Automotive pedal support structure
3 claims: 1 independent, 2 dependent
- 1An automotive pedal support structure in which an operating pedal (11) is to be attached via brackets (20, 25) to a dashpanel (3) serving as a partition between an engine room (4) and a cabin (2) , the automotive pedal support structure comprising:a first pedal bracket (20) to be fixed to the dashpanel (3) ;a bracket support shaft (28) provided at an upper part of the first pedal bracket (20) to extend in a widthwise direction of an automobile (1) ;a second pedal bracket (25) swingably attached to the first pedal bracket (20) via the bracket support shaft (28) ;a pedal support shaft (27) that is provided at the second pedal bracket (25) the operating pedal (11) swingably attached to the second pedal bracket (25) via the pedal support shaft (27) ;and restricting means (32, 37, 38) that connects the first pedal bracket (20) with the second pedal bracket (25) to restrict the swinging of the second pedal bracket (25) , and that derestricts the swinging of the second pedal bracket (25) by abutting against a component (7) of an automobile body when the dashpanel (3) is deformed backward upon collision of the automobile ( 1 ), characterized in that : the pedal support shaft (27) is located below the bracket support shaft (28) and above a steering shaft (8) in side view to extend parallel to the bracket support shaft (28) .
37 paragraphs in 4 sections, as filed
BACKGROUND OF THE INVENTION
(1) Field of the Invention
The present invention relates to pedal support structures for supporting operating pedals (typically, brake pedals) disposed in foot spaces of driver's seats.
(2) Background Art
Various techniques for safety measures are now being adopted in automobiles in order to protect drivers from collision. As an example of those techniques, there is a technique for avoiding application of an excessive collision load on a knee of a driver who is stepping on an operating pedal. According to this technique, as disclosed in Patent Document 1 (Japanese Unexamined Patent Publication No. 9-216528) and Patent Document 2 (Japanese Unexamined Patent Publication No. 2001-219828), a pedal support structure is designed such that when a dashpanel is deformed backward upon collision, a pivot of an operating pedal, i.e., a pedal support shaft, is forced to be displaced relatively backward
In the pedal support structure proposed in Patent Document 1, a pedal bracket is provided with a rotation link that can put the pedal support structure into: an initial state in which the rotation shaft of the operating pedal is located at a forward position; and a second state in which the rotation shaft is located at a backward position. When the dashpanei is deformed backward, the rotation link is rotated due to its interference with an instrument member, thereby putting the pedal support structure, which has been in the initial state, into the second state.
In the pedal support structure proposed in Patent Document 2, in addition to a first pedal bracket fastened to the dashpanel, a second pedal bracket for rotatably supporting the operating pedal is prepared. This second pedal bracket is connected to the first pedal bracket, and is pivotably supported to the first pedal bracket at a position below the rotation shaft of the operating pedal. When the dashpanel is deformed backward, the second pedal bracket is detached from the first pedal bracket. Thus, the second pedal bracket is swung on the pivotal point to the first pedal bracket, and the pivot of the operating pedal, i.e., the pedal support shaft, is forced to be displaced relatively backward.
SUMMARY OF THE INVENTION
The aforementioned pedal support structures relate to the techniques for safety measures as described above, and therefore, it is important to ensure operational reliability.
In view of the above, an object of the present invention is to provide an automotive pedal support structure that can ensure operational reliability.
Specifically, the present invention provides an automotive pedal support structure in which an operating pedal is attached via brackets to a dashpanel serving as a partition between an engine room and a cabin, characterized by including: <ul id="ul0001" list-style="none" compact="compact"><li>a first pedal bracket fixed to the dashpanel;</li><li>a bracket support shaft provided at an upper part of the first pedal bracket to extend in a widthwise direction of an automobile;</li><li>a second pedal bracket swingably attached to the first pedal bracket via the bracket support shaft;</li><li>a pedal support shaft that is provided at the second pedal bracket and located below the bracket support shaft and above a portion of a steering shaft intersecting the operating pedal, in particular, in side view to extend parallel to the bracket support shaft;</li><li>the operating pedal swingably attached to the second pedal bracket via the pedal support shaft; and</li><li>a locking device (restricting means) that connects the first pedal bracket with the second pedal bracket to restrict the swinging of the second pedal bracket, and that derestricts the swinging of the second pedal bracket by abutting against a component of the automobile body when the dashpanel is deformed backward upon collision of the automobile.</li></ul>
Therefore, the present invention releases the second pedal bracket from the first pedal bracket when the dashpanel is deformed backward due to collision, and thus the second pedal bracket is allowed to freely rotate about the bracket support shaft, enabling the operating pedal to be displaced. As a result, it becomes possible to protect a knee of a driver from a collision load.
Besides, according to the present invention, the bracket support shaft is located above the pedal support shaft. Therefore, even if the steering shaft of the steering wheel which extends through a comparatively low position in the vicinity of the dashpanel is somewhat deformed upon collision, there is no possibility that the steering shaft and the bracket support shaft might interfere with each other, and thus it is possible to avoid the situation where this interference prevents the swinging of the second pedal bracket. Consequently, it is possible to ensure the operational reliability of the inventive pedal support structure.
It is preferable that the second pedal bracket has an arm for allowing the swinging of the second pedal bracket by abutting against the automobile body component when the dashpanel is deformed backward.
Furthermore, it is preferable that the arm is located toward the front of the automobile body away from an abutment part of the restricting means which abuts against the automobile body component, and after the restricting means has derestricted the second pedal bracket, the arm allows the swinging of the second pedal bracket by abutting against the automobile body component.
Other features, aspects, and advantages of the present invention will become apparent from the following description of the invention which refers to the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
<ul id="ul0002" list-style="none" compact="compact"><li>FIG. <b>1</b> is a schematic view illustrating the structure of a front section of an automobile provided with a pedal support structure according to an embodiment of the present invention.</li><li>FIG. <b>2</b> is a side view of the pedal support structure.</li><li>FIG. <b>3</b> is a front view of the pedal support structure as viewed in the direction of the arrow <b>III</b> in FIG. <b>2.</b></li><li>FIG. <b>4</b> is an exploded side view of the pedal support structure.</li><li>FIG. <b>5</b> is a diagram for illustrating an elongated hole formed in a first pedal bracket.</li><li>FIG. <b>6</b> shows diagrams for illustrating how the pedal support structure operates upon collision.</li><li>FIG. <b>7</b> shows diagrams for illustrating how the pedal support structure operates upon collision.</li></ul>
DESCRIPTION OF THE PREFERRED EMBODIMENTS
FIG. <b>1</b> is a diagram for illustrating a driver's seat of an automobile and the structure of the associated section of the automobile in which a pedal support structure according to an embodiment of the present invention is applied.
As shown in FIG. <b>1</b>, an automobile <b>1</b> includes a cabin <b>2</b> and an engine room <b>4</b>. The engine room <b>4</b> is disposed in front of the cabin <b>2</b> and partitioned by a dashpanel <b>3</b>, and an engine <b>5</b> is installed in the engine room <b>4</b>. In the driver's seat of the cabin <b>2</b>, a steering wheel <b>6</b> is disposed and is supported to an instrument member <b>7</b>. The automobile <b>1</b> further includes a steering wheel shaft <b>8</b> (steering shaft) through which an operating force applied to the steering wheel <b>6</b> is transmitted to front wheels (not shown) of the automobile <b>1</b>. The steering wheel shaft <b>8</b> passes through the dashpanel <b>3</b> to extend to the engine room <b>4</b>, and is linked to a gearbox (not shown) fixed to the dashpanel <b>3</b>.
A brake pedal <b>11</b> has an end portion <b>11a</b> and the other end portion <b>11b</b>. The brake pedal <b>11</b> is rotatably supported to a pedal support shaft <b>27</b> (as described later) at the end portion <b>11a</b>. The end portion <b>11b</b> is operated by a driver of the automobile <b>1</b>.
Furthermore, a master vac <b>9</b> that is disposed in the engine room <b>4</b> is fixed to the dashpanel <b>3</b>. An input shaft (operating rod) <b>10</b> of the master vac <b>9</b> passes through the dashpanel <b>3</b> to penetrate into the cabin <b>2</b>, and a front end of the input shaft <b>10</b> is connected to a connecting portion <b>11c</b> of the brake pedal <b>11.</b> As shown, the connecting portion <b>11c</b> is located between the end portions <b>11a</b> and <b>11b</b>.
Hereinafter, the structure for supporting the brake pedal <b>11</b> (i.e., the pedal support structure according to the embodiment of the present invention) will be described with reference to FIGS. <b>2</b> through <b>5</b>. The pedal support structure includes a first pedal bracket <b>20</b> fixed to the dashpanel <b>3</b> (see FIG. <b>2</b>). As can be seen from FIG. <b>3</b>, the first pedal bracket <b>20</b> is formed into a U-shape that is opened downward and toward a rear section of an automobile body. The first pedal bracket <b>20</b> includes side walls <b>21, 21</b>, and a connecting plate <b>22</b> extending between both the side walls <b>21, 21</b> is welded to rear ends thereof (i.e., ends thereof located closer to the rear section of the automobile body). The first pedal bracket <b>20</b> is provided, at upper ends of both the side walls <b>21, 21</b> thereof, with a ceiling wall <b>23</b> that extends between both the side walls <b>21, 21</b> (see FIGS. <b>3</b> and <b>4</b>).
Referring to FIG. <b>3</b> in particular, the first pedal bracket <b>20</b> contains, at its upper end part, a second pedal bracket <b>25</b>, and the second pedal bracket <b>25</b> includes, at its lower end part, a slit <b>26.</b> As shown in FIG. <b>3</b>, the pedal support shaft <b>27</b> extending in a widthwise direction of the automobile is fixed to the second pedal bracket <b>25,</b> and the brake pedal <b>11</b> is rotatably supported to the pedal support shaft <b>27</b>, with an upper end of the brake pedal <b>11</b> contained in the slit <b>26</b>. The pedal support shaft <b>27</b> is located above the steering wheel shaft 8 at a great distance therefrom.
Next, referring to FIG. <b>2</b> in particular, the second pedal bracket <b>25</b> is rotatably supported to a bracket support shaft <b>28</b> that is located at an upper rear corner of the first pedal bracket <b>20</b> and extends in the widthwise direction of the automobile. The bracket support shaft <b>28</b> for supporting the second pedal bracket <b>25</b> so that the second pedal bracket <b>25</b> can swing upward and downward is provided at a position located upwardly and backwardly of the pedal support shaft <b>27</b> that is the center of rotation of the brake pedal <b>11</b>.
The second pedal bracket <b>25</b> includes a ceiling wall <b>29</b>. When the second pedal bracket <b>25</b> is positioned within the first pedal bracket <b>20</b>, the ceiling wall <b>29</b> of the second pedal bracket <b>25</b> is positioned below the ceiling wall <b>23</b> of the first pedal bracket <b>20</b>, with the ceiling wall <b>29</b> overlapped with the ceiling wall <b>23</b> of the first pedal bracket <b>20</b>.
Although FIG. <b>5</b> shows only the ceiling wall <b>23</b> of the first pedal bracket <b>20</b> for reasons of drawing simplicity and clarity, an elongated hole <b>30</b> opened toward the front of the automobile is formed in each of the ceiling walls <b>23</b> and <b>29</b> of the first and second pedal brackets <b>20</b> and <b>25</b>.
Located on the ceiling wall <b>23</b> of the first pedal bracket <b>20</b> is a restricting and derestricting member <b>32</b> that extends horizontally backward to be in the vicinity of the instrument member <b>7</b>. A front-end portion of the restricting and derestricting member <b>32</b> is formed into a U-shape in cross section which includes both side walls <b>35</b>, and is fixed to the ceiling walls <b>23</b> and <b>29</b> of the first and second pedal brackets <b>20</b> and <b>25</b> by using a bolt <b>37</b> passing through a bolt-insertion hole (not shown) formed in a bottom wall <b>36</b> of the front-end portion of the restricting and derestricting member <b>32</b>. To be more specific, the bolt <b>37</b> passes through the bolt-insertion hole of the bottom wall <b>36</b> of the front-end portion of the restricting and derestricting member <b>32</b>, the elongated hole <b>30</b> of the ceiling wall <b>23</b> of the first pedal bracket <b>20</b>, and the elongate hole (not shown) of the ceiling wall <b>29</b> of the second pedal bracket <b>25</b>. And a nut <b>38</b> located at the lower face of the ceiling wall <b>29</b> of the second pedal bracket <b>25</b> is tightened, and thus the restricting and derestricting member <b>32</b> and the first and second pedal brackets <b>20</b> and <b>25</b> are fixed to each other while they are fastened together. As a result, the second pedal bracket <b>25</b> is fixed to the first pedal bracket <b>20</b>, and swinging of the second pedal bracket <b>25</b> is restricted.
Both the side walls <b>35</b> of the restricting and derestricting member <b>32</b> extend backward, and rear ends of both the side walls <b>35</b> are provided with a rear end wall <b>39</b> extending between both the side walls <b>35</b>, <b>35</b>. In a space defined by both the side walls <b>35</b>, <b>35</b> and the rear end wall <b>39</b>, an arm <b>40</b> extending upward from a rear end of the second pedal bracket <b>25</b> is contained. The top of the arm <b>40</b> is located above the restricting and derestricting member <b>32</b>, and the arm <b>40</b> and a rear end face of the second pedal bracket <b>25</b> are located face-to-face with the instrument member <b>7</b>.
The reference characters <b>(I)</b> through <b>(V)</b> added to FIGS. <b>6</b> and <b>7</b> show time-series operations upon collision. First, the above-described pedal support structure is usually subjected to a brake operation performed by a driver in a normal state shown in FIGS. <b>2</b> and <b>6</b>(<b>I</b>). FIG. <b>6</b>(<b>II</b>) shows the state in which the dashpanel <b>3</b> is deformed backward upon collision, the first pedal bracket <b>20</b> is moved relatively backward, and the rear end wall <b>39</b> of the restricting and derestricting member <b>32</b> is accordingly hit against the instrument member <b>7</b> that is a component of the automobile body.
As can be understood from FIG. <b>6(II),</b> since the rear end wall <b>39</b> of the restricting and derestricting member <b>32</b> is located face-to-face with the instrument member <b>7</b> that is a component of the automobile body, the rear end wall <b>39</b> constitutes an abutment part that hits against the instrument member <b>7</b> first upon collision. The further backward movement of the restricting and derestricting member <b>32</b>, which results from the displacement of the first pedal bracket <b>20</b> due to the deformation of the dashpanel <b>3</b> upon collision, is prevented because the rear end wall <b>39</b> of the restricting and derestricting member <b>32</b> is received by the instrument member <b>7</b>. Furthermore, as a result of the prevention of the further backward movement of the restricting and derestricting member <b>32</b>, the restricting and derestricting member <b>32</b> is forced to move relatively forward with the bolt <b>37</b> (see <b>FIG. 7(III)).</b>
FIG. <b>7</b> (<b>IV</b>) shows the state in which the dashpanel <b>3</b> is deformed further backward. As shown in FIG. <b>7</b>(<b>IV</b>), the bolt <b>37</b> is escaped from the elongated holes <b>30</b> (shown in FIG. <b>5</b>) of the first and second pedal brackets <b>20</b> and <b>25</b> by the relative forward movement of the restricting and derestricting member <b>32</b>, and thus a restraint imposed by the restricting and derestricting member <b>32</b> is released. That is, the second pedal bracket <b>25</b> is not fixed to the first pedal bracket <b>20</b> any more, and the second pedal bracket <b>25</b> is released from the first pedal bracket <b>20</b>. As a result, the second pedal bracket <b>25</b> can be swung on the bracket support shaft <b>28</b>. Furthermore, with the escape of the bolt <b>37</b> from the elongated holes <b>30</b>, a rear end of the restricting and derestricting member <b>32</b> springs up, thus exposing the arm <b>40</b> of the second pedal bracket <b>25.</b> FIG. <b>7(V)</b> shows this state.
Therefore, the restricting and derestricting member <b>32</b>, the bolt <b>37</b> and the nut <b>38</b> constitute a locking device (restricting means) that restricts the swinging of the second pedal bracket <b>25</b> with respect to the first pedal bracket <b>20</b> at normal times, and that derestricts the swinging of the second pedal bracket <b>25</b> by abutting against the instrument member <b>7</b> when the dashpanel <b>3</b> is deformed backward upon collision of the automobile.
Referring to FIG. <b>7(V)</b>, after the completion of derestricting operation of the restricting and derestricting member <b>32</b>, the instrument member <b>7</b> directly acts upon the arm <b>40</b> of the second pedal bracket <b>25</b>, and thus a force is further applied to the second pedal bracket <b>25</b> such that the second pedal bracket <b>25</b> is rotated about the bracket support shaft <b>28</b> in the direction in which the pedal support shaft <b>27</b> is displaced relatively backward.
Accordingly, a series of operations upon collision is as follows. First, the rear end wall <b>39</b> of the restricting and derestricting member <b>32</b> is hit against the instrument member <b>7</b> (see FIG. <b>6(II)</b>), the derestricting operation of the restricting and derestricting member <b>32</b> is started (see FIGS. <b>6(II)</b> through <b>7(III)</b>), the derestricting operation of the restricting and derestricting member <b>32</b> is completed (see FIG. <b>7(IV)),</b> and then the instrument member <b>7</b> directly acts upon the arm <b>40</b> of the second pedal bracket <b>25</b> to start the swinging operation of the second pedal bracket <b>25</b>. Thus, the pedal support shaft <b>27</b> is displaced relatively backward, thereby making it possible to protect a knee of the driver from a collision load.
In particular, the end portion <b>11a</b> of the brake pedal <b>11</b> is displaced relatively backward. Then, the brake pedal <b>11</b> is connected to the master vac <b>9</b> via the shaft <b>10</b> at the connecting portion <b>11c</b>. Accordingly, the brake pedal <b>11</b> rotates clockwise as indicated by the arrow <b>A</b> in FIG. <b>7</b>(<b>V</b>) about the connecting portion <b>11c</b>, thereby protecting the knee of the driver from the collision load.
As a result of the above-described operations, the knee of the driver who is performing a brake operation at the time of collision can be protected from the collision load because the pedal support shaft <b>27</b> is displaced relatively backward upon collision to rotate the brake pedal <b>11</b> clockwise as shown in FIG. <b>7(V)</b>.
Besides, in the pedal support structure of the present embodiment, the bracket support shaft <b>28</b> is located above the pedal support shaft <b>27</b>. Therefore, it is possible to avoid the situation where the bracket support shaft <b>28</b> interferes with the steering wheel shaft <b>8</b> that is easily displaced upon collision, which prevents the swinging of the second pedal bracket <b>25</b>. Consequently, it is possible to ensure the operational reliability of the pedal support structure.
Moreover, the arm <b>40</b> of the second pedal bracket <b>25</b> is located toward the front of the automobile body away from the rear end wall <b>39</b> (abutment part) of the restricting and derestricting member <b>32</b>. Thus, after the restricting and derestricting member <b>32</b> has derestricted the second pedal bracket <b>25</b>, the instrument member <b>7</b>, which is a component of the automobile body, acts upon the second pedal bracket <b>25</b>. As a result, the swinging operation of the second pedal bracket <b>25</b>, i.e., the relative backward displacement of the pedal support shaft <b>27</b>, can be ensured. In other words, if the pedal support structure is designed such that the derestricting operation of the restricting and derestricting member <b>32</b> and the swinging operation of the second pedal bracket <b>25</b> are carried out together, these two operations might interfere with each other, and thus the swinging operation of the second pedal bracket <b>25</b> might not be carried out well.
Although the preferred embodiment of the present invention has been described thus far by taking the brake pedal <b>11</b> as an example, the pedal support structure may similarly be applied to a clutch pedal or a foot-operated parking brake pedal.
Contents4
6 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6
Every citation, both waysCites: the store holds 1 of 2
| Document | Relation | Office |
|---|---|---|
| US2004020324A1 | Cites | United States of America |
| PATENT ABSTRACTS OF JAPAN vol. 1997, no. 12, 25 December 1997 (1997-12-25) & JP 09 216528 A (TOYOTA MOTOR CORP), 19 August 1997 (1997-08-19) | Non-patent | – |
| PATENT ABSTRACTS OF JAPAN vol. 2000, no. 25, 12 April 2001 (2001-04-12) & JP 2001 219828 A (MAZDA MOTOR CORP), 14 August 2001 (2001-08-14) | Non-patent | – |
11 members in 5 offices
Priority claims5
| Document | Office | Kind | Date |
|---|---|---|---|
| 2003301791 | Japan | A | |
| 2003301791 | Japan | A | |
| 2003301791 | Japan | – | |
| 2003301791 | – | – | – |
| JP20030301791 | – | – | – |
Members11
| Document | Office | Kind | |
|---|---|---|---|
| EP1510426A2 | European Patent Office (EPO) | A2 | |
| US2005045406A1 | United States of America | A1 | |
| CN1590164A | China | A | |
| JP2005067474A | Japan | A | |
| EP1510426A3 | European Patent Office (EPO) | A3 | |
| EP1510426B1This record | European Patent Office (EPO) | B1 | |
| DE602004001106D1 | Germany | D1 | |
| DE602004001106T2 | Germany | T2 | |
| US7267194B2 | United States of America | B2 | |
| CN100348440C | China | C | |
| JP4029800B2 | Japan | B2 |
21 legal events, as 2 offices reported them to INPADOC
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Numbers
- Publication
- 1510426
- Publication, DOCDB
- 1510426
- Publication, EPODOC
- EP1510426
- Application
- 4016729
- Application, DOCDB
- 04016729
- Application, EPODOC
- EP20040016729
Titles3
- German
- Fahrzeugpedaltragwerk
- English
- Automotive pedal support structure
- French
- Structure de support pour pédale de véhicule
Classification
- CPC, 3
- B60T7/065
- B60R21/09
- Y10T74/20528
- IPC, 5
- B60T7 06
- B60R21 09
- B62D25 08
- G05G1 30
- G05G1 327
Designated states1
- Contracting states, 1
- Germany
