CN217047515U - Synchronous conveying equipment for ultrasonic flexible welding die - Google Patents

Synchronous conveying equipment for ultrasonic flexible welding die Download PDF

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Publication number
CN217047515U
CN217047515U CN202123120012.2U CN202123120012U CN217047515U CN 217047515 U CN217047515 U CN 217047515U CN 202123120012 U CN202123120012 U CN 202123120012U CN 217047515 U CN217047515 U CN 217047515U
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China
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welding
mould
die
synchronous
processing
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CN202123120012.2U
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Chinese (zh)
Inventor
刘凤
侯先峰
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Suzhou Kaierbo Technology Co ltd
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Suzhou Keber Precision Machinery Co Ltd
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Abstract

The utility model discloses a synchronous conveying device for ultrasonic flexible welding dies, which comprises a die processing conveying frame and a die storage conveying frame, wherein the die processing conveying frame and the die storage conveying frame are used for conveying welding dies; the mould processing conveying frame is provided with a synchronous dragging transposition mechanism and a plurality of welding processing stations, a mould locking fixing mechanism is arranged on each welding processing station, the synchronous dragging transposition mechanism drives a plurality of welding moulds on the mould processing conveying frame to synchronously move, and the welding moulds are locked by the mould locking fixing mechanism after moving to the welding processing stations; according to the scheme, the synchronous dragging transposition mechanism is designed on the die processing conveying frame, so that a plurality of welding die conversion stations can be dragged synchronously, and the processing efficiency is ensured; the die storage and conveying frame can be used as a die warehouse for storing welding dies and ensuring that the welding dies can be taken in time.

Description

Synchronous conveying equipment for ultrasonic flexible welding die
Technical Field
The utility model relates to a synchronous conveying equipment of ultrasonic flexible welding mould belongs to ultrasonic welding equipment technical field.
Background
Most of the existing ultrasonic welding equipment is processed by a single machine, and after the processing is finished, workpieces or dies are assembled and disassembled manually, but the processing method has low efficiency and cannot meet the requirement of mass production of automobile parts; in order to improve the processing efficiency, ultrasonic welding is gradually developed into a multi-station production line form from single welding equipment; in order to avoid low efficiency and poor precision caused by continuous loading and unloading of workpieces, when stations are switched, the workpieces need to move together with the die, the weight of the die is large, and a common conveying device cannot convey and process the welding die quickly and efficiently.
SUMMERY OF THE UTILITY MODEL
To the technical problem who exists above-mentioned, the utility model aims at: a synchronous conveying device for an ultrasonic flexible welding die is provided.
The technical solution of the utility model is realized like this: the synchronous conveying equipment for the ultrasonic flexible welding mould comprises a mould processing conveying frame and a mould storage conveying frame, wherein the mould processing conveying frame and the mould storage conveying frame are used for conveying the welding mould; the mould processing conveying frame is provided with a synchronous dragging transposition mechanism and a plurality of welding processing stations, a mould locking fixing mechanism is arranged on each welding processing station, the synchronous dragging transposition mechanism drives a plurality of welding moulds on the mould processing conveying frame to move synchronously, and the welding moulds are locked by the mould locking fixing mechanism after moving to the welding processing stations.
Preferably, still be provided with the sprocket on the mould processing carriage and hold in the palm and carry the subassembly, the sprocket holds in the palm and carries subassembly and welding mould cooperation.
Preferably, the synchronous dragging transposition mechanism comprises a transposition driving component, a driving moving component, a driven moving component, a pushing component and a follow-up connecting piece; the driving moving assembly, the driven moving assembly and the pushing assembly are arranged on the die machining conveying frame in a sliding mode, the driven moving assembly is connected with the driving moving assembly through a follow-up connecting piece, and the pushing assembly is connected with the driving moving assembly or the driven moving assembly through the follow-up connecting piece; the transposition driving assembly is matched with the active moving assembly to drive the active moving assembly to slide on the die machining conveying frame, the active moving assembly and the driven moving assembly drive the welding die to enter and exit from the welding machining stations, and the pushing assembly sends out the welding die on the last welding machining station from the die machining conveying frame.
Preferably, the transposition driving assembly comprises a transposition driving motor and a synchronous belt, the transposition driving motor drives the synchronous belt to run through a chain and a transmission shaft, and the synchronous belt drives the driving moving assembly to slide on the die processing conveying frame.
Preferably, be provided with the elongated slide rail on the mould processing carriage, initiative removal subassembly, driven removal subassembly and propelling movement subassembly all contain sliding seat and mode locking device, sliding seat and elongated slide rail sliding fit, and mode locking device installs on the sliding seat, and mode locking device is used for cooperating with the welding mould.
Preferably, the follow-up connecting piece is a connecting rod, and the end part of the follow-up connecting piece is installed on the sliding seat.
Because of the application of above-mentioned technical scheme, compared with the prior art, the utility model has the following advantage:
the utility model discloses a synchronous conveying device of ultrasonic flexible welding mould, which designs a mould processing conveying frame and a mould storage conveying frame for conveying the welding mould; a synchronous dragging transposition mechanism is designed on the die processing and conveying frame, so that a plurality of welding die conversion stations can be dragged synchronously, and the processing efficiency is ensured; the die storage and conveying frame can be used as a die warehouse for storing welding dies and ensuring that the welding dies can be taken in time.
Drawings
The technical scheme of the utility model is further explained by combining the attached drawings as follows:
FIG. 1 is a schematic view of a synchronous conveying device for an ultrasonic flexible welding mold according to the present invention;
FIG. 2 is an enlarged view at A of FIG. 1;
fig. 3 is a schematic three-dimensional structure diagram of the synchronous dragging transposition mechanism of the present invention;
FIG. 4 is an enlarged view of FIG. 3 at B;
FIG. 5 is an enlarged view at C of FIG. 3;
fig. 6 is an enlarged view of fig. 3 at D.
Detailed Description
The present invention will be described with reference to the accompanying drawings.
As shown in the attached drawing 1, the ultrasonic flexible welding mould synchronous conveying equipment comprises a mould processing conveying frame 11 and a mould storage conveying frame 12, wherein the mould processing conveying frame 11 and the mould storage conveying frame 12 are used for conveying a welding mould, and the mould processing conveying frame 11 is located above the mould storage conveying frame 12.
The mold processing conveying frame 11 is provided with a synchronous dragging transposition mechanism and a plurality of welding processing stations, each welding processing station is provided with a mold locking fixing mechanism 13, and the structure and the working principle of the mold locking fixing mechanism 13 can refer to the 'mold positioning and locking mechanism' of patent CN201922395180.9 applied by the applicant in the future; the synchronous dragging and transposition mechanism drives a plurality of welding molds on the mold machining conveying frame 11 to move synchronously, and the welding molds are locked by the mold locking and fixing mechanism 13 after moving to the welding machining stations.
As shown in fig. 2-6, the die processing carriage 11 is provided with a sprocket carrying assembly 14 and elongated slide rails 15 on both left and right sides thereof, the sprocket carrying assembly 14 is engaged with the left and right sides of the welding die for facilitating the movement of the welding die on the die processing carriage 11, and the length of the elongated slide rails 15 is substantially the same as that of the die processing carriage 11.
The synchronous dragging transposition mechanism comprises a transposition driving component, a driving moving component, a driven moving component, a pushing component and a follow-up connecting piece 40; the transposition driving assembly comprises a transposition driving motor 41 and a synchronous belt 42, and the transposition driving motor 41 drives the synchronous belt 42 to run through a chain and a transmission shaft; all be provided with corresponding initiative removal subassembly, driven removal subassembly and propelling movement subassembly on the left and right sides of mould processing carriage 11 to improve the mobility stability when dragging the welding mould.
The driving moving assembly, the driven moving assembly and the pushing assembly respectively comprise a sliding seat 43 and a mold locking device 44, the sliding seat 43 is in sliding fit with the long sliding rail 15, the mold locking device 44 is installed on the sliding seat 43, the mold locking device 44 is used for being matched with a welding mold, and the mold locking device 44 can adopt a telescopic lock tongue or a rotary lock tongue and other structures; the long slide rails 15 are adopted to ensure the straightness of the main carrying assembly, the auxiliary carrying assembly and the blanking assembly during synchronous movement.
In this embodiment, three stations are taken as an example, the three stations are sequentially and equidistantly arranged on the mold processing conveying frame 11, the active moving component is located near a middle station of the mold processing conveying frame 11, a sliding seat 43 of the active moving component is clamped on a synchronous belt 42 through a clamping plate and other components, the running direction of the synchronous belt 42 is parallel to the elongated sliding rail 15, so that the transposition driving motor 41 can drive the active moving component to move through the synchronous belt 42, a set of driven moving components is respectively arranged on the front side and the rear side of the active moving component, the distances between the two sets of driven moving components and the active moving component are equal, the two sets of driven moving components are both connected with the active moving component through a follow-up connecting part 40, and the pushing component is connected with the driven moving component on the rear side of the active moving component through a follow-up connecting part 40.
The following connecting piece 40 between the driven moving assembly and the driving moving assembly is a long connecting rod, the following connecting piece 40 between the pushing assembly and the driven moving assembly is a short connecting rod, and the end part of the connecting rod is fixedly installed on the sliding seat 43.
During operation, the driving moving assembly and the driven moving assembly are matched with the front end of the moving direction of the welding mold, and the pushing assembly is matched with the rear end of the moving direction of the welding mold.
When station conversion is performed, the transposition driving motor 41 drives the driving moving component to move forward by a distance of one station interval, and the driven moving component and the pushing component move synchronously with the driving moving component; the driven moving component positioned at the front side of the driving moving component is matched with a welding mould sent by an upper mould trolley or a mould warehouse at the front end of the mould processing and conveying frame 11; the active moving assembly is matched with a welding mould on a first station; the driven moving assembly positioned at the rear side of the driving moving assembly is matched with the welding mould on the second station; the pushing assembly is matched with a welding mould on a third station; then, the transposition driving motor 41 drives the active moving component to move backward by the distance of one station pitch, and all the welding dies can be driven to synchronously move by the distance of one station pitch.
The shift driving motor 41 is continuously rotated forward and backward, so that the above-mentioned actions can be repeated, and the operation of the synchronous belt 42 is converted into the forward and backward stepping action of the sliding seat.
The welding mould on the third station is sent out from the mould processing conveying frame 11 by the pushing assembly and is received by equipment at the rear end of the mould processing conveying frame 11, the equipment can be a mould changing trolley or a mould warehouse lifting mechanism and the like, and the welding mould can be sent into the mould storage conveying frame 12 by adopting the lifting mechanism for storage.
As shown in fig. 1, a mold storage and conveying motor 16 and a plurality of mold storage locations are arranged on the mold storage and conveying frame 12, and each mold storage location is provided with a mold storage sensing device 17 and a mold storage stopping device 18; the die storage and conveying motor 16 drives the welding dies to move on the die storage and conveying frame 12 through conveying mechanisms such as a speed chain, after the die storage and sensing device 17 detects the welding dies, all the storage stopping devices 18 are unlocked firstly, the die storage and conveying motor 16 drives all the dies to move backwards to a storage position, and then the die storage stopping devices 18 are controlled to stop and position the welding dies.
The above embodiments are only for illustrating the technical concept and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and the protection scope of the present invention can not be limited thereby, and all equivalent changes or modifications made according to the spirit of the present invention should be covered by the protection scope of the present invention.

Claims (6)

1. The utility model provides an ultrasonic flexible welding mould synchronous conveyor which characterized in that: the welding mould storage and transportation device comprises a mould processing and transportation frame (11) and a mould storage and transportation frame (12), wherein the mould processing and transportation frame (11) and the mould storage and transportation frame (12) are used for transporting welding moulds; the mould processing conveying frame (11) is provided with a synchronous dragging transposition mechanism and a plurality of welding processing stations, a mould locking fixing mechanism (13) is arranged on each welding processing station, the synchronous dragging transposition mechanism drives a plurality of welding moulds on the mould processing conveying frame (11) to synchronously move, and the welding moulds are locked by the mould locking fixing mechanism (13) after moving to the welding processing stations.
2. The ultrasonic flexible welding die synchronous conveying device according to claim 1, characterized in that: the mould processing conveying frame (11) is further provided with a chain wheel carrying assembly (14), and the chain wheel carrying assembly (14) is matched with the welding mould.
3. The ultrasonic flexible welding die synchronous conveying device according to claim 1, characterized in that: the synchronous dragging transposition mechanism comprises a transposition driving component, a driving moving component, a driven moving component, a pushing component and a follow-up connecting piece (40); the driving moving assembly, the driven moving assembly and the pushing assembly are arranged on the die machining conveying frame (11) in a sliding mode, the driven moving assembly is connected with the driving moving assembly through a follow-up connecting piece (40), and the pushing assembly is connected with the driving moving assembly or the driven moving assembly through the follow-up connecting piece (40); the transposition driving assembly is matched with the active moving assembly to drive the active moving assembly to slide on the die machining conveying frame (11), the active moving assembly and the driven moving assembly drive the welding die to enter and exit from the welding machining stations, and the pushing assembly sends out the welding die on the last welding machining station from the die machining conveying frame (11).
4. The ultrasonic flexible welding mold synchronous conveying device according to claim 3, characterized in that: the transposition driving assembly comprises a transposition driving motor (41) and a synchronous belt (42), the transposition driving motor (41) drives the synchronous belt (42) to rotate through a chain and a transmission shaft, and the synchronous belt (42) drives the driving moving assembly to slide on the die machining conveying frame (11).
5. The ultrasonic flexible welding mold synchronous conveying device according to claim 3, characterized in that: be provided with elongated slide rail (15) on mould processing carriage (11), initiative removal subassembly, driven removal subassembly and propelling movement subassembly all contain sliding seat (43) and mode locking device (44), sliding seat (43) and elongated slide rail (15) sliding fit, and mode locking device (44) are installed on sliding seat (43), and mode locking device (44) are used for cooperating with the welding mould.
6. The ultrasonic flexible welding mold synchronous conveying device according to claim 5, characterized in that: the follow-up connecting piece (40) is a connecting rod, and the end part of the follow-up connecting piece (40) is arranged on the sliding seat (43).
CN202123120012.2U 2021-12-13 2021-12-13 Synchronous conveying equipment for ultrasonic flexible welding die Active CN217047515U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123120012.2U CN217047515U (en) 2021-12-13 2021-12-13 Synchronous conveying equipment for ultrasonic flexible welding die

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123120012.2U CN217047515U (en) 2021-12-13 2021-12-13 Synchronous conveying equipment for ultrasonic flexible welding die

Publications (1)

Publication Number Publication Date
CN217047515U true CN217047515U (en) 2022-07-26

Family

ID=82477772

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123120012.2U Active CN217047515U (en) 2021-12-13 2021-12-13 Synchronous conveying equipment for ultrasonic flexible welding die

Country Status (1)

Country Link
CN (1) CN217047515U (en)

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Address after: 215000 in Fumin Industrial Park (kelbo Industrial Park), north of Dongshan Avenue, Linhu Town, Wuzhong District, Suzhou City, Jiangsu Province

Patentee after: Suzhou Kaierbo Technology Co.,Ltd.

Address before: 215000 in Fumin Industrial Park (kelbo Industrial Park), north of Dongshan Avenue, Linhu Town, Wuzhong District, Suzhou City, Jiangsu Province

Patentee before: SUZHOU KEBER PRECISION MACHINERY Co.,Ltd.