The present invention relates to sliding track assembly for drawer or the like and more specifically, to am inner sliding rail mounting structure for sliding track assembly, which saves much manufacturing cost and much installation labor and time and, which is quickly detachable with either the left hand or the right hand.
FIGS. 1˜3 show a conventional sliding track assembly 7, which is comprised of an inner sliding rail 71, an intermediate sliding rail 72, and an outer sliding rail 73. The intermediate sliding rail 72 has a stop block721 for engagement with a retaining side notch 80 on a locking bar 8, which has one end pivoted to the inner sliding rail 71 and is supported on a torsional spring 82 inside the inner sliding rail 71. When wishing to disconnect the inner sliding rail 71 from the intermediate sliding rail 72, bias the free end 81 of the locking bar 8 against the torsional spring 82 to disengage the retaining side notch 80 from the stop block 721 of the intermediate sliding rail 72. This design of sliding track assembly has drawbacks as follows:
The present invention has been accomplished under the circumstances in view. It is therefore one object of the present invention to provide an inner sliding rail mounting structure for sliding track assembly, which has a simple structure and is easy to install. It is another object of the present invention to provide an inner sliding rail mounting structure for sliding track assembly, which is suitable for mass production, saving much the manufacturing cost. It is still another object of the present invention to provide an inner sliding rail mounting structure for sliding track assembly, which is easy to operate and fits the right hand as well as the left hand.
To achieve these and other objects of the present invention, the inner sliding rail mounting structure comprises a control plate pivoted with a front side thereof to an inner sliding rail of a sliding track assembly for engagement with a stop block of an intermediate sliding rail of the sliding track assembly to secure the inner sliding rail to the intermediate sliding rail, a slide pivoted to the rear side of the control plate and coupled to the inner sliding rail by a slip joint for biasing the control plate to disengage the control plate from the stop block of the intermediate sliding rail for allowing removal of the inner sliding rail from the intermediately sliding rail, and a carriage affixed to the rear side of the slide and holding a spring member against a locating block at the inner sliding rail for pulling by the user to force the slide to bias the control plate.
Referring to FIGS. 6˜12, an inner sliding rail mounting structure in accordance with the present invention is used in a sliding track assembly formed of an inner sliding rail 5, an intermediate sliding rail 6, and an outer sliding rail 60. The inner sliding rail 5 is longitudinally slidably mounted in the intermediate sliding rail 6. The intermediate sliding rail 6 is longitudinally slidably mounted in the outer sliding rail 60.The inner sliding rail mounting structure of the present invention can be controlled to disengage the inner sliding rail 5 from the stop block 61 of the intermediate sliding rail 6 for allowing removal of the inner sliding rail 5 from the intermediate sliding rail 6. Alternatively, the inner sliding rail mounting structure can be controlled to let the inner sliding rail 5 be inserted into the intermediate sliding rail 6 over the stop block 61. The inner sliding rail mounting structure comprises a control plate 1, a slide 2, a carriage 3, a guide block 4, and a spring member 39.
The control plate 1 has a pivot hole 11 formed on one side, namely, the front side and pivotally connected to a pivot hole 52 on the bottom wall 51 of the inner sliding rail 5 with a pivot 12, an oblique sliding slot 13 formed on the other side, namely, the rear side and cut through the top and bottom walls and coupled to the front side 21 of the slide 2 by a pivot 14, a retaining side notch 15 on one lateral side for receiving the stop block 61 of the intermediate sliding rail 6, a bevel guide edge 151 obliquely extending from the rear side of the retaining side notch 15 to the rear side of the control plate 1, and a stop edge 152 extending from the front side of the retaining side notch 15 to the front side of the control plate 1.
The slide 2 has the front side 21 pivotally connected to the oblique sliding slot 13 of the control plate 1 by the pivot 14 and kept between the control plate 1 and the inner sliding rail 5, a longitudinal sliding slot 22 cut through the top and bottom wall on the middle and extending in parallel to the extending direction of the inner sliding rail 5 and coupled to a bolt 23 that is affixed to a hole 50 on the bottom wall 51 of the inner sliding rail 5 for allowing sliding of the slide 2 along the bottom wall 51 of the inner sliding rail 5, a locating hole 24 for accommodating the carriage 3, and a plurality of protruding retaining flanges 25, 26, 27 spaced around the locating hole 24 for securing the carriage 3 to the locating hole 24 firmly in place.
The carriage 3 has a protrusion 34 fitted into the locating hole 24, a plurality of retaining notches 31, 32, 33 spaced around the border and respectively forced into engagement with the protruding retaining flanges 25, 26, 27 of the slide 2, a longitudinal sliding slot 35 extending in parallel to the extending direction of the inner sliding rail 5 for receiving the guide block 4 (see
The guide block 4 is mounted in and movable along the longitudinal sliding slot 35 of the carriage 3 and stopped against a locating block 55 at the bottom wall 51 of the inner sliding rail 5, having a pin 41 forwardly extended from the front side.
The spring member 39 is positioned in the longitudinal positioning groove 36 of the carriage 3, having a front end 391 stopped at the front side 361 of the longitudinal positioning groove 36 and a rear end 392 sleeved onto the backwardly extending pin 41 and stopped against the front side of the guide block 4 When inserting the two opposite sidewalls 53 and 54 of the inner sliding rail 5 into the intermediate sliding rail 6, pull the carriage 3 backwards to force the spring member 39 and the guide block 4 against the locating block 55 at the bottom wall 51 of the inner sliding rail 5 and to compress the spring member 39 so that the pivot 14 is moved with the slide 2 obliquely backwards along the oblique sliding slot 13 of the control plate 1 to have the front side of the longitudinal sliding slot 22 be stopped at the bolt 23. At this time, the stop edge 152 of the control plate 1 is spaced from the corresponding sidewall 53 of the inner sliding rail 5 at the maximum distance (see
As stated above, the invention provides an inner sliding rail mounting structure that has the following benefits:
1. Easy operation: Simply by pulling the carriage 3 to carry the slide 2 backwards, the control plate 1 is biased from the locking position to the unlocking position for allow insertion of the inner sliding rail 5 into the intermediate sliding rail 6 or removal of the inner sliding rail 5 from the intermediate sliding rail 6. This design is free from the consideration of the left hand or right hand operation direction.
2. Simple structural design: The inner sliding rail mounting structure uses a limited number of parts, and is easy to install with less labor and time.
3. Orthopedically engineered design: The design of the finger recess 37 and finger strip 38 of the carriage 3 allows the user to pull the carriage 3 with one single finger comfortably.
A prototype of inner sliding rail mounting structure has been constructed with the features of FIGS. 6˜12. The inner sliding rail mounting structure functions smoothly to provide all of the features discussed earlier.
Although a particular embodiment of the inventions has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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094219830 | Nov 2005 | TW | national |