CN220624789U - Air blowing mechanism for facilitating quick drying of ingot mould - Google Patents

Air blowing mechanism for facilitating quick drying of ingot mould Download PDF

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Publication number
CN220624789U
CN220624789U CN202322077233.9U CN202322077233U CN220624789U CN 220624789 U CN220624789 U CN 220624789U CN 202322077233 U CN202322077233 U CN 202322077233U CN 220624789 U CN220624789 U CN 220624789U
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China
Prior art keywords
blowing
assembly
adjusting
rapid drying
ingot molds
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CN202322077233.9U
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Chinese (zh)
Inventor
廖景斌
刘媛媛
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Foshan Xinyi Hehui Metal Technology Co ltd
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Foshan Xinyi Hehui Metal Technology Co ltd
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Abstract

The utility model provides a blowing mechanism for facilitating rapid drying of an ingot mould, which relates to the technical field of mould drying and is characterized by comprising a lifting adjusting assembly, wherein the lifting adjusting assembly comprises a driving mechanism, the lifting adjusting assembly is connected with a blowing assembly, the blowing assembly comprises a supporting rod, and the lower part of the blowing assembly is connected with a conveying assembly. The utility model has the advantages that the conveying component and the blowing device move relatively, so that water drops in the ingot mould passing through the lower part of the blowing device can be blown away quickly, the cost is low, and the drying device of the technical scheme can have more pores on the inner cavity or the surface of part of the mould, plays a role in quick drying, reduces labor cost of personnel, improves safety, has high practicability and is suitable for batch production.

Description

Air blowing mechanism for facilitating quick drying of ingot mould
Technical Field
The utility model relates to the technical field of mold drying, in particular to a blowing mechanism which is beneficial to rapid drying of ingot molds.
Background
The die is very fine, has high manufacturing cost, needs to be cleaned frequently, cleans dirt, dust and the like on the surface of the die, and ensures the normal use of the die.
The mould is required to be cleaned and dried before casting processing so as to remove residual chemical substances on the surface of the mould and avoid affecting the performance of the casting, but the mould in the prior art is generally dried in an air drying and drying mode, as the cavity or the surface of part of the mould is provided with more pores, the moisture in the pores is not easy to evaporate, the drying efficiency is lower, splashing is easy to occur after molten metal liquid is poured, the personnel safety is reduced, and a plurality of holes are also formed after the molten metal liquid is solidified.
The technical proposal of Chinese patent document (patent number: CN201520990802.1, patent name: a mold drying device) is as follows: the utility model provides a drying device of mould, includes the transport roller that a plurality of arrangements set up and winds the transportation belt on the transport roller, a plurality of transport rollers and transportation belt form the transportation route of transport mould jointly, its characterized in that, transportation route bottom has set gradually water spray mechanism, blowing mechanism and stoving mechanism along the transportation direction, stoving mechanism include the stoving head with connect in the heating device of stoving head, the stoving head is provided with 3 and is listed as to every stoving head is provided with 5 side by side.
In combination with the description of the patent document and the accompanying drawings, the drying device of the technical scheme cannot have more pores on the inner cavity or the surface of part of the die, and plays a role in quick drying, because moisture in the pores is not easy to evaporate, and the drying requires a long time, so that the production efficiency and the quality are seriously affected.
Disclosure of Invention
The utility model overcomes the defects in the prior art, and provides the blowing mechanism which is beneficial to the rapid drying of the ingot mould, and can overcome the defects in the prior art mentioned in the background art.
In order to solve the technical problems, the utility model is realized by the following technical scheme:
the utility model provides a help quick dry mechanism of blowing of ingot mould, includes lift adjustment subassembly, lift adjustment subassembly includes driving mechanism, lift adjustment subassembly connects the subassembly of blowing, the subassembly below of blowing is provided with conveying assembly.
Still further, lift adjustment subassembly includes the gear, gear connection drives the plate, it rotates the connecting rod to drive the plate, one end is provided with the fixture block and is provided with the oblique mouth on the dead lever, dead lever one end rotates the connecting handle.
Still further, drive mechanism includes the bearing frame, the bearing frame is connected to the bearing frame, the locating plate is connected to the bearing frame, set up the locating hole on the locating plate, the gear is connected with the rack meshing, the backup pad is connected to the rack, the slider is connected to the backup pad, slider sliding connection slide rail.
Still further, the subassembly of blowing includes the bracing piece and the backup pad, the backup pad with a plurality of the bracing piece rotates to be connected, the bracing piece includes the bolt, be provided with a plurality of blast apparatus on the regulating plate, blast apparatus one end is provided with the blast nozzle.
Still further, the conveying assembly comprises a conveying assembly, the conveying assembly comprises a chain, the chain is connected with a driving sprocket and a driven sprocket, side plates are arranged on two sides of the driving sprocket and two sides of the driven sprocket, and a plurality of ingot molds are connected to the chain.
Still further, the chain is connected adjusting part, adjusting part includes the regulation handle, the regulation handle is connected first bearing seat, the external support of regulation handle other end screw thread.
Further, the first bearing shaft seat is rotatably connected with a control rod, and the control rod is rotatably connected with a driven sprocket.
Still further, the driving sprocket is connected power component, power component includes second bearing seat and power pole, the power pole is connected the driving sprocket, power pole one end external motor.
Compared with the prior art, the utility model has the beneficial effects that: the conveying assembly is arranged and moves relative to the blowing device, so that water drops inside the ingot mould passing through the lower part of the blowing device can be blown away quickly, the cost is low, the drying device of the technical scheme can have more holes on the inner surface or the outer surface of the cavity of the part of mould, the effect of quick drying is achieved, labor cost of personnel is reduced, safety is improved, and the drying device is high in practicability and suitable for batch production.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model, and are incorporated in and constitute a part of this specification, in which:
FIG. 1 is a general structural diagram of a blowing mechanism for rapid drying of ingot molds;
FIG. 2 is a schematic illustration of a conditioning assembly;
FIG. 3 is a schematic diagram of a power assembly;
FIG. 4 is an enlarged view of circle A of FIG. 1;
FIG. 5 is an exploded view of the lift adjustment assembly;
fig. 6 is an enlarged schematic view of the blowing assembly.
In the figure: 1. a transport assembly; 101. an adjustment assembly; 1011. a first bearing seat; 1012. adjusting the handle; 1013. a control lever; 102. a power assembly; 1021, a power lever; 1022. the second bearing seat, 103 and the side plate; 104. a transmission assembly; 1041. a chain; 1042. a drive sprocket; 1043. a driven sprocket; 105. ingot casting mould; 2. a lifting adjusting component; 201. a grip; 202. a fixed rod; 203. a bearing; 204. a clamping block; 205. a driving mechanism; 2051. driving the plate; 2052. a gear; 2053. a rack; 2054. a fixed block; 206; a positioning plate; 207. positioning holes; 208. a slide rail; 209. a slide block; 3. a blowing assembly; 301. a blowing device; 3011. a blowing nozzle; 302. an adjusting plate; 303. a support rod; 3031. a bolt; 304. a support plate;
Detailed Description
The preferred embodiments of the present utility model will be described below with reference to the accompanying drawings, it being understood that the preferred embodiments described herein are for illustration and explanation of the present utility model only, and are not intended to limit the present utility model.
As shown in fig. 1 to 6, a blowing mechanism for facilitating rapid drying of an ingot mould comprises a lifting adjusting assembly 2, wherein the lifting adjusting assembly 2 comprises a driving mechanism 205, the lifting adjusting assembly 2 is connected with a blowing assembly 3, the blowing assembly 3 comprises a supporting rod 303, and a conveying assembly 1 is connected below the blowing assembly 3. The lifting adjusting component 2 can adjust the height of the blowing component 3, the supporting rod 303 can adjust the blowing angle, and the lifting adjusting component can have more holes in the cavity or on the surface of part of the die, so that the drying effect is achieved.
The lifting adjusting assembly 2 comprises a gear 2052, the gear 2052 is connected with a driving plate 2051, the driving plate 2051 is rotationally connected with the fixing rod 202, a clamping block 204 is arranged at one end of the fixing rod 202 and is provided with an inclined nozzle 2021, one end of the fixing rod 202 is rotationally connected with the handle 201, the lifting adjusting assembly is convenient to hold and rotate, the fixing rod 202 is provided with the clamping block 204, the fixing rod 202 can be better fixed on the positioning hole 207, and the inclined nozzle 2021 is arranged to facilitate the fixing rod 202 to be inserted into the positioning hole 207.
The driving mechanism 205 comprises a bearing pedestal 2055, the bearing pedestal 2055 is connected with a bearing 2054, the bearing 2054 is connected with a positioning plate 206, a positioning hole 207 is formed in the positioning plate 206, the vertical position can be fixed, a gear 2052 is meshed with a rack 2053, the gear 2052 is connected with a fixed block 2054, the fixed block 2054 is driven to move up and down, the rack 2053 is connected with a supporting plate 304, the supporting plate 304 is connected with a sliding block 209, and the sliding block 209 is in sliding connection with a sliding rail 208, so that the vertical height can be adjusted.
The air blowing component 3 comprises a supporting plate 304, a supporting rod 303 is arranged on the supporting plate 304, the supporting rod 303 comprises a bolt 3031, the supporting rod 303 is connected with an adjusting plate 302, the adjusting plate 302 is controlled by rotating the bolt 3031, an air blowing device 301 is arranged on the adjusting plate 302, one end of the air blowing device 301 is provided with an air blowing nozzle 3011, and the other end of the air blowing device is connected with an air blowing machine, so that water drops can be blown away rapidly.
The conveying assembly 2 comprises a conveying assembly 104, the conveying assembly 104 comprises a chain 1041, the chain 1041 is connected with a driving sprocket 1042 and a driven sprocket 1043, side plates 103 are arranged on two sides of the driving sprocket 1042 and two sides of the driven sprocket 1043, and the chain 1041 is connected with a plurality of ingot molds 105. The side plates 103 support the ingot mould 105 so that it is convenient to charge the melted metal mass. A plurality of ingot molds 105 are mounted on the chain 1041 to form a casting operation mode of the flow rate.
The chain 1041 is connected with the adjusting assembly 101, the adjusting assembly 101 comprises an adjusting handle 1012, the adjusting handle 1012 is connected with the first bearing shaft seat 1011, and the other end of the adjusting handle 1012 is externally connected with a bracket through threads. The position of external support fixed equipment conveniently holds the metal material that melts, adjusts the screw thread on the handle 1012 for adjust the degree of tightness that the handle 1012 can adjust chain 1041, conveniently transfer the machine.
The first bearing housing 1011 is rotatably connected to the control lever 1013, and the control lever 1013 is rotatably connected to the driven sprocket 1043. Turning the adjustment handle 1012 can adjust the tightness of the chain 1041.
The driving sprocket 1042 is connected with the power assembly 102, the power assembly 102 comprises a second bearing seat 1022 and a power rod 1021, the power rod 1021 is connected with the driving sprocket 1042, and one end of the power rod 1021 is externally connected with a motor. The external motor moves the drive sprocket 1042 to make the whole device work normally.
The working principle of the blowing mechanism which is helpful for quick drying of the ingot mould is as follows: the handle 201 is manually rotated to drive the plate 2051 to rotate, the plate 2051 is driven to drive the gear 2052, the gear 2052 is meshed with the connecting rack 2053, the rack drives the air blowing assembly 3 to move up and down, after the air blowing assembly is adjusted to a desired position, the fixing rod 202 is inserted into the corresponding positioning hole 207 to be fixed, the bolt 303 is rotated to be screwed into the depth of the supporting plate 304, the bolt 303 can be utilized to prop against the adjusting plate 302, and the purpose of adjusting the angle between the adjusting plate 302 and the supporting plate 304 is achieved, so that the air blowing angle is adjusted. An external motor is started, the external motor enables the driving sprocket 1042 to rotate, the driving sprocket 1042 drives the chain 1041 to rotate, the chain 1041 is connected with a plurality of ingot molds 105, and the side plates 103 support the ingot molds 105. The conveying component 1 and the blowing device 301 relatively move, so that water drops are blown off better, the cost is low, the drying device of the technical scheme can have more holes in the cavity or on the surface of part of the die, the effect of quick drying is achieved, labor cost of personnel is reduced, safety is improved, and the drying device is high in practicability and suitable for batch production.
Finally, it should be noted that: although the present utility model has been described in detail with reference to the embodiments, it should be understood that the utility model is not limited to the preferred embodiments, but is capable of modification and equivalents to some of the features described in the foregoing embodiments, but is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.

Claims (8)

1. The utility model provides a help quick dry mechanism of blowing of ingot mould, its characterized in that, including lift adjustment subassembly (2), lift adjustment subassembly (2) are including driving mechanism (205), lift adjustment subassembly (2) are connected and are blown subassembly (3), it is provided with conveying assembly (1) to blow subassembly (3) below.
2. The blowing mechanism for facilitating rapid drying of ingot molds according to claim 1, wherein the lifting adjusting assembly (2) comprises a gear (2052), the gear (2052) is connected with a driving plate (2051), the driving plate (2051) is rotationally connected with a fixing rod (202), one end of the fixing rod (202) is provided with a clamping block (204) and a bevel nozzle (2021), and one end of the fixing rod (202) is rotationally connected with a grip (201).
3. The blowing mechanism facilitating rapid drying of ingot molds according to claim 2, wherein the driving mechanism (205) comprises a bearing seat (2055), the bearing seat (2055) is connected with a bearing (2054), the bearing seat (2055) is connected with a positioning plate (206), a positioning hole (207) is formed in the positioning plate (206), the gear (2052) is meshed with a rack (2053), the rack (2053) is connected with a supporting plate (304), the supporting plate (304) is connected with a sliding block (209), and the sliding block (209) is connected with a sliding rail (208) in a sliding manner.
4. The blowing mechanism facilitating rapid drying of ingot molds according to claim 1, wherein the blowing assembly (3) comprises a supporting rod (303) and a supporting plate (304), the supporting plate (304) is rotatably connected with a plurality of the supporting rods (303), the supporting rods (303) comprise bolts (3031) and comprise adjusting plates (302), a plurality of blowing devices (301) are arranged on the adjusting plates (302), and blowing nozzles (3011) are arranged at one ends of the blowing devices (301).
5. The blowing mechanism facilitating rapid drying of ingot molds according to claim 1, wherein the conveying assembly (1) comprises a conveying assembly (104), the conveying assembly (104) comprises a chain (1041), the chain (1041) is connected with a driving sprocket (1042) and a driven sprocket (1043), side plates (103) are arranged on two sides of the driving sprocket (1042) and the driven sprocket (1043), and a plurality of ingot molds (105) are connected to the chain (1041).
6. The blowing mechanism for facilitating rapid drying of ingot molds as set forth in claim 5, wherein said chain (1041) is connected to an adjusting assembly (101), said adjusting assembly (101) comprises an adjusting handle (1012), said adjusting handle (1012) is connected to a first bearing seat (1011), and the other end of said adjusting handle (1012) is screwed to a bracket.
7. The blowing mechanism for facilitating rapid drying of ingot molds as set forth in claim 6, wherein said first bearing seat (1011) is rotatably connected to a control rod (1013), said control rod (1013) being rotatably connected to a driven sprocket (1043).
8. The blowing mechanism for facilitating rapid drying of ingot molds as in claim 5, wherein said driving sprocket (1042) is connected to a power assembly (102), said power assembly (102) comprises a second bearing seat (1022) and a power rod (1021), said power rod (1021) is connected to said driving sprocket (1042), and one end of said power rod (1021) is externally connected to a motor.
CN202322077233.9U 2023-08-03 2023-08-03 Air blowing mechanism for facilitating quick drying of ingot mould Active CN220624789U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322077233.9U CN220624789U (en) 2023-08-03 2023-08-03 Air blowing mechanism for facilitating quick drying of ingot mould

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322077233.9U CN220624789U (en) 2023-08-03 2023-08-03 Air blowing mechanism for facilitating quick drying of ingot mould

Publications (1)

Publication Number Publication Date
CN220624789U true CN220624789U (en) 2024-03-19

Family

ID=90235379

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322077233.9U Active CN220624789U (en) 2023-08-03 2023-08-03 Air blowing mechanism for facilitating quick drying of ingot mould

Country Status (1)

Country Link
CN (1) CN220624789U (en)

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