CN207793327U - A kind of solid cooling material reciprocating cutting formula normalizing cooling equipment - Google Patents

A kind of solid cooling material reciprocating cutting formula normalizing cooling equipment Download PDF

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Publication number
CN207793327U
CN207793327U CN201721746669.0U CN201721746669U CN207793327U CN 207793327 U CN207793327 U CN 207793327U CN 201721746669 U CN201721746669 U CN 201721746669U CN 207793327 U CN207793327 U CN 207793327U
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CN
China
Prior art keywords
ice
furnace body
cutter
wall
cooling
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201721746669.0U
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Chinese (zh)
Inventor
雷佳乐
朱裕华
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Chongqing Yote Mould Co Ltd
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Chongqing Yote Mould Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
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Priority to CN201721746669.0U priority Critical patent/CN207793327U/en
Application granted granted Critical
Publication of CN207793327U publication Critical patent/CN207793327U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

Material reciprocating cutting formula normalizing is cooled down the utility model discloses a kind of solid and cools down equipment, including furnace body, is rotated in furnace body and is equipped with cooling chamber, cooling chamber is equipped with synergy cooling system;Synergy cooling system includes that annular sets ice chamber and mechanism for ice maker, and mechanism for ice maker includes water inlet pipe, freezing component and cutting member;It includes ice making pipe to freeze component, and cutting member includes expansion bend and cutter, and the telescopic shaft of expansion bend reciprocatingly slides in ice making pipe, and the telescopic shaft of expansion bend drives cutter to move back and forth during reciprocatingly sliding by power transmission part, and cutter carry out cutting work;Power transmission part includes sleeve, is slided in sleeve and is provided with support rod, one end of support rod is connected with the telescopic shaft of expansion bend, the other end rotation of support rod is provided with idler wheel, cutter are connected to by spring on furnace body outer wall, and one end of cutter is in wedge surface, and idler wheel offsets with wedge surface sliding;The utility model compared with prior art, is improved to compression mod normalizing cooling effect, to improve its quality.

Description

A kind of solid cooling material reciprocating cutting formula normalizing cooling equipment
Technical field
The utility model is related to equipments machining die fields, and in particular to a kind of solid cooling material reciprocating cutting formula normalizing is cold But equipment.
Background technology
Compression mod be in high pressure, high-speed condition, by molten alloy lower charging type, and under high pressure cooled and solidified forming one kind Precision casting mold;Compression mod by preliminary working after being made, it usually needs through Overheating Treatment, existing heat treatment process packet Normalizing, annealing, quenching, quenched, carburizing and nitridation etc. are included, qualified compression mod then could be obtained.
Compression mod uses air-cooled or water cooling side in the technical process for carrying out normalizing cooling usually in cooling furnace Formula causes compression mod to be cooled and is unevenly distributed because of temperature distributing disproportionation in cooling furnace, poor so as to cause cooling effect.
Utility model content
For the deficiency in the presence of the prior art, the purpose of this utility model is to provide a kind of solid cooling material is reciprocal Cutting type normalizing cools down equipment, and to solve in the prior art, compression mod, which is cooled, to be unevenly distributed and the problem of cooling effect difference.
To achieve the above object, the utility model uses the following technical solution:A kind of solid cooling material reciprocating cutting Formula normalizing cools down equipment, including furnace body, is rotated in the furnace body and is provided with the cooling that bottom wall and side wall are provided with several recirculation holes It is opening at the top of room, furnace body and cooling chamber, bottom of furnace body offers through-hole, rotated in through-hole and be provided with exhaust fan, exhaust fan It is driven by actuating unit with cooling chamber;The cooling chamber is provided with synergy cooling system;
The synergy cooling system includes that annular between the side wall of furnace body and the side wall of cooling chamber sets ice chamber and to annular The mechanism for ice maker of ice intracavitary addition granular ice is set, mechanism for ice maker includes water inlet pipe, the water cooling flowed out in inlet tube is frozen into ice lolly Freezing component and the ice lolly obtained freezed in component is cut into the cutting member of granular ice;
The freezing component includes the ice making pipe being fixed on furnace body outer wall, and cutting member includes being located at ice making pipe outer one The cutter of the outer other side of the expansion bend and ice making pipe of side, the telescopic shaft of expansion bend reciprocatingly slide in ice making pipe, expansion bend Telescopic shaft drives cutter to move back and forth during reciprocatingly sliding by power transmission part, and cutter are in turn to quilt in ice making pipe The ice lolly that the telescopic shaft of expansion bend supports out is cut;
The power transmission part includes the sleeve being fixedly connected on furnace body outer wall, is slided in sleeve and is provided with support rod, supported One end of bar is connected with the telescopic shaft of expansion bend, and the other end rotation of support rod is provided with idler wheel, its separate blade of cutter One end is connected to by spring on furnace body outer wall, and one end far from its blade of cutter is in wedge surface, and idler wheel is slided with wedge surface It offsets.
Compared with the prior art, the utility model has the advantages that:
1, air is pumped into cooling chamber and furnace body by exhaust fan, the compression mod placed in cooling chamber is cooled down, Ice lolly made from ice making pipe cut into after granular ice by cutter simultaneously and is added to annular and sets ice chamber, passes through air and particle Being used cooperatively for ice cools down compression mod, improves the cooling effect to compression mod;
2, the power of the telescopic shaft of expansion bend transmits driving cutter into action edge by power transmission part and cuts ice lolly At granular ice, cooling specific surface area is increased, improves cooling effect, and the power of expansion bend is rationally utilized, improves energy The utilization rate of amount.
Description of the drawings
Fig. 1 is the structural schematic diagram that a kind of solid cooling material reciprocating cutting formula normalizing of the utility model cools down equipment;
Fig. 2 is the enlarged drawing in the portions A in Fig. 1;
Fig. 3 is the sectional view of ice making pipe in Fig. 1.
Specific implementation mode
The utility model is described in further detail below by specific implementation mode:
Reference numeral in Figure of description includes:Furnace body 1, cooling chamber 2, actuating unit 3, exhaust fan 4, shifting block 5, annular Set ice chamber 6, water inlet pipe 7, ice making pipe 8, refrigeration machine 9, expansion bend 10, cutter 11, support rod 12, idler wheel 13, slideway 14.
Embodiment
With reference to shown in 1~Fig. 3 of figure:A kind of cooling material reciprocating cutting formula normalizing of solid cools down equipment, including it is cylindrical and Top is the furnace body 1 of opening, the cooling chamber 2 for being provided with top as opening is rotated in furnace body 1,1 bottom of furnace body offers through-hole, position Actuating unit 3 is installed in the lower section of furnace body 1, actuating unit 3 can be motor, the output shaft of actuating unit 3 pass through through-hole and with The outside bottom wall of cooling chamber 2 is fixedly linked, and the output shaft upper spline of actuating unit 3 is connected with the exhausting being rotatably arranged in through-hole Machine 4;The bottom wall and side wall of cooling chamber 2 are provided with several recirculation holes, and the bottom margin of cooling chamber 2 is connected with along its circumferential direction and furnace body 1 bottom wall slides the circumferential wall that offsets, and the outer wall upper edge of circumferential wall its circumferential direction is evenly equipped with multiple shifting blocks 5.
The cooling chamber 2 is provided with synergy cooling system, and synergy cooling system includes the side wall and cooling chamber 2 of furnace body 1 Annular between side wall sets ice chamber 6 and sets the mechanism for ice maker for adding granular ice in ice chamber 6 to annular, and mechanism for ice maker includes water inlet pipe 7, the water cooling flowed out in inlet tube is frozen into the freezing component of ice lolly and the ice lolly obtained freezed in component is cut into particle The cutting member of ice;Freezing component includes the ice making pipe 8 being fixed on 1 outer wall of furnace body and water inlet pipe 7, and water inlet pipe 7 is close to system Heating mantle is arranged on one end outer wall of ice pipe 8, the tube wall of ice making pipe 8 is cavity structure, and cavity structure is communicated with refrigeration machine 9; Refrigerant is pumped into cavity in refrigeration machine 9 to carrying out supplement water inside ice making pipe 8 after water flows into ice making pipe 8 by water inlet pipe 7 In structure and a refrigerating state recycled is formed, the water cooling in inflow ice making pipe 8 is made to form ice lolly;Cutting member includes being located at The cutter 11 of the 8 outer other side of expansion bend 10 and ice making pipe of 8 outer side of ice making pipe, telescopic shaft and the cutter 11 of expansion bend 10 Between by power transmission part into action edge transmit;Power transmission part includes the sleeve being fixedly connected on 1 outer wall of furnace body, sleeve Interior sliding is provided with support rod 12, and one end of support rod 12 is connected with the telescopic shaft of expansion bend 10, the other end rotation setting of support rod 12 There is idler wheel 13, one end far from its blade of cutter 11 is connected to by spring on 1 outer wall of furnace body, and cutter 11 is separate One end of its blade is in wedge surface, and idler wheel 13 offsets with wedge surface sliding;It is back and forth slided in ice making pipe 8 by the telescopic shaft of expansion bend 10 It is dynamic, the ice lolly formed in ice making pipe 8 is supported out to close to one end of cutter 11, the telescopic shaft of expansion bend 10 is reciprocatingly sliding In the process, it is transmitted into action edge by support rod 12 and idler wheel 13, driving cutter 11 are moved back and forth to being supported out in ice making pipe 8 Ice lolly carry out cutting form granular ice;There are one inclined slideway 14, the bottom ends of slideway 14 to connect for the lower section setting of ice making pipe 8 On the outer wall of furnace body 1, it is provided with the transport channel being connected to slideway 14 on the outer wall of furnace body 1, the granular ice of formation is from slideway 14 Above enter annular by transport channel to set in ice chamber 6, cooling chamber 2 further increases particle during rotation, by shifting block 5 Ice sets the degree of being uniformly distributed in ice chamber 6 in annular, and circumferential wall avoids granular ice from falling into through-hole, influences the operation of exhaust fan 4.
In use, compression mod is placed in cooling chamber 2, start actuating unit 3, cooling chamber 2 and exhaust fan 4 occur to turn It is dynamic, while the ice lolly formed in ice making pipe 8 by the cutting of cutter 11 forms granular ice and enters annular and sets in ice chamber 6, compression mod It is cooled down in cooling chamber 2.
Finally illustrate, above example is merely intended for describing the technical solutions of the present application, but not for limiting the present application, although ginseng The utility model is described in detail according to preferred embodiment, it will be understood by those of ordinary skill in the art that, it can be to this The technical solution of utility model is modified or replaced equivalently, without departing from the objective and model of technical solutions of the utility model It encloses, should all cover in the right of the utility model.

Claims (4)

1. a kind of solid cooling material reciprocating cutting formula normalizing cools down equipment, which is characterized in that including furnace body, rotation in the furnace body It is provided with the cooling chamber that bottom wall and side wall are provided with several recirculation holes, is opening at the top of furnace body and cooling chamber, bottom of furnace body is opened It is rotated equipped with through-hole, in through-hole and is provided with exhaust fan, exhaust fan and cooling chamber are driven by actuating unit;The cooling chamber It is provided with synergy cooling system;
The synergy cooling system includes that the annular between the side wall of furnace body and the side wall of cooling chamber sets ice chamber and sets ice to annular Intracavitary adds the mechanism for ice maker of granular ice, and mechanism for ice maker includes water inlet pipe, the water cooling flowed out in inlet tube is frozen into the cold of ice lolly Freeze component and the ice lolly obtained in freezing component is cut into the cutting member of granular ice;
The freezing component includes the ice making pipe being fixed on furnace body outer wall, and cutting member includes being located at the outer side of ice making pipe The cutter of expansion bend and the outer other side of ice making pipe, the telescopic shaft of expansion bend reciprocatingly slide in ice making pipe, and expansion bend stretches Axis drives cutter to move back and forth during reciprocatingly sliding by power transmission part, and cutter in ice making pipe in turn to being stretched The ice lolly that the telescopic shaft of device supports out is cut;
The power transmission part includes the sleeve being fixedly connected on furnace body outer wall, is slided in sleeve and is provided with support rod, support rod One end is connected with the telescopic shaft of expansion bend, and the other end rotation of support rod is provided with idler wheel, one end far from its blade of cutter It is connected on furnace body outer wall by spring, and one end far from its blade of cutter is in wedge surface, idler wheel offsets with wedge surface sliding.
2. a kind of solid cooling material reciprocating cutting formula normalizing according to claim 1 cools down equipment, it is characterised in that:It is described Freezing component further includes the water inlet pipe of water being supplemented into ice making pipe, and the tube wall of ice making pipe is cavity structure, cavity structure connection There is the refrigeration machine for making refrigerant be recycled in cavity structure.
3. a kind of solid cooling material reciprocating cutting formula normalizing according to claim 2 cools down equipment, it is characterised in that:It is described Water inlet pipe is arranged with heating mantle on one end outer wall of ice making pipe.
4. a kind of solid cooling material reciprocating cutting formula normalizing according to claim 1 cools down equipment, it is characterised in that:It is described Cooling chamber bottom is connected with slides the circumferential wall to offset with furnace body bottom wall, its circumferential direction of the outer wall upper edge of circumferential wall is uniformly distributed There are multiple granular ices for setting ice intracavitary to annular to carry out equally distributed shifting block.
CN201721746669.0U 2017-12-14 2017-12-14 A kind of solid cooling material reciprocating cutting formula normalizing cooling equipment Expired - Fee Related CN207793327U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721746669.0U CN207793327U (en) 2017-12-14 2017-12-14 A kind of solid cooling material reciprocating cutting formula normalizing cooling equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721746669.0U CN207793327U (en) 2017-12-14 2017-12-14 A kind of solid cooling material reciprocating cutting formula normalizing cooling equipment

Publications (1)

Publication Number Publication Date
CN207793327U true CN207793327U (en) 2018-08-31

Family

ID=63284298

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721746669.0U Expired - Fee Related CN207793327U (en) 2017-12-14 2017-12-14 A kind of solid cooling material reciprocating cutting formula normalizing cooling equipment

Country Status (1)

Country Link
CN (1) CN207793327U (en)

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180831

Termination date: 20191214