CN218210430U - Be applied to grillage that dries in air of bridge opening door plant - Google Patents

Be applied to grillage that dries in air of bridge opening door plant Download PDF

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Publication number
CN218210430U
CN218210430U CN202222283092.1U CN202222283092U CN218210430U CN 218210430 U CN218210430 U CN 218210430U CN 202222283092 U CN202222283092 U CN 202222283092U CN 218210430 U CN218210430 U CN 218210430U
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China
Prior art keywords
strip
supporting part
supporting
bridge opening
roller
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CN202222283092.1U
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Chinese (zh)
Inventor
付豪
孙浩洋
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Chengdu Green Express Environmental Protection Technology Co Ltd
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Chengdu Green Express Environmental Protection Technology Co Ltd
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Priority to CN202222283092.1U priority Critical patent/CN218210430U/en
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Abstract

The utility model discloses a be applied to grillage that dries in air of bridge opening door plant relates to panel purification technical field, and it can partially solve at least when the gasket among the prior art is in the outside in bridge opening door plant hole district, easily because rock the problem that leads to the gasket to produce structural damage to the bridge opening door plant. The utility model discloses be applied to grillage that dries in air of bridge opening door plant, including the connecting rod, still include a plurality of intervals and set up the supporting part on the connecting rod, the supporting part includes: the buffer spring is arranged between the first supporting part and the second supporting part, and the first supporting part and the second supporting part are both in a strip shape; the first supporting part is used for supporting the surface A of the bridge opening door plate, and the second supporting part is used for supporting the surface B of the other bridge opening door plate.

Description

Be applied to grillage that dries in air of bridge opening door plant
Technical Field
The utility model relates to a panel purifies technical field, concretely relates to be applied to grillage that dries in air of bridge opening door plant.
Background
At present, the artificial board is mainly purified and formaldehyde-removed at high temperature, but the artificial board is very easy to deform when being heated unevenly in the high-temperature environment, and in order to solve the problem, the current solving means is mainly to place the artificial board on a board airing frame and utilize another board airing frame adjacent to the artificial board to elastically support the artificial board, so that the artificial board is in a vertical state when being purified in a high-temperature purification cabin, and the purpose of uniform heating is achieved.
In the prior art, as shown in fig. 1 and 2, the supporting member is mainly composed of a spring fixed on the board airing frame and a gasket fixed on the spring, and when the supporting member in the prior art elastically supports the artificial board, the supporting area is small, and the artificial board is not uniformly stressed.
The door plant of the bridge opening in the artificial board, its inside distributes and has a plurality of holes, lead to its thickness thicker, its self weight is great simultaneously, therefore, the inertia of the door plant of the bridge opening removes its in-process is big, and when current support component supported it, in case the gasket is located the hole district outside completely with the contact surface of door plant of the bridge opening, the door plant of the bridge opening produces when rocking at the removal in-process, the gasket produces structural damage to the door plant of the bridge opening in high temperature environment very easily, therefore, how when the grillage centre gripping door plant of drying in the air, how avoid the gasket to be the distribution in the hole side of door plant of the bridge opening of dot matrix, be the problem that this application will solve.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a be applied to grillage that dries in air of bridge opening door plant for when the gasket of solving among the prior art is in the outside in bridge opening door plant hole district, easily because rock the problem that leads to the gasket to produce the structural damage to the bridge opening door plant.
In order to solve the technical problem, the utility model adopts the following scheme:
the utility model provides a be applied to grillage that dries in air of bridge opening door plant, including the connecting rod, still include that a plurality of intervals set up the supporting part on the connecting rod, the supporting part includes:
the buffer spring is arranged between the first supporting part and the second supporting part, and the first supporting part and the second supporting part are both in a strip shape;
the first supporting part is used for supporting the surface A of the bridge opening door plate, and the second supporting part is used for supporting the surface B of the other bridge opening door plate.
In some optional embodiments, a first elastic cushion strip is arranged on the side of the first supporting part far away from the second supporting part, and a second elastic cushion strip is arranged on the side of the second supporting part far away from the first supporting part.
In some optional embodiments, the first elastic pad strip and the second elastic pad strip are both in a long strip shape, and the length of the first elastic pad strip and the length of the second elastic pad strip are at least the distance between the axes of any two holes of the bridge opening door plate.
In some optional embodiments, two sides of the first supporting portion extend to the second supporting portion to form a first C-shaped part, two sides of the second supporting portion extend to the first supporting portion to form a second C-shaped part, the first extending portions and the second extending portions are arranged in a staggered manner, and the second extending portions slide on the first extending portions along the elastic force direction of the buffer spring.
The buffer spring is positioned between the first extension part and the second extension part; the first extension part and the second extension part are movably connected along the elastic force direction of the buffer spring.
In some optional embodiments, the buffer device further includes a bar-shaped groove disposed on the second extension portion along the elastic force direction of the buffer spring, and a fixed sliding rod disposed on the first extension portion and inserted into the bar-shaped groove, and the second extension portion is hung on the fixed sliding rod and slidably connected with the fixed sliding rod.
In some optional embodiments, the buffer device further includes a bar-shaped sliding groove disposed on the first extending portion along the elastic force direction of the buffer spring, and a fixing shaft disposed on the second extending portion and inserted into the bar-shaped sliding groove, and the second extending portion is hung on the first extending portion through the fixing shaft and is slidably connected to the bar-shaped sliding groove.
In some optional embodiments, the second extension is provided with a plurality of notches for reducing weight.
In some optional embodiments, the fixed shaft is provided with a roller for changing the type of friction force between the fixed shaft and the strip-shaped sliding groove and reducing the friction force, and the roller can roll back and forth in the strip-shaped sliding groove along the elastic force direction of the buffer spring.
In some optional embodiments, the roller is a groove roller, and the groove roller is clamped in the strip-shaped chute and can roll back and forth along the elastic force direction of the buffer spring.
In some optional embodiments, a roller mounting groove for mounting a groove roller is formed on the first extending portion, and the roller mounting groove is located at one end of the strip-shaped sliding groove, which is far away from the second extending portion, and is communicated with the strip-shaped sliding groove.
The utility model has the advantages that:
the utility model discloses a be applied to grillage that dries in air of bridge opening door plant, including the connecting rod, still include that a plurality of intervals set up the supporting part on the connecting rod, the supporting part includes:
the buffer spring is arranged between the first supporting part and the second supporting part, and the first supporting part and the second supporting part are both in a strip shape;
the first supporting part is used for supporting the surface A of the bridge opening door plate, and the second supporting part is used for supporting the surface B of the other bridge opening door plate.
The effect is as follows: be the first supporting part and the second supporting part of bar through the setting, when can making a plurality of supporting parts support the bridge opening door plant, be the list formula and support, can avoid among the prior art because the gasket is dot matrix and distributes, the gasket produces the problem of structural damage to the bridge opening door plant with the little possibility that leads to of bridge opening door plant area of contact, and simultaneously, buffer spring locates between first supporting part and the second supporting part, elasticity has when making the supporting part support the bridge opening door plant, and for the grillage that dries in the air among the prior art, thickness has been reduced, can avoid because the thicker spring that leads to of bridge opening door plant probably by the dead problem in top.
Drawings
The accompanying drawings, which are included to provide a further understanding of the embodiments of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the principles of the invention.
Fig. 1 is a schematic front view of the prior art of the present invention;
fig. 2 is a schematic diagram of a right-view structure in the prior art of the present invention;
FIG. 3 is a schematic perspective view of a middle bridge opening door panel according to the present invention;
fig. 4 is a schematic front view of the embodiment of the present invention;
FIG. 5 is an enlarged view of a portion of FIG. 4 at A;
fig. 6 is a schematic cross-sectional structure diagram in the embodiment of the present invention;
fig. 7 is a schematic diagram of a right-view structure in an embodiment of the present invention;
fig. 8 is a schematic view of the door plate of the bridge opening of the present invention.
Reference numerals and corresponding part name descriptions: 11-vertical rod, 12-cross rod, 2-support component, 21-spring, 22-first gasket, 23-second gasket, 3-bridge opening door plate, 31-hole, 4-support part, 41-first support part, 42-second support part, 43-first extension part, 44-second extension part, 45-first elastic filler strip, 46-second elastic filler strip, 47-buffer spring, 48-strip-shaped sliding groove, 481-roller installation groove, 49-fixed shaft, 491-groove roller, 5-fixed plate, 6-connecting rod, 61-supporting plate, 7-conveying chain and 8-installation plate.
Detailed Description
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "longitudinal", "lateral", "horizontal", "inner", "outer", "front", "rear", "top", "bottom", and the like indicate the position or positional relationship based on the position or positional relationship shown in the drawings, or the position or positional relationship which is usually placed when the product of the present invention is used, and the terms are only for convenience of description of the present invention and simplifying the description, but do not indicate or imply that the device or element to which the term refers must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present invention.
In the description of the present invention, it should be further noted that, unless otherwise explicitly specified or limited, the terms "disposed," "opened," "mounted," "connected," and "connected" are to be construed broadly, e.g., as either a fixed connection, a detachable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
The present invention will be described in further detail with reference to the following examples and drawings, but the present invention is not limited thereto.
In the prior art, as shown in fig. 1 and 2, the existing plate airing frame includes a cross rod 12 and a plurality of vertical rods 11 fixed on the cross rod 12, a support component 2 is arranged on each vertical rod 11, the support component 2 includes a spring 21, a first gasket 22 and a second gasket 23, the first gasket 22 is fixed on the vertical rod 11 through the spring 21, the second gasket 23 is fixed on the other side of the vertical rod 11 away from the spring 21, the plurality of first gaskets 22 and the second gasket 23 on the plate airing frame are distributed in a dot matrix manner, therefore, after the plurality of plate airing frames are installed on a transmission chain, the adjacent plate airing frames can be supported in a dot matrix manner through the support components 2, and as the bridge opening door plates 3 in the artificial board are heavy in mass, large in inertia and thick, and have holes 31 in the bridge opening door plates 3, once the bridge opening door plates 3 shake in the moving process, the gaskets distributed in a dot matrix manner are likely to be completely located outside the holes 31 due to the contact surface between the whole gaskets and the bridge opening door plates 3, and the gaskets generate structural damage in the shaking process.
As shown in fig. 3 to 8, the present embodiment provides a plate airing rack applied to door panel 3 of bridge opening, including connecting rod 6, further including a plurality of supporting portions 4 arranged on connecting rod 6 at intervals, supporting portion 4 includes:
a first supporting part 41 vertically fixed on the connecting rod 6 and a second supporting part 42 movably connected with the first supporting part 41, wherein a buffer spring 47 is arranged between the first supporting part 41 and the second supporting part 42, and the first supporting part 41 and the second supporting part 42 are both in a strip shape and are arranged in parallel;
the first supporting portion 41 is for supporting the a-side of the bridge door panel 3, and the second supporting portion 42 is for supporting the B-side of the other bridge door panel 3.
As shown in fig. 5 to 8, when several drying racks in the present embodiment are installed on a conveyor chain, the connecting rod 6 is in a horizontal state, the door panel 3 is conveyed to the drying racks when in use, and when in conveyance, the axis of the hole 31 of the door panel 3 is parallel to the axis of the connecting rod 6, since the first supporting portion 41 and the connecting rod 6 are vertically fixed, and the first supporting portion 41 and the second supporting portion 42 in the present embodiment are both in a bar shape, when the a surface of the door panel 3 is supported by the first supporting portion 41, and the B surface of another door panel 3 is supported by the second supporting portion 42, the a surface and the B surface of the same door panel 3 are both in a bar shape, when the a surface and the B surface of the same door panel 3 are supported by two adjacent panel frames in the present embodiment, the a surface and the B surface of the same door panel 3 are in a bar shape with the supporting surfaces of two adjacent door panels in the present embodiment, and thus, by providing the first supporting portion 41 and the second supporting portion 42 which are movably connected, it is possible to cause damage to the door panel 3 due to a small contact area of the door panel, and a buffer structure of the door panel, and a problem of the door panel 4, which may be reduced, and the door panel, and the problem of the spring supporting portion, may be caused by the top plate 3, and the top plate 3, and the top plate support the top plate 3, and the top plate 3 may be reduced in the top plate.
In this embodiment, as shown in fig. 7 and 8, fixing plates 5 are disposed at bottoms of two ends of a connecting rod 6, a mounting plate 8 is disposed on each conveying chain 7, the mounting plate 8 is fixedly connected to the conveying chains 7, the fixing plates 5 are mounted on a mounting plate, two ends of the connecting rod 6 are respectively mounted on the fixing plates 5 on the two conveying chains 7 through the fixing plates 5, a plurality of supporting plates 61 for supporting the bridge opening door plate 3 are further disposed on the connecting rod 6 in this embodiment, the supporting plates 61 are fixedly connected or integrally connected to the connecting rod 6, and the connecting rod 6 in this embodiment is in a rectangular rod shape.
In some alternative embodiments, a first elastic pad strip 45 is disposed on a side of the first supporting portion 41 away from the second supporting portion 42, and a second elastic pad strip 46 is disposed on a side of the second supporting portion 42 away from the first supporting portion 41. In the embodiment, the first supporting portion 41 and the second supporting portion 42 are arranged in parallel, and in the embodiment, the first elastic cushion strip 45 and the second elastic cushion strip 46 are arranged on the first supporting portion 41, so that the elasticity of the supporting portion 4 in the embodiment can be further improved, and the problem that the bridge opening door panel 3 is extruded and deformed due to the fact that the supporting portion 4 does not have elasticity completely after the first supporting portion 41 and the second supporting portion 42 are deadlocked is avoided.
In some alternative embodiments, the first elastic cushion strip 45 and the second elastic cushion strip 46 are both in a long shape, and the length of the first elastic cushion strip 45 and the second elastic cushion strip 46 is at least the distance between the axes of any two holes 31 of the bridge door panel 3. The length of first elastic backing strip 45 and second elastic backing strip 46 is the distance between two arbitrary hole 31 axes of bridge opening door plant 3 at least, can avoid first elastic backing strip 45, the contact surface between second elastic backing strip 46 and the bridge opening door plant 3 is located the hole 31 outside of bridge opening door plant 3 completely, make first elastic backing strip 45, second elastic backing strip 46 have at least partly to be located the bearing structure outside between two holes 31, thereby can avoid first elastic backing strip 45, second elastic backing strip 46 causes structural damage to it when the bridge opening door plant 3 rocks. In this embodiment, the lengths of the first elastic cushion strip 45, the second elastic cushion strip 46 and the second supporting portion 42 are the same. In the present embodiment, the first support portion 41 and the second support portion 42 each have a rectangular plate shape.
In some alternative embodiments, two sides of the first supporting portion 41 extend to the second supporting portion 42 to form a first C-shaped member, two sides of the second supporting portion 42 extend to the first supporting portion 41 to form a second C-shaped member, the first extending portion 43 and the second extending portion 44 are staggered, and the second extending portion 44 slides on the first extending portion 43 along the elastic force direction of the buffer spring 47. The length of the second extending portion 44 toward the first support plate is greater than the length of the first extending portion 43 toward the second support portion 42, in this embodiment, the first support portion 41 and the second support portion 42 are both rectangular plate-shaped, the first extending portion 43 is perpendicular to the first support portion 41, the second extending portion 44 is perpendicular to the second support portion 42, and in this embodiment, the first extending portion 43 and the second extending portion 44 are both rectangular plate-shaped.
In some optional embodiments, the buffer device further includes a strip-shaped groove disposed on the second extending portion 44 along the elastic force direction of the buffer spring 47, and a fixed sliding rod disposed on the first extending portion 43 and inserted into the strip-shaped groove, wherein the second extending portion 44 is hung on the fixed sliding rod and slidably connected with the fixed sliding rod.
In some optional embodiments, a bar-shaped sliding slot 48 is further included, which is disposed on the first extending portion 43 along the elastic force direction of the buffer spring 47, and a fixing shaft 49 is disposed on the second extending portion 44 and inserted into the bar-shaped sliding slot 48, and the second extending portion 44 is hung on the first extending portion 43 through the fixing shaft 49 and is slidably connected to the bar-shaped sliding slot 48. As shown in fig. 5, the fixing shaft 49 is symmetrically disposed on the second extending portions 44 at two sides of the second supporting portion 42, and is perpendicular to the second extending portions 44, in this embodiment, two ends of the fixing shaft 49 are provided with external threads, the second extending portions 44 are provided with internal screw holes adapted to the external threads, and one end of the fixing shaft 49 away from the second extending portions 44 is provided with a fixing nut.
In some alternative embodiments, the second extension 44 is provided with a plurality of notches for reducing weight. As shown in fig. 4, the second extending portion 44 is provided with a plurality of notches, so that the weight of the second extending portion 44 can be reduced, and the friction between the second extending portion 44 and the first extending portion 43 can be reduced, so that the second extending portion 44 can be ejected by the buffer spring 47 more easily.
In some alternative embodiments, the fixed shaft 49 is provided with a roller for changing the type of friction between the fixed shaft 49 and the strip-shaped sliding groove 48 and reducing the friction, and the roller can roll back and forth in the strip-shaped sliding groove 48 along the elastic force direction of the buffer spring 47. By arranging the roller on the fixed shaft 49, the second extending portion 44 can be movably connected with the first extending portion 43 through the roller arranged on the fixed shaft 49, the friction force between the first extending portion 43 and the second extending portion 44 can be changed from sliding friction to rolling friction, the friction force can be effectively reduced, and the second extending portion 44 can be ejected by the buffer spring 47 more easily.
In some optional embodiments, the roller is a groove roller 491, and the groove roller 491 is clamped in the bar-shaped sliding groove 48 and can roll back and forth along the elastic force direction of the buffer spring 47. As shown in fig. 6, the roller in this embodiment is a grooved roller 491 that is clamped in the strip-shaped sliding slot 48, and the grooved roller 491 can roll back and forth along the elastic force direction of the buffer spring 47, so as to improve the stability of the grooved roller 491 in the strip-shaped sliding slot 48.
In some alternative embodiments, the first extension 43 is provided with a roller mounting groove 481 for mounting the grooved roller 491, and the roller mounting groove 481 is located at one end of the strip-shaped sliding groove 48 far away from the second extension 44 and is communicated with the strip-shaped sliding groove 48. By providing the roller mounting groove 481, and the roller mounting groove 481 is communicated with one end of the strip-shaped sliding groove 48 away from the second extension portion 44, the groove roller 491 can be mounted in the strip-shaped sliding groove 48 through the roller mounting groove 481, after the groove roller 491 is mounted, when the first supporting portion 41 and the second supporting portion 42 are away from each other, the groove roller 491 rolls towards the direction of the second supporting portion 42, when the groove roller 491 rolls to one end of the strip-shaped sliding groove 48 close to the second supporting portion 42, the groove roller 491 is clamped, so that the second supporting portion 42 is clamped, at this time, the distance between the first supporting portion 41 and the second supporting portion 42 is the largest, when the first supporting portion 41 and the second supporting portion 42 are close to each other, the groove roller 491 rolls towards the direction of the first supporting portion 41, when the second extension portion 44 is pressed against the first supporting portion 41, the distance between the first supporting portion 41 and the second supporting portion 42 is the smallest, and at this time, the groove roller 491 is still located in the strip-shaped sliding groove 48.
It is to be understood that the above embodiments are merely exemplary embodiments adopted to illustrate the principles of the present invention, and the present invention is not limited thereto. It will be apparent to those skilled in the art that various changes and modifications can be made therein without departing from the spirit and scope of the invention, and such changes and modifications are to be considered as within the scope of the invention.

Claims (10)

1. The utility model provides a be applied to grillage that dries in air of bridge opening door plant (3), includes connecting rod (6), its characterized in that still includes that a plurality of intervals set up supporting part (4) on connecting rod (6), and supporting part (4) include:
the supporting device comprises a first supporting part (41) vertically fixed on the connecting rod (6) and a second supporting part (42) movably connected with the first supporting part (41), wherein a buffer spring (47) is arranged between the first supporting part (41) and the second supporting part (42), and the first supporting part (41) and the second supporting part (42) are both in a strip shape;
the first supporting portion (41) is used for supporting the surface A of one bridge opening door panel (3), and the second supporting portion (42) is used for supporting the surface B of the other bridge opening door panel (3).
2. A hanger bracket for a door panel (3) for a bridge opening according to claim 1 wherein the side of the first support (41) remote from the second support (42) is provided with a first resilient backing strip (45) and the side of the second support (42) remote from the first support (41) is provided with a second resilient backing strip (46).
3. A hanger bracket for use with a door panel (3) according to claim 2 wherein the first and second resilient straps (45, 46) are each elongate and the length of the first and second resilient straps (45, 46) is at least the distance between the axes of any two apertures (31) of the door panel (3).
4. The hanger bracket for a door panel (3) for a bridge opening according to claim 1, wherein both sides of the first support portion (41) extend to the second support portion (42) to form a first C-shaped member, both sides of the second support portion (42) extend to the first support portion (41) to form a second C-shaped member to form a second extension portion (44), the first extension portion (43) and the second extension portion (44) are alternately arranged, and the second extension portion (44) slides on the first extension portion (43) in a spring force direction of the cushion spring (47).
5. The drying rack applied to the door panel (3) of the bridge opening, as recited in claim 4, further comprising a strip-shaped groove disposed on the second extension portion (44) along the elastic force direction of the buffer spring (47), and a fixed slide bar disposed on the first extension portion (43) and inserted into the strip-shaped groove, wherein the second extension portion (44) is hung on the fixed slide bar and is slidably connected with the fixed slide bar.
6. The rack of claim 4, further comprising a strip-shaped sliding slot (48) disposed on the first extending portion (43) along the elastic direction of the buffer spring (47), and a fixing shaft (49) disposed on the second extending portion (44) and inserted into the strip-shaped sliding slot (48), wherein the second extending portion (44) is hung on the first extending portion (43) by the fixing shaft (49) and is slidably connected with the strip-shaped sliding slot (48).
7. A hanger bracket for use with a bridge door panel (3) as claimed in claim 5 or claim 6 wherein said second extension (44) is provided with a plurality of recesses for reducing weight.
8. The rack of claim 6, wherein the fixed shaft (49) is provided with a roller for changing the type of friction between the fixed shaft (49) and the strip-shaped sliding groove (48) and reducing the friction, and the roller can roll back and forth in the strip-shaped sliding groove (48) along the elastic force direction of the buffer spring (47).
9. The rack of claim 8, wherein the roller is a grooved roller (491), and the grooved roller (491) is clamped in the strip-shaped sliding groove (48) and can roll back and forth along the elastic direction of the buffer spring (47).
10. The airing rack for door panels (3) of bridges opening according to claim 9, characterized in that the first extension (43) is provided with a roller mounting groove (481) for mounting the groove roller (491), the roller mounting groove (481) is located at one end of the strip-shaped chute (48) far away from the second extension (44) and is communicated with the strip-shaped chute (48).
CN202222283092.1U 2022-08-30 2022-08-30 Be applied to grillage that dries in air of bridge opening door plant Active CN218210430U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222283092.1U CN218210430U (en) 2022-08-30 2022-08-30 Be applied to grillage that dries in air of bridge opening door plant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222283092.1U CN218210430U (en) 2022-08-30 2022-08-30 Be applied to grillage that dries in air of bridge opening door plant

Publications (1)

Publication Number Publication Date
CN218210430U true CN218210430U (en) 2023-01-03

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CN202222283092.1U Active CN218210430U (en) 2022-08-30 2022-08-30 Be applied to grillage that dries in air of bridge opening door plant

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