1. Field of the Invention
The present invention relates to a resin molded lens, and more particularly, a resin molded lens which does not scratch a switch knob of a seesaw switch which is embedded in a lens of a vehicle interior illumination lamp.
2. Description of the Related Art
A lens of an interior illumination lamp which is installed on a ceiling of a vehicle is a resin molded product, and there is a problem in that a gate remainder occurs when the lens is molded. As a technology for solving the problem, the invention described in JP-A-2009-126041 is known.
The prior art described in JP-A-2009-126041 is to prevent occurrence of weld lines when a resin molded product is formed, in which a resin-made gear which has a center hole with both ends opened in the center portion thereof and a gate disposed in the hole of the center hole, and a shaft body which is pressed into the center hole are provided. In addition, a runner remainder is cut and removed at a portion of a gate remainder by inserting the shaft body into the center hole, and the position of the gate is provided at a place which is positioned at a predetermined height above a rear surface of a disc-shaped body in the center hole.
According to the seesaw switch described in JP-A-2009-126041, it is possible to prevent the gate remainder from being generated when the resin molded product is formed. However, it is difficult to completely prevent the gate remainder, and there is a problem in that scratches occur on the counterpart to be fitted.
The present invention has been made in view of these situations. It is an object of the present invention is to provide a switch knob which does not scratch a counterpart to be fitted even though a gate remainder occurs since it is difficult to completely prevent the gate remainder from being generated.
According to a first aspect of the present invention, there is provided a resin molded lens of an interior illumination lamp, the resin molded lens including an inserting opening inserting a seesaw type switch knob, wherein the resin molded lens is formed by installing a gate for resin molding at an inner side surface of the inserting opening when the resin molding is performed.
According to a second aspect of the present invention, in the first aspect of the present invention, a protrusion having a height higher than a height of a gate trace generated by the gate is formed in the vicinity of the gate trace.
As described above, according to the first aspect of the present invention, since it is difficult to see the gate trace from the surface of the lens, a lens having an improved appearance can be obtained.
According to the second aspect of the present invention, since the protrusion having bulk higher than the height of the gate trace is formed in the vicinity of the gate trace, scratches in the switch knob do not occur even though the gate trace is generated.
Hereinafter, a switch knob which does not scratch a counterpart to be fitted even though a gate remainder occurs will be described.
<Interior Illumination Lamp Assembly for Vehicle which is an Object of the Invention>
First, an interior illumination lamp assembly for a vehicle, in which a switch knob which is an object of the present invention is used, will be described.
The interior illumination lamp assembly 10 for a vehicle is constituted by engaging and integrating a lens 20 (
<Configuration of Interior Illumination Lamp for Vehicle>
In
Here, first, each component will be described below.
<Lens 20>
In
<Housing 40>
In
<Switch Knob 30>
In
In
In this way, if the press fitting portion 60P of the contact 60 is pressed into the press fitting grooves 30P of the two columnar receiving portions 30S of the switch knob 30 from above in the drawing, as shown in
Therefore, if the switch knob 30 performs the seesaw movement about the shaft hole 30H of the switch knob 30, the two legs 60S protruding from the switch knob 30 rotate about the shaft hole 30H.
<Bus Bar 50>
In
<Contact 60>
In
<Metal Clip 70>
In
<Bulb 80>
In
<Preparation Procedure of Interior Illumination Lamp Assembly for Vehicle>
Next, preparation procedures of the interior illumination lamp assembly for a vehicle using the above-described parts will be described.
Procedure 1) Contacts 60 are pressed into switch knobs 30:
In
Procedure 2) Bus bar 50 and metal clips 70 are assembled into housing 40:
Next, the bus bar 50 of
In addition, the metal clips 70 are assembled to the housing 40 as shown in
Procedure 3) Switch knobs 30 are assembled to housing 40:
Next, the switch knobs 30 (
Procedure 4) Lens 20 is assembled to housing 40:
Finally, the lens 20 (
In order to assemble the lens 20 to the housing 40, the locking protrusions 40K of the housing 40 may be engaged to the locking holes 20K of the locking members 20L of the lens 20.
In this way, if all parts are mounted, the interior illumination lamp assembly 10 for a vehicle of
<Circuit Diagram of Interior Illumination Lamp Assembly 10 for Vehicle of FIG. 1>
In
1) Operation of Switch Knob 30L:
1-1) The switch knob 30M is a switch in which extinguishing is performed if the door is closed and lighting is performed if the door is opened when the contact point of the switch knob 30M is a DOOR side. However, in order to perform the lighting of the bulb B1 regardless of the opening and the closing of the door even if the switch knob 30M is on the DOOR side, the contact point of the switch knob 30L is set to the ON side.
Thereby, a circuit of the battery→the bulb B1→the ON side→an earth wire is closed and lighting is performed.
1-2) Moreover, in order to perform extinguishing of the lighted bulb B1, the contact point of the switch knob 30L becomes an OFF side. Thereby, a circuit which goes from the battery →the bulb B1→the OFF side to the earth wire is not formed, and the extinguishing is performed.
2) Operation of Switch Knob 30R
2-1) In order to perform the lighting of the bulbs B2 regardless of the opening and the closing of the door even if the switch knob 30M is on the DOOR side, the contact point of the switch knob 30R is set to the ON side.
Thereby, a circuit of the battery→the bulb B2→the ON side→the earth wire is closed and lighting is performed.
2-2) Moreover, in order to perform extinguishing of the lighted bulb B2, the contact point of the switch knob 30R becomes an OFF side. Thereby, a circuit which goes from the battery→the bulb B2→the OFF side to the earth wire is not formed, and the extinguishing is performed.
3) Operation of Switch Knob 30M
3-1) The DOOR side of the switch knob 30M is connected to a courtesy line C, the courtesy line C is connected to a door opening/closing switch which is installed on a portion of a body facing the door, and the opening/closing switch is turned off when the door is closed and is turned on when the door is opened.
Therefore, since the switch knob 30M is connected to the courtesy line C if the knob 30M is on the DOOR side even though the switch knob 30L of the bulb B1 is on the OFF side or the switch knob 30R of the bulb B2 is on the OFF side, the door opening/closing switch is turned off and the bulbs B1 and B2 are extinguished if the door is closed. However, the door opening/closing switch is turned on and the bulbs B1 and B2 are lighted if the door is opened.
3-2) If the switch knob 30M is on the ON side, the bulb in which the contact point is the OFF side and which is extinguished is lighted regardless of the opening and closing of the door.
3-3) If the switch knob 30M is the OFF side, the bulb in which the contact point is the OFF side is extinguished regardless of the opening and closing of the door.
<First Embodiment: Gate is Formed on Side Surface of Switch Knob Inserting Opening of Lens>
In
In this way, the gates G and G1 are formed at the side surfaces of the inserting openings 20N (
Thereafter, if the gate G1 of
<Advantage of First Embodiment>
In the lens 20 obtained in this way, a gate trace G2 (
<Second Embodiment: Protrusions Having Bulk Higher Than That of Gate>Trace are Formed at Side Surface of Switch Knob Inserting Opening
In this way, since occurrence of the gate trace G2 in the lens 20 is unavoidable, in a second embodiment, protrusions having bulk higher than the height of the gate trace G2 are formed in the vicinity of the gate trace G2, and the lens 20 having a protrusion 20T shown in
In addition, the gate trace G2 of
The lens 20 of the second embodiment in which the gates G1 of
<Pin Gate Molding>
In the present invention, the gates are provided at the switch knob inserting openings 20N. However, two places having a possibility in which the gates can be installed at a place other than the switch knob inserting openings 20N are considered. Here, the reason why the two places are not suitable will be described below.
As the installation of the gates in the other places which are considered, a rib 200L is formed at the rear surface of the lens 200 as shown in
<Disadvantage of Pin Gate Molding>
Since serrations 200S (
<Side Gate Molding>
A rib 201L is formed at the rear surface of the lens 201 as shown in
<Disadvantage of Side Gate Molding>
Since lens cuts 201C cannot be provided to the gate portion, there is a disadvantage in that appearance of the lens surface is not favorable, and the installation of the side gate is inferior compared to the installation of the gate of the present invention.
According to the present invention, since it is difficult to see the gate trace from the surface of the lens even though the gate trace is generated, a lens having an improved appearance can be obtained. In addition, since protrusions having a bulk higher than the height of the gate trace are formed in the vicinity of the gate trace, scratches on the switch knobs are not generated even though the gate trace is generated.
Number | Date | Country | Kind |
---|---|---|---|
2011-000693 | Jan 2011 | JP | national |
This application is a continuation of PCT application No. PCT/JP2011/080600, which was filed on Dec. 28, 2011 based on Japanese Patent Application (No. 2011-000693) filed on Jan. 5, 2011, the contents of which are incorporated herein by reference. Also, all the references cited herein are incorporated as a whole.
Number | Name | Date | Kind |
---|---|---|---|
20050258764 | Nagai et al. | Nov 2005 | A1 |
Number | Date | Country |
---|---|---|
19823500 | Dec 1998 | DE |
2009-126041 | Jun 2009 | JP |
03031144 | Apr 2003 | WO |
Entry |
---|
International Search Report and Written Opinion of the International Search Report for PCT/JP2011/080600 dated May 7, 2012. |
Christoffers K-E: “Praezisionskunststoffteile Gestaltung, Werkzeugauslegung Und Verarbeitungsbedingungen”, Feinwerktechnik + Messtechnik, Hanser, Munchen, DE, vol. 87, No. 6, Sep. 1, 1979, pp. 259-270, XP001173854, ISSN: 0340-1952 figure 8. |
Number | Date | Country | |
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20130250433 A1 | Sep 2013 | US |
Number | Date | Country | |
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Parent | PCT/JP2011/080600 | Dec 2011 | US |
Child | 13892056 | US |