1. Field of the Invention
The invention relates to a plastic unit, more particularly to a plastic unit to be assembled by welding.
2. Description of the Related Art
Referring to
Further referring to
However, when a size of the plastic unit 1 is reduced as needed, a size of the protrusion 121 of the second component 12 is also reduced so as to prevent overflow of the melted protrusion 121, thereby resulting in a relatively weak connecting strength between the first and second members 3, 4.
Therefore, the object of the present invention is to provide a plastic unit having a relatively strong connecting strength after welding.
According to the present invention, a plastic unit to be assembled by welding comprises a first member, a second member, and an interconnecting member. The first member surrounds an axis and extends in an axial direction along the axis. The second member is disposed at one end of the first member in the axial direction, caps the first member, and is in contact with the first member at a first junction, a second junction and a third junction. The first junction surrounds the axis, extends in the axial direction, and terminates at opposite first and second ends. The second junction is adjacent to the first end of the first junction and extends in an inward direction perpendicular to the axial direction. The third junction is adjacent to the second end of the first junction and extends in an outward direction perpendicular to the axial direction and opposite to the inward direction. The interconnecting member is for interconnecting the first member and the second member and includes a first interconnecting portion, at least one second interconnecting portion and a third interconnecting portion disposed at the first, second and third junctions, respectively.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiment with reference to the accompanying drawings, of which:
Referring to
The first member 3 surrounds the axis (X), extends in the axial direction along the axis (X), and has an inner surface 311 and a distal surface 314. The inner surface 311 surrounds the axis (X), and is formed with a part of the first interconnecting portion (A) at the first junction of the first and second members 3, 4, and a plurality of stepped portions 313 each extending from the first end 3111 of the first junction in the inward direction to form a part of a respective one of the second interconnecting portions (B).
Each of the stepped portions 313 protrudes from the first member 3 toward the second member 4 in the axial direction and is disposed adjacent to the first end 3111 of the first junction in the inward direction. In this embodiment, there are two pairs of the stepped portions 313 (i.e., two pairs of the second interconnecting portions (B)), each pair of which are arranged opposite to each other diagonally.
The distal surface 314 of the first member 3 is spaced apart from the stepped portions 313 in the axial direction and extends from the second end 3112 of the first junction in the outward direction. In this embodiment, the distal surface 314 of the first member 3 is formed with a groove 315.
The second member 4 is disposed at the distal surface 314 of the first member 3 in the axial direction and complements the first member 3 at the first, second and third junctions. The second member 4 includes a main portion 41, a flange 42, and a shoulder portion 43. The main portion 41 extends into the first member 3 in the axial direction and has an outer surrounding surface 411 in contact with the inner surface 311 of the first member 3 at the first junction and an end surface 412 in contact with the stepped portions 313 of the first member 3 at the second junction. In particular, the inner surface 311 of the first member 3 and the outer surrounding surface 411 of the main portion 41 cooperatively form the first interconnecting portion (A), and each of the stepped portions 313 of the first member 3 and the end surface 412 cooperatively form a respective one of the second interconnecting portions (B).
The flange 42 of the second member 4 extends from the main portion 41 in the outward direction. The shoulder portion 43 is disposed between the main portion 41 and the flange 42, protrudes from the flange 42 toward the distal surface 314 of the first member 3 to form a downward converging protrusion 431 that abuts against and is tapered toward the distal surface 314 at the third junction, that serves as a part of the third interconnecting portion (C), and that is spaced apart from the outer surrounding surface 411 of the main portion 42 in the outward direction. In this embodiment, the downward converging protrusion 431 corresponds to and is disposed in the groove 315 formed in the distal surface 314 in position. In particular, the downward converging protrusion 431 and the distal surface 314 cooperatively form the third interconnecting portion (C).
Referring to
To sum up, the connecting strength between the first and second members 3, 4 after ultrasonic welding can be enhanced since the first, second and third interconnecting portions (A), (B) and (C) extend in different directions. Additionally, the configuration of the groove 315 and a space formed between the end surface 412 of the main portion 41 of the second member 4 and the inner surface 311 of the first member 3 provide sufficient space for accommodating the melted downward converging protrusion 431 and the stepped portions 313 so as to prevent overflow of the melted downward converging protrusion 431 and the stepped portions 313. By this way, as compared to the conventional plastic unit 1 as illustrated in
While the invention has been described in connection with what is considered the most practical and preferred embodiment, it is understood that this invention is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.