CN203140766U - Molybdenum slab preparation mould for isostatic cool pressing - Google Patents
Molybdenum slab preparation mould for isostatic cool pressing Download PDFInfo
- Publication number
- CN203140766U CN203140766U CN 201320186312 CN201320186312U CN203140766U CN 203140766 U CN203140766 U CN 203140766U CN 201320186312 CN201320186312 CN 201320186312 CN 201320186312 U CN201320186312 U CN 201320186312U CN 203140766 U CN203140766 U CN 203140766U
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- rubber
- isostatic cool
- frame
- cool pressing
- molybdenum
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Abstract
The utility model discloses a molybdenum slab preparation mould for isostatic cool pressing. The molybdenum slab preparation mould comprises a rubber protection sleeve. One end of the rubber protection sleeve is provided with an opening. A compaction rubber plate frame assembly is arranged inside the rubber protection sleeve. The opening of the rubber protection sleeve is sealed by a locking buckle assembly. The molybdenum slab preparation mould for the isostatic cool pressing is simple in structure, easy to operate, suitable for pressing of molybdenum slabs of various sizes, and low in manufacture cost due to the fact that used materials are all common materials. By the adoption of the molybdenum slab preparation mould, the rate of finished products of the molybdenum slab is well improved, manufacture cost of a molybdenum slab is reduced, and good economic benefits are brought.
Description
Technical field
The utility model belongs to preparation molybdenum plate technical field of mold, is specifically related to a kind of isostatic cool pressing with preparing molybdenum plate mold tool.
Background technology
At present compacting molybdenum plate base mainly contains dual mode, a kind of be the hydraulic press compacting, a kind of be the isostatic cool pressing compacting.
When preparing the molybdenum pressed compact, adopt by hydraulic press steel mold to suppress, its process characteristic is: appearance and size is regular, and the molybdenum pressed compact can only single load bearing or bidirectional stress, and the operating pressure of equipment is had relatively high expectations, limited by equipment performance and mould, can only suppress the following pressed compact of 3kg.
Isostatic cool pressing refers to the compression moulding technology of carrying out at ambient temperature, usually adopt rubber as lapping, as the pressure transmitting medium, the working pressure range during compacting molybdenum powder pressed compact is at 150~250MPa with liquid, and its purpose is to prepare pressed compact for next step sintering.
Adopt rubber mold to suppress during isostatic cool pressing compacting molybdenum pressed compact, have the characteristics of the profile of not being subjected to, specification, weight limits, and in the pressing process molybdenum pressed compact be six even stressed, the molybdenum green density is even.Yet the rubber mold insufficient strength of existing isostatic cool pressing easily causes the pressed compact profile regular inadequately, and size is inaccurate, causes decrease in yield, processing cost rising, the level of profitability to descend.
The utility model content
The purpose of this utility model is to provide a kind of isostatic cool pressing with preparation molybdenum plate mold tool, has solved in the prior art because deformation takes place in pressing process mould, causes the molybdenum plate base profile that finally the makes inaccurate problem of regular, size inadequately.
The technical scheme that the utility model adopts is: a kind of isostatic cool pressing is with preparing molybdenum plate mold tool, comprise that an end is provided with the rubber sheath of opening, the inside of rubber sheath is provided with pressed compact rubber plate-and-frame module, the opening part of rubber sheath tight locking button assembly lock sealing.
Characteristics of the present utility model also are,
Pressed compact rubber plate-and-frame module comprises rubber sheet frame, rubber bottom plate and the rubber top board of both ends open, and rubber bottom plate and rubber top board are sleeved on lower end and the upper end open of rubber sheet frame respectively; The rubber top board is provided with the first in command, respectively along being provided with several first through holes with the respective side parallel direction, is inserted with reinforced pole in each first through hole on four sides of rubber sheet frame.
The length of the side of the length of every reinforced pole and its place rubber sheet frame adapts.
Also comprise dress powder device, dress powder device further comprises the frame of rectangle, the bottom of frame is connected with base plate, base plate is provided with several second through holes, one group of opposite side of frame is respectively arranged with connecting plate, each connecting plate is provided with the second in command, and frame is sleeved in the upper end open of rubber sheet frame.
Second through hole is that diameter is the circular port of 5~6mm.
The tight locking button assembly comprises a U-shaped bar, and the openend of U-shaped bar is connected with catch, and two free ends of U-shaped bar pass catch and are connected with locking nut respectively, after the opening of rubber sheath is gathered, place in catch and the formed perforate of U-shaped bar.
The beneficial effects of the utility model are: a kind of isostatic cool pressing of the present utility model is simple with the preparation molybdenum plate mold structure of signing an undertaking, processing ease, be suitable for the compacting of the molybdenum plate base of various sizes, and employed all is common materials, low cost of manufacture, use mould of the present utility model can promote the yield rate of molybdenum plate base well, reduced the manufacturing cost of molybdenum plate base, bring good economic benefit.
Description of drawings
Fig. 1 is the structural representation that isostatic cool pressing of the present utility model is used preparation molybdenum plate mold tool;
Fig. 2 is the decomposition texture schematic diagram that isostatic cool pressing of the present utility model is used pressed compact rubber plate-and-frame module in the preparation molybdenum plate mold tool;
Fig. 3 is the use state diagram of the utility model isostatic cool pressing when preparing molybdenum plate mold tool dress powder;
Fig. 4 is that the utility model isostatic cool pressing is with preparing the structural representation of adorning the powder device in the molybdenum plate mold tool;
Fig. 5 is the structural representation that the utility model isostatic cool pressing is used tight locking button assembly in the preparation molybdenum plate mold tool.
Among the figure, 1. pressed compact rubber plate-and-frame module, 2. rubber sheath, 3. tight locking button assembly, 4. adorn powder device, 101. rubber sheet frames, 102. rubber bottom plates, 103. rubber top boards, 104. first through hole, 105. reinforced poles, 106. first in command, 301.U the shape bar, 302. catch, 303. locking nuts, 304. perforate, 401. frames, 402. connecting plates, 403. the second in command, 404. base plates, 405. second through holes.
The specific embodiment
Below in conjunction with the specific embodiment the utility model is elaborated.
A kind of isostatic cool pressing of the present utility model with the structure for preparing molybdenum plate mold tool as shown in Figure 1, comprise that an end is provided with the rubber sheath 2 of opening, the inside of rubber sheath 2 is provided with pressed compact rubber plate-and-frame module 1, the opening part of rubber sheath 2 tight locking button assembly 3 lock sealings.
As shown in Figure 2, pressed compact rubber plate-and-frame module 1 comprises rubber sheet frame 101, rubber bottom plate 102 and the rubber top board 103 of both ends open, and rubber bottom plate 102 and rubber top board 103 are sleeved on lower end and the upper end open of rubber sheet frame 101 respectively; Rubber top board 103 is provided with the first in command 106, respectively along being provided with several first through holes 104 with the respective side parallel direction, is inserted with reinforced pole 105 in each first through hole 104 on four sides of rubber sheet frame 101.
The length of the side of the length of every reinforced pole 105 and its place rubber sheet frame 101 adapts.
As shown in Figure 3, isostatic cool pressing of the present utility model also comprises dress powder device 4 with preparation molybdenum plate mold tool, the structure of dress powder device 4 as shown in Figure 4, the frame 401 that comprises rectangle, the bottom of frame 401 is connected with base plate 404, and base plate 404 is provided with several second through holes 405, and one group of opposite side of frame 401 is respectively arranged with connecting plate 402, each connecting plate 402 is provided with the second in command 403, and frame 401 is sleeved in the upper end open of rubber sheet frame 101.
Second through hole 405 is the circular port of 5~6mm for diameter.
As shown in Figure 5, tight locking button assembly 3 comprises a U-shaped bar 301, the openend of U-shaped bar 301 is connected with catch 302, two free ends of U-shaped bar 301 pass catch 302 and are connected with locking nut 303 respectively, after the opening of rubber sheath 2 is gathered, place in catch 302 and the 301 formed perforates 304 of U-shaped bar.
During work, rubber top board 103 with pressed compact rubber sheet frame 1 takes out earlier, the bottom cover that to adorn powder device 4 again is incorporated in the rubber slab frame 1, in dress powder device 4, pour molybdenum powder into, make molybdenum powder from second through hole 405 of base plate 404, enter in the pressed compact rubber plate-and-frame module 1 by vibration, and then take out and adorn powder device 4, and rubber top board 103 is positioned on the rubber sheet frame 101, compress, pressed compact rubber sheet frame 1 is put into rubber sheath 2, fill in the U-shaped bar of tight locking button assembly 3 after again the opening of rubber sheath 2 being gathered, catch 302 is installed, use locking nut 303 with the openend lock sealing of rubber sheath 2 more at last.
Owing in rubber sheet frame 1, inserted reinforced pole 105, make mould not yielding in the pressing process of molybdenum plate base, the size that has guaranteed final pressing plate base is comparatively regular, and mould of the present utility model can be designed to different sizes as required, with the needs of the molybdenum plate base compacting of satisfying different size.
By the way, the utility model has solved in the prior art because deformation takes place in pressing process mould, causes the molybdenum plate base profile that finally the makes inaccurate problem of regular, size inadequately.And a kind of isostatic cool pressing of the present utility model is simple with the preparation molybdenum plate mold structure of signing an undertaking, processing ease, be suitable for the compacting of the molybdenum plate base of various sizes, and employed all is common materials, low cost of manufacture, use mould of the present utility model can promote the yield rate of molybdenum plate base well, reduced the manufacturing cost of molybdenum plate base, bring good economic benefit.
Claims (6)
1. an isostatic cool pressing is with preparing molybdenum plate mold tool, it is characterized in that, comprise that an end is provided with the rubber sheath of opening (2), the inside of described rubber sheath (2) is provided with pressed compact rubber plate-and-frame module (1), the opening part of described rubber sheath (2) tight locking button assembly (3) lock sealing.
2. a kind of isostatic cool pressing as claimed in claim 1 is with preparing molybdenum plate mold tool, it is characterized in that, described pressed compact rubber plate-and-frame module (1) comprises rubber sheet frame (101), rubber bottom plate (102) and the rubber top board (103) of both ends open, and described rubber bottom plate (102) and described rubber top board (103) are sleeved on lower end and the upper end open of described rubber sheet frame (101) respectively; Described rubber top board (103) is provided with the first in command (106), respectively along being provided with several first through holes (104) with the respective side parallel direction, be inserted with reinforced pole (105) in described each first through hole (104) on four sides of described rubber sheet frame (101).
3. a kind of isostatic cool pressing as claimed in claim 2 is characterized in that with preparation molybdenum plate mold tool the length of the side of the length of described every reinforced pole (105) and its place rubber sheet frame (101) adapts.
4. a kind of isostatic cool pressing as claimed in claim 2 is with preparing molybdenum plate mold tool, it is characterized in that, also comprise dress powder device (4), described dress powder device (4) further comprises the frame (401) of rectangle, the bottom of described frame (401) is connected with base plate (404), described base plate (404) is provided with several second through holes (405), be respectively arranged with connecting plate (402) on one group of opposite side of described frame (401), described each connecting plate (402) is provided with the second in command (403), and described frame (401) is sleeved in the upper end open of described rubber sheet frame (101).
5. a kind of isostatic cool pressing as claimed in claim 4 is characterized in that with preparation molybdenum plate mold tool described second through hole (405) is the circular port of 5~6mm for diameter.
6. as any described a kind of isostatic cool pressing of claim 1~5 preparation molybdenum plate mold tool, it is characterized in that, described tight locking button assembly (3) comprises a U-shaped bar (301), the openend of described U-shaped bar (301) is connected with catch (302), two free ends of described U-shaped bar (301) pass described catch (302) and are connected with locking nut (303) respectively, after the opening of described rubber sheath (2) is gathered, place in described catch (302) and the formed perforate of described U-shaped bar (301) (304).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201320186312 CN203140766U (en) | 2013-04-12 | 2013-04-12 | Molybdenum slab preparation mould for isostatic cool pressing |
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CN 201320186312 CN203140766U (en) | 2013-04-12 | 2013-04-12 | Molybdenum slab preparation mould for isostatic cool pressing |
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CN203140766U true CN203140766U (en) | 2013-08-21 |
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CN 201320186312 Expired - Lifetime CN203140766U (en) | 2013-04-12 | 2013-04-12 | Molybdenum slab preparation mould for isostatic cool pressing |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103231053A (en) * | 2013-04-12 | 2013-08-07 | 金堆城钼业股份有限公司 | Cold isostatic pressing die for preparing molybdenum slabs |
CN106111983A (en) * | 2016-06-21 | 2016-11-16 | 金堆城钼业股份有限公司 | A kind of the isostatic pressed of free shrink can found pressure type mould and drawing method with paperback |
CN107877919A (en) * | 2017-12-20 | 2018-04-06 | 镇江华核装备有限公司 | A kind of structure of steel die of energy-efficient isostatic tooling |
-
2013
- 2013-04-12 CN CN 201320186312 patent/CN203140766U/en not_active Expired - Lifetime
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103231053A (en) * | 2013-04-12 | 2013-08-07 | 金堆城钼业股份有限公司 | Cold isostatic pressing die for preparing molybdenum slabs |
CN103231053B (en) * | 2013-04-12 | 2015-07-29 | 金堆城钼业股份有限公司 | Isostatic cool pressing preparation molybdenum plate blank mould |
CN106111983A (en) * | 2016-06-21 | 2016-11-16 | 金堆城钼业股份有限公司 | A kind of the isostatic pressed of free shrink can found pressure type mould and drawing method with paperback |
CN106111983B (en) * | 2016-06-21 | 2017-12-26 | 金堆城钼业股份有限公司 | It is a kind of can the isostatic pressed of free shrink found pressure type mould and drawing method with paperback |
CN107877919A (en) * | 2017-12-20 | 2018-04-06 | 镇江华核装备有限公司 | A kind of structure of steel die of energy-efficient isostatic tooling |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CX01 | Expiry of patent term | ||
CX01 | Expiry of patent term |
Granted publication date: 20130821 |