CN212311231U - Arm heat preservation welded platform - Google Patents

Arm heat preservation welded platform Download PDF

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Publication number
CN212311231U
CN212311231U CN202020840935.1U CN202020840935U CN212311231U CN 212311231 U CN212311231 U CN 212311231U CN 202020840935 U CN202020840935 U CN 202020840935U CN 212311231 U CN212311231 U CN 212311231U
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China
Prior art keywords
welding platform
heat preservation
bolt
heat
mechanical arm
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CN202020840935.1U
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Chinese (zh)
Inventor
左长兵
李飞
席国庆
王国文
王光磊
张伟
钟平洋
张君妮
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Hubei Tri Ring Forging Co Ltd
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Hubei Tri Ring Forging Co Ltd
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Priority to CN202020840935.1U priority Critical patent/CN212311231U/en
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Abstract

The utility model relates to a heat-preservation welding platform of a mechanical arm, which comprises a welding platform, wherein a plurality of groups of sliding grooves are arranged on the upper surface of the welding platform, one end of each group of sliding grooves is provided with an adjusting groove, the adjusting groove is arranged on the upper surface of the welding platform, a first movable mechanism and a second movable mechanism are movably arranged on the welding platform, a connecting piece is slidably arranged on the second movable mechanism, two groups of through holes with different radiuses are arranged on the connecting piece, a heat-preservation piece is arranged on the connecting piece, two second bolt rods are fixed on the heat-preservation piece and penetrate through the inside of the group of through holes with small radiuses, heat-preservation pieces with different opening shapes or heat-preservation pieces with different sizes are selected according to the different shapes of welding workpieces, then the heat-preservation piece is fixedly arranged between the two groups of connecting pieces by means that the two groups of second bolt rods arranged on the, the heat preservation cotton is installed by means of the groove arranged in the opening of the heat preservation piece.

Description

Arm heat preservation welded platform
Technical Field
The utility model belongs to the technical field of the welding technique and specifically relates to a mechanical arm heat preservation welded platform is related to.
Background
In the mould manufacturing process, generally choose for use the manipulator to weld the mould work piece, through operating on welded platform, make the mould of two sets of or multiunit mould work piece welding formula structure as an organic whole, and then use in putting into market.
In the existing die welding process, heat preservation measures need to be implemented on a die workpiece, and the heat preservation mode is that a layer of heat preservation cotton is installed and wrapped on a mechanical arm, and the welded die workpiece is preserved with the help of the heat preservation cotton.
The existing welding platform has the following defects:
1. the heat preservation treatment of the welded die workpiece is not needed, and the heat preservation piece cannot be replaced according to the shapes of different dies;
2. the position of the heat-insulating mechanism is inconvenient to adjust according to different welding positions of workpieces.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to the technical problem who exists among the prior art, provide a mechanical arm heat preservation welded platform.
The utility model provides an above-mentioned technical problem's technical scheme as follows: the utility model provides a mechanical arm heat preservation welded platform, includes welded platform, the multiunit spout, multiunit have been seted up to the welded platform upper surface the one end of spout is provided with the adjustment tank, the adjustment tank is seted up welded platform's upper surface, welded platform is last movable mounting has first movable mechanism, second movable mechanism, sliding mounting has the connecting piece on the second movable mechanism, set up two sets of through-holes of radius variation in size on the connecting piece, install heat preservation on the connecting piece, be fixed with two second shank of bolt on the heat preservation, the second shank of bolt runs through a set of small radius the inside of through-hole, the one end threaded connection of second shank of bolt has second adjusting nut.
Preferably, the heat-preservation welding platform for the mechanical arm is characterized in that a plurality of groups of mounting holes are uniformly distributed in the welding platform, and a plurality of groups of fixing pieces are mounted on the welding platform through the mounting holes.
Preferably, foretell arm heat preservation welded platform, wherein first movable mechanism with the second movable mechanism structure is the same, second movable mechanism includes movable base, spacing seat, first shank of bolt, spring and first adjusting nut, be fixed with the spacing seat on the movable base, the upper surface central point of spacing seat puts and is fixed with first shank of bolt, the outside of first shank of bolt is around being provided with the spring, threaded connection has first adjusting nut on the first shank of bolt.
Preferably, in the thermal insulation welding platform for the mechanical arm, the cross-sectional shape of the movable base is the same as that of the sliding groove, and the movable base forms a sliding structure with the welding platform through the sliding groove.
Preferably, in the thermal insulation welding platform for the mechanical arm, the connecting piece passes through the through hole and forms a sliding structure with the first bolt rod.
Preferably, in the thermal insulation welding platform for the mechanical arm, a groove is formed in the middle position inside the opening of the thermal insulation piece.
Preferably, in the thermal insulation welding platform for the mechanical arm, the thermal insulation piece and the second bolt bar are of an integrated structure, and a detachable structure is formed between the thermal insulation piece and the connecting piece.
The utility model has the advantages that: according to different shapes of welded workpieces, heat-insulating parts with different opening shapes or heat-insulating parts with different sizes are selected, then two groups of second bolt rods arranged on the heat-insulating parts penetrate through holes at corresponding positions to be connected with second adjusting nuts, so that the heat-insulating parts are fixedly arranged between the two groups of connecting parts, heat-insulating cotton is arranged by means of grooves arranged in the openings of the heat-insulating parts, the movable base can slide by means of the arrangement of adjusting grooves, the movable base moves to the opening of the chute at the corresponding position, the movable base slides by means of the chute arranged on a welding platform, the position of the movable base is further changed, so that the heat-insulating parts move above the welding position of the workpieces, the connecting parts slide on the first bolt rods by means of the through holes and the springs by means of rotary adjustment of the first adjusting nuts, the vertical height of the heat-insulating parts is changed, and the heat-insulating cotton arranged in the openings of the heat-insulating parts is, and (4) performing heat preservation treatment on the welding position of the workpiece through heat preservation cotton.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view of a cross-sectional structure of one end of the welding platform of the present invention;
FIG. 3 is a schematic view of a partial enlarged structure at A in FIG. 1 according to the present invention;
FIG. 4 is a schematic structural view of a second movable mechanism of the present invention;
fig. 5 is a schematic view of the connection structure of the movable mechanism and the heat preservation member of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
1. welding a platform; 2. mounting holes; 3. a fixing member; 4. a chute; 5. an adjustment groove; 6. a first movable mechanism; 7. a second movable mechanism; 8. a movable base; 9. a limiting seat; 10. a first bolt shank; 11. a spring; 12. a first adjusting nut; 13. a connecting member; 14. a through hole; 15. a heat preservation member; 16. a second bolt shank; 17. a second adjusting nut.
Detailed Description
The principles and features of the present invention are described below in conjunction with the following drawings, the examples given are only intended to illustrate the present invention and are not intended to limit the scope of the present invention.
As shown in fig. 1, fig. 2, fig. 3, fig. 4, and fig. 5, a thermal insulation welding platform for a mechanical arm includes a welding platform 1, multiple sets of sliding grooves 4 are formed in the upper surface of the welding platform 1, an adjusting groove 5 is formed in one end of each of the multiple sets of sliding grooves 4, the adjusting groove 5 is formed in the upper surface of the welding platform 1, a first movable mechanism 6 and a second movable mechanism 7 are movably mounted on the welding platform 1, a connecting member 13 is slidably mounted on the second movable mechanism 7, two sets of through holes 14 with different radii are formed in the connecting member 13, a thermal insulation member 15 is mounted on the connecting member 13, two second bolt rods 16 are fixed on the thermal insulation member 15, the second bolt rods 16 penetrate through the inside of the set of through holes 14 with the small radii, and one end of each second bolt rod 16 is in threaded.
As shown in fig. 1 and 2: evenly distributed has multiunit mounting hole 2 on welded platform 1, welded platform 1 installs multiunit mounting 3 through mounting hole 2, welded platform 1 has multiunit mounting 3 with the help of 2 threaded connection of multiunit mounting hole that the upper surface was seted up, fixing 3 through the last mounting that sets up of welded platform fixes the work piece that needs carry out the welding, movable base 8's cross sectional shape is the same with adjustment tank 5's cross sectional shape, movable base 8 passes through and constitutes sliding structure between adjustment tank 5 and the welded platform 1, adjust tank 5 through seting up on welded platform 1 slides movable base 8, and then change movable base 8's position, thereby make the position of heat preservation 15 change, can carry out the position removal to heat preservation 15 according to the work piece welded position difference.
As shown in fig. 3, 4 and 5: the connecting piece 13 passes through the through hole 14 and constitutes sliding structure between the first bolt bar 10, the connecting piece 13 slides on the first bolt bar 10 through the through hole 14, and then change the vertical height of the connecting piece 13, thereby change the height of the heat preservation piece 15, make the heat preservation piece 15 internally mounted to the heat preservation cotton to carry out heat preservation treatment to the welding position of welding work piece, the inside intermediate position of opening of the heat preservation piece 15 is seted up flutedly, formula structure as an organic whole between heat preservation piece 15 and the second bolt bar 16, constitute detachable construction between heat preservation piece 15 and the connecting piece 13, install the heat preservation cotton through the recess that heat preservation piece 15 inboard was seted up, keep warm to the work piece through to the heat preservation cotton, simultaneously according to the shape difference of welding work piece, select the heat preservation piece 15 of different opening shapes or the heat preservation piece 15 of different size, carry out heat preservation treatment to different welding work piece junctions, then run through the through hole 14 and the second adjusting nut 17 of corresponding position with the And the heat preservation pieces 15 are fixedly arranged between the two groups of connecting pieces 13.
When the heat-preservation welding platform of the mechanical arm is used, a plurality of groups of fixing pieces 3 are connected to a welding platform 1 through a plurality of groups of mounting holes 2 arranged on the upper surface in a threaded manner, workpieces to be welded are fixed through the fixing pieces 3 arranged on the welding platform 1, then heat-preservation pieces 15 with different opening shapes or heat-preservation pieces 15 with different sizes are selected according to different shapes of the welded workpieces, then two groups of second bolt rods 16 arranged on the heat-preservation pieces 15 penetrate through holes 14 at corresponding positions and are connected with second adjusting nuts 17, so that the heat-preservation pieces 15 are fixedly arranged between the two groups of connecting pieces 13, after the heat-preservation pieces 15 are fixed, heat-preservation cotton is arranged through grooves arranged in the openings of the heat-preservation pieces 15, after the workpieces are welded through the mechanical arm (not shown in the figure), the movable base 8 is slid through the sliding groove 4 arranged on the welding platform 1, and then change the position of movable base 8 to make heat preservation 15 remove work piece welding position top, the setting of adjustment tank 5 simultaneously can slide movable base 8, make movable base 8 remove the spout 4 opening part that corresponds the position, then through carrying out rotation regulation to first adjusting nut 12, make connecting piece 13 pass through-hole 14 and spring 11 and slide on first shank of bolt 10, change the vertical height of heat preservation 15, the heat preservation cotton that makes the inside setting of heat preservation 15 opening carries out heat preservation to work piece welding position.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (7)

1. The utility model provides a mechanical arm heat preservation welded platform, includes welded platform (1), its characterized in that: welding platform (1) upper surface has seted up multiunit spout (4), multiunit the one end of spout (4) is provided with adjustment tank (5), adjustment tank (5) are seted up the upper surface of welding platform (1), movable mounting has first moving mechanism (6), second moving mechanism (7) on welding platform (1), slidable mounting has connecting piece (13) on second moving mechanism (7), set up two sets of through-hole (14) of radius variation in size on connecting piece (13), install heat preservation (15) on connecting piece (13), be fixed with two second shank of bolt (16) on heat preservation (15), second shank of bolt (16) run through a set of small radius the inside of through-hole (14), the one end threaded connection of second shank of bolt (16) has second adjusting nut (17).
2. The thermal-insulation welding platform for the mechanical arm according to claim 1, wherein: evenly distributed has multiunit mounting hole (2) on welding platform (1), welding platform (1) passes through multiunit mounting (3) are installed in mounting hole (2).
3. The thermal-insulation welding platform for the mechanical arm according to claim 1, wherein: first movable mechanism (6) with second movable mechanism (7) structure is the same, second movable mechanism (7) are including activity base (8), spacing seat (9), first shank of bolt (10), spring (11) and first adjusting nut (12), be fixed with spacing seat (9) on activity base (8), the upper surface central point of spacing seat (9) puts and is fixed with first shank of bolt (10), the outside of first shank of bolt (10) is encircleed and is provided with spring (11), threaded connection has first adjusting nut (12) on first shank of bolt (10).
4. The thermal-insulation welding platform for the mechanical arm according to claim 3, wherein: the cross-sectional shape of the movable base (8) is the same as that of the adjusting groove (5), and the movable base (8) passes through the adjusting groove (5) and the welding platform (1) to form a sliding structure.
5. The thermal-insulation welding platform for the mechanical arm according to claim 3, wherein: the connecting piece (13) forms a sliding structure through the through hole (14) and the first bolt rod (10).
6. The thermal-insulation welding platform for the mechanical arm according to claim 1, wherein: a groove is formed in the middle of the inside of the opening of the heat preservation piece (15).
7. The thermal-insulation welding platform for the mechanical arm according to claim 1, wherein: the heat preservation piece (15) and the second bolt rod (16) are of an integrated structure, and a detachable structure is formed between the heat preservation piece (15) and the connecting piece (13).
CN202020840935.1U 2020-05-19 2020-05-19 Arm heat preservation welded platform Active CN212311231U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020840935.1U CN212311231U (en) 2020-05-19 2020-05-19 Arm heat preservation welded platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020840935.1U CN212311231U (en) 2020-05-19 2020-05-19 Arm heat preservation welded platform

Publications (1)

Publication Number Publication Date
CN212311231U true CN212311231U (en) 2021-01-08

Family

ID=74021028

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020840935.1U Active CN212311231U (en) 2020-05-19 2020-05-19 Arm heat preservation welded platform

Country Status (1)

Country Link
CN (1) CN212311231U (en)

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