CN220347585U - Inner cavity and bottom fixing mechanism of welding process equipment - Google Patents
Inner cavity and bottom fixing mechanism of welding process equipment Download PDFInfo
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- CN220347585U CN220347585U CN202321856629.7U CN202321856629U CN220347585U CN 220347585 U CN220347585 U CN 220347585U CN 202321856629 U CN202321856629 U CN 202321856629U CN 220347585 U CN220347585 U CN 220347585U
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- 238000003466 welding Methods 0.000 title claims abstract description 109
- 230000007246 mechanism Effects 0.000 title claims abstract description 80
- 238000000034 method Methods 0.000 title claims abstract description 35
- 230000008093 supporting effect Effects 0.000 claims abstract description 42
- 238000003825 pressing Methods 0.000 claims abstract description 25
- 230000005540 biological transmission Effects 0.000 claims description 9
- 238000013461 design Methods 0.000 abstract description 16
- 238000012423 maintenance Methods 0.000 abstract description 4
- 238000006073 displacement reaction Methods 0.000 description 3
- XKRFYHLGVUSROY-UHFFFAOYSA-N Argon Chemical compound [Ar] XKRFYHLGVUSROY-UHFFFAOYSA-N 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000009826 distribution Methods 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- 238000012797 qualification Methods 0.000 description 2
- 229910052786 argon Inorganic materials 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000002035 prolonged effect Effects 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
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Abstract
The utility model discloses an inner cavity and bottom fixing mechanism of welding process equipment, which comprises a supporting base, wherein a bottom positioning mechanism is arranged on the supporting base, an inner cavity fixing supporting mechanism and a bottom pressing mechanism are also arranged on the supporting base, the bottom positioning mechanism and the inner cavity fixing supporting mechanism are matched to form a welding part placing area, and the bottom positioning mechanism comprises a concave bottom positioning part and an L-shaped bottom fixing part. The design can adapt to welding parts with more shapes and sizes, and the universality and the application range of welding process equipment are increased. The welding process equipment is simple in design structure and low in maintenance cost, and the service efficiency and the service life of the welding process equipment are improved.
Description
Technical Field
The utility model relates to the technical field of welding, in particular to an inner cavity and bottom fixing mechanism of welding process equipment.
Background
In the use process of the existing welding process equipment, manual argon arc welding is generally used for pre-welding and then laser welding is used, but the mode cannot well ensure the consistency and reliability of repeated positioning of clamping each time, so that the one-time welding qualification rate of products is low, and particularly the fixing effect of an inner cavity and the bottom is poor, and the problems are improved.
Disclosure of Invention
Aiming at the defects of poor fixing effect of the inner cavity and the bottom and the like in the prior art, the utility model provides a novel inner cavity and bottom fixing mechanism of welding process equipment.
In order to solve the technical problems, the utility model is realized by the following technical scheme:
the utility model provides a welding process equipment's inner chamber and bottom fixed establishment, includes the support base, be provided with bottom positioning mechanism on the support base, still be provided with inner chamber fixed support mechanism, bottom hold-down mechanism on the support base, bottom positioning mechanism the inner chamber fixed support mechanism bottom hold-down mechanism all symmetric distribution in the both sides of support base, bottom positioning mechanism with the cooperation of inner chamber fixed support mechanism forms the welding part and places the district, bottom positioning mechanism with the bottom cooperation of welding part places the district, inner chamber fixed support mechanism with the inner chamber cooperation of welding part places the district, bottom hold-down mechanism with the bottom cooperation of welding part places the district, bottom positioning mechanism includes spill bottom location portion, L shape bottom fixed part, the bottom of L shape bottom fixed part with support base fixed connection, the bottom of spill bottom location portion with L shape bottom fixed part top fixed connection, spill bottom location portion with the bottom cooperation of welding part place the district.
The support base is used for installing and fixing other components. And a welding part is placed in the welding part placement area. The welding parts can be hollow upright posts at two sides of the integrated kitchen range. The bottom positioning mechanism is used for positioning and supporting the welding parts, so that the rapid positioning of the welding parts can be realized, the clamping operation is simplified, and the production efficiency is improved. The inner cavity fixed supporting mechanism is used for positioning and supporting the welding part from the inner cavity of the welding part, so that the effective fixed supporting of the inner cavity of the welding part can be realized, the welding precision and stability are improved, and meanwhile, the damage to the inner wall of the welding part can be avoided. The inner cavity of the welding part placing area refers to the inner wall of the cavity of the welding part in the welding part placing area. Effective fixed support of the interior cavity of the welding part means that the inner wall of the welding part is fixedly supported from the interior of the welding part. The bottom hold-down mechanism is used for holding down the welded parts from the bottom. The concave bottom positioning part can effectively position and support the welding part, prevent the welding part from shifting or deforming in the welding process, and improve the welding quality and accuracy. The L-shaped bottom fixing part is used for improving the structural strength of the bottom positioning mechanism, so that the stability is improved and the service life is prolonged. The L-shaped design improves stability and strength. The design can adapt to welding parts with more shapes and sizes, and the universality and the application range of welding process equipment are increased. The welding process equipment is simple in design structure and low in maintenance cost, and the service efficiency and the service life of the welding process equipment are improved.
Preferably, the inner cavity and the bottom fixing mechanism of the welding process equipment are arranged in a way that the direction of the groove of the concave bottom positioning part is parallel to the direction of the inner cavity fixing and supporting mechanism.
The design can enable the bottom of the welding part to be more tightly matched with the groove of the concave bottom positioning part, and the positioning precision and stability of the welding part are improved. The design can also increase the supporting effect of the inner cavity fixing and supporting mechanism and reduce the deformation and damage of welding parts. The direction of the groove of the concave bottom positioning part is parallel to the direction of the long L-shaped fixed support arm of the inner cavity fixed support mechanism.
Preferably, the inner cavity and the bottom fixing mechanism of the welding process equipment are uniformly distributed on two sides of the supporting base.
The design can improve the stability and symmetry of the welded parts and avoid welding errors caused by unbalance. The design can also increase the bearing capacity and adaptability of the bottom positioning mechanism, and is suitable for welding parts with more sizes and shapes. The number of the bottom positioning mechanisms can be 4, and 2 are arranged on the left side and the right side respectively.
Preferably, the inner cavity and bottom fixing mechanism of the welding process equipment comprises an inner cavity fixing and supporting cylinder and an inner cavity L-shaped fixing and supporting long arm, wherein the inner cavity fixing and supporting cylinder is in transmission connection with the inner cavity L-shaped fixing and supporting long arm, and the inner cavity L-shaped fixing and supporting long arm stretches into the inner cavity of the welding part placing area and is matched with the welding part placing area.
The inner cavity fixed support cylinder is used for driving the inner cavity L-shaped fixed support long arm. The inner cavity L-shaped fixed support long arm is used for fixedly supporting the inner wall of the welding part from inside. The L-shaped design improves stability and strength. The design can effectively fix and support the inner cavity of the welding part, prevent deformation or displacement in the welding process, and improve the welding quality and precision, thereby improving the welding efficiency and the one-time welding qualification rate. According to the design, the movement of the L-shaped fixed support long arm of the inner cavity can be realized by adjusting the fixed support cylinder of the inner cavity according to the size and the shape of the inner cavity of the welding part, so that more welding requirements are met.
Preferably, the inner cavity and bottom fixing mechanism of the welding process equipment further comprises an inner cavity fixing and supporting cylinder L-shaped bracket, wherein the inner cavity fixing and supporting cylinder L-shaped bracket is fixed on the supporting base, and the inner cavity fixing and supporting cylinder L-shaped bracket is fixedly connected with the inner cavity fixing and supporting cylinder.
The design can enhance the stability and rigidity of the inner cavity fixed support cylinder, prevent the inner cavity fixed support cylinder from displacement or deformation in the working process, and therefore improve the positioning precision and welding quality of the welding parts. The structure and the installation mode of the inner cavity fixed support cylinder can be simplified, the number and the cost of parts are reduced, and the maintenance and the replacement are convenient. The L-shaped design improves stability and strength.
Preferably, the inner cavity and bottom fixing mechanism of the welding process equipment further comprises an inner cavity fixing support sliding rail and an inner cavity L-shaped triangle combined structure switching sliding block, wherein the inner cavity fixing support sliding rail is fixed on the support base, the inner cavity fixing support sliding rail is in sliding connection with the inner cavity L-shaped triangle combined structure switching sliding block, the outer side of the inner cavity L-shaped triangle combined structure switching sliding block is in transmission connection with the inner cavity fixing support cylinder, and the inner side of the inner cavity L-shaped triangle combined structure switching sliding block is connected with the inner cavity L-shaped fixing support long arm.
The inner cavity L-shaped triangle combined structure transfer sliding block is used for realizing movement of the inner cavity L-shaped fixed support long arm. The L-shaped triangle combined structure improves stability and strength. The design can realize the movable adjustment of the inner cavity L-shaped fixed support long arm, is suitable for welding parts with more sizes, can also improve the stability and rigidity of the inner cavity L-shaped fixed support long arm, prevent the inner cavity of the welding part from deforming, and improve the use efficiency and reliability of welding process equipment.
Preferably, the inner cavity and the bottom fixing mechanism of the welding process equipment comprise a bottom compressing cylinder and a bottom compressing block, wherein the bottom compressing cylinder is in transmission connection with the bottom compressing block, and the bottom compressing block is located below the welding part placing area and is matched with the bottom of the welding part placing area.
The bottom compresses tightly the cylinder and is used for driving bottom compact heap and compress tightly from the bottom of welding part, improves welded stability and precision, prevents that welding part from taking place displacement or deformation in welding process, guarantees welding quality and uniformity, can also compress tightly the stroke and the dynamics of cylinder according to adjusting the bottom, adapts to more welding demands, improves availability factor and security.
Preferably, the inner cavity and the bottom fixing mechanism of the welding process equipment further comprise a bottom pressing cylinder T-shaped support, a bottom pressing cylinder through hole is formed in the supporting base, the bottom pressing cylinder T-shaped support is fixed on the supporting base, the bottom pressing cylinder T-shaped support is fixedly connected with the bottom pressing cylinder, and the bottom pressing cylinder is located in the bottom pressing cylinder through hole.
The bottom compacting cylinder T-shaped bracket is used for fixing the bottom compacting cylinder. The T-shaped design improves stability and strength. The bottom compacting cylinder through hole is used for accommodating the bottom compacting cylinder, so that space occupation is reduced, space utilization is improved, the bottom compacting cylinder can be conveniently adjusted and replaced, and the service life and maintenance efficiency of welding process equipment are improved.
Drawings
FIG. 1 is a schematic diagram of a first embodiment of the present utility model;
FIG. 2 is an enlarged view of FIG. 1 at A;
FIG. 3 is an enlarged view at B in FIG. 1;
FIG. 4 is a schematic view of a front view partial structure of the present utility model;
FIG. 5 is a second schematic diagram of the structure of the present utility model;
FIG. 6 is an enlarged view at C in FIG. 5;
FIG. 7 is an enlarged view of FIG. 5 at D;
fig. 8 is a schematic top view of a partial structure of the present utility model.
Detailed Description
The utility model is described in further detail below in connection with figures 1-8 and the detailed description, which are not intended to limit the utility model:
example 1
The utility model provides an inner chamber and bottom fixed establishment of welding technology equipment, includes support base 1, be provided with bottom positioning mechanism 3 on the support base 1, still be provided with inner chamber fixed support mechanism 4, bottom hold-down mechanism 5 on the support base 1, bottom positioning mechanism 3 the inner chamber fixed support mechanism 4 bottom hold-down mechanism 5 all symmetric distribution in the both sides of support base 1, bottom positioning mechanism 3 with inner chamber fixed support mechanism 4 cooperation forms the welding part and places district 2, bottom positioning mechanism 3 with the bottom cooperation of welding part places district 2, inner chamber fixed support mechanism 4 with the inner chamber cooperation of welding part places district 2, bottom hold-down mechanism 5 with the bottom cooperation of welding part places district 2, bottom positioning mechanism 3 includes spill bottom location portion 31, L shape bottom fixed part 32, the bottom of L shape bottom fixed part 32 with support base 1 fixed connection, the bottom of spill bottom location portion 31 with L shape bottom fixed part 32 top fixed connection, spill bottom location portion 31 with the bottom cooperation of welding part place district 2.
Preferably, the direction of the groove of the concave bottom positioning part 31 is parallel to the direction of the inner cavity fixing and supporting mechanism 4.
Preferably, the bottom positioning mechanisms 3 are uniformly distributed on two sides of the support base 1.
Preferably, the inner cavity fixed support mechanism 4 comprises an inner cavity fixed support cylinder 41 and an inner cavity L-shaped fixed support long arm 42, the inner cavity fixed support cylinder 41 is in transmission connection with the inner cavity L-shaped fixed support long arm 42, and the inner cavity L-shaped fixed support long arm 42 stretches into the inner cavity of the welding part placement area 2 and is matched with the welding part placement area 2.
Preferably, the inner cavity fixing and supporting mechanism 4 further includes an inner cavity fixing and supporting cylinder L-shaped bracket 43, the inner cavity fixing and supporting cylinder L-shaped bracket 43 is fixed on the supporting base 1, and the inner cavity fixing and supporting cylinder L-shaped bracket 43 is fixedly connected with the inner cavity fixing and supporting cylinder 41.
Preferably, the inner cavity fixed support mechanism 4 further includes an inner cavity fixed support slide rail 44 and an inner cavity L-shaped triangle combined structure switching slide block 45, the inner cavity fixed support slide rail 44 is fixed on the support base 1, the inner cavity fixed support slide rail 44 is slidably connected with the inner cavity L-shaped triangle combined structure switching slide block 45, the outer side of the inner cavity L-shaped triangle combined structure switching slide block 45 is in transmission connection with the inner cavity fixed support cylinder 41, and the inner side of the inner cavity L-shaped triangle combined structure switching slide block 45 is connected with the inner cavity L-shaped fixed support long arm 42.
Preferably, the bottom pressing mechanism 5 comprises a bottom pressing cylinder 51 and a bottom pressing block 52, the bottom pressing cylinder 51 is in transmission connection with the bottom pressing block 52, and the bottom pressing block 52 is located below the welding part placement area 2 and is matched with the bottom of the welding part placement area 2.
Preferably, the bottom pressing mechanism 5 further includes a bottom pressing cylinder T-shaped bracket 53, a bottom pressing cylinder through hole 54 is provided in the support base 1, the bottom pressing cylinder T-shaped bracket 53 is fixed on the support base 1, the bottom pressing cylinder T-shaped bracket 53 is fixedly connected with the bottom pressing cylinder 51, and the bottom pressing cylinder 51 is located in the bottom pressing cylinder through hole 54.
In summary, the foregoing description is only of the preferred embodiments of the present utility model, and all equivalent changes and modifications that come within the scope of the present utility model are desired to be covered thereby.
Claims (8)
1. The utility model provides a welding process equipment's inner chamber and bottom fixed establishment, includes support base (1), be provided with bottom positioning mechanism (3), its characterized in that on support base (1): the welding part placement device is characterized in that an inner cavity fixed supporting mechanism (4) and a bottom pressing mechanism (5) are further arranged on the supporting base (1), the bottom pressing mechanism (3) and the inner cavity fixed supporting mechanism (4) are symmetrically distributed on two sides of the supporting base (1), the bottom positioning mechanism (3) and the inner cavity fixed supporting mechanism (4) are matched to form a welding part placement area (2), the bottom positioning mechanism (3) and the bottom of the welding part placement area (2) are matched, the inner cavity fixed supporting mechanism (4) and the inner cavity of the welding part placement area (2) are matched, the bottom pressing mechanism (5) and the bottom of the welding part placement area (2) are matched, the bottom positioning mechanism (3) comprises a concave bottom positioning part (31) and an L-shaped bottom fixing part (32), the bottom of the L-shaped bottom positioning part (32) is fixedly connected with the supporting base (1), and the bottom of the concave bottom positioning part (31) is fixedly connected with the top of the L-shaped bottom fixing part (32), and the bottom positioning part (31) is matched with the bottom of the welding part placement area (2).
2. The welding process kit of claim 1, wherein the internal cavity and bottom securing mechanism comprises: the direction of the groove of the concave bottom positioning part (31) is parallel to the direction of the inner cavity fixed supporting mechanism (4).
3. The welding process kit of claim 1, wherein the internal cavity and bottom securing mechanism comprises: the bottom positioning mechanisms (3) are uniformly distributed on two sides of the supporting base (1).
4. The welding process kit of claim 1, wherein the internal cavity and bottom securing mechanism comprises: the inner cavity fixed support mechanism (4) comprises an inner cavity fixed support cylinder (41) and an inner cavity L-shaped fixed support long arm (42), the inner cavity fixed support cylinder (41) is in transmission connection with the inner cavity L-shaped fixed support long arm (42), and the inner cavity L-shaped fixed support long arm (42) stretches into the inner cavity of the welding part placement area (2) and is matched with the welding part placement area (2).
5. The welding process kit of claim 4, wherein: the inner cavity fixed support mechanism (4) further comprises an inner cavity fixed support cylinder L-shaped support (43), the inner cavity fixed support cylinder L-shaped support (43) is fixed on the support base (1), and the inner cavity fixed support cylinder L-shaped support (43) is fixedly connected with the inner cavity fixed support cylinder (41).
6. The welding process kit of claim 4, wherein: the inner cavity fixed support mechanism (4) further comprises an inner cavity fixed support sliding rail (44) and an inner cavity L-shaped triangular combined structure switching sliding block (45), the inner cavity fixed support sliding rail (44) is fixed on the support base (1), the inner cavity fixed support sliding rail (44) is in sliding connection with the inner cavity L-shaped triangular combined structure switching sliding block (45), the outer side of the inner cavity L-shaped triangular combined structure switching sliding block (45) is in transmission connection with the inner cavity fixed support cylinder (41), and the inner side of the inner cavity L-shaped triangular combined structure switching sliding block (45) is connected with the inner cavity L-shaped fixed support long arm (42).
7. The welding process kit of claim 1, wherein the internal cavity and bottom securing mechanism comprises: the bottom compressing mechanism (5) comprises a bottom compressing cylinder (51) and a bottom compressing block (52), the bottom compressing cylinder (51) is in transmission connection with the bottom compressing block (52), and the bottom compressing block (52) is located below the welding part placing area (2) and matched with the bottom of the welding part placing area (2).
8. The welding process kit of claim 7, wherein: the bottom hold-down mechanism (5) further comprises a bottom hold-down cylinder T-shaped support (53), a bottom hold-down cylinder through hole (54) is formed in the support base (1), the bottom hold-down cylinder T-shaped support (53) is fixed on the support base (1), the bottom hold-down cylinder T-shaped support (53) is fixedly connected with the bottom hold-down cylinder (51), and the bottom hold-down cylinder (51) is located in the bottom hold-down cylinder through hole (54).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202321856629.7U CN220347585U (en) | 2023-07-14 | 2023-07-14 | Inner cavity and bottom fixing mechanism of welding process equipment |
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Application Number | Priority Date | Filing Date | Title |
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CN202321856629.7U CN220347585U (en) | 2023-07-14 | 2023-07-14 | Inner cavity and bottom fixing mechanism of welding process equipment |
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CN220347585U true CN220347585U (en) | 2024-01-16 |
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CN202321856629.7U Active CN220347585U (en) | 2023-07-14 | 2023-07-14 | Inner cavity and bottom fixing mechanism of welding process equipment |
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- 2023-07-14 CN CN202321856629.7U patent/CN220347585U/en active Active
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