CN102320156A - Splice type mould disc set - Google Patents

Splice type mould disc set Download PDF

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Publication number
CN102320156A
CN102320156A CN201110285265A CN201110285265A CN102320156A CN 102320156 A CN102320156 A CN 102320156A CN 201110285265 A CN201110285265 A CN 201110285265A CN 201110285265 A CN201110285265 A CN 201110285265A CN 102320156 A CN102320156 A CN 102320156A
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CN
China
Prior art keywords
mould
ring
mosaic block
heating tank
matrix
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Pending
Application number
CN201110285265A
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Chinese (zh)
Inventor
石书田
李�远
张庆瑞
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Aoke Ruifeng Mechanical & Electrical Technology Co Ltd
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Beijing Aoke Ruifeng Mechanical & Electrical Technology 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
Application filed by Beijing Aoke Ruifeng Mechanical & Electrical Technology Co Ltd filed Critical Beijing Aoke Ruifeng Mechanical & Electrical Technology Co Ltd
Priority to CN201110285265A priority Critical patent/CN102320156A/en
Publication of CN102320156A publication Critical patent/CN102320156A/en
Pending legal-status Critical Current

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Abstract

The invention provides a splice type mould disc, wherein an upper mould disc is arranged on the top of a lower mould disc; the lower mould disc is composed of a lower mould disc basal body and a plurality of modules installed on the lower mould disc basal body; heating grooves for placing heating pipes are also respectively arranged in the upper mould disc and the lower mould disc basal body; a stop ring is arranged between the upper mould disc and the lower mould disc; mosaic blocks are embedded in mosaic holes arranged on the surfaces of the upper mould disc and the lower mould disc basal body; the mosaic holes are annularly distributed on the surface of the upper mould disc and the lower mould disc basal body; the mosaic blocks are also clamped in locating holes on the outer edge of the stop ring; and the mosaic blocks are arranged on the front ends of the modules. According to the splice type mould disc set provided by the invention, the mosaic blocks are embedded between the upper mould disc and the lower mould disc and located and fixed by the stop ring so that a splice type structure is formed; the processing process can be reduced; the processing cost is reduced; the processing steps are simpler; when the splice type mould disc set is assembled, the use number of bolts can be reduced; and the working efficiency for assembling the mould disc set and replacing the mosaic blocks can be increased.

Description

Spliced mould group
Technical field
The present invention relates to a kind of mould, especially a kind of spliced mould group.
Background technology
At present, what biomass moulding equipment mainly adopted is split type module, and the split type module of this kind is for joining the mould group that forms by module and mould assembling.The shortcoming of this kind mould group is: it is very low that efficient is gone up in the module replacing, and the procedure of processing complicacy and the interchangeability of split type module are poor; In addition, the operation of split type module is all very loaded down with trivial details when maintenance, dismounting and assembling.Because module is a kind of consumable accessory, on replacing and the interchangeability very big deficiency is arranged, usually integral body is all changed because damage a module, increased equipment cost and wastage of material so greatly.
Summary of the invention
To the weak point of above-mentioned technology, the present invention provides a kind of usage quantity that can reduce bolt when assembling, and it is convenient that mosaic block is changed, also can improve the spliced mould of mould bulk strength and anti-wear performance.
For realizing above-mentioned purpose; The present invention provides a kind of spliced mould, comprises mould and following mould, and the said mould of going up is arranged on the said top of mould down; Said mould down is made up of following mould matrix and a plurality of modules that are installed on the said mould matrix down; Mould and the said inside of mould matrix down also are respectively equipped with the heating tank that is used to place heating tube on said, also comprise back-up ring and mosaic block, and said back-up ring is arranged on the said mould of going up and descends between the mould with said; Said mosaic block is embedded in said going up in mould and the said down inlaid hole that the mould matrix surface is provided with; Said inlaid hole is distributed in said mould and the said mould matrix surface down gone up ringwise, and said mosaic block also is fastened in the positioning port at said back-up ring edge, and said mosaic block is arranged on the front end of said module.
Said back-up ring is divided into first back-up ring and second back-up ring; Said positioning port is arranged on the outer ledge of said first back-up ring and said second back-up ring, and said positioning port and said mosaic block, the said quantity that goes up said inlaid hole a, the said inlaid hole b in the said mould down and said module in the mould are identical.
Said first back-up ring is arranged on the said lower surface of mould down; Said second back-up ring is arranged on the said top surface of mould matrix down; The top surface isoplanar of the top surface of said second back-up ring and said mould matrix down is provided with, and said inlaid hole is fastened in the positioning port of said first back-up ring and said second back-up ring.
Said module is distributed in the said top surface of mould matrix down ringwise, and the end of said module and the said end face isoplanar, the outside of mould matrix down are provided with, and said inlaid hole is arranged on the front end of said module.
Said mosaic block is in the said inlaid hole of said upward mould and said mould matrix surface down; The top end of said mosaic block and said top end isoplanar of going up mould are provided with, and the bottom end face of said mosaic block and the said bottom end face isoplanar of mould matrix down are provided with.
The front end face of said mosaic block is " worker " font structure, and the rear end face of said mosaic block is a rectangular configuration, and the front end face of said mosaic block and and arranged on left and right sides wall are fastened on respectively in the positioning port of said first back-up ring and the said second back-up ring outer ledge.
Said heating tank is divided into first heating tank and second heating tank; Said first heating tank and second heating tank are loop configuration with said upward mould and said mould matrix down all, and said first heating tank and said second heating tank adopt the helical form mode to be arranged on said going up in mould and the said mould matrix down.
The top port of said first heating tank is arranged on said top of going up the mould inwall; The bottom port of said first heating tank is arranged on said bottom of going up the mould inwall; The top port of said second heating tank is arranged on the said top of mould inwall down, and the bottom port of said second heating tank is arranged on the said bottom of mould inwall down.
The quantity of said mosaic block, said inlaid hole a, said inlaid hole b, said module and said positioning port is 45.
Compared with prior art, the present invention has the following advantages:
Spliced mould group provided by the invention is embedded in mosaic block between mould and the following mould, through back-up ring mosaic block is positioned with fixing, thereby forms spliced structure.The present invention adopts spliced structure, can reduce procedure, cuts down finished cost, and makes procedure of processing more simple; When assembling, can reduce the usage quantity of bolt, improve the mould assembling and join the operating efficiency of changing with mosaic block.In addition, module among the present invention adopts ordinary steel to strengthen its hardness through heat treatment, and mosaic block employing high-abrasive material is processed, mosaic block is embedded the mould group after, can improve the intensity and the anti-wear performance of mould group complete machine, also prolonged its service life.
Description of drawings
Fig. 1 is an exploded view of the present invention;
Fig. 2 is a cutaway view of going up mould among Fig. 1;
Fig. 3 is the cutaway view of following mould among Fig. 1;
Fig. 4 is the structure chart of Fig. 1 guide ring;
Fig. 5 is the stereogram of mosaic block among Fig. 1.
Main symbol description is following:
Mould 3-first back-up ring under the last mould 2-of 1-
The 4-second back-up ring 5-module 6-mosaic block
The 7-first heating tank 8-second heating tank 9-inlaid hole a
10-top port a 11-bottom port a 12-positioning port
Mould matrix under the 13-top port b 14-bottom port b 15-
16-inlaid hole b
The specific embodiment
Below in conjunction with accompanying drawing and embodiment the present invention is done further explain.
The present invention provides a kind of spliced mould; Constitute by last mould, following mould, a plurality of mosaic block and two back-up rings; Last mould is arranged on down the top of mould; On last mould and following mould, be distributed with a plurality of inlaid holes, following mould is made up of following mould matrix and a plurality of modules that are distributed in down on the mould matrix, also is respectively equipped with the heating tank that is used to place heating tube in the inside of last mould and following mould matrix.Inlaid hole a in the last mould, down the quantity of positioning port is identical on the inlaid hole b in the mould matrix, mosaic block, module and two back-up rings, and its quantity is 45.In addition, all be provided with bolt hole, can also come fastening mould and the following mould gone up through bolt on the surface of last mould, following mould.
To shown in Figure 5, last mould 1 is a loop configuration like Fig. 1, and its top surface and lower surface are planar structure.Position near edge in it in the last mould 1 is provided with a plurality of inlaid hole a9 that are the ring distribution, and this inlaid hole a9 is through the inside of last mould 1.In addition, be provided with first heating tank 7 that is used to place heating tube in the inside of last mould 1, this first heating tank 7 be shaped as loop configuration, it adopts spiral way to be arranged on the inside of mould 1.Wherein, the top port a10 of first heating tank 7 is arranged on the tip position of inwall in the mould 1, and the bottom port a11 of first heating tank 7 is arranged on the bottom position of inwall in the mould 1.
Following mould 2 is made up of following mould matrix 15 and a plurality of modules 5 that are distributed in down on the mould matrix 15; The shape of following mould matrix 15 and size are identical with the shape and the size of last mould 1; Also be cirque structure, its top surface and lower surface are planar structure.Position near edge in it in the following mould matrix 15 is provided with a plurality of inlaid hole b16 that are the ring distribution, and this inlaid hole b16 is through the inside of following mould matrix 15, and inlaid hole a9 is corresponding each other with the position of inlaid hole b16.The lower surface of a plurality of modules 5 is fixed on down the top of mould matrix 15; And be distributed in down the top surface of mould matrix 15 ringwise; Its terminal end face isoplanar, the outside with following mould matrix 15 is provided with, and inlaid hole b16 is arranged on the following mould matrix 15 of module 5 front ends.In addition, be provided with second heating tank 8 that is used to place heating tube in the following inside of mould matrix 15, this second heating tank 8 be shaped as loop configuration, it adopts spiral way to be arranged on down the inside of mould matrix 15.Wherein, the top port b13 of second heating tank 8 is arranged on down the tip position of inwall in the mould matrix 15, and the bottom port b14 of second heating tank 8 is arranged on down the bottom position of inwall in the mould matrix 15.The top port b13 of second heating tank 8 is corresponding with the bottom port a11 of first heating tank 7, and the bottom port b14 of second heating tank is corresponding with the top port a10 of first heating tank 7.
Back-up ring is fastened between mould 1 and the following mould matrix 15, and back-up ring is identical with the shape of last mould and following mould matrix, is distributed with a plurality of positioning ports 12 of indent at the outer ledge of back-up ring.Wherein, Back-up ring is divided into first back-up ring 3 and second back-up ring 4; The top surface of first back-up ring 3 is provided with the downside of inlaid hole a9 in the mould 1, and the position of the positioning port 12 in first back-up ring 3 is corresponding with the position of inlaid hole a9, and the quantity of positioning port 12 is identical with the quantity of inlaid hole a9 in first back-up ring 3.The top surface of second back-up ring 4 is arranged on down the upside of inlaid hole b16 in the mould matrix 15, and the top surface of its top surface and last mould matrix is the isoplanar and is provided with.The position of the positioning port 12 in second back-up ring 4 is corresponding with the position of inlaid hole b16, and the quantity of positioning port 12 is identical with the quantity of inlaid hole b16 in second back-up ring 4.
The front end face of mosaic block 6 is " worker " font structure; The rear end face of mosaic block 6 is a rectangular configuration; The bottom of mosaic block 6 is in the inlaid hole b16 that is arranged on down mould matrix 15 surfaces; The top of mosaic block 6 in the inlaid hole a9 that is arranged on mould 1 surface, thereby be arranged on the front end of module 5.The top end isoplanar of the top end of mosaic block 6 and last mould 1 is provided with; The bottom end face isoplanar setting of the bottom end face of mosaic block 6 and following mould matrix 15, the inner side end near last mould 1 outer ledge among the front end face of the rear end face of mosaic block 6 and module 5 and the inlaid hole a9 closely contacts.The middle part of the front end face of mosaic block 6 is fastened in the positioning port 12 in first back-up ring 3 and second back-up ring 4; Closely contact near the inner side end along the edge in the last mould 1 among the top of the front end face of mosaic block 6 and the inlaid hole a9, closely contact near mould matrix 15 interior inner side ends down among the bottom of the front end face of mosaic block 6 and the inlaid hole b16 along the edge.Can improve the fixed performance of mosaic block in last mould 1 and following mould matrix 15 through the positioning port 12 in first back-up ring 3 and second back-up ring 4.
Spliced mould provided by the invention is by last mould, down mould, back-up ring constitute with mosaic block, and last mould and following mould are clamped back-up ring in order to fixing mosaic block, can fix through bolt between last mould and the following mould.Mosaic block fixes through the inlaid hole and the middle back-up ring of last mould with following mould, and mosaic block is to be processed by high-abrasive material, is that straight mouthful of pattern dish and mosaic block come fastened to each other between mould and the back-up ring.
Last mould among the present invention all is to adopt common material to process through Overheating Treatment with following mould, and mould is easy to manufacture like this, can reduce its processing cost, and overall structure is enhanced, and dismounting easily.In last mould and following mould, be provided with two back-up rings that cooperatively interact and be used for fixing mosaic block, not only improved the exchange efficient of mosaic block, also make the dismounting of mosaic block better easily.
The present invention adopts spliced structure assembling, has reduced procedure, has reduced processing cost, makes procedure of processing more simple, when assembling, also can reduce the usage quantity of bolt.
Assembly process of the present invention is: at first, will descend mould with bolted on equipment, a back-up ring word is being contained in the counterdie tray bottom; Then; After treating down that mould installs, in the inlaid hole with mould under 45 mosaic blocks insertions, in straight mouthful of last mould, put into and fixing back-up ring; With last mould that back-up ring is housed and corresponding being bolted together of following mould, corresponding mosaic block top is inserted in the inlaid hole of going up mould; At last, using bolt will go up mould is locked with following mould.This moment, mould group provided by the invention was just assembled completion.
More than be merely preferred embodiment of the present invention, or not all within spirit of the present invention and principle in order to restriction the present invention, any modification of being done, be equal to replacement, improvement etc., all should be included within protection scope of the present invention.

Claims (9)

1. spliced mould; Comprise mould and following mould, the said mould of going up is arranged on the said top of mould down, and said mould down is made up of following mould matrix and a plurality of modules that are installed on the said mould matrix down; Mould and the said inside of mould matrix down also are respectively equipped with the heating tank that is used to place heating tube on said; It is characterized in that, also comprise back-up ring and mosaic block, said back-up ring is arranged on the said mould and said down between the mould of going up; Said mosaic block is embedded in said going up in mould and the said down inlaid hole that the mould matrix surface is provided with; Said inlaid hole is distributed in said mould and the said mould matrix surface down gone up ringwise, and said mosaic block also is fastened in the positioning port at said back-up ring edge, and said mosaic block is arranged on the front end of said module.
2. spliced mould according to claim 1; It is characterized in that; Said back-up ring is divided into first back-up ring and second back-up ring; Said positioning port is arranged on the outer ledge of said first back-up ring and said second back-up ring, and said positioning port and said mosaic block, the said quantity that goes up said inlaid hole a, the said inlaid hole b in the said mould down and said module in the mould are identical.
3. spliced mould according to claim 2; It is characterized in that; Said first back-up ring is arranged on the said lower surface of mould down; Said second back-up ring is arranged on the said top surface of mould matrix down, and the top surface of said second back-up ring and the said top surface isoplanar of mould matrix down are provided with, and said inlaid hole is fastened in the positioning port of said first back-up ring and said second back-up ring.
4. spliced mould according to claim 3; It is characterized in that; Said module is distributed in the said top surface of mould matrix down ringwise, and the end of said module and the said end face isoplanar, the outside of mould matrix down are provided with, and said inlaid hole is arranged on the front end of said module.
5. spliced mould according to claim 4; It is characterized in that; Said mosaic block is in the said inlaid hole of said upward mould and said mould matrix surface down; The top end of said mosaic block and said top end isoplanar of going up mould are provided with, and the bottom end face of said mosaic block and the said bottom end face isoplanar of mould matrix down are provided with.
6. spliced mould according to claim 5; It is characterized in that; The front end face of said mosaic block is " worker " font structure; The rear end face of said mosaic block is a rectangular configuration, and the front end face of said mosaic block and and arranged on left and right sides wall are fastened on respectively in the positioning port of said first back-up ring and the said second back-up ring outer ledge.
7. spliced mould according to claim 6; It is characterized in that; Said heating tank is divided into first heating tank and second heating tank; Said first heating tank and second heating tank are loop configuration with said upward mould and said mould matrix down all, and said first heating tank and said second heating tank adopt the helical form mode to be arranged on said going up in mould and the said mould matrix down.
8. spliced mould according to claim 7; It is characterized in that; The top port of said first heating tank is arranged on said top of going up the mould inwall; The bottom port of said first heating tank is arranged on said bottom of going up the mould inwall, and the top port of said second heating tank is arranged on the said top of mould inwall down, and the bottom port of said second heating tank is arranged on the said bottom of mould inwall down.
9. according to any described spliced mould in the claim 1 to 8, it is characterized in that the quantity of said mosaic block, said inlaid hole a, said inlaid hole b, said module and said positioning port is 45.
CN201110285265A 2011-09-23 2011-09-23 Splice type mould disc set Pending CN102320156A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201110285265A CN102320156A (en) 2011-09-23 2011-09-23 Splice type mould disc set

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201110285265A CN102320156A (en) 2011-09-23 2011-09-23 Splice type mould disc set

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CN102320156A true CN102320156A (en) 2012-01-18

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Application Number Title Priority Date Filing Date
CN201110285265A Pending CN102320156A (en) 2011-09-23 2011-09-23 Splice type mould disc set

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CN (1) CN102320156A (en)

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1016163A (en) * 1961-07-10 1966-01-05 John Deere Lanz Ag Improvements in or relating to die structures for wafering or pelleting machines
US3958911A (en) * 1974-04-12 1976-05-25 Makeham Patricia L Die cutter for forage cubing device
SU700348A1 (en) * 1977-12-30 1979-11-30 Всесоюзный Ордена Трудового Красного Знамени Научно-Исследовательский Институт Механизации Сельского Хозяйства (Вим) Briquetting press matrix
JPS59145030A (en) * 1983-02-07 1984-08-20 Ishida Tekkosho:Kk Apparatus for pulverizing waste material into solid particles
CN201520073U (en) * 2009-10-29 2010-07-07 江苏牧羊集团有限公司 Combined die block of annular die type briquetting machine
CN101811371A (en) * 2009-12-28 2010-08-25 北京奥科瑞丰机电技术有限公司 Biomass extrusion molding machine mould disc
CN201872368U (en) * 2010-10-25 2011-06-22 赵理 Ring mold type biomass briquetting machine with multilayer discharging channel holes

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1016163A (en) * 1961-07-10 1966-01-05 John Deere Lanz Ag Improvements in or relating to die structures for wafering or pelleting machines
US3958911A (en) * 1974-04-12 1976-05-25 Makeham Patricia L Die cutter for forage cubing device
SU700348A1 (en) * 1977-12-30 1979-11-30 Всесоюзный Ордена Трудового Красного Знамени Научно-Исследовательский Институт Механизации Сельского Хозяйства (Вим) Briquetting press matrix
JPS59145030A (en) * 1983-02-07 1984-08-20 Ishida Tekkosho:Kk Apparatus for pulverizing waste material into solid particles
CN201520073U (en) * 2009-10-29 2010-07-07 江苏牧羊集团有限公司 Combined die block of annular die type briquetting machine
CN101811371A (en) * 2009-12-28 2010-08-25 北京奥科瑞丰机电技术有限公司 Biomass extrusion molding machine mould disc
CN201872368U (en) * 2010-10-25 2011-06-22 赵理 Ring mold type biomass briquetting machine with multilayer discharging channel holes

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Address after: 100101 Beijing city Chaoyang District Anxiang Lane No. 11 building B block 17 layer

Applicant after: Beijing Aoke Ruifng New Energy Co., Ltd.

Address before: 100101 Beijing city Chaoyang District Anxiang Lane No. 11 building B block 17 layer

Applicant before: Beijing Aoke Ruifeng Mechanical & Electrical Technology Co., Ltd.

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Free format text: CORRECT: APPLICANT; FROM: BEIJING AOKERUIFENG ELECTROMECHANICAL TECHNOLOGY CO., LTD. TO: BEIJING AOKE RUIFENG NEW ENERGY CO., LTD.

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Application publication date: 20120118