CN204381609U - A kind of scolding tin frock with circular louvre - Google Patents

A kind of scolding tin frock with circular louvre Download PDF

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Publication number
CN204381609U
CN204381609U CN201420811858.1U CN201420811858U CN204381609U CN 204381609 U CN204381609 U CN 204381609U CN 201420811858 U CN201420811858 U CN 201420811858U CN 204381609 U CN204381609 U CN 204381609U
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CN
China
Prior art keywords
scolding tin
inductor
aluminium alloy
alloy plate
tin frock
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Expired - Fee Related
Application number
CN201420811858.1U
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Chinese (zh)
Inventor
晋家贵
郑应华
李军飞
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High-New Jin Da Electronic Science And Technology Co Ltd In Kweiyang
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High-New Jin Da Electronic Science And Technology Co Ltd In Kweiyang
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Priority to CN201420811858.1U priority Critical patent/CN204381609U/en
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Publication of CN204381609U publication Critical patent/CN204381609U/en
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Abstract

The utility model discloses a kind of scolding tin frock with circular louvre, the scolding tin frock position of multiple inductor once can be provided, and there is heat dissipation design, thus provide the foundation for improving scolding tin operating efficiency.The matrix of this scolding tin frock is strip aluminium alloy plate, and one of them long side has a through groove, the brace table of the layout inverted T shape of groove intermediate reach; Gap is left between brace table bottom surface and groove madial wall; The barrier locating slot that equally spaced distribution matches with the middle barrier of inductor on the cell wall of described groove, bottom land embeds the circular magnet steel for adsorbing the circular magnetic core of inductor; Strip aluminium alloy plate offer multiple manhole and be communicated with described manhole and extraneous thermal hole, the plate that thermal hole diameter is less than strip aluminium alloy plate is wide.

Description

A kind of scolding tin frock with circular louvre
Technical field
The utility model relates to inductor aid technical field, is specifically related to a kind of scolding tin frock with circular louvre.
Background technology
Inductor can be the element that magnetic energy stores by electric energy conversion.The structure of inductor comprises pedestal 1, circular magnetic core 2 and winding 3.As shown in Figure 1, embed pedestal 1 after winding 3 is wound in circular magnetic core 2 to encapsulate.Winding 3 is generally enamel-covered wire.Wherein, the concrete structure of the inductor that the utility model relates to is: pedestal 1 reverse side figure shown in Figure 2, and the both sides of pedestal 1 are equipped with 4 pins, and middle two pins utilize the middle barrier 21 of processing on pedestal 1 to separate.To lay the direction of pin for length direction X, other direction is width Y, and inductor thickness direction is Z-direction.Inductor is on two end faces of length direction X: the middle position near inductor bottom surface is provided with boss 23, boss both sides and be respectively equipped with stuck point 22 near inductor end face, and boss 23 does not all overlap in Z-direction and Y-direction with stuck point 22.
Scolding tin is the procedure in inductor manufacturing process, generally needs multiple inductor to be arranged in scolding tin frock to carry out soldering operation simultaneously.Soldering operation can be manually or automatically.Automatic tin soldering action need adopts automatic tin soldering system, in order to a multiple inductor of soldering, needs design scolding tin frock, is arranged in a row by multiple inductor.Therefore, how to design scolding tin frock, making it adapt to inductor structure is an important design goal.
During soldering, scolding tin frock is loaded solder system, solder system drives the action of scolding tin frock, and the side pin of Schilling inductor falls into brazier and carries out a soldering, then rotates, and makes the opposite side pin of inductor fall into brazier and carries out a soldering.Because twice soldering operation makes soldering frock become very hot, reduce operating efficiency, therefore how dispelling the heat to scolding tin frock is very important designing points.
Utility model content
In view of this, the utility model provides a kind of scolding tin frock with circular louvre, for inductor automatic tin soldering system, once can provide the scolding tin frock position of multiple inductor, and there is heat dissipation design, thus provide the foundation for improving scolding tin operating efficiency.
The winding that described inductor comprises pedestal, is fixed on the circular magnetic core on pedestal and is wrapped on circular magnetic core; The two sides that pedestal is provided with pin all have middle barrier, and the two sides not being provided with pin are provided with boss and stuck point;
The matrix of this scolding tin frock is strip aluminium alloy plate, if the bearing of trend of this strip aluminium alloy plate is X-direction, plate thickness direction is Y-direction, and plate width direction is Z-direction;
Have a through groove at one of them long side of strip aluminium alloy plate, the brace table of the layout inverted T shape of groove intermediate reach, brace table height is identical with depth of groove; Gap is left between brace table bottom surface and groove madial wall; The length of brace table end face Y-direction is less than the spacing of two stuck points on the same end face of inductor, the width of brace table end face X-direction is greater than a and is less than or equal to 2a, wherein a is the thickness of inductor convex platform, makes inductor utilize its boss to be crossed between two adjacent supports platforms by the distance designed between two brace tables; The height circular magnetic core met in inductor of brace table Z-direction does not contact the bottom land of described groove;
The barrier locating slot that equally spaced distribution matches with the middle barrier of inductor on the cell wall of described groove, and distributing position is positioned in the middle of adjacent two brace tables;
Embed the circular magnet steel for adsorbing the circular magnetic core of inductor at the bottom land of described groove, and circular magnet steel is positioned in the middle of adjacent two brace tables;
Strip aluminium alloy plate offers multiple manhole, and the axis of manhole is parallel with Y-direction; Offer in strip aluminium alloy plate inside and be communicated with described manhole and extraneous thermal hole, the plate that thermal hole diameter is less than strip aluminium alloy plate is wide.
Preferably, strip aluminium alloy plate is offered in X direction two row's manholes, two row's manholes interlock position in z-direction.
Preferably, the gross area of all manholes accounts for more than 40% of strip aluminium alloy plate large area.
Preferably, for needing in the situation of the short side processing of scolding tin frock two with solder system joined components, the axis of described thermal hole is parallel with Z-direction.
Preferably, process the situation with solder system joined components for needing at the long side that scolding tin frock is relative with described groove, the axis of described thermal hole is parallel with X-direction.
Preferably, this scolding tin frock comprises the thermal hole being communicated with manhole further.
Beneficial effect:
(1) scolding tin frock of the present utility model, structure is simple, easily processes.
(2) the frock position of multiple inductor can be provided for a scolding tin, and inductor arranges in scolding tin frock, can improve scolding tin efficiency compact.
(3) leave gap between brace table bottom surface and groove madial wall, thus do not stay dead angle, be convenient to periodic cleaning.
(4) scolding tin frock adopts circular port to carry out loss of weight and heat radiation, effectively loosely at short notice can remove the heat assembled, make operator can touch frock as early as possible it is taken off from automatic tin soldering system, thus provide the foundation for improving scolding tin operating efficiency.
(5) scolding tin frock has offered thermal hole further, and thermal hole forms passage of heat, when not reducing surface radiating area, further increasing the space of heat flow, thus enhancing radiating effect.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of inductor;
Fig. 2 is the schematic diagram of inductor pedestal;
Fig. 3 (a) is the top view of scolding tin frock;
Fig. 3 (b) is the Local map of B in Fig. 3 (a);
The front view (not shown louvre) that Fig. 4 (a) is scolding tin frock.
Fig. 4 (b) is the Local map of A in Fig. 4 (a);
Fig. 5 is the side view (not shown louvre) of scolding tin frock;
Fig. 6 is a kind of embodiment schematic diagram of louvre and thermal hole in scolding tin frock.
Fig. 7 is the another kind of embodiment schematic diagram of louvre and thermal hole in scolding tin frock.
Wherein, 1-pedestal, the circular magnetic core of 2-, 3 windings, barrier in the middle of 21-, 22-stuck point, 23-boss, 202-matrix, 203-brace table, 204-baffle locating slot, the circular magnet steel of 205-, 206-louvre (manhole), 208-thermal hole.
Detailed description of the invention
To develop simultaneously embodiment below in conjunction with accompanying drawing, the utility model is described in detail.
The utility model provides a kind of scolding tin frock with circular louvre, for inductor automatic tin soldering system, as shown in the figure, the matrix 202 of this scolding tin frock is strip aluminium alloy plate, for convenience of description, if the bearing of trend of this strip aluminium alloy plate is X-direction, plate thickness direction is Y-direction, and plate width direction is Z-direction.
Have a through groove at one of them long side of strip aluminium alloy plate, the brace table 203 of the layout inverted T shape of groove intermediate reach, this brace table is also the dividing plate between adjacent two inductors, and it is platy structure, is seen as T-shaped from side view.Brace table height is identical with depth of groove.
As shown in Fig. 3 (b), the length of brace table 203 bottom surface Y-direction is less than groove groove width, and brace table is arranged in groove central authorities, makes to leave gap between brace table bottom surface and groove madial wall, thus does not stay dead angle, be convenient to periodic cleaning.
As shown in Fig. 3 (b), the length of brace table 203 end face Y-direction is less than the spacing of two stuck points 22 on the same end face of inductor, makes brace table end face can prop up boss 23 through the gap two stuck points, thus realizes the location of Y-direction.
As shown in Fig. 3 (b), the width of brace table 203 end face X-direction is greater than a, a is the thickness of inductor convex platform 23, thus make each brace table 203 provide support for two adjacent inductors simultaneously, simultaneously, the width of brace table 203 end face X-direction is less than or equal to 2a, thus the spacing that two inductors of same brace table are shared in order is not too large, is preferably and is close to.By designing the distance between two brace tables, same inductor is made to utilize its boss to be crossed between two adjacent supports platforms 203.The height circular magnetic core 2 met in inductor of brace table Z-direction does not contact the bottom land of described groove, thus the winding on protection inductor.
As shown in Fig. 3 (b) He Fig. 4 (b), the barrier locating slot 204 that equally spaced distribution matches with the middle barrier 21 of inductor on the cell wall of described groove, and distributing position is positioned in the middle of adjacent two brace tables 203.When inductor is placed on frock position, middle barrier 21 is stuck in barrier locating slot 204, thus realizes the location of X-direction.
As shown in Fig. 3 (b) He Fig. 4 (b), offering cylindrical bore at the bottom land of described groove, embed the circular magnet steel 205 for adsorbing the circular magnetic core 2 of inductor wherein, and circular magnet steel 205 being positioned in the middle of adjacent two brace tables 203.
In order to dispel the heat, as shown in Figure 6, strip aluminium alloy plate offers multiple manhole 206, through-bore axis is parallel with Y-direction.Preferably, in order to utilize the area on strip aluminium alloy plate as far as possible, form staggered heat dissipation channel, strip aluminium alloy plate is offered in X direction two row's manholes, two row's manholes interlock position in z-direction.Preferably, the gross area of all manholes accounts for more than 40% of strip aluminium alloy plate large area.
In order to further enhancing radiating effect, the utility model has offered thermal hole 208 further in scolding tin frock, the plate that thermal hole 208 diameter is less than strip aluminium alloy plate is wide, thermal hole is buried in strip aluminium alloy plate inner, and thermal hole 208 is communicated with manhole 206 and outside air.
A kind of situation as shown in Figure 6, for needing in the situation of the short side processing of scolding tin frock two with solder system joined components, such as need at scolding tin frock two short side processing hold assembly, so thermal hole 208 should laterally be offered, and namely the axis of thermal hole 208 is parallel with Z-direction.
A kind of situation as shown in Figure 7, the situation with solder system joined components is processed at the long side that scolding tin frock is relative with described groove for needing, such as need to embed magnet on this long side, be connected with solder system by suction type, so thermal hole 208 should vertically be offered, and namely the axis of thermal hole 208 is parallel with X-direction.Preferably, the thermal hole being communicated with manhole 206 can also be processed, when processing conditions allows, even each manhole 206 can be communicated with, thus further improving radiating effect.
In sum, these are only preferred embodiment of the present utility model, be not intended to limit protection domain of the present utility model.All within spirit of the present utility model and principle, any amendment done, equivalent replacement, improvement etc., all should be included within protection domain of the present utility model.

Claims (6)

1. one kind has the scolding tin frock of circular louvre, for the automatic tin soldering system of inductor, the winding (3) that described inductor comprises pedestal (1), is fixed on the circular magnetic core (2) on pedestal (1) and is wrapped on circular magnetic core; The two sides that pedestal (1) is provided with pin all have middle barrier (21), and the two sides not being provided with pin are provided with boss (23) and stuck point (22); It is characterized in that, the matrix (202) of this scolding tin frock is strip aluminium alloy plate, if the bearing of trend of this strip aluminium alloy plate is X-direction, plate thickness direction is Y-direction, and plate width direction is Z-direction;
Have a through groove at one of them long side of strip aluminium alloy plate, the brace table (203) of the layout inverted T shape of groove intermediate reach, brace table height is identical with depth of groove;
Gap is left between brace table (203) bottom surface and groove madial wall;
The length of brace table (203) end face Y-direction is less than the spacing of two stuck points (22) on the same end face of inductor, the width of brace table end face X-direction is greater than a and is less than or equal to 2a, wherein a is the thickness of inductor convex platform (23), makes inductor utilize its boss to be crossed between two adjacent supports platforms (203) by the distance designed between two brace tables; The height circular magnetic core (2) met in inductor of brace table Z-direction does not contact the bottom land of described groove;
The barrier locating slot (204) that equally spaced distribution matches with the middle barrier (21) of inductor on the cell wall of described groove, and distributing position is positioned in the middle of adjacent two brace tables (203);
Embed the circular magnet steel (205) for adsorbing the circular magnetic core (2) of inductor at the bottom land of described groove, and circular magnet steel (205) is positioned in the middle of adjacent two brace tables (203);
Strip aluminium alloy plate offers multiple manhole (206), the axis of manhole (206) is parallel with Y-direction; Offer in strip aluminium alloy plate inside and be communicated with described manhole and extraneous thermal hole (208), the plate that thermal hole (208) diameter is less than strip aluminium alloy plate is wide.
2. have the scolding tin frock of circular louvre as claimed in claim 1, it is characterized in that, strip aluminium alloy plate is offered in X direction two row's manholes, two row's manholes interlock position in z-direction.
3. have the scolding tin frock of circular louvre as claimed in claim 1, it is characterized in that, the gross area of all manholes accounts for more than 40% of strip aluminium alloy plate large area.
4. have the scolding tin frock of circular louvre as claimed in claim 1, it is characterized in that, for needing in the situation of the short side processing of scolding tin frock two with solder system joined components, the axis of described thermal hole (208) is parallel with Z-direction.
5. there is the scolding tin frock of circular louvre as claimed in claim 1, it is characterized in that, process the situation with solder system joined components for needing at the long side that scolding tin frock is relative with described groove, the axis of described thermal hole (208) is parallel with X-direction.
6. have the scolding tin frock of circular louvre as claimed in claim 5, it is characterized in that, this scolding tin frock comprises the thermal hole (208) being communicated with manhole (206) further.
CN201420811858.1U 2014-12-19 2014-12-19 A kind of scolding tin frock with circular louvre Expired - Fee Related CN204381609U (en)

Priority Applications (1)

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104625304A (en) * 2014-12-19 2015-05-20 贵阳高新金达电子科技有限公司 Tin soldering tool with round heat radiation holes

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104625304A (en) * 2014-12-19 2015-05-20 贵阳高新金达电子科技有限公司 Tin soldering tool with round heat radiation holes

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150610

Termination date: 20151219

EXPY Termination of patent right or utility model