CN201569315U - Embedded sealing type aluminum alloy radiator - Google Patents

Embedded sealing type aluminum alloy radiator Download PDF

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Publication number
CN201569315U
CN201569315U CN201020163122XU CN201020163122U CN201569315U CN 201569315 U CN201569315 U CN 201569315U CN 201020163122X U CN201020163122X U CN 201020163122XU CN 201020163122 U CN201020163122 U CN 201020163122U CN 201569315 U CN201569315 U CN 201569315U
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CN
China
Prior art keywords
aluminium alloy
cavity
aluminum alloy
alloy radiator
radiator
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Expired - Fee Related
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CN201020163122XU
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Chinese (zh)
Inventor
张志成
张斌明
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Individual
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Individual
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Priority to CN201020163122XU priority Critical patent/CN201569315U/en
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Publication of CN201569315U publication Critical patent/CN201569315U/en
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Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses an embedded sealing type aluminum alloy radiator, comprising an aluminum alloy radiator body having at least two units, wherein each of the aluminum alloy radiator body is provided with at least one hollow cavity; both end heads of the hollow cavity of each unit of the aluminum alloy radiator body are respectively provided with a holding cavity correspondingly, the end heads of each hollow cavity are extended into the holding cavity, and the holding cavity is provided with an aluminum alloy radiator fastener having a hollow inner cavity; the aluminum alloy radiator fastener is provided with pipe holes having the same number of the end heads of the hollow cavity of the aluminum alloy radiator body, and each holding cavity is internally provided with a positioning insert capable of buckling the pipe holes of the aluminum alloy radiator body and the end heads of the hollow cavity of the aluminum alloy radiator body in sealing manner. The positioning insert has an effect of positioning the aluminum alloy radiator fastener so that the embedded sealing type aluminum alloy radiator prevents the aluminum alloy radiator fastener from moving in the holding cavity under various application environments; thus, the structure of the embedded sealing type aluminum alloy radiator is matched more tightly without more firm installation and more convenient processing assembling.

Description

The sealed aluminium alloy heat radiator of scarf
Technical field
The utility model relates to the heat sink technology field that heating is used, and relates in particular to the sealed aluminium alloy heat radiator of scarf.
Background technology
The Aluminium Radiator of extensive use at present, a kind of as full aluminum products which comprises at least a slice fin, and fin is by two pre-XianCheng concavity shape heating agent passages and coincide integral solder and make; Another kind of STRUCTURE DECOMPOSITION is main body and last low head three parts, adopts extruding and die-casting process manufacturing as material employing GB aluminium alloy, adopts welding or splicing combination to install again and forms.Traditional cast-iron radiator presentation quality is poor, radiating efficiency is low, a production cost high-technology difficult problem though can solve.But, aluminum alloy materials welding difficulty, welding process requirement extra-high-speed; Because the misoperation during welding very easily forms rosin joint, leaks weldering, sealing-off phenomenon, cause the crack of radiator weld to seep water or leak thus, thereby influence the normal use of product.
Summary of the invention
Technical problem to be solved in the utility model is the present situation at prior art, provides a kind of installation firm, easy to process, the sealed aluminium alloy heat radiator of the exsertile scarf of sealing.
The utility model solves the problems of the technologies described above the technical scheme that is adopted: the sealed aluminium alloy heat radiator of scarf, comprise having at least two unit aluminium alloy radiators, and each unit aluminium alloy radiator all is shaped at least one cavity; Each cavity has the cavity termination of extending two ends, the cavity two ends each to a containing cavity should be arranged, containing cavity inside is stretched in each cavity termination, and containing cavity is provided with an aluminium alloy heat radiation button with hollow cavity; Aluminium alloy heat radiation button is shaped on and the identical pore of unit aluminium alloy radiator cavity termination number, is provided with the pore of the button that aluminium alloy can be dispelled the heat and the cavity termination of unit aluminium alloy radiator in each containing cavity and seals the location inserts that fastens.
For optimizing technique scheme, the measure of taking also comprises:
Above-mentioned cavity termination is provided with sealing ring at least between the pore of unit aluminium alloy radiator.
Be shaped on pin-and-hole on the above-mentioned unit aluminium alloy radiator, the location inserts is fixedlyed connected with unit aluminium alloy radiator by steady pin, and the location inserts is fixed in the containing cavity.
Above-mentioned location inserts is fixed in the containing cavity location inserts by riveted joint or welding and unit aluminium alloy radiator secure fit.
Above-mentioned unit aluminium alloy radiator is shaped on the fin that is connected with the cavity outer wall, with the heat dispersion of enhancement unit aluminium alloy radiator.
Compared with prior art, the sealed aluminium alloy heat radiator of scarf of the present utility model, in the containing cavity of unit aluminium alloy radiator, be provided with aluminium alloy heat radiation button, the dispel the heat cavity termination sealing of the pore of button and unit aluminium alloy radiator of aluminium alloy is fastened, and between aluminium alloy heat radiation button and containing cavity inwall, snap in the location inserts, play the effect of location aluminium alloy heat radiation button, to prevent that aluminium alloy heat radiation button is movable in containing cavity under the various environments for use, make the respective outer side edges of aluminium alloy heat radiation button and unit aluminium alloy radiator tightr, install more firm, process and assemble is more convenient.The pore of aluminium alloy heat radiation button has depth awl inclined-plane or sphere or carves face, and the sealing effectiveness of pore and cavity termination is given prominence to, but sealing means not only these, roughly the same all be within this patent scope, for the technological means of routine, give unnecessary details no longer one by one.Aluminium alloy heat radiation button and unit aluminium alloy radiator are all aluminum alloy materials, and the deformation coefficient that expands with heat and contract with cold is identical, thereby have strengthened the reliability of sealing greatly.
Description of drawings
Fig. 1 is the assembling schematic diagram of the utility model embodiment.
The specific embodiment
Embodiment describes in further detail the utility model below in conjunction with accompanying drawing.
Reference numeral wherein is: unit aluminium alloy radiator 1, cavity 1a, cavity termination 1c, fin 1d, aluminium alloy heat radiation button 2, hollow cavity 2a, pore 2b, location inserts 3, sealing ring 4, steady pin 5.
Embodiment 1, and the sealed aluminium alloy heat radiator of scarf as shown in Figure 1 comprises having at least two unit aluminium alloy radiators 1, and each unit aluminium alloy radiator 1 all is shaped at least one cavity 1a; Each cavity 1a has the cavity termination 1c that extends two ends, cavity termination 1c each to a containing cavity should be arranged, each cavity termination 1c stretches into containing cavity the inner, and, be provided with an aluminium alloy heat radiation button 2 in the containing cavity with hollow cavity 2a; Aluminium alloy heat radiation button 2 is shaped on and the identical pore 2b of unit aluminium alloy radiator 1 cavity termination 1c number, is provided with the pore 2b of the button 2 that aluminium alloy can be dispelled the heat and the cavity termination 1c of unit aluminium alloy radiator 1 in each containing cavity and seals the location inserts 3 that fastens.
The pore 2b and the cavity termination 1c sealing of aluminium alloy heat radiation button 2 fasten.In the present embodiment, cavity termination 1c is provided with sealing ring 4 at least between the pore 2b of unit aluminium alloy radiator 1, makes between cavity termination 1c and the pore 2b to be tightly connected.Install for strengthening sealing effectiveness and being convenient to, pore 2b has depth awl inclined-plane or sphere or carves face, and the sheathed sealing ring of cavity termination 1c 4 backs are inserted in the pore 2b and with the inner wall sealing of pore 2b and cooperated.In specific implementation process, also can adopt existing other sealing means that cavity termination 1c and pore 2b are tightly connected, as modes such as encapsulant stickup or injection moulding are arranged on cavity termination 1c outer surface, cavity termination 1c is communicated with hollow cavity 2a.
All be fixed with in each containing cavity the aluminium alloy location inserts 3 that the cavity termination 1c sealing of the pore 2b of button 2 and unit aluminium alloy radiator 1 fastens that dispels the heat.During installation, the aluminium alloy button 2 that dispels the heat is put into containing cavity, and pore 2b and cavity termination 1c sealing are fastened, snap in location inserts 3 in the gap between aluminium alloy heat radiation button 2 and containing cavity then, play the effect of location aluminium alloy heat radiation button 2, to prevent that aluminium alloy heat radiation button 2 is movable in containing cavity under the various environments for use.
The fixed form of location inserts 3 can adopt on unit aluminium alloy radiator 1 makes and sells the hole, and location inserts 3 is fixedlyed connected with unit aluminium alloy radiator 1 by steady pin 5.The fixed form of location inserts 3 also can adopt existing fixed forms such as riveted joint or welding that location inserts 3 is fixed in the containing cavity.
Be shaped on the fin 1d that is connected with cavity 1a outer wall at unit aluminium alloy radiator 1, the heat dispersion of enhancement unit aluminium alloy radiator 1.
The sealed aluminium alloy heat radiator of scarf need can select the unit aluminium alloy radiator 1 of number and length size arbitrarily according to user's needs, as long as equipped according to said structure, just can obtain needed product.In unit aluminium alloy radiator 1, be shaped at least one cavity 1a, aluminium alloy heat radiation button 2 in the containing cavity is shaped on the pore 2b identical with cavity termination 1c number, by cavity termination 1c and being tightly connected of pore 2b correspondingly, each cavity 1a is connected respectively with hollow cavity 2a.
The sealed aluminium alloy heat radiator of scarf of the present utility model fastens the dispel the heat cavity termination 1c sealing of the pore 2b of button 2 and unit aluminium alloy radiator 1 of aluminium alloy, installs simple and convenient.Pore 2b has depth awl inclined-plane or sphere or carves face, and sealing effectiveness is outstanding, but sealing means not only these, roughly the same all be within this patent scope, for the technological means of routine, give unnecessary details no longer one by one.Aluminium alloy heat radiation button 2 is all aluminum alloy materials with unit aluminium alloy radiator 1, and the deformation coefficient that expands with heat and contract with cold is identical, thereby has strengthened the reliability of sealing greatly.Between aluminium alloy heat radiation button 2 and containing cavity inwall, snap in location inserts 3, make the dispel the heat respective outer side edges of button 2 and unit aluminium alloy radiator 1 of aluminium alloy tightr, install more firm, process and assemble is more convenient.The shape of aluminium alloy radiator 1 top, unit or bottom can be done in shape variation according to the needs that use, and random amount can be installed on unit aluminium alloy radiator 1 and need the wind-guiding leaf of shape.
Most preferred embodiment of the present utility model is illustrated, and various variations or the remodeling made by those of ordinary skills can not break away from scope of the present utility model.

Claims (5)

1. the sealed aluminium alloy heat radiator of scarf comprises having at least two unit aluminium alloy radiators (1), and each described unit aluminium alloy radiator (1) all is shaped at least one cavity (1a); It is characterized in that: each described cavity (1a) has the cavity termination (1c) of extending two ends, cavity termination (1c) each to a containing cavity should be arranged, described containing cavity inside is stretched in each described cavity termination (1c), and described containing cavity is provided with an aluminium alloy heat radiation button (2) with hollow cavity (2a); Described aluminium alloy heat radiation button (2) is shaped on the pore (2b) identical with described unit aluminium alloy radiator (1) cavity termination (1c) number, is provided with the location inserts (3) that described pore (2b) and described cavity termination (1c) sealing can be fastened in each containing cavity.
2. the sealed aluminium alloy heat radiator of scarf according to claim 1 is characterized in that: described cavity termination (1c) is provided with sealing ring (4) at least between described pore (2b).
3. the sealed aluminium alloy heat radiator of scarf according to claim 2 is characterized in that: be shaped on pin-and-hole on the described unit aluminium alloy radiator (1), described location inserts (3) is fixedlyed connected with unit aluminium alloy radiator (1) by steady pin (5).
4. the sealed aluminium alloy heat radiator of scarf according to claim 2 is characterized in that: described location inserts (3) is by riveted joint or welding and unit aluminium alloy radiator (1) secure fit.
5. according to the sealed aluminium alloy heat radiator of the described scarf of the arbitrary claim of claim 1 to 4, it is characterized in that: described unit aluminium alloy radiator (1) is shaped on the fin (1d) that is connected with cavity (1a) outer wall.
CN201020163122XU 2010-04-15 2010-04-15 Embedded sealing type aluminum alloy radiator Expired - Fee Related CN201569315U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201020163122XU CN201569315U (en) 2010-04-15 2010-04-15 Embedded sealing type aluminum alloy radiator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201020163122XU CN201569315U (en) 2010-04-15 2010-04-15 Embedded sealing type aluminum alloy radiator

Publications (1)

Publication Number Publication Date
CN201569315U true CN201569315U (en) 2010-09-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201020163122XU Expired - Fee Related CN201569315U (en) 2010-04-15 2010-04-15 Embedded sealing type aluminum alloy radiator

Country Status (1)

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CN (1) CN201569315U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103065767A (en) * 2012-12-17 2013-04-24 宁波中策亿特电子有限公司 Transformer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103065767A (en) * 2012-12-17 2013-04-24 宁波中策亿特电子有限公司 Transformer
CN103065767B (en) * 2012-12-17 2016-08-17 宁波中策亿特电子有限公司 Transformator

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Granted publication date: 20100901

Termination date: 20150415

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