Present invention relates to an affixing structure for fixing a window glass to a carrier plate. Specifically, this invention relates to the affixing structure which can easily fix the window glass to the carrier plate and a window regulator using this structure.
One example of the affixing structure for fixing the window glass to the carrier plate is shown in
Another example of the affixing structure for fixing the window glass to the carrier plate is shown in
According to this affixing structure 110, the front and back direction of the leg part 111a are guided by the front surface 113e and both back guide 113c formed left and right, and the left and right direction of the leg part are guided by the side surface 113d, when the glass holder 111 is brought down or lowered for fixing the glass holder 111 to the holder fixing part 113. Further, the leg part 111a may be temporary laid on the stepped part 113b, 113b before glass holder 111 is completely fixed to the holder fixing part 113. Therefore, it is one of this characteristic features that the worker can adjust the position of the window glass during this temporary position before the final fixing.
However, the affixing structure 100 of
[Prior Art]
Therefore, this invention is directed to provide the affixing structure and the window regulator using the affixing structure, that has simple structure and that can smoothly fix the window glass to the carrier plate.
The affixing structure of this invention is used for a window regulator which is fixed to a carbody and which reciprocate the window glass by an inner cable. The affixing structure comprises a glass holder to be fixed to a bottom end of the window glass and the carrier plate supporting the glass holder. The carrier plate includes a base portion having a placement face for placing the glass holder, a guide portion which protrudes from one side edge of the placement face and which has a inclined surface formed on a top of the guide portion slanted downwardly heading the placement face, and a fixing portion which projects downwardly from other side edge of the placement face. The glass holder includes a bottom part to be placed on the placement face, a fixing part which projects downwardly from the bottom part and which contacts with a periphery of the fixing portion for fixing. When glass holder is lowered or brought down for placing the glass holder on the carrier plate, the bottom part of the glass holder meets the inclined surface of the guide portion of the carrier plate, and then the bottom part of the glass holder is guided toward the placement face, before a front edge of the fixing part meets the placement face.
The window regulator of this invention includes a cable guide each set on a top and a bottom, an inner cable stretched or installed between the cable guides, a driving unit to drive the inner cable, and the above affixing structure for fixing the window glass to the carrier plate.
According to the affixing structure of this invention, the bottom part and the fixing part of the glass holder are guided by the inclined surface of the guide portion during the lowering of the glass holder for placing the glass holder on the carrier plate. Therefore, the bottom part can be directly set on the placement face without the fixing part to meet the placement face, and the placement procedure can be executed smoothly.
The affixing structure may have the height of the guide portion same with or larger than the height of the fixing part, may have the width of the bottom part same with or lager than the width of the base portion, and may have the horizontal distance which the glass holder is guided by the inclined surface of the guide portion same with or larger than the width of the bottom part, to execute the placement procedure more smoothly.
The guide portion and the fixing portion may be formed on both left and right side of a cable latching portion of the carrier plate, and the fixing part may be formed on the glass holder corresponding to the guide portion and the fixing portion. Therefore, the carrier plate will not circle around the meeting point, when or after the fixing portion meets the fixing part in result to the natural descendent of the guide portion by weight of window glass. Resultantly, the temporary position is stable and the whole assembling procedure can be efficiently executed.
According to the window regulator of this invention, since it includes the affixing structure of window glass and the carrier plate, the assured support of the window glass can be obtained.
a is a front view of the affixing structure of this invention,
a, 2b is a front view and side view showing the embodiment of the window regulator of this invention.
a is I-I line sectional view of
a is partially enlarged view of the installation part of the carrier plate,
a is schematic view of window glass being fixed to the carrier plate by the affixing structure of this invention,
a, 2b shows the window regulator which includes the affixing structure of the present invention. The window regulator of
In the embodiment of
The inner cable 13 is made by twisting plural of metal wires. On one end of the inner cable where the carrier plate is fixed, the cable end 20 (see
The glass holder 16 has the channel having shape of U in cross section for nipping the bottom end of the window glass 15. The bottom part 16a which is a part of the U-shaped channel bottom is a portion which will be placed on the carrier plate 18. The fixing part 16b for fixing the glass holder 16 to the carrier plate 18 is protruding downwardly from the bottom end of the glass holder 16. The fixing hole 16c is formed on the fixing part 16b to be fixed to the carrier plate 18 by screw and bolt.
The carrier plate 18 includes main body 18a having plate shape, and the cable latching portion 21 having block shape protruding from the center and back of the main body 18a. The end rock part 21a for fixing the cable end of ascending inner cable and the end rock part 21a for fixing the cable end of the descending inner cable are formed in the cable latching portion 21 (see
The adopting part 22 is formed on the both end of the main body 18a to guide the glass holder 16 which is brought down from upper side and to eventually fix the glass holder 16 (see
The placement face 22i is formed horizontally for loading the glass holder 16 and supporting the weight of the window glass 15. The guide portion 22b is extended upward in a vertical direction from side edge of car interior side of the base portion, where the inner surface guide the fixing part 16a of the glass holder 16 (which will be mentioned later) and lead the glass holder 16 to the predetermined fixing position. The guide portion 22b is formed in the adopting part 22 formed on the left and right of the carrier plate 18. However, the guide portion 22b may be formed only in either side of the adopting part 22.
As shown in
On the bottom end of the fixing part 16b of the glass holder 16, slope 16d is formed in the angle corresponding to the inclined surface 22e of the carrier plate (see
As shown in
As shown in
The carrier plate 18 and the glass holder 16 are each made of synthetic resin. For example, PBT (polybutylene terephthalate) or PET (polyethelene terephthalate) is preferable. Especially, synthetic resin having slide behavior, such as POM (polyoxymethylene) is preferable. Further, both can be made by bending the metal plate.
Next, the mechanism to fix the window glass 15 to the carrier plate 18 is explained using
Even when the glass holder 16 is further shifted to the car interior side compared to
The explanation of the window regulator which uses the affixing structure of 17 shown in
The first carrier plate 18 and the second carrier plate 18′ are located between the first pulley 12a and the forth pulley 12d and between the second pulley 12b and the third pulley 12c respectively. Therefore, the first carrier plate 18 and the second carrier plate 18′ are guide by the guide rail 11, 11. The carrier plate 18, 18′ support the bottom of the window glass 15 in the affixing structure 17.
The inner cable 13 is constructed by the first inner cable 13a, the second inner cable 13b, and the third inner cable 13c.
The first inner cable 13a is stretched from the cable latching portion 21 of the first carrier plate 18 to the drive unit 19. The first inner cable 12a extends upwardly from the carrier plate 18 to the first pulley 12a, which turn the direction in obliquely downward, to the drive unit.
The second inner cable 13b is stretched from the cable latching portion 21 of the first carrier plate 18 to the second carrier plate 18. The second inner cable 13b extends downwardly from the carrier plate 18 to the forth pulley 12d, which turn the direction in obliquely upward, and to the second pulley 12b, which turn the direction downward, and to the second carrier plate 18′.
The third inner cable 13c is stretched from the cable latching portion 21 of the second carrier plate 18′ to the drive unit 19. The third inner cable 13c extends downwardly from the carrier plate 18′ to the third pulley 12c, which turn the direction in obliquely upward, to the drive unit 19.
The end of the first and third inner cable 13a, 13c which is not fixed to the carrier plate is fixed to the drum (not shown) of the drive unit 19. The drive unit 19 carries the carrier plate 18, 18′ upward and downward by pulling one of the inner cable 13a, 13b and sending the other.
The window regulator of
Number | Date | Country | Kind |
---|---|---|---|
2009-216833 | Sep 2009 | JP | national |
Number | Name | Date | Kind |
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20040154227 | Yoshimura | Aug 2004 | A1 |
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20090064590 | Sasaki et al. | Mar 2009 | A1 |
Number | Date | Country |
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2004-68506 | Mar 2004 | JP |
2007-278061 | Oct 2007 | JP |
Number | Date | Country | |
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20110068609 A1 | Mar 2011 | US |