CN205074641U - A revolution mechanic for wave -soldering - Google Patents

A revolution mechanic for wave -soldering Download PDF

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Publication number
CN205074641U
CN205074641U CN201520686441.1U CN201520686441U CN205074641U CN 205074641 U CN205074641 U CN 205074641U CN 201520686441 U CN201520686441 U CN 201520686441U CN 205074641 U CN205074641 U CN 205074641U
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China
Prior art keywords
soldering
wave
synchronous
rotational structure
drive unit
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CN201520686441.1U
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Chinese (zh)
Inventor
王大利
梁永聪
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Shenzhen Might Technology Co ltd
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Shenzhen Might Technology Co ltd
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Abstract

The utility model discloses a revolution mechanic for wave -soldering, it is including drive arrangement, supporting component, drive assembly and adsorption component, drive arrangement and drive assembly all install the supporting component on, adsorption component be used for adsorbing the circuit board of treating the operation, its with drive assembly link to each other, drive arrangement pass through drive assembly, drive adsorption component rotate. During the use, when the circuit plate current is gone into the rotary part top and is sensed, adsorb the circuit board above that through adsorption component, when detecting vacuum value after, the drive arrangement start -up, through drive assembly, the drive adsorption component rotate together, finally the angle of rotation of circuit board. This is novel, when avoiding manual operation, causes the damage of circuit board, or because handling with care of manual operation in -process causes the production cycle overlength. Through mechanized operation, more can time of guaranteeing and quality.

Description

A kind of rotational structure for wave-soldering
Technical field
The utility model relates to the technical field of wave-soldering, specifically, refers to a kind of rotational structure for wave-soldering.
Background technology
So-called wave-soldering, refer to the solder (terne metal) of fusing, the solder wave of designing requirement is become through electrodynamic pump or electromagnetic pump jet flow, also by being formed to solder pot nitrogen injection, make the printed board that components and parts are housed in advance by solder wave, realize the room machine of components and parts welding end or pin and printed board pad and the solder of electrical connection.
The flow process of wave-soldering is: inserted by element in corresponding component hole, pre-coated soldering flux, and preheating (temperature 90-100 DEG C, length 1-1.2m), cools after wave-soldering (220-240 DEG C), reexamines after excising unnecessary plug-in unit pin.
At present, it is substantially all manual operation that wave-soldering locates at circuit board and tool the process clamped, and because circuit board is general partially thin, manually all handles with care in the process of turning round of taking, and greatly postpones like this thus affect output on the production cycle.Simultaneously inconsistent the production subsequent handling of manual operation technological parameter also has certain influence, and the long-time easily fatigue of people's operation goes wrong and affects quality.
Utility model content
The utility model main purpose is to provide a kind of rotational structure for wave-soldering, and it can overcome existing defect, directly circuit board is adsorbed on the enterprising line operate of rotational structure.
For achieving the above object, this novel solution is as follows:
A kind of rotational structure for wave-soldering, it includes drive unit, supporting component, transmission component and absorbent module, described drive unit and transmission component are all installed on described supporting component, described absorbent module is for adsorbing circuit board to be operated, and it is connected with described transmission component; Described drive unit is by described transmission component, and the absorbent module described in drive is rotated.
Above-mentioned absorbent module, it includes rotating bottom board, vacuum adapter plate, sucker, suction pipe, described rotating bottom board is provided with one group of adsorption hole, described sucker is installed in described vacuum adapter plate, and described sucker is positioned at described adsorption hole just, a corresponding vacuum adapter plate of sucker and adsorption hole, the lower end of described sucker is connected with suction pipe.
Above-mentioned absorbent module, it also includes block further, and described block is located at one end of described rotating bottom board.
Above-mentioned transmission component, it includes Synchronous Transmission assembly, power transmission shaft, axle bed, swivel assemblies and rotating seat, described Synchronous Transmission assembly is connected with described drive unit, and described power transmission shaft to be synchronously connected with assembly with described, and it is located in described axle bed; Described axle bed is located on described swivel assemblies, and the upper end of described power transmission shaft is connected with described rotating seat.
Above-mentioned Synchronous Transmission assembly, it includes synchronous driving wheel, belt and synchronous follower, described synchronous driving wheel is connected with the output shaft of described drive unit, described belt sleeve is located on described synchronous driving wheel and synchronous follower, described power transmission shaft, it wears from described synchronous follower, and sets firmly with described synchronous follower.
Above-mentioned swivel assemblies, include swivel bearing base plate and one group of joint pin, described joint pin upper end is connected with described swivel bearing base plate, and lower end is connected with described supporting component.
Above-mentioned supporting component, it includes motor fixing plate, electric baseboard, after described motor fixing plate and drive unit are fixed, admittedly be locked in the lower surface of described electric baseboard.
Above-mentioned supporting component, it also includes stiffener further, and described stiffener is also fixedly arranged on the lower surface of described electric baseboard.
After adopting such scheme, during use, when sensed above circuit board flows into rotary part, by absorbent module by circuit board absorption thereon, after vacuum values being detected, drive unit starts, by transmission component, drive absorbent module to rotate together, the angle of final realizing circuit plate rotates.This is novel, when avoiding manual operation, causes the damage of circuit board, or due to handling with care in manual operation process, causes the production cycle long.By mechanized operation, more time and quality can be ensured.
Accompanying drawing explanation
Fig. 1 is the schematic perspective view of the utility model rotational structure;
Fig. 2 is side view of the present utility model.
Detailed description of the invention
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
Shown in figure 1,2, the utility model discloses a kind of rotational structure for wave-soldering, it includes drive unit 1, supporting component 2, transmission component 3 and absorbent module 4, wherein:
In the present embodiment, drive unit 1 is motor.
Supporting component 2, it includes motor fixing plate 21, electric baseboard 22 and stiffener 23, and after motor fixing plate 21 is fixing with motor 1, admittedly be locked in the lower surface of electric baseboard 22, stiffener 23 is also fixedly arranged on the lower surface of electric baseboard 22.
Transmission component 3, it includes Synchronous Transmission assembly 31, power transmission shaft 32, axle bed 33, swivel assemblies 34 and rotating seat 35, wherein:
In the present embodiment, Synchronous Transmission assembly 31, it includes synchronous driving wheel 311, belt 312 and synchronous follower 313, and synchronous driving wheel 311 is connected with the output shaft of motor, and belt 312 is set on synchronous driving wheel 311 and synchronous follower 313.Power transmission shaft 32, it wears from synchronous follower 313, and sets firmly with synchronous follower 313.
Swivel assemblies 34, includes swivel bearing base plate 341 and one group of joint pin 342, and electric baseboard 22 is linked together by joint pin 342 and swivel bearing base plate 341.Synchronous follower 313 is positioned at the space that swivel bearing base plate 341, joint pin 342 and electric baseboard 22 are formed just.
Axle bed 33 is provided with two, is respectively axle bed 331 and lower axle bed 332, and upper axle bed 331 plays a supportive role to power transmission shaft 32 respectively with lower axle bed 332, and lower axle bed 332 is located on the lower surface of electric baseboard 22.Upper axle bed 332 is located on swivel bearing base plate 341.The upper end of power transmission shaft 32 is connected with rotating seat 35.
Absorbent module 4, it includes rotating bottom board 41, vacuum adapter plate 42, sucker 43, suction pipe 44 and block 45, wherein:
Rotating bottom board 41, which is provided with one group of adsorption hole 411, and the upper end of rotating seat 35 and the lower surface of rotating bottom board 41 set firmly.
Sucker 43 is installed in vacuum adapter plate 42, and its adsorption head is arranged in adsorption hole 411 just, a corresponding vacuum adapter plate 42 of sucker 43 and adsorption hole 411.The lower end of sucker 43 is connected with suction pipe 44.
Block 45 is located at one end of rotating bottom board 41.
During use, when sensed above circuit board flows into rotary part, circuit board is adsorbed on to put and turns on base plate 41 by sucker 43, when detecting that vacuum values rear motor 1 rotates, its output drives synchronous driving wheel 311 to rotate, and drives synchronous follower 313 to rotate by belt 312, thus drives the power transmission shaft 32 set firmly with synchronous follower 313, power transmission shaft 32 driven rotary seat 35 and rotating bottom board 41 rotate together, and the angle of final realizing circuit plate rotates.
The above; be only the utility model preferably detailed description of the invention; but protection domain of the present utility model is not limited thereto; anyly be familiar with those skilled in the art in the technical scope that the utility model discloses; the change that can expect easily or replacement, all should be encompassed within protection domain of the present utility model.Therefore, protection domain of the present utility model should be as the criterion with the protection domain of claim.

Claims (8)

1. the rotational structure for wave-soldering, it is characterized in that: it includes drive unit, supporting component, transmission component and absorbent module, described drive unit and transmission component are all installed on described supporting component, described absorbent module is for adsorbing circuit board to be operated, and it is connected with described transmission component; Described drive unit is by described transmission component, and the absorbent module described in drive is rotated.
2. as claimed in claim 1 for the rotational structure of wave-soldering, it is characterized in that: described absorbent module, it includes rotating bottom board, vacuum adapter plate, sucker, suction pipe, described rotating bottom board is provided with one group of adsorption hole, described sucker is installed in described vacuum adapter plate, and described sucker is positioned at described adsorption hole just, a corresponding vacuum adapter plate of sucker and adsorption hole, the lower end of described sucker is connected with suction pipe.
3., as claimed in claim 2 for the rotational structure of wave-soldering, it is characterized in that: described absorbent module, it also includes block further, and described block is located at one end of described rotating bottom board.
4. the rotational structure for wave-soldering as described in claim 1,2 or 3, it is characterized in that: described transmission component, it includes Synchronous Transmission assembly, power transmission shaft, axle bed, swivel assemblies and rotating seat, described Synchronous Transmission assembly is connected with described drive unit, described power transmission shaft to be synchronously connected with assembly with described, and it is located in described axle bed; Described axle bed is located on described swivel assemblies, and the upper end of described power transmission shaft is connected with described rotating seat.
5. as claimed in claim 4 for the rotational structure of wave-soldering, it is characterized in that: described Synchronous Transmission assembly, it includes synchronous driving wheel, belt and synchronous follower, described synchronous driving wheel is connected with the output shaft of described drive unit, described belt sleeve is located on described synchronous driving wheel and synchronous follower, described power transmission shaft, it wears from described synchronous follower, and sets firmly with described synchronous follower.
6. as claimed in claim 4 for the rotational structure of wave-soldering, it is characterized in that: described swivel assemblies, include swivel bearing base plate and one group of joint pin, described joint pin upper end is connected with described swivel bearing base plate, and lower end is connected with described supporting component.
7. as claimed in claim 6 for the rotational structure of wave-soldering, it is characterized in that: described supporting component, it includes motor fixing plate, electric baseboard, after described motor fixing plate and drive unit are fixed, admittedly be locked in the lower surface of described electric baseboard.
8., as claimed in claim 7 for the rotational structure of wave-soldering, it is characterized in that: described supporting component, it also includes stiffener further, and described stiffener is also fixedly arranged on the lower surface of described electric baseboard.
CN201520686441.1U 2015-09-07 2015-09-07 A revolution mechanic for wave -soldering Active CN205074641U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520686441.1U CN205074641U (en) 2015-09-07 2015-09-07 A revolution mechanic for wave -soldering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520686441.1U CN205074641U (en) 2015-09-07 2015-09-07 A revolution mechanic for wave -soldering

Publications (1)

Publication Number Publication Date
CN205074641U true CN205074641U (en) 2016-03-09

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106735883A (en) * 2017-02-10 2017-05-31 济南奥图自动化股份有限公司 A kind of laser assembly solder whirligig
CN114952022A (en) * 2022-06-15 2022-08-30 汨罗市华雅工艺美术品有限公司 High automatic sculpture equipment of security

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106735883A (en) * 2017-02-10 2017-05-31 济南奥图自动化股份有限公司 A kind of laser assembly solder whirligig
CN106735883B (en) * 2017-02-10 2018-06-01 济南奥图自动化股份有限公司 A kind of laser assembly solder rotating device
CN114952022A (en) * 2022-06-15 2022-08-30 汨罗市华雅工艺美术品有限公司 High automatic sculpture equipment of security

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