1. Field of Invention
The present invention relates to a water conducting disc, and more particularly to a water conducting disc module for clipping filtering membranes.
2. Description of Related Art
A conventional water filtering device is an interlock water conducting disc module. The interlock water conducting disc module holding a conduit includes multiple water conducting discs, multiple rotatable actinoid vanes, multiple sealing rings and multiple filtering membranes.
Each of the interlock water conducting discs has a body, an aperture, three water conducting holes, a locking portion, a joint portion, two annular grooves and multiple locking holes. The aperture is defined completely through the body along a central axis. The water conducting holes are defined completely through the body around the aperture. The locking portion protrudes from a surface of the body and is L-shaped. The joint portion is formed inside each of the water conducting holes. The annular grooves defined respectively on opposite surfaces of the body. The locking holes alternately defined between the water conducting holes.
The rotatable actinoid vane is set between the adjacent water conducting discs. The sealing rings are respectively mounted in the corresponding annular grooves of the adjacent water conducting discs.
Each of the filtering membranes is stacked on a water conducting disc and a rotatable actinoid vane, and another water conducting disc is stacked on the filtering membrane. The locking portion of one of the water conducting discs is disposed in the water conducting hole of another water conducting disc and is rotated with opposite directions to interlock. Therefore, a convex of the locking portion is held in a concave of the joint portion to firmly engage the corresponding locking portion and joint portion of the adjacent water conducting discs. As a result, the filtering membrane is tightly set between adjacent water conducting discs.
When replacing the filtering membranes is needed, a tool is used to force and press the body of the water conducting disc through the locking holes to separate the adjacent water conducting discs. After the adjacent water conducting discs are separated, the adjacent water conducting discs are rotated with opposite directions for disassembly.
The fabrication of the conventional water conducting disc module is complicated such that the tool is needed to disassemble the water conducting discs. The fabrication cost is also increased and the fastened water conducting discs are easily separated because of the interlock method between the convex and the concave. Therefore, the conventional water conducting disc module is not suitable for the water processing device used in the family.
It is therefore an objective of the present invention to provide an embedded water conducting module to solve the fabrication and cost problem of conventional interlock water conducting disc module.
It is another objective of the present invention to provide an embedded water conducting module to conquer the drawback that the conventional interlock water conducting disc module that is easily separated because of its engagement structure.
It is another objective of the present invention to provide an embedded water conducting module to solve the problem that the conventional interlock water conducting disc module, which is not suitable for the water processing device used in the family.
An embedded water conducting disc module is provided and it holds a conduit and clips a plurality of filtering membranes. The embedded water conducting disc module includes multiple water conducting discs stacked with each other, and each filtering membrane is clipped between adjacent water conducting discs. Each of the water conducting discs includes a disc body, an opening, at least one locking portion, at least one embedded portion and multiple frames. The disc body includes a first surface and a second surface opposite to each other. The opening is defined through the disc body along a central axis and holds the conduit. The locking portion is defined inside the opening. The embedded portion is protruded from the second surface of the disc body. The frames alternately protruded outward from a periphery of the disc body.
Engaging the interlaced and corresponding locking portion and embedded portion simplifies the fabrication of the embedded water conducting disc module of the present invention. Additionally, this fabrication method also accelerates the replacement of the filtering membranes. Compared with the conventional interlock water conducting disc module, the fabrication cost of the embedded water conducting disc module of the present invention is reduced.
The embedded portion is a hook, and the locking portion is a fastener engaged with the hook. When the embedded portion is engaged with the locking portion, the embedded water conducting disc is firmly fixed and also easy to disassemble.
Compared to the conventional interlock water conducting disc with separated actinoid vane, the frames of the embedded water conducting disc are integrated with the disc body. Therefore, not only is the fabrication procedure diminished but also the cost is reduced with the fewer members.
As the previous description, the embedded water conducting disc module of the present invention has some advantages as following: easier fabrication, convenient disassembly, fewer members, lower fabrication cost and suitable for the family filtering device.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention. In the drawings,
Reference will now be made in detail to the present preferred embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
While the specification concludes with claims defining the features of the invention that are regarded as novel, it is believed that the invention will be better understood from a consideration of the following description in conjunction with the figures, in which like reference numerals are carried forward.
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The embedded water conducting disc module includes multiple water conducting discs 100, multiple sealing rings 200 and multiple filtering membranes 300. In the drawing, only two water conducting discs 100, two sealing rings 200 and one filtering membrane 300 are shown to illustrate the embedded water conducting disc module.
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The water conducting discs 100 are stacked sequentially on one another, and one filtering membrane 300 is clipped between adjacent water conducting discs 100. Each of the water conducting discs 100 includes a disc body 110, an opening 120, at least one locking portion 140, at least one embedded portion 150 and multiple frames 180. The disc body 110 has a first surface 111 and a second surface 112 opposite to each other. The opening 120 is defined through the disc body 110 along a central axis (shown in
The disc body 110 further includes two protruding edges 170 respectively protruded outward form the first surface 111 and the second surface 112. Thus, two altitudes 190 are respectively formed on the first surface 111 and the second surface 112. The filtering membrane 300 is clipped in a space provided by adjacent altitudes 190 of adjacent water conducting discs 100.
The disc body 110 further includes two grooves 160 respectively formed on the first surface 111 and the second surface 112 of the disc body 110. The sealing rings 200 are made of rubber and are respectively mounted in each of the grooves 160 of the water conducting discs 100.
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The conventional water conducting disc module with separated rotatable vane and water conducting disc has high manufacturing cost because of component numbers. The frames 180 and the disc body 110 of the embedded water conducting disc module of the present invention are constituted as a whole such that the manufacturing cost is reduced.
According to the composition and the embodiments above, there are many advantages of the embedded water conducting disc module of the present invention, such as:
1. Compared to the conventional water conducting disc module, the embedded water conducting disc module of the present invention presses the adjacent water conducting discs correspondingly to interlock with each other and fastens the filtering membrane 300 firmly. Therefore, the fabricating operation is easier and more convenient.
2. The embedded water conducting disc module separates the interlocked water conducting discs 100 by inserting a tool into the adjacent water conducting discs before replacing the filtering membrane 300. This method accelerates the disassembly of the embedded water conducting disc module of the present invention.
3. Compared to the conventional water conducting disc module with separated rotatable vane and water conducting disc, the frames 180 and the disc body 110 of the embedded water conducting disc module of the present invention are constituted as a whole such that the manufacturing cost is reduced.
4. The embedded water conducting disc module of the present invention is more suitably applied to the small-scale water filtering device used in the family because of its simple and convenient fabrication.
Although the present invention has been described in considerable detail with reference to certain preferred embodiments thereof, other embodiments are possible. Therefore, their spirit and scope of the appended claims should no be limited to the description of the preferred embodiments container herein.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.