CN218210756U - Reinforced structure's alms bowl dish - Google Patents
Reinforced structure's alms bowl dish Download PDFInfo
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- CN218210756U CN218210756U CN202222606338.4U CN202222606338U CN218210756U CN 218210756 U CN218210756 U CN 218210756U CN 202222606338 U CN202222606338 U CN 202222606338U CN 218210756 U CN218210756 U CN 218210756U
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- alms bowl
- square frame
- spandrel girder
- bowl
- bowl dish
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Abstract
The utility model belongs to the technical field of the sintering apparatus, concretely relates to additional strengthening's alms bowl dish, including alms bowl dish body and square frame body, square frame body cover is established outside alms bowl dish body, through deep floor fixed connection between square frame body and alms bowl dish body all around, deep floor is equipped with a plurality ofly, alms bowl dish body is trapezoidal bucket, and this internal fixation of alms bowl dish has the spandrel girder, the spandrel girder includes horizontal spandrel girder and vertical spandrel girder, horizontal spandrel girder and vertical spandrel girder all with alms bowl dish body fixed connection. The square frame body and the reinforcing rib plate are arranged to fix and reinforce the outside of the bowl plate body, so that the bowl plate body is prevented from deforming; through setting up horizontal spandrel girder and longitudinal weighing roof beam, can play the supporting role that weighs on the one hand, another convenience can be strengthened the inside of alms bowl dish body, further avoids it to take place to warp.
Description
Technical Field
The utility model belongs to the technical field of sintering apparatus, concretely relates to additional strengthening's alms bowl dish.
Background
In the production process of the graphite electrode, a bowl disc or a sagger is required to be used; but both saggars and trays can deform after sintering. In particular, the pot is formed into a "boat" shape after sintering, so that after re-deformation, it is usually reshaped by means of a corresponding reshaping tool before further use is possible.
In order to shape the pot plate and the sagger, the applicant has made research and development on devices, such as shaping the deformed sagger by a sagger shaping platform disclosed in patent application No. 202122335207.2; the deformed bowl was reshaped by a bowl reshaping device disclosed in patent application No. 202221728772.3.
Both of the above devices can shape the bowl plate and the sagger accordingly, but both of them are directed to the shaping after deformation. Therefore, there is a need for improvements in the construction of the bowl plate itself to increase its strength, reduce distortion, and thus reduce the number of reshaping operations.
SUMMERY OF THE UTILITY MODEL
To the technical problem, the utility model provides a reinforced structure's alms bowl dish, the structure setting that this alms bowl dish adopted can reduce the deformation in the use.
In order to solve the technical problem, the utility model discloses a technical scheme be:
the utility model provides a reinforced structure's alms bowl dish, includes alms bowl dish body and square frame body, the square frame body cover is established outside alms bowl dish body, through deep floor fixed connection between the square frame body and alms bowl dish body all around, deep floor is equipped with a plurality ofly, alms bowl dish body is trapezoidal bucket form, and this internal fixation of alms bowl dish has the spandrel girder, the spandrel girder includes horizontal spandrel girder and vertical spandrel girder, and horizontal spandrel girder and vertical spandrel girder all with alms bowl dish body fixed connection.
The reinforcing rib plates are evenly distributed and fixed on the periphery of the bowl plate body.
The pot plate is characterized in that lifting lugs are fixed on the pot plate body, at least two lifting lugs are arranged on the pot plate body, and the two lifting lugs are arranged on two sides of the pot plate body respectively.
The cross section of the square frame body is L-shaped, and a space is reserved between the side edge of the square frame body and the pot disc body.
The transverse bearing beam and the longitudinal bearing beam are of hollow structures, through holes are formed in the transverse bearing beam and/or the longitudinal bearing beam, and pug is filled into the transverse bearing beam and/or the longitudinal bearing beam through the through holes.
The pug is high-temperature-resistant pug.
The pot plate further comprises four gaskets, the gaskets are L-shaped, and the four gaskets are respectively fixed at edges and corners of the pot plate body and the square frame body.
The pot plate body comprises a bottom plate, four side plates and a vertical plate, wherein the four side plates are obliquely arranged, and the four side plates are fixedly connected with the bottom plate to form a trapezoid shape; equal fixedly connected with curb plate on the upper end of every curb plate, fixed connection forms square frame shape between the curb plate.
The number of the transverse bearing beams is one, and the number of the longitudinal bearing beams is two.
The longitudinal bearing beam is formed by fixedly connecting two L-shaped plates.
Compared with the prior art, the utility model, the beneficial effect who has is:
the square frame body and the reinforcing rib plate are arranged to fix and reinforce the outside of the bowl plate body, so that the bowl plate body is prevented from deforming; through setting up horizontal spandrel girder and the vertical beam of weighing, can play the supporting role of weighing on the one hand, another convenience can be strengthened the inside of alms bowl dish body, further avoids it to take place to warp.
The cross section of the square frame body is in an L shape, so that the square frame body can further play a role in reinforcement, and the square frame body is high in rigidity.
Drawings
Fig. 1 is a front view of the present invention;
fig. 2 is a left side view of the present invention;
fig. 3 is a top view of the present invention;
fig. 4 is an isometric view of the present invention;
fig. 5 is a schematic structural view of an L-shaped plate of the present invention;
fig. 6 is a schematic structural view of another L-shaped plate of the present invention;
fig. 7 is a schematic structural view of the backing plate of the present invention;
wherein: the pot plate comprises a pot plate body 1, a square frame body 2, a reinforcing rib plate 3, a transverse bearing beam 4, a longitudinal bearing beam 5, a lifting lug 6, a through hole 7, a gasket 8, a bottom plate 9, a side plate 10, a vertical plate 11 and an L-shaped plate 11.
Detailed Description
The technical solutions in the embodiments of the present invention will be described below clearly and completely, and it should be apparent that the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in fig. 1 to 4, the pot disc with the reinforced structure comprises a pot disc body 1 and a square frame body 2, wherein the square frame body 2 is sleeved outside the pot disc body 1, the square frame body 2 is fixedly connected with the periphery of the pot disc body 1 through a plurality of reinforcing rib plates 3, and the reinforcing rib plates 3 are arranged; the number of the reinforcing rib plates 3 can be set according to actual conditions.
The pot plate body 1 is in a trapezoidal bucket shape, a bearing beam is fixed in the pot plate body 1 and comprises a transverse bearing beam 4 and a longitudinal bearing beam 5, and the transverse bearing beam 4 and the longitudinal bearing beam 5 are fixedly connected with the pot plate body 1.
The fixed connection is only by welding. Through the structural arrangement of the square frame body 2, the reinforcing rib plate 3 and the weighing beam, the interior of the pot plate body 1 can be fixed and reinforced, the deformation of the pot plate body is reduced, and the shaping frequency can be reduced.
Further, a plurality of reinforcing rib plates 3 are evenly distributed and fixed around the bowl plate body 1, and the reinforcing rib plates 3 are welded (fully welded) with the bowl plate body 1 and the square frame body 2.
Furthermore, for the convenience of hoisting, lifting lugs 6 are fixed on the pot disc body 1, the lifting lugs 6 are at least provided with two, and the two lifting lugs 6 are respectively arranged on two sides of the pot disc body 1. Four lifting lugs 6 are arranged, namely two lifting lugs 6 are respectively arranged on two sides of the pot plate body 1.
Furthermore, the cross section of the square frame body 2 is L-shaped, and L-shaped steel can be adopted, so that the square frame body has higher rigidity; and the side edge (vertical edge) of the pot disc is spaced from the pot disc body 1, and the transverse edge of the pot disc is welded and fixed with the periphery of the pot disc body 1.
Further, the transverse bearing beam 4 and the longitudinal bearing beam 5 are of hollow structures, through holes 7 are formed in the transverse bearing beam 4 and/or the longitudinal bearing beam 5, and pug is filled into the transverse bearing beam 4 and/or the longitudinal bearing beam 5 through the through holes 7.
Further, the pug is high-temperature resistant pug.
Further, as shown in fig. 7, the pot plate further comprises four gaskets (corner reinforcing rib plates) 8, the gaskets 8 are L-shaped, and the four gaskets 8 are respectively fixed at the corners of the pot plate body 1 and the square frame body 2. The function of the spacer 8 is: the strength of the angle is strengthened, and the welding seam is prevented from being welded.
Further, the pot plate body 1 preferably adopts the following structural arrangement, which comprises a bottom plate 9, side plates 10 and vertical plates 11, wherein the four side plates 10 are obliquely arranged, and the four side plates 10 are fixedly connected with the bottom plate 9 and form a ladder shape; the upper end of each side plate 10 is fixedly connected with the side plate 10, and the side plates 10 are fixedly connected to form a square frame.
Further, there are one transverse bearing beam 4 and two longitudinal bearing beams 5. The longitudinal bearing beam 5 and the transverse bearing beam 4 are both provided with through holes 7 filled with refractory castable; specifically, the method comprises the following steps: wherein the transverse bearing beam 4 is provided with 3 through holes, and each longitudinal bearing beam 5 is provided with 2 through holes.
Further, as shown in fig. 5 and 6, the longitudinal bearing beam 5 is formed by fixedly connecting two L-shaped plates 12; one of the L-shaped plates 12 is provided with a through hole 7, and when the L-shaped plates are processed, the L-shaped plates are folded along the dotted line part in the figure to form an L shape, and then the two L-shaped plates 12 are welded and fixed into a square tube shape.
The above description has been made in detail only for the preferred embodiment of the present invention, but the present invention is not limited to the above embodiment, and various changes can be made without departing from the spirit of the present invention within the knowledge scope of those skilled in the art, and all such changes are intended to be encompassed by the present invention.
Claims (10)
1. A reinforced structure's alms bowl dish which characterized in that: including alms bowl dish body (1) and square frame body (2), square frame body (2) cover is established outside alms bowl dish body (1), through deep floor fixed connection between square frame body (2) and alms bowl dish body (1) all around, deep floor (3) are equipped with a plurality ofly, alms bowl dish body (1) are trapezoidal bucket form, and alms bowl dish body (1) internal fixation has the spandrel girder, the spandrel girder includes horizontal spandrel girder (4) and vertical spandrel girder (5), and horizontal spandrel girder (4) and vertical spandrel girder (5) all with alms bowl dish body (1) fixed connection.
2. A reinforced structured bowl according to claim 1 wherein: the reinforcing rib plates (3) are evenly distributed and fixed around the bowl disc body (1).
3. A reinforced structured bowl according to claim 1 wherein: lifting lugs (6) are fixed on the pot disc body (1), at least two lifting lugs (6) are arranged, and the two lifting lugs (6) are respectively arranged on two sides of the pot disc body (1).
4. A reinforced structural bowl disk according to claim 1 wherein: the cross section of the square frame body (2) is L-shaped, and a space is reserved between the side edge of the square frame body and the bowl plate body (1).
5. A reinforced structural bowl disk according to claim 1 wherein: the transverse bearing beam (4) and the longitudinal bearing beam (5) are of hollow structures, through holes (7) are formed in the transverse bearing beam (4) and/or the longitudinal bearing beam (5), and pug is filled into the transverse bearing beam (4) and/or the longitudinal bearing beam (5) through the through holes (7).
6. A reinforced structured bowl according to claim 5 wherein: the pug is high-temperature-resistant pug.
7. A reinforced structured bowl according to claim 1 wherein: the novel pot disc further comprises gaskets (8), the gaskets (8) are L-shaped, the number of the gaskets (8) is four, and the four gaskets (8) are respectively fixed at edges and corners of the pot disc body (1) and the square frame body (2).
8. A reinforced structural bowl disk according to claim 1 wherein: the pot disc body (1) comprises a bottom plate (9), side plates (10) and vertical plates (11), wherein the number of the side plates (10) is four, the side plates are obliquely arranged, and the four side plates (10) are fixedly connected with the bottom plate (9) to form a ladder shape; the upper end of each side plate (10) is fixedly connected with the side plate (10), and the side plates (10) are fixedly connected to form a square frame.
9. A reinforced structural bowl disk according to claim 1 wherein: the number of the transverse bearing beams (4) is one, and the number of the longitudinal bearing beams (5) is two.
10. A reinforced structured bowl according to claim 1 wherein: the longitudinal bearing beam (5) is formed by fixedly connecting two L-shaped plates (12).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222606338.4U CN218210756U (en) | 2022-09-30 | 2022-09-30 | Reinforced structure's alms bowl dish |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222606338.4U CN218210756U (en) | 2022-09-30 | 2022-09-30 | Reinforced structure's alms bowl dish |
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CN218210756U true CN218210756U (en) | 2023-01-03 |
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CN202222606338.4U Active CN218210756U (en) | 2022-09-30 | 2022-09-30 | Reinforced structure's alms bowl dish |
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2022
- 2022-09-30 CN CN202222606338.4U patent/CN218210756U/en active Active
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Address after: 043200 East of Zhenxi Street Fire Station, Xishe Park, Jishan Economic and Technological Development Zone, Jishan County, Yuncheng City, Shanxi Province Patentee after: Shanxi Beidu Technology Co.,Ltd. Address before: 043200 Xishe Park, economic and Technological Development Zone, Jishan County, Yuncheng City, Shanxi Province Patentee before: Shanxi Beidu carbon materials Co.,Ltd. |