CN107314874B - Intelligent pulling and transferring material air-tightness detection system of automatic fuel pump assembly line - Google Patents

Intelligent pulling and transferring material air-tightness detection system of automatic fuel pump assembly line Download PDF

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Publication number
CN107314874B
CN107314874B CN201710699960.5A CN201710699960A CN107314874B CN 107314874 B CN107314874 B CN 107314874B CN 201710699960 A CN201710699960 A CN 201710699960A CN 107314874 B CN107314874 B CN 107314874B
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left end
detection
airtight
air tightness
tightness detection
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CN107314874A (en
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徐正方
张秋阁
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Hangzhou Tech Sun Machinery Co ltd
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Hangzhou Tech Sun Machinery Co ltd
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M3/00Investigating fluid-tightness of structures
    • G01M3/02Investigating fluid-tightness of structures by using fluid or vacuum
    • G01M3/26Investigating fluid-tightness of structures by using fluid or vacuum by measuring rate of loss or gain of fluid, e.g. by pressure-responsive devices, by flow detectors

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Examining Or Testing Airtightness (AREA)

Abstract

The invention relates to an automatic assembly line, in particular to an intelligent pulling and transferring material air-tightness detection system of an automatic assembly line of a fuel pump. Compact structure, degree of automation is high, reduces manual operation and use cost, promotes product quality.

Description

Intelligent pulling and transferring material air-tightness detection system of automatic fuel pump assembly line
Technical Field
The invention relates to an automatic assembly line, in particular to an intelligent pulling and transferring material air-tight detection system of an automatic assembly line of a fuel pump.
Background
The assembly in the prior art is manual assembly, the manual assembly efficiency is low, the precision cannot be improved, and the product quality is greatly limited.
Although some assembled equipment exists in the prior art, the adaptability is not high, and the existing requirements cannot be met.
Disclosure of Invention
The invention mainly solves the defects in the prior art, and provides the intelligent pulling and transferring material air-tightness detection system of the automatic assembly line of the fuel pump, which has high automation degree and strong structure compactness, effectively improves the assembly speed and improves the assembly quality of products.
The technical problem of the invention is mainly solved by the following technical scheme:
an intelligent pulling and transferring material airtightness detection system of an automatic fuel pump assembly line comprises a rack, wherein a left end airtightness detection mechanism and a left end airtightness detection and transferring mechanism are arranged on the rack;
the left-end air tightness detection mechanism comprises a left-end leakage detection air tightness detection assembly, a left-end flow air tightness detection assembly and a left-end air tightness hot melting assembly, and the left-end leakage detection air tightness detection assembly, the left-end flow air tightness detection assembly and the left-end air tightness hot melting assembly are sequentially distributed at intervals from left to right;
the left end leakage detection airtight detection component and the left end flow airtight detection component are equal in structure; the left end leakage detection airtight detection component is connected with a leakage detector, and the left end flow airtight detection component is connected with a flow meter;
the left end leakage detection air tightness detection assembly comprises a left end air tightness detection frame, a left end air tightness detection air tightness box capable of moving up and down is arranged in the left end air tightness detection frame, a left end air tightness detection head and a left end air tightness guide block are arranged at the bottom of the left end air tightness detection air tightness box, and a left end air tightness detection jig which corresponds to the left end air tightness detection head in an up-and-down mode is arranged below the left end air tightness detection head;
a left end air tightness detection hole is formed in a left end air tightness detection jig in the left end flow air tightness detection assembly;
the left-end airtight hot melting assembly comprises a left-end airtight sealing frame, a left-end airtight sealing guide cylinder which moves up and down is arranged in the left-end airtight sealing frame, a left-end airtight sealing heating rod which extends downwards is arranged at the bottom of the left-end airtight sealing guide cylinder, and a left-end airtight sealing jig which corresponds to the left-end airtight sealing heating rod up and down is arranged below the left-end airtight sealing heating rod;
the airtight left end that moves the material mechanism include that the left end of displaceable is airtight to be detected and moves the material support, the airtight left end that detects the outer end that moves the material support and can make progress the displacement airtight left end that detects and move the material upper mounting plate, the airtight left end that detects to move the material upper mounting plate on be equipped with a plurality of left end airtight that are equally divide the form and detect and move the material clamping jaw, the airtight upper portion that detects that moves the material support of left end be equipped with and promote the airtight left end that detects to move the material upper mounting plate and carry out the displacement airtight left end that detects and move the material diaphragm.
Preferably, a left end air-tightness detection cylinder is arranged at the upper part of the left end air-tightness detection frame, a left end air-tightness detection connection plate which can move up and down through the left end air-tightness detection cylinder is arranged in the left end air-tightness detection frame, a left end air-tightness detection air-tightness box which can move along with the left end air-tightness detection connection plate is arranged below the left end air-tightness detection connection plate, the left end air-tightness detection air-tightness box can move along the left end air-tightness detection connection plate through a left end air-tightness detection optical axis, and a left end air-tightness detection return spring is sleeved outside the left end air-tightness detection optical axis;
the upper part of the left-end airtight sealing frame is provided with a left-end airtight sealing cylinder which drives the left-end airtight sealing guide cylinder to move up and down;
a left end air tightness detection material shifting transverse cylinder capable of pushing the left end air tightness detection material shifting support to shift is arranged below the left end air tightness detection material shifting support, a left end air tightness detection material shifting support is arranged on the upper portion of the left end air tightness detection material shifting transverse plate, a left end air tightness detection material shifting upper plate cylinder capable of lifting the left end air tightness detection material shifting upper plate is arranged in the left end air tightness detection material shifting support, a left end air tightness detection material shifting optical shaft in sliding connection with the left end air tightness detection material shifting upper plate is arranged in the left end air tightness detection material shifting support, a left end air tightness detection material shifting guide shaft support in sliding connection with the left end air tightness detection material shifting optical shaft is arranged in the upper portion of the left end air tightness detection material shifting upper plate, and a left end air tightness detection material shifting fixing ring in blocking connection with the upper portion of the left end air tightness detection material shifting guide shaft support is arranged at the upper end of the left end air tightness detection material shifting optical shaft; the left end airtight detection move and be equipped with the left end airtight detection that can promote the left end airtight detection and move the material diaphragm and move the material cylinder in the material support, the left end airtight detection moves the material clamping jaw and moves material clamping jaw cylinder through the airtight detection of left end and snatch.
The working principle is as follows: in the air tightness detection station, the air cylinder acts to stretch the air tightness detection head into the accessory to complete air tightness detection; the material grabbing mechanism acts to send the accessories into the sealing mechanism, the air cylinder in the sealing mechanism moves, and the heating rod extends into the accessories to complete the closing-up action.
Therefore, the intelligent pulling and transferring material air tightness detection system of the automatic fuel pump assembly line is compact in structure and high in automation degree, reduces the manual operation and use cost, and improves the product quality.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic structural diagram of a left end air-tightness detecting mechanism according to the present invention;
FIG. 3 is a schematic diagram of the left-end leak detection and left-end flow rate airtightness detection assembly of FIG. 2;
FIG. 4 is a side view schematic of the structure of FIG. 3;
FIG. 5 is a schematic structural diagram of the left-end airtight detection material-moving mechanism in the present invention.
Detailed Description
The technical scheme of the invention is further specifically described by the following embodiments and the accompanying drawings.
Example 1: as shown in fig. 1, fig. 2, fig. 3, fig. 4 and fig. 5, an intelligent pulling and transferring material airtightness detection system for an automatic assembly line of a fuel pump comprises a rack 3, wherein a left end airtightness detection mechanism 16 and a left end airtightness detection and transferring mechanism 17 are arranged on the rack 3;
the left end airtight detection mechanism 16 comprises a left end leakage detection airtight detection assembly 159, a left end flow airtight detection assembly 160 and a left end airtight hot melting assembly 161, wherein the left end leakage detection airtight detection assembly 159, the left end flow airtight detection assembly 160 and the left end airtight hot melting assembly 161 are distributed at intervals from left to right in sequence;
the left-end leakage detection airtight detection component 159 and the left-end flow airtight detection component 160 have the same structure; the left end leakage detection airtight detection component 159 is connected with a leakage detector, and the left end flow airtight detection component 160 is connected with a flow meter;
the left-end leakage detection airtightness detection assembly 159 comprises a left-end airtightness detection frame 162, a left-end airtightness detection airtightness box 163 which can move up and down is arranged in the left-end airtightness detection frame 162, a left-end airtightness detection head 164 and a left-end airtightness guide block 165 are arranged at the bottom of the left-end airtightness detection airtightness box 163, and a left-end airtightness detection jig 166 which vertically corresponds to the left-end airtightness detection head 164 is arranged below the left-end airtightness detection head 164;
a left end airtight detection hole 167 is formed in the left end airtight detection jig in the left end flow airtight detection assembly 160;
the left-end airtight hot melting assembly 161 comprises a left-end airtight sealing frame 168, a left-end airtight sealing guide cylinder 169 which moves up and down is arranged in the left-end airtight sealing frame 168, a left-end airtight sealing heating rod 170 which extends downwards is arranged at the bottom of the left-end airtight sealing guide cylinder 169, and a left-end airtight sealing jig 171 which corresponds to the left-end airtight sealing heating rod 170 in an up-and-down manner is arranged below the left-end airtight sealing heating rod 170;
left end airtight detection move material mechanism 17 including the airtight left end that can displace and detect and move material support 172, the airtight left end that detects that the outer end that moves material support 172 can upwards displace of left end airtight detection move material upper mounting plate 173, the airtight left end that detects to move material upper mounting plate 173 on be equipped with a plurality of left end airtight detections that are equally divide the form move material clamping jaw 174, the airtight upper portion that detects to move material support 172 of left end be equipped with and can promote the airtight left end that detects to move material upper mounting plate 173 and carry out the displacement airtight left end that detects to move material diaphragm 175.
A left end air tightness detection cylinder 479 is arranged at the upper part of the left end air tightness detection frame 162, a left end air tightness detection connection plate 480 which can move up and down through the left end air tightness detection cylinder 479 is arranged in the left end air tightness detection frame 162, a left end air tightness detection air tightness box 163 which can move along with the left end air tightness detection connection plate 480 is arranged below the left end air tightness detection connection plate 480, the left end air tightness detection air tightness box 163 can move along the left end air tightness detection connection plate 480 through a left end air tightness detection optical axis 481, and a left end air tightness detection return spring 482 is sleeved outside the left end air tightness detection optical axis 481;
a left end airtight sealing cylinder 483 for driving the left end airtight sealing guide cylinder 169 to move up and down is arranged at the upper part of the left end airtight sealing frame 168;
a left end airtight detection material shifting transverse cylinder 484 capable of pushing the left end airtight detection material shifting bracket 172 to shift is arranged below the left end airtight detection material shifting bracket 172, a left end airtight detection material shifting support 485 is arranged above the left end airtight detection material shifting transverse plate 175, a left end airtight detection material shifting upper plate cylinder 486 capable of lifting the left end airtight detection material shifting upper plate 173 is arranged in the left end airtight detection material shifting support 485, a left end airtight detection material shifting optical axis 487 in sliding connection with the left end airtight detection material shifting upper plate 173 is arranged in the left end airtight detection material shifting bracket 172, a left end airtight detection material shifting guide seat 488 in sliding connection with the left end airtight detection material shifting optical axis 487 is arranged above the left end airtight detection material shifting upper plate 173, and a left end airtight detection material shifting fixing ring 489 connected with a blocking part on the left end airtight detection material shifting guide seat is arranged at the upper end of the left end airtight detection material shifting optical axis 487; the left end airtight detection material moving support 172 is provided with a left end airtight detection material moving cylinder 490 capable of pushing the left end airtight detection material moving transverse plate 175, and the left end airtight detection material moving clamping jaw 174 performs grabbing through a left end airtight detection material moving clamping jaw cylinder 491.

Claims (2)

1. The utility model provides a fuel pump automatic assembly line's intelligent pulling is moved and is expected airtight detecting system which characterized in that: the device comprises a rack (3), wherein a left-end air tightness detection mechanism (16) and a left-end air tightness detection material moving mechanism (17) are arranged on the rack (3);
the left end airtight detection mechanism (16) comprises a left end leakage detection airtight detection assembly (159), a left end flow airtight detection assembly (160) and a left end airtight hot melting assembly (161), wherein the left end leakage detection airtight detection assembly (159), the left end flow airtight detection assembly (160) and the left end airtight hot melting assembly (161) are sequentially distributed at intervals from left to right;
the left end leakage detection airtight detection component (159) and the left end flow airtight detection component (160) are equal in structure; the left end leakage detection airtight detection component (159) is connected with a leakage detector, and the left end flow airtight detection component (160) is connected with a flow meter;
the left end leakage detection air tightness detection assembly (159) comprises a left end air tightness detection frame (162), a left end air tightness detection air tightness box (163) which can move up and down is arranged in the left end air tightness detection frame (162), a left end air tightness detection head (164) and a left end air tightness guide block (165) are arranged at the bottom of the left end air tightness detection air tightness box (163), and a left end air tightness detection jig (166) which vertically corresponds to the left end air tightness detection head (164) is arranged below the left end air tightness detection head (164);
a left end air tightness detection hole (167) is formed in a left end air tightness detection jig in the left end flow air tightness detection assembly (160);
the left-end airtight hot-melting assembly (161) comprises a left-end airtight sealing frame (168), a left-end airtight sealing guide cylinder (169) which moves up and down is arranged in the left-end airtight sealing frame (168), a left-end airtight sealing heating rod (170) which extends downwards is arranged at the bottom of the left-end airtight sealing guide cylinder (169), and a left-end airtight sealing jig (171) which vertically corresponds to the left-end airtight sealing heating rod (170) is arranged below the left-end airtight sealing heating rod (170);
left end airtight detection move material mechanism (17) including the airtight left end that can displace detect and move material support (172), the airtight left end that detects the outer end that moves material support (172) can upwards displace of left end airtight detection move material upper mounting plate (173), the airtight left end that detects to move material upper mounting plate (173) on be equipped with a plurality of left end airtight detections that are the equant form move material clamping jaw (174), the airtight upper portion that moves material support (172) that detects of left end be equipped with and promote the airtight left end that detects and move material upper mounting plate (173) and carry out the airtight left end that displaces and detect and move material diaphragm (175).
2. The intelligent pulling and transferring material airtightness detection system of the automatic fuel pump assembly line according to claim 1, wherein: the air tightness detection device is characterized in that a left end air tightness detection cylinder (479) is arranged at the upper part of the left end air tightness detection frame (162), a left end air tightness detection connection plate (480) which can move up and down through the left end air tightness detection cylinder (479) is arranged in the left end air tightness detection frame (162), a left end air tightness detection air tightness box (163) which can move along with the left end air tightness detection connection plate (480) is arranged below the left end air tightness detection connection plate (480), the left end air tightness detection air tightness box (163) can move along the left end air tightness detection connection plate (480) through a left end air tightness detection optical axis (481), and a left end air tightness detection return spring (482) is sleeved outside the left end air tightness detection optical axis (481);
the upper part of the left end airtight sealing frame (168) is provided with a left end airtight sealing cylinder (483) which drives the left end airtight sealing guide cylinder (169) to move up and down;
a left end airtight detection material transferring traversing cylinder (484) capable of pushing the left end airtight detection material transferring bracket (172) to displace is arranged below the left end airtight detection material transferring bracket (172), a left end airtight detection material transferring support (485) is arranged above the left end airtight detection material transferring transverse plate (175), a left end airtight detection material transferring upper plate cylinder (486) capable of lifting the left end airtight detection material transferring upper plate (173) is arranged in the left end airtight detection material transferring support (485), a left end airtight detection material transferring optical axis (487) in sliding connection with the left end airtight detection material transferring upper plate (173) is arranged in the left end airtight detection material transferring bracket (172), a left end airtight detection material transferring guide support (488) in sliding connection with the left end airtight detection material transferring optical axis (487) is arranged in the upper part of the left end airtight detection material transferring upper plate (173), and a left end airtight detection material transferring guide retaining ring (488) in sliding connection with the left end airtight detection material transferring guide support (488) is arranged at the upper end of the left end airtight detection material transferring optical axis (488); left end airtight detection move material support (172) in be equipped with the left end airtight detection that can promote left end airtight detection and move material diaphragm (175) and move material cylinder (490), left end airtight detection moves material clamping jaw (174) and moves material clamping jaw cylinder (491) through left end airtight detection and snatch.
CN201710699960.5A 2017-08-16 2017-08-16 Intelligent pulling and transferring material air-tightness detection system of automatic fuel pump assembly line Active CN107314874B (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05293726A (en) * 1992-04-23 1993-11-09 Canon Inc Assembling device for ink jet head
CN1951844A (en) * 2006-11-10 2007-04-25 冯方军 Full-automatic solar heat-collecting tube sealing machine
CN101201289A (en) * 2006-12-13 2008-06-18 上海恒谊制药设备有限公司 Device for on-line detecting airtightness of bottle seal
CN104229186A (en) * 2013-06-20 2014-12-24 上海精汇包装设备有限公司 Vacuum packaging system
CN106768662A (en) * 2017-01-03 2017-05-31 东莞理工学院 A kind of engine cylinder air-tightness detection machine that can realize automation docking
CN207123367U (en) * 2017-08-16 2018-03-20 杭州泰尚机械有限公司 Transfer material air tightness detecting system is pulled out in a kind of intellectuality of fuel pump automatic assembly line

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05293726A (en) * 1992-04-23 1993-11-09 Canon Inc Assembling device for ink jet head
CN1951844A (en) * 2006-11-10 2007-04-25 冯方军 Full-automatic solar heat-collecting tube sealing machine
CN101201289A (en) * 2006-12-13 2008-06-18 上海恒谊制药设备有限公司 Device for on-line detecting airtightness of bottle seal
CN104229186A (en) * 2013-06-20 2014-12-24 上海精汇包装设备有限公司 Vacuum packaging system
CN106768662A (en) * 2017-01-03 2017-05-31 东莞理工学院 A kind of engine cylinder air-tightness detection machine that can realize automation docking
CN207123367U (en) * 2017-08-16 2018-03-20 杭州泰尚机械有限公司 Transfer material air tightness detecting system is pulled out in a kind of intellectuality of fuel pump automatic assembly line

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