1. Field of the Invention
The present invention relates to a single handle faucet and a connecting structure thereof.
2. Description of the Prior Art
With reference to
However, the nuts 6 and the screw rods 4 are fixed below the basin 1 and are close to a wall, therefore an operating space is limited. Moreover, the screw rods 4 are close to the inlet pipes 3 to operate a tool within a limited space and are interfered by the inlet pipes 3, fixing the faucet 2 difficulty. Likewise, the size of the nuts 6 are limited without using a larger size of nuts, and a larger lever arm can not be provided, so a user can not operate the nut manually but has to use a rotating tool.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary object of the present invention is to provide a single handle faucet which is capable of overcoming the shortcomings of the conventional single handle faucet.
To obtain the above objectives, a single handle faucet being fixed on a basin with a first hole located at a central position thereof and two second holes disposed on two sides thereof respectively and comprising:
a body;
a control valve set fixed on the body and including a handle located above a central position of the body to rotate the valve core;
two inlet pipes connected with the control valve set to feed cold water and hot water individually and extending out of the first hole of the basin;
an outlet pipe coupled with the control valve set to flow mixed water of the cold water and the hot water;
two screw rods including two top ends to connect with two sides of the body individually and two bottom ends extending out of the two second holes of the basin respectively;
two nuts screwed with the two screw rods respectively and engaged with a bottom end of the basin so that the faucet is locked on the basin.
Another object of the present invention is to provide a connecting structure of a single handle faucet which is capable of overcoming the shortcomings of the conventional connecting structure of a single handle faucet.
To obtain the above objective, a connecting structure of a single handle faucet is fixed on a basin with a first hole located at a central position thereof and two second holes disposed on two sides thereof respectively and contains:
The connecting structure of a single handle faucet comprising:
a basin including a first hole located at a central position thereof and two second holes disposed on two sides thereof respectively;
a faucet includes a body, a control valve set, two inlet pipes, an outlet pipe, two screw rods, and two nuts; wherein
the control valve set is fixed on the body and includes a handle located above a central position of the body;
the two inlet pipes are connected with the control valve set to feed cold water and hot water individually and extend out of the first hole of the basin;
the outlet pipe is coupled with the control valve set to flow mixed water of the cold water and the hot water;
the two screw rods include two top ends to connect with two sides of the body individually and two bottom ends extending out of the two second holes of the basin respectively;
the two nuts screwed with the two screw rods respectively and engaged with a bottom end of the basin so that the faucet is locked on the basin.
The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
Referring to
The faucet 100 includes a body 10, a control valve set 20, two inlet pipes 30, an outlet pipe 40, two screw rods 50, and two nuts 60.
The body 10 includes a housing 101 and a seat 102 as illustrated in
The control valve set 20 is a well-know structure and is fixed on the body 10. The control valve set 20 includes a holder 21 fixed in the chamber 103 of the body 10, a valve core 22 secured in the holder 21, and a handle 23 to rotate the valve core 22; the handle 23 is located above a central position of the body 10.
The two inlet pipes 30 are connected with the control valve set 20 to feed cold water and hot water individually and extend out of the first aperture 11 of the seat 102 and the first hole 201 of the basin 200 respectively along the control valve assembly 20, as shown in
The outlet pipe 40 is coupled with the control valve set 20 to flow mixed water of the cold water and the hot water.
The two screw rods 50 include two top ends to connect with two bottom ends of two sides of the housing 101 individually as illustrated in
The nuts 60 are screwed with the two screw rods 50 respectively and engaged with a bottom end of the basin 200 so that the faucet 100 is locked on the basin 200 as shown in
Because the diameter and the spaced distance of the first hole 201 and the second hole 202 are limited by the standard specification individually, a centrally axial line of the inlet pipe 30 is limited within 20 to 33 mm so that the inlet pipe 30 is inserted through the first aperture 11 of the seat 102 and the first hole 201 of the basin 200. Also, a centrally axial line of any one of the inlet pipes 30 and the screw rods 50 is capable of being limited within 30 to 85 mm so that the screw rod 50 is inserted through the second aperture 12 of the seat 102 and the second hole 202 of the basin 200.
Before an installation of the faucet 100, the two inlet pipes 30 and the two screw rods 50 are fixed on the holder 21 of the control valve set 20 and the housing 101 of the body 10, as illustrated in
Thereby, the inserting positions of the inlet pipes 30 and the screw rods 50 are spaced apart from each other, i.e., the two inlet pipes 30 are inserted through the first hole 201 to space apart the two screw rods 50 which are inserted through the two second holes 202 individually so that a larger space around the screw rod 50 is formed, hence the nuts 60 are screwed with the screw rods 50 easily so that the faucet 100 is connected with the basin 200 quickly.
Due to the two inlet pipes 30 are spaced apart from the two screw rods 50, an enough space is obtained to rotate the nut 60 with a larger size so that when the screw rod 50 is screwed with the nut 60, the abutting wall 63 engages with the bottom end of the basin 200 without using a bushing and a press plate, thus decreasing connecting components to save installation cost.
Because a larger size of the nut 60 is applied to connect the faucet 100 with the basin 200, a larger lever arm generates on the nut 60 so that the nut 60 is manually rotated by the user. Furthermore, the two wings 66 are formed on the two sides of the disk portion 62 to generate the larger lever arm so that the wings 66 are rotated by the user's fingers to rotate the nut 60 easily, thereby manually fixing and removing the faucet 100 without using any tool.
While we have shown and described various embodiments in accordance with the present invention, it is clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.