The present invention relates to a window regulator which moves a window pane of a vehicle up and down, and in particular relates to a guide pulley support structure thereof.
Window regulators are generally provided with a slider base which is fixed to a window pane, a wire (drive wire) which is fixed to the slider base and extends upward and downward, wire guide members (guide pulleys) which are positioned in upper and lower areas in a door panel to guide the wire that extends upward and downward, and a driver which includes a drive mechanism for reeling out the wire, the direction of which is changed by the guide members, on one end thereof and reeling in the wire on the other end thereof. Slider bases are broadly classified into two types: a slider-guide type which is provided with a slider guide (panel member/guide rail) disposed in the door panel, and a guideless type which is not provided with such a slider guide. Slider-guide types are also classified into two types: a double guide type provided with a pair of slider guides, and a single guide type provided with only one slider guide. Additionally, although a rotatable guide pulley is usually used as each of the upper and lower wire guide members, sometimes one of the upper and lower wire guide members is made as a wire drum or a non-rotatable slider. The drive mechanism of the driver can either be electrically driven or manually driven.
In each of these types of window regulators, at least one rotatable guide pulley is an indispensable member and conventionally supported by fixing a holed shaft member, which is inserted into a rotational central hole of the guide pulley, to a metal pulley supporting member. The holed shaft member has a shaft hole in the shaft portion thereof, and a center shaft member which is inserted into this shaft hole and is lastly fixed to a door panel (a strengthening member therein) whereby the guide pulley is rotatably supported. A pulley bracket made as a separate member from the guide member of the slider base and is fixed to the inside of the door panel afterward, and a metal guide rail which guides the slider base are known in the art as pulley support members. The pulley bracket (guide pulley/shaft member), in one mode thereof, is fixed to a plastic panel member together with the driver to form a subassembly, and after this subassembly is inserted in the door panel, the subassembly is installed inside the door by making the central shaft member, which is inserted into the shaft hole of the holed shaft member, supported by the door panel.
Patent Literature 1: WIPO Published Patent Application No. WO 2011/095414
Patent Literature 2: Japanese Unexamined Patent Publication H07-238915
In the guide pulley support structure of this conventional window regulator, the guide pulley supporting member is ultimately fixed to (supported by) the window panel via the center shaft member which is inserted into the holed shaft member. Accordingly, before the guide pulley supporting member is fixed to the door panel, it is sufficient for the guide pulley supporting member and the holed shaft member to be temporarily fixed to each other, and hence, they were conventionally coupled with, e.g., serrations. However, a serration coupling has insufficient strength (weak against pulling-out forces, especially in the axial direction), so that there was a concern that the holed shaft member would come off the guide pulley supporting member before the guide pulley supporting member is installed in the door panel.
Additionally, in the guide pulley support structure of a conventional window regulator, in an assembling process thereof, there exists a former stage in which the guide pulley is made to be supported by the holed shaft member and the guide pulley supporting member to form a pulley unit, and a latter stage in which, after this pulley unit is mounted inside the door panel, the center shaft member is inserted into the shaft hole of the holed shaft member while the center shaft member is made to be supported by (fixed to) the door panel. However, such a conventional guide pulley supporting member plays no special role in either the former stage or the latter stage of the assembling process.
The present invention has been devised with awareness of the above described problems of the guide pulley support structure of the conventional window regulator, and an object of the present invention is to obtain a guide pulley support structure which can firmly couple the guide pulley supporting member and the holed shaft member in a state where a guide pulley is rotatably supported.
In addition, an object of the present invention is to obtain a support structure in which the guide pulley supporting member is useful in positioning itself in the former stage, in which the guide pulley is made to be supported by the holed shaft member and the guide pulley supporting member to form a pulley unit, and in the latter stage, in which the center shaft member is made to be supported by (fixed to) the door panel after the center shaft member is inserted into the holed shaft member of the pulley unit.
The present invention has been devised based on the findings that, in order to fix the guide pulley supporting member and the holed shaft member to each other with high strength, a groove (s) is formed in an end surface of the holed shaft member to couple the holed shaft member and the guide pulley supporting member by inserting a connecting edge, which is formed by plastically deforming the inner peripheral edge of a bored hole made in the guide pulley supporting member, into the groove.
Accordingly, a guide pulley support structure of a window regulator according to the present invention includes a slider base which is fixed to a window pane; a drive wire which is fixed to the slider base; a guide pulley which guides the drive wire; and a driver which drives the drive wire, wherein the guide pulley is supported by fixing a holed shaft member, which is inserted into a shaft hole of the guide pulley, to a guide pulley supporting member. A groove is formed on an end surface of the holed shaft member. The holed shaft member and the guide pulley supporting member are coupled together by inserting a connecting edge, which is formed by plastically deforming an inner peripheral edge of a hole formed in the guide pulley supporting member, into the groove.
A piercing and swaging process can be used to couple together the holed shaft member and the guide pulley supporting member. The piercing and swaging process is commonly known as a pierce nut (self piercing and clinch nut) formation method. Although the holed shaft member is a nut having a female thread on the inner peripheral surface thereof in a desirable embodiment of the present invention, the holed shaft member does not necessarily have to be a nut in the present invention. Namely, the holed shaft member according to the present invention can be a holed shaft member, the shaft hole of which is a simple hole (loose hole/clearance hole) having no female thread therein. In the case of the holed shaft member being a nut, the center shaft member is a bolt which is screw-engaged with the female thread of the nut. The piercing and swaging process for the holed shaft member, which includes a nut, is a swaging method in which a groove(s) is formed on an end surface of the holed shaft member, and in which a hole which corresponds to the inner peripheral edge of this groove of the holed shaft member is bored in the guide pulley supporting member while the inner peripheral edge of the bored hole is plastically deformed into the groove.
The front shape of the groove of the holed shaft member has a degree of freedom; however, considering formability in the piercing and swaging process and coupling strength to the guide pulley supporting member, it is desirable that the groove be formed of an annular groove as viewed from front.
A through-hole, which is used for positioning the guide pulley supporting member during the piercing and swaging process, can be formed in the guide pulley supporting member. The through-hole of the guide pulley supporting member can also be used as a positioner when a pulley unit is fixed to a door panel or a subpanel that is fixed to the door panel.
According to an aspect of the present invention, the guide pulley supporting member can include a guide portion which guides the slider base, wherein the guide pulley supporting member is supported by a subpanel which simultaneously supports the driver, and the subpanel is fixed to a door panel via a center shaft member which is inserted into the shaft hole of the holed shaft member.
The holed shaft member includes a pierce nut including a female thread formed on an inner peripheral surface of the shaft hole of the pierce nut, and the center shaft member includes a bolt which is screw-engaged with the female thread of the pierce nut.
The subpanel can be a plastic panel.
In a method of supporting a guide pulley to a door panel according to an aspect of the present invention, in a window regulator assembling method which includes a former stage, in which a holed shaft member inserted into a shaft hole of a guide pulley to be rotatable relative to the shaft hole is fixed to the guide pulley supporting member to form a pulley unit, and a latter stage, in which this pulley unit is fixed to a door panel or a subpanel which is fixed to the door panel, the present invention is characterized by the guide pulley supporting member being provided with a positioner (positioning through-hole) which plays a role in positioning of the guide pulley supporting member in each of the former and latter stages.
According to the present invention, since a groove is formed on an end surface of the holed shaft member wherein the holed shaft member and the guide pulley supporting member are coupled together by inserting a connecting edge, which is formed by plastically deforming an inner peripheral edge of a hole formed in the guide pulley supporting member, into the groove, the coupling strength between the guide pulley supporting member and the holed shaft member can be drastically enhanced.
The detailed structure of each pulley unit 40 will be hereinafter discussed with reference to
The nut member 42 is a metal shaft member which is provided with a flange portion 42a on one end surface thereof and with a groove 42b on the other surface thereof, and is provided with a female thread portion 42c in the shaft hole.
The pulley bracket 43 is coupled and fixed to the groove 42b of the nut member 42 by a piercing and swaging process and is provided with a cylindrical portion 43a. The cylindrical portion 43a is provided with a base wall 43a′ (
The above-mentioned guide pulley 41, nut member 42 and pulley bracket 43 are coupled together by the piercing and swaging process shown in
Each pulley unit 40, which is unitized by performing the piercing and swaging process thereon as described above, is positioned relative to the subpanel 10 by fitting the cylindrical portion 43a of the pulley bracket 43 into a through-hole 13 which is formed in the subpanel 10 and fitting the through-hole 43d onto a positioning projection 14 which is formed on the subpanel 10 (
The subpanel assembly 100, in which the slider bases 21 and 22, the electrical drive unit 30 and the pulley units 40 are mounted, is fixed within a door panel of a vehicle.
Although the above describes an embodiment in which the guide pulleys 41 are rotatably supported by the metal pulley brackets 43, an embodiment in which the guide pulleys 41 are supported by metal guide rails (guide pulley supporting members) is also possible according to the present invention. In such an embodiment, positioning through-holes which are formed in the guide rails can be used for the positioning of the guide rails in the piercing and swaging process and the positioning of the guide rails relative to a door panel when the guide rails are fixed to the door panel.
The front shape of the groove 42b of the nut member 42 has a degree of freedom, as illustrated by example in
The present invention can be applied to a window regulator which moves a window pane of a vehicle up and down and can be used for vehicles in general which have such a window regulator.
Number | Date | Country | Kind |
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2012-156260 | Dec 2012 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2013/068616 | 7/8/2013 | WO | 00 |