(a) Field of the Invention
The present invention relates to a buffer bearing for a drawer slide, and more particularly, to one that is provided with a buffer section and a receiving channel at where the bearing is connected with a separate part to have the buffer section to be compressed in the receiving channel when subjecting to impact for providing better buffer results.
(b) Description of the Prior Art
Drawers attached to a piece of furniture usually will be incorporated with slides for smooth sliding and efforts saving. Impacts are generated whenever the slide extends to a given position or is pushed back to open or close a drawer. Bearing incorporated to a buffer installation in certain slide products was used to reduce impact energy and noise or vibration level in the prior art as taught in Taiwan Patent Publication No. 499905 and U.S. Pat. Nos. 6,015,199 and 7,213,892 B2.
As disclosed in U.S. Pat. No. 6,015,199, an under-mount drawer slide is characterized in having a buffer producing from an end of a bearing seat; the buffer indicates a coil type and is connected to the bearing seat for the coiled buffer to sustain impacts on the slide by absorbing impact force for noise and vibration reduction.
However, the coiled buffer in relation to the bearing seat indicates an exposed protrusion and is made an integral part to the bearing seat to make the coil form being vulnerable to get deformed in indefinite direction within a partitioned space inside the slide when subjecting to impact. Once the deformation becomes beyond its critical point and gets damaged, replacement of the buffer is prevented. Furthermore, the application of the prior art is very limited because that the bearing seat for being integrated with the buffer fails to be adapted to other slides of different specifications and functional requirements.
The primary purpose of the present invention is to provide a buffer bearing for a drawer slide to solve the problems of failing separate replacement and lacking in common use of the bearing seat incorporated with the buffer of the prior art.
According to a first aspect of the present invention, there is provided buffer bearing for a drawer slide, comprising a connecting rod having a first connecting end and a second connecting end at respective two ends thereof; a first bearing seat having a horizontal upper wall and two vertical side walls, a number of rolling media being provided on the horizontal upper wall and the vertical side walls, the first bearing seat connecting to the first connecting end of the connecting rod; a second bearing seat having a horizontal upper wall and two vertical side walls, a number of rolling media being provided on the horizontal upper wall and the vertical side walls, the second bearing seat connecting to the second connecting end of the connecting rod, and a buffer section connected to the connecting rod.
Preferably, the first bearing seat is formed with a first receiving channel in a width corresponding to that of the first connecting end of the connecting rod, and retainers are provided in the first receiving channel in relation and holding to slots provided on two sides of the first connecting end.
Preferably, the second bearing seat is formed with a second receiving channel in a width corresponding to that of the second connecting end of the connecting rod, and retainers are provided in the second receiving channel in relation and holding to slots provided on two sides of the second connecting end.
Preferably, the buffer section is disposed with at least a corrugated extension.
Preferably, the buffer section is connected to a terminal of the first connecting end of the connecting rod.
Preferably, the buffer section is connected to a terminal of the second connecting end of the connecting rod.
Preferably, the buffer section is connected to the center of the first connecting end of the connecting rod.
Preferably, the buffer section is connected to the center of the second connecting end of the connecting rod.
Preferably, the connecting rod includes at least a first rod and a second rod; two ends respectively from the first rod and the second rod that face each other are disposed with a first connecting end and a third receiving channel; and the third connecting end is connected with another buffer section.
Preferably, the second connecting end of the connecting rod is integrated with the second bearing seat, and the first connecting end of the connecting rod is connected with the buffer section.
According to a second aspect of the present invention, there is provided a buffer bearing for a drawer slide, comprising a connecting rod having a first connecting end and a second connecting end at respective two ends thereof, a first bearing seat having a horizontal upper wall and two vertical side walls, a number of rolling media being provided on the horizontal upper wall and the vertical side walls, the first bearing seat being formed with a first receiving channel for connection of the first connecting end of the connecting rod; a second bearing seat having a horizontal upper wall and two vertical side walls, a number of rolling media being provided on the horizontal upper wall and the vertical side walls, the second bearing seat being formed with a second receiving channel for connection of the second connecting end of the connecting rod, and at least a buffer section disposed in either the first receiving channel of the first bearing seat or the second receiving channel of the second bearing seat.
Preferably, the first connecting end and the second connecting end of the connecting rod are provided slots on respective sides thereof, and the first receiving channel and the second receiving channel are provided with retainers for engagement of the slots of the first connecting end and the second connecting end.
Preferably, the buffer section is disposed with at least a corrugated extension.
Preferably, the second connecting end of the connecting rod is integrated with the second bearing seat, and the first connecting end of the connecting rod is connected with the first receiving channel of the first bearing seat and engages with the buffer section.
By referring to the prior art, the present invention provides the following improvements of results and advantages:
a. The buffer bearing may be combined with separate parts to allow economic benefits of replacing an individual part, and parts can be interchanged to save dies development and products cost.
b. The buffer section is provided by incorporating to interior space of the receiving channel for the buffer section maintains stable deformation due to compression to put deformation extent under effective control for providing longer service life of the buffer section.
Referring to
The connecting rod (1) has respectively disposed to its opposite ends a first connecting end (11) and a second connecting end (12). The first connecting end (11) contains a buffer section (4). The second connecting end (12) also contains a buffer section (4). Each buffer section (4) indicates a corrugated extension. Both the first connecting end (11) and the second connecting end (12) are disposed with slots (13) at both sides thereof, respectively. As illustrated in
The first bearing seat (2) has a horizontal upper wall (21) and two vertical side walls (22). A number of rolling media (23) are provided on the horizontal upper wall (21) and the vertical side walls (22), respectively. Each of the rolling media (23) is a roller bearing. The first bearing seat (2) is formed with a first receiving channel (24) in a width corresponding to that of the first connecting end (11) of the connecting rod (1) to receive the first connecting end (11). Both side walls in the first receiving channel (24) are disposed with retainers (25) to hold against the corresponding slots (13) provided on the first connecting end (11) to prevent the first connecting end (11) and the buffer section (4) disengaging from the first receiving channel (24).
The second bearing seat (3) has a horizontal upper wall (31) and two vertical side walls (32). A number of rolling media (33) are disposed on the horizontal upper wall (31) and the vertical side walls (32), respectively. Each of the rolling media (33) is a roller bearing. The second bearing seat (3) is formed with a second receiving channel (34) in a width corresponding to that of the first connecting end (12) of the connecting rod (1) to receive the second connecting end (12). Both side walls in the first receiving channel (24) are disposed with retainers (35) to hold against the corresponding slots (13) provided on the second connecting end (12) to prevent the second connecting end (12) and the buffer section (4) disengaging from the second receiving channel (34).
When the preferred embodiment of the present invention is adapted to a slide assembly as illustrated in
Now referring to
As illustrated in
In another preferred embodiment of the present invention as illustrated in
As illustrated in