The present invention relates to a roll bond condenser, more particularly to a double-sided roll bond condenser, a double-sided roll bond condenser rushing structure, and a rushing method thereof.
With reference to
A cold embedding method is to rush the roll bond condenser on a base having plurality of slots by mechanical pressing. With reference to
To overcome the shortcomings of the conventional one-sided roll bond condenser, the present invention provides a double-sided roll bond condenser to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a double-sided roll bond condenser, a double-sided roll bond condenser rushing structure, and a rushing method thereof.
The double-sided roll bond condenser has a main body, an interposition section, and a neck portion. The main body has two side surfaces. Two filling structures are respectively protruded from the two side surfaces of the main body. The interposition section is formed at a bottom portion of the double-sided roll bond condenser, and is a U-shaped folded structure. The U-shaped folded structure protrudes from one of the two side surfaces of the main body. The neck portion is located between the main body and the interposition section.
The double-sided roll bond condenser rushing structure has multiple double-sided roll bond condensers. Each double-sided roll bond condenser has a main body, an interposition section, and a neck portion. The main body has two side surfaces and two filling structures respectively formed at the two side surfaces of the main body. The interposition section is located a bottom portion of the double-sided roll bond condenser and is a U-shaped folded structure. The neck portion is located between the main body and the interposition section and has a curved structure. The base has multiple mounting slots formed in a top surface of the base, and the multiple mounting slots are parallel to each other. The interposition sections of the multiple double-sided roll bond condensers are respectively inserted into the mounting slots of the base.
The rushing method for a double-sided roll bond condenser, the rushing method has
a first step, wherein a base is provided, and the base has multiple mounting slots formed in a top surface of the base;
a second step, wherein multiple double-side roll bond condensers are provided, each double-side roll bond condenser has a main body, an interposition section, and a neck portion, the interposition section is formed at a bottom portion of the double-side roll bond condenser and is a U-shaped folded structure, and the neck portion is located between the main body and the interposition section;
a third step, wherein each neck portion is stamped or bent to form a curved structure; and
a fourth step, wherein each interposition section is pressed into a respective one of the mounting slots.
Other objects, advantages, and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The main body 33 is an upright board and has two side surfaces. Two filling structures 331 are respectively formed on and protrude from the two side surfaces of the main body 33. Each filling structure 331 has multiple pipes, and each pipe is filled with a medium to improve heat dissipation. The interposition section 32 is formed at a bottom portion of the double-sided roll bond condenser 3, and is a U-shaped folded structure. The U-shaped folded structure extends toward one of the two side surfaces of the main body 33.
The neck portion 31 is located between the main body 33 and the interposition section 32. The neck portion 31 has a curved structure which is adjacent to a rushed position, wherein the rushed position is located at a top portion of the U-shaped folded structure. In this embodiment, the curved structure is bent toward a direction away from the rushed position. The curved structure may be arc-shaped. With reference to
With reference to
The multiple double-sided roll bond condensers 3 are respectively mounted in the mounting slots 11 of the base 1. Each double-sided roll bond condenser 3 has a main body 33, an interposition section 32, and a neck portion 31. The main body 33 has two side surfaces. Two filling structures 331 are respectively formed on and protrude from the two side surfaces of the main body 33 and are filled with cooling medium. With reference to
The curved structure is to prevent the filling structure 331 of the double-sided roll bond condenser 3 from blocking the rushed position. Specifically, the filling structure 331 of each double-sided roll bond condenser 3 is away from the rushed position in the direction of the top view, and this may avoid blocking the interposition section 32 of the double-sided roll bond condenser 3.
The bending degree of the curved structure can be set according to the deviation distance of the filling structure 331 of the double-sided roll bond condenser 3 from the rushed position in the vertical projection direction.
With reference to
Step 1, a base 1 is provided, the base 1 having multiple mounting slots 11 formed in a top surface of the base 1.
Step 2, multiple double-side roll bond condensers 3 are provided, each double-sided roll bond condenser 3 having a main body 33, an interposition section 32, and a neck portion 31. The interposition section 32 is formed at a bottom portion of the double-sided roll bond condenser 3, and is a U-shaped folded structure. The neck portion 31 is located between the main body 33 and the interposition section 32.
Step 3, the neck portion 31 is stamped or bent to form a curved structure.
Step 4, the interposition section 32 is pressed into the mounting slot 11 by a rushing tool 4 punching at the rushed position of the double-sided roll bond condenser 3.
With reference to
In addition, because the curved structure of the neck portion 31 is bent in a direction away from the rushed position, the filling structures 331 of the double-sided roll bond condenser 3 are further deviated from the rushed position in the direction of the top view. With the punching step, the rushed end 321 of the U-shaped folded structure is deformed to make 1 abut against the mounting slot 11 firmly, so that the double-sided roll bond condenser 3 is tightly combined with the base 1.
The rushing method of the present invention overcomes the shortcoming that the double-sided roll bond condenser 3 cannot be used for rushing in the prior art.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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201810018078.4 | Jan 2018 | CN | national |