Linear motion guide unit with inside seal
US-9222510-B2 · Dec 29, 2015 · US
US9939013B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9939013-B2 |
| Application number | US-201515128255-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 26, 2015 |
| Priority date | Apr 1, 2014 |
| Publication date | Apr 10, 2018 |
| Grant date | Apr 10, 2018 |
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Provided is a linear motion guide device that is less noisy and excellent in operability. A concave groove of a return guide and a raceway groove of a slider are not smoothly continued at a connection portion therebetween, where a stepped portion is formed. At a groove bottom portion of the raceway groove of the slider and the neighboring portion thereof, the surface of the raceway groove of the slider is located to be closer to a curvature center of the raceway groove of the slider than the surface of the concave groove of the return guide is. At a groove shoulder portion of the raceway groove of the slider and the neighboring portion thereof, the surface of the concave groove of the return guide is located to be closer to the curvature center of the raceway groove of the slider than the surface of the raceway groove of the slider is.
Opening claim text (preview).
The invention claimed is: 1. A linear motion guide device comprising: a guide rail; a slider; and a plurality of balls that are rolling members; wherein each of the guide rail and the slider includes a raceway groove having an arc-shaped section at a position facing each other, between the raceway groove of the guide rail and the raceway groove of the slider is formed a rolling passage in which the balls roll, both of the raceway grooves extend in a longitudinal direction of the guide rail, the balls are disposed in the rolling passage; the slider is guided by the guide rail to be movable in the longitudinal direction via rolling of the balls in the rolling passage, the slider comprises: a slider main body in which the raceway groove of the slider and a return passage for the balls are provided, the return passage being formed by a through hole substantially parallel to the raceway groove, an end cap in which a direction changing passage communicating the rolling passage with the return passage is formed and which is detachably fixed to both ends in the longitudinal direction of the slider main body, and a return guide made of resin fitted into a direction changing passage concave portion formed on a surface of the end cap abutting the slider main body to form the direction changing passage by a guide face for the balls formed on an outer surface thereof and an inner surface of the direction changing passage concave portion, so as to convey and circulate the balls on the return passage and the direction changing passage from an end point to a start point of the rolling passage, and the guide face of the return guide and the raceway groove of the slider are not smoothly continued at a connection portion, and a stepped portion is formed, at a groove bottom portion of the raceway groove of the slider and a neighboring portion, a surface of the raceway groove of the slider is located to be closer to a curvature center of the raceway groove of the slider than the guide face of the return guide is, and at a groove shoulder portion of the raceway groove of the slider and a neighboring portion, the guide face of the return guide is located to be closer to the curvature center of the raceway groove of the slider than the surface of the raceway groove of the slider is. 2. The linear motion guide device according to claim 1 , wherein a chamfer is formed at a corner portion continuing in an arc shape formed at a longitudinal end of the raceway groove of the slider. 3. The linear motion guide device according to claim 2 , wherein a curvature center of the arc-shaped chamfer is located at a position farther from the groove bottom portion of the raceway groove of the slider than from the curvature center of the raceway groove of the slider. 4. The linear motion guide device according to claim 2 , wherein the chamfer is formed by a cutting process using a conical cutting tool, and is formed by contacting a cutter part formed at a side face portion of the cutting tool with the corner portion.
Acetals, e.g. polyoxymethylene [POM] · CPC title
by milling · CPC title
Angles, e.g. inclinations · CPC title
with load directions in X-arrangement · CPC title
by injection-moulding · CPC title
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