CN212858286U - Automatic welding mechanism - Google Patents
Automatic welding mechanism Download PDFInfo
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- CN212858286U CN212858286U CN202021879244.9U CN202021879244U CN212858286U CN 212858286 U CN212858286 U CN 212858286U CN 202021879244 U CN202021879244 U CN 202021879244U CN 212858286 U CN212858286 U CN 212858286U
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Abstract
The utility model discloses an automatic welding mechanism, include: a carrier conveying line; and a welding assembly in sliding connection with the carrier conveying line; wherein, the welding subassembly is equipped with 2 groups at least, just the welding subassembly extends X axle direction regular array, the welding subassembly includes: an L-shaped connecting plate; the detection buffer assembly is fixedly connected to the bottom end of the L-shaped connecting plate; the heat insulation assembly is fixedly connected with the detection buffer assembly; and the welding head device is fixedly connected with the heat insulation assembly through the connecting assembly. The utility model has the advantages of simple structure, easily operation, the equipment of the spare part of being convenient for, change and maintenance are equipped with a plurality of welding subassemblies simultaneously and carry out welding operation, have improved welding efficiency greatly, have reduced manufacturing cost, have wide market using value's beneficial effect.
Description
Technical Field
The utility model relates to a nonstandard automation. More specifically, the utility model relates to an automatic welding mechanism.
Background
The non-standard automatic equipment definition is the user-customized, user-unique and non-market-circulation automatic system integrated equipment, is assembled by adopting unit equipment manufactured according to the unified industry standard and specification issued by the state, and is equipment developed, designed and manufactured according to the application requirements of customers. Different customers have different technological requirements.
Automatic welding mechanism is a high automatic machine, and among the prior art, welding mechanism's structure is complicated, the equipment of the spare part of being not convenient for, maintenance and with trading, secondly, degree of automation is low, needs more manual operation, and work efficiency is low, and is mostly single welding mechanism, when the work piece has many places to need the welding, needs to remove repeatedly, and work efficiency is low. In view of the above, there is a need to develop an automatic welding mechanism to solve the above problems.
SUMMERY OF THE UTILITY MODEL
To the weak point that exists among the prior art, the utility model aims at providing an automatic welding mechanism, its simple structure, easily operation, the equipment, the change and the maintenance of the spare part of being convenient for are equipped with a plurality of welding Assembly simultaneously and carry out welding operation, have improved welding efficiency greatly, have reduced manufacturing cost, have wide market using value.
To achieve these objects and other advantages in accordance with the purpose of the invention, there is provided an automatic welding mechanism including: a carrier conveying line; and a welding assembly in sliding connection with the carrier conveying line;
wherein, the welding subassembly is equipped with 2 groups at least, just the welding subassembly extends X axle direction regular array, the welding subassembly includes: an L-shaped connecting plate;
the detection buffer assembly is fixedly connected to the bottom end of the L-shaped connecting plate;
the heat insulation assembly is fixedly connected with the detection buffer assembly; and
and the welding head device is fixedly connected with the heat insulation assembly through the connecting assembly.
Preferably, the carrier transport line includes: a fixed base;
the first conveying module is fixedly connected to the top end of the fixed base;
the second conveying module is connected with the first conveying module in a sliding manner;
the second conveying module is connected with the first conveying module in a sliding mode through a connecting piece.
Preferably, an XY direction fine adjustment assembly for fine adjusting positions in the X axis direction and the Y axis direction and a levelness adjustment assembly for adjusting levelness of the welding head device are arranged between the detection buffer assembly and the L-shaped connecting plate.
Preferably, the XY direction fine adjustment assembly includes: a connecting plate;
a Y-direction adjusting plate connected with the connecting plate in a sliding manner; and
an X-direction adjusting plate slidably connected to the Y-direction adjusting plate;
the side end of the Y-direction adjusting plate is provided with a Y-direction adjusting block; and the side end part of the X-direction adjusting plate is provided with an X-direction adjusting block.
Preferably, the levelness adjusting assembly includes: a first adjusting plate;
the middle connecting plate is arranged at the lower end of the first adjusting plate; and
the second adjusting plate is arranged at the lower end of the middle connecting plate;
the first adjusting plate is fixedly connected with the left end and the right end of the first adjusting plate respectively, and the second adjusting plate is fixedly connected with the front end and the rear end of the second adjusting plate respectively.
Preferably, the detection buffer assembly includes: a first connecting seat;
the second connecting seat is connected with the first connecting seat in a sliding manner; the second connecting seat is in sliding connection with the first connecting seat through a sliding rail device;
and a pressure sensor and a buffer spring are also arranged between the first connecting seat and the second connecting seat.
Preferably, the heat insulation assembly comprises: a first heat insulation plate; and the second heat insulation plate is fixedly connected with the first heat insulation plate.
Preferably, the front side and the rear side of the welding head device are provided with chip blowing devices.
The utility model discloses at least, include following beneficial effect: the utility model provides an automatic welding mechanism, its simple structure, easily operation, the equipment of the spare part of being convenient for, change and maintenance are equipped with a plurality of welding Assembly simultaneously and carry out welding operation, have improved welding efficiency greatly, have reduced manufacturing cost, have wide market using value.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a schematic view of a welding assembly according to an embodiment of the present invention;
FIG. 3 is a partial exploded view of a welded assembly in an embodiment of the present invention;
fig. 4 is an exploded view of the XY direction fine adjustment assembly according to an embodiment of the present invention;
fig. 5 is an exploded view of the levelness adjusting assembly according to an embodiment of the present invention.
Detailed Description
The foregoing and other objects, features, aspects and advantages of the present invention will become more apparent to those skilled in the art from the following detailed description, which, taken in conjunction with the annexed drawings, discloses a more detailed description of the present invention, which will enable those skilled in the art to make and use the present invention. In the drawings, the shape and size may be exaggerated for clarity, and the same reference numerals will be used throughout the drawings to designate the same or similar components. In the following description, terms such as center, thickness, height, length, front, back, rear, left, right, top, bottom, upper, lower, and the like are used based on the orientation or positional relationship shown in the drawings. In particular, "height" corresponds to the dimension from top to bottom, "width" corresponds to the dimension from left to right, and "depth" corresponds to the dimension from front to back. These relative terms are for convenience of description and are not generally intended to require a particular orientation. Terms concerning attachments, coupling and the like (e.g., "connected" and "attached") refer to a relationship wherein structures are secured or attached, either directly or indirectly, to one another through intervening structures, as well as both movable or rigid attachments, unless expressly described otherwise.
As an embodiment of the utility model, refer to fig. 1 ~ 5, the utility model provides an automatic welding mechanism, it includes: a carrier conveyance line 331; and a welding unit 332 slidably connected to the carrier transport line 331;
wherein, the welding subassembly 332 is equipped with 2 at least groups, and the welding subassembly 332 extends X axle direction regular array, the welding subassembly 332 includes: an L-shaped connecting plate 3321;
a detection buffer component 3324 fixedly connected to the bottom end of the L-shaped connecting plate 3321;
a heat insulation component 3325 fixedly connected with the detection buffer component 3324; and
a weld head device 3327 secured to the insulation assembly 3325 by a connection assembly 3326.
Further, the carrier conveying line 331 includes: a fixed base 3311;
a first transporting module 3312 fixed to the top of the fixed base 3311, the first transporting module 3312 driving the welding assembly 332 to slide back and forth along the Y-axis direction;
a second transport module 3313 slidably connected to the first transport module 3312, the second transport module 3313 driving the welding component 332 to slide up and down along the Z-axis direction;
the second transporting module 3313 is slidably connected to the first transporting module 3312 by a connecting member 3314.
Further, an XY direction fine adjustment assembly 3322 for fine adjusting the positions in the X axis direction and the Y axis direction and a levelness adjustment assembly 3323 for adjusting the levelness of the bonding head device 3327 are disposed between the detection buffer assembly 3324 and the L-shaped connection plate 3321.
Further, the XY direction fine adjustment assembly 3322 includes: a connection plate 3322 a;
a Y-direction adjusting plate 3322b slidably connected to the connecting plate 3322 a; and
an X-direction adjustment plate 3322c slidably connected to the Y-direction adjustment plate 3322 b;
a Y-direction adjusting block 3322d is arranged at the side end of the Y-direction adjusting plate 3322 b; an X-direction adjusting block 3322e is provided at the side end of the X-direction adjusting plate 3322 c.
In a preferred embodiment, a first groove extending along the Y-axis direction is formed at the bottom end of the connecting plate 3322a, a first protrusion matching with the first groove is formed at the top end of the Y-direction adjusting plate 3322b, and the connecting plate 3322a is slidably connected with the Y-direction adjusting plate 3322b through the first groove and the first protrusion; y direction regulating plate 3322 b's bottom is seted up and is extended the second recess that the X axle direction extends, X direction regulating plate 3322 c's top be equipped with second recess assorted second is protruding, Y direction regulating plate 3322b passes through the second recess with the second protruding with X direction regulating plate 3322c sliding connection. The Y direction regulating block 3322d and the X direction regulating block 3322e are fixedly connected with first regulating bolts on the surfaces, and the first regulating bolts are respectively connected with the Y direction regulating plate 3322b and the X direction regulating plate 3322c in a threaded manner.
The rigid coupling in the first adjusting bolt drive on Y direction regulating block 3322d surface Y direction regulating plate 3322b extends the reciprocal slip of Y axle direction, and is with right the Y axle direction position of welding subassembly 332 finely tunes, the rigid coupling in the first adjusting bolt drive on X direction regulating block 3322e surface X direction regulating plate 3322c extends the reciprocal slip of X axle direction, and is with right the X axle direction position of welding subassembly 332 finely tunes.
Further, the levelness adjusting assembly 3323 includes: a first regulating plate 3323 a;
an intermediate connecting plate 3323b provided at a lower end of the first adjusting plate 3323 a; and
a second regulating plate 3323c provided at a lower end of the intermediate connecting plate 3323 b;
wherein, the equal rigid coupling in both ends has first regulating block 3323d about first regulating plate 3323a, both ends rigid coupling has second regulating block 3323e around second regulating plate 3323 c.
In the preferred embodiment, first regulating plate 3323 a's bottom is the third protruding, intermediate junction plate 3323 b's top seted up with the protruding assorted third recess of third, intermediate junction plate 3323 b's bottom is the fourth protruding, second regulating plate 3323 c's top seted up with the protruding assorted fourth recess of fourth, the third is protruding, third recess, fourth protruding and fourth recess cross-section all is arc, first regulating block 3323d and second regulating block 3323e surface rigid coupling have second adjusting bolt, second adjusting bolt respectively with first regulating plate 3323a and second regulating plate 3323c contact connection.
Adjust the rigid coupling in the second adjusting bolt on first regulating block 3323d surface, with the drive second regulating plate 3323c extends the reciprocal slip of Y axle direction, and then adjusts the levelness of Y axle direction, adjust the rigid coupling in the second adjusting bolt on second regulating block 3323e surface, with the drive first regulating plate 3323a extends the reciprocal slip of X axle direction, and then adjusts the levelness of X axle direction.
Further, the method is simple. The detection buffer component 3324 includes: a first connecting seat 3324 a;
a second connecting seat 3324b slidably connected to the first connecting seat 3324 a; the second connecting seat 3324b is slidably connected to the first connecting seat 3324a via a sliding rail device 3324 c;
a pressure sensor 3324d and a buffer spring 3324e are further disposed between the first connecting seat 3324a and the second connecting seat 3324 b. The pressure sensor 3324d can detect the extrusion force of the welding head on the welding head device 3327 in real time, so as to prevent the workpiece from being damaged due to overlarge pressure, and the buffer spring 3324e can play a role in buffering and prevent the workpiece from being damaged due to overlarge pressure.
In a preferred embodiment, a pressure acquisition card 3329 is further fixed to the L-shaped connection plate 3321, and the pressure acquisition card 3329 is electrically or wirelessly connected to the pressure sensor 3324 d. The pressure acquisition card 3329 may store the pressure sensor 3324d to facilitate pressure adjustment of the detection buffer assembly 3324.
Further, the thermal insulation assembly 3325 includes: a first insulating panel 3325 a; and a second heat shield 3325b fixedly attached to the first heat shield 3325 a.
Furthermore, chip blowing devices 3328 are arranged on the front side and the rear side of the welding head device 3327. The chip blowing device 3328 can blow chips while the welding head device 3327 works, so that the welding quality of the welding head device 3327 is improved, and the working efficiency is improved.
To sum up, the utility model provides an automatic welding mechanism, its simple structure, easily operation, the equipment of the spare part of being convenient for, change and maintenance are equipped with a plurality of welding subassemblies simultaneously and carry out welding operation, have improved welding efficiency greatly, have reduced manufacturing cost, have wide market using value.
The number of apparatuses and the scale of the process described here are intended to simplify the description of the present invention. Applications, modifications and variations of the present invention will be apparent to those skilled in the art.
While embodiments of the invention have been disclosed above, it is not intended to be limited to the applications listed in the specification and the examples. It can be applicable to various and be fit for the utility model discloses a field completely. Additional modifications will readily occur to those skilled in the art. The invention is therefore not to be limited to the specific details and illustrations shown and described herein, without departing from the general concept defined by the claims and their equivalents.
Claims (8)
1. An automatic welding mechanism, comprising: a carrier transport line (331); and a welding assembly (332) slidably connected with the carrier conveying line (331);
wherein, the welding subassembly (332) is equipped with 2 at least, and the welding subassembly (332) is along X axle direction regular array, the welding subassembly (332) includes: an L-shaped connecting plate (3321);
the detection buffer component (3324) is fixedly connected to the bottom end of the L-shaped connecting plate (3321);
the heat insulation assembly (3325) is fixedly connected with the detection buffer assembly (3324); and
a welding head device (3327) fixedly connected with the heat insulation assembly (3325) through a connecting assembly (3326).
2. The automatic welding mechanism of claim 1, wherein said carrier transport line (331) comprises: a fixed base (3311);
a first conveying module (3312) fixed to the top of the fixed base (3311);
a second conveying module (3313) slidably connected to the first conveying module (3312);
wherein, the second conveying module (3313) is connected with the first conveying module (3312) in a sliding manner by a connecting piece (3314).
3. The automatic welding mechanism according to claim 1, wherein an XY direction fine adjustment assembly (3322) for fine adjustment of the position in the X axis direction and the Y axis direction and a levelness adjustment assembly (3323) for adjusting the levelness of the bonding head device (3327) are provided between the detection buffer assembly (3324) and the L-shaped connection plate (3321).
4. The automated welding mechanism of claim 3, wherein the XY fine adjustment assembly (3322) comprises: a connection plate (3322 a);
a Y-direction adjusting plate (3322b) slidably connected to the connecting plate (3322 a); and
an X-direction adjusting plate (3322c) slidably connected to the Y-direction adjusting plate (3322 b);
wherein, the side end of the Y-direction adjusting plate (3322b) is provided with a Y-direction adjusting block (3322 d); an X-direction adjusting block (3322e) is arranged at the side end part of the X-direction adjusting plate (3322 c).
5. The automatic welding mechanism of claim 3, wherein said levelness adjustment assembly (3323) comprises: a first adjustment plate (3323 a);
an intermediate connecting plate (3323b) provided at the lower end of the first adjusting plate (3323 a); and
a second adjusting plate (3323c) provided at a lower end of the intermediate connecting plate (3323 b);
the left end and the right end of the first adjusting plate (3323a) are fixedly connected with first adjusting blocks (3323d), and the front end and the rear end of the second adjusting plate (3323c) are fixedly connected with second adjusting blocks (3323 e).
6. The automatic welding mechanism of claim 1, wherein said detection bumper assembly (3324) comprises: a first connecting seat (3324 a);
a second connecting seat (3324b) slidably connected to the first connecting seat (3324 a); the second connecting seat (3324b) is slidably connected with the first connecting seat (3324a) through a sliding rail device (3324 c);
and a pressure sensor (3324d) and a buffer spring (3324e) are also arranged between the first connecting seat (3324a) and the second connecting seat (3324 b).
7. The automatic welding mechanism of claim 1, wherein said heat shield assembly (3325) comprises: a first heat shield (3325 a); and a second heat shield plate (3325b) fixedly connected to the first heat shield plate (3325 a).
8. The automatic welding mechanism according to claim 1, characterized in that the front and rear sides of the welding head device (3327) are provided with chip blowing devices (3328).
Priority Applications (1)
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CN202021879244.9U CN212858286U (en) | 2020-09-02 | 2020-09-02 | Automatic welding mechanism |
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CN202021879244.9U CN212858286U (en) | 2020-09-02 | 2020-09-02 | Automatic welding mechanism |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111940958A (en) * | 2020-09-02 | 2020-11-17 | 苏州富强科技有限公司 | Automatic welding mechanism |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111940958A (en) * | 2020-09-02 | 2020-11-17 | 苏州富强科技有限公司 | Automatic welding mechanism |
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