of the bumper bracket. An operating pedal device for a vehicle.
2. A vehicle operation pedal device that swings around a support portion of the pedal arm when a pedal step portion at an end of the pedal arm is depressed, a bumper bracket that protrudes laterally from the pedal arm and is fixed by welding, and that protects a member that needs protection and is provided adjacent to the fixed position from a load that is inadvertently applied; The bumper bracket has a welding reference hole drilled at a tip end spaced laterally from the welded portion to the pedal arm, the welding reference hole serving as a reference position when welding the bumper bracket to the pedal arm, The welding reference hole has a notched shape with an open side away from the welded portion, The opening direction of the notch shape as viewed from the center of the welding reference hole is a direction away from the welded portion on an extension of a line connecting the center of the welding reference hole and the closest point to the center of the welding reference hole in the welded portion. An operating pedal device for a vehicle.
3. In claim 1 or 2, The bumper bracket includes a precision control portion that requires control of positional precision on the bumper bracket in order to fulfill a function other than its original function of protecting the bumper bracket from an inadvertently applied load, The welding reference hole is formed on the bumper bracket on a side of the precision control portion away from the welding portion. An operating pedal device for a vehicle.
4. In claim 1 or 2, The minimum value of the opening width of the opening portion of the notch shape is smaller than the diameter of the welding reference hole. An operating pedal device for a vehicle.
5. In claim 1 or 2, The two tip portions of the bumper bracket that form the opening in the notch shape are each chamfered to reduce the amount of protrusion toward the side away from the welded portion. An operating pedal device for a vehicle.
Citation Information
Patent Citations
Brake pedal device
JP2013006484A
Operation pedal device for vehicle
JP2015088082A
Operation pedal device for vehicle
JP2016099794A
Manipulated variable sensor attachment structure of operation pedal device for vehicle
JP2022029564A
Operation pedal device for vehicle
JP2022029565A