The present invention relates to a suspension wheel apparatus for glass doors that can be assembled and installed quickly and firmly and in close contact with a track during moving to facilitate smooth opening and closing of a suspension glass door and is simpler to make adjustment and can provide secured suspension.
A conventional suspension wheel apparatus 10 used on glass doors (referring to
Referring to
The primary object of the present invention is to provide a suspension wheel apparatus for glass doors to overcome the aforesaid problem occurred to the conventional technique that can be assembled and installed quickly and firmly on the top of a glass door and in close contact with a track during moving to facilitate smooth opening and closing of the suspension glass door and is simpler to make adjustment and provides secured suspension.
To achieve the foregoing object, the suspension wheel apparatus of the invention mainly includes a suspension wheel set, a wheel seat and a bridging element.
The suspension wheel set has a first hole and a second hole formed respectively on the top and bottom thereof, a housing chamber in the middle communicating with the first and second holes, and apertures formed at two sides thereof to be hinged by a first wheel set and a second wheel set.
The wheel seat is held in the housing chamber of the suspension wheel set and formed with a hexagonal shape and has an opening in the center. The opening has an upper half section formed an upper concave curve with an inner side widened gradually upwards, and a lower half section adjacent to the bottom of the upper concave curve and expanded gradually downwards to become a conical orifice.
The bridging element has an arched round head at one end in contact with the upper concave curve of the wheel seat and a screw bar extended downwards from the arched round head to run through the wheel seat.
By means of the structure set forth above, when the suspension glass door is moved for opening or closing, the arched round head at the upper side of the bridging element can sway in the upper concave curve to direct swinging amplitude in an upright position without skewing forwards, rearwards, leftwards or rightwards. The conical orifice of the wheel seat further provides more swinging room for the screw bar of the bridging element. Therefore, the suspension glass door can be moved smoothly on a track in a close contact manner, and the glass door also can be hung steadier to enhance safety.
The foregoing, as well as additional objects, features and advantages of the invention will be more readily apparent from the following detailed description, which proceeds with reference to the accompanying drawings.
Refer to
The suspension wheel set 40 has a first hole 41 and a second hole 42 formed respectively on the top and bottom thereof, a housing chamber 43 in the middle communicating with the first and second holes 41 and 42, and apertures 401 and 402 formed at two sides thereof to be hinged by a first wheel set 44 and a second wheel set 45.
The wheel seat 50 is held in the housing chamber 43 of the suspension wheel set 40 and formed with a hexagonal shape in this embodiment, and has an opening 51 in the center. The opening 51 has an upper half section formed an upper concave curve 511 with an inner side widened gradually upwards, and a lower half section adjacent to the bottom of the upper concave curve 511 and expanded gradually downwards to become a conical orifice 512. The conical orifice 512 can increase the swinging space of a screw bar 62 of the bridging element 60.
The bridging element 60 has an arched round head 61 at one end in contact with the upper concave curve 511 of the wheel seat 50. The arched round head 61 and the upper concave curve 511 have a curved surface structure to direct swinging amplitude to an upright condition so that a suspension glass door 71 can be moved for opening or closing without skewing forwards, rearwards, leftwards or rightwards (referring to
By means of the construction set forth above, for assembly and installation, also referring to
Referring to
As a conclusion, the suspension wheel apparatus 30 of the invention can adjust the suspension glass door 71 as desired. The arched round head 61 and upper concave curve 511 provide a curved surface contact to direct the swinging amplitude to the upright position so that the suspension glass door 71 can be moved during opening and closing without skewing forwards, rearwards, leftwards or rightwards. The conical orifice 512 of the wheel seat 50 provides more swinging space for the screw bar 62 of the bridging element 60. The suspension wheel apparatus 30 can be installed quickly and firmly at the top portion of the glass door 71. Suspension of the glass door 71 can be adjusted easier. It provides a significant improvement over the conventional technique.