CN204545382U - A kind of device preparing particulate reinforced metal-based composite surface material - Google Patents

A kind of device preparing particulate reinforced metal-based composite surface material Download PDF

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CN204545382U
CN204545382U CN201420408621.9U CN201420408621U CN204545382U CN 204545382 U CN204545382 U CN 204545382U CN 201420408621 U CN201420408621 U CN 201420408621U CN 204545382 U CN204545382 U CN 204545382U
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quartz ampoule
surface material
based composite
sand
die cavity
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CN201420408621.9U
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李祖来
冯志扬
蒋业华
�山泉
黄浩科
潘伟
毕金凤
韦贺
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Kunming University of Science and Technology
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Kunming University of Science and Technology
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Abstract

The utility model discloses a kind of device preparing particulate reinforced metal-based composite surface material, belongs to anti-high-abrasive material preparing technical field; Device described in the utility model comprises the die cavity of boss, interior quartz ampoule, eps foam, preformed layer, wire netting, quartz sand, wire netting, rubber stopper, right angle quartz ampoule, sand mold, outer quartz ampoule, vacuum meter, vacuum valve, vavuum pump; The utility model is by vacuum sealing technology, improve the mold-filling capacity of molten metal, be beneficial to molten metal in the intergranular infiltration of enhancing, thus obtain thicker finer and close composite bed, the particulate reinforced metal-based composite surface material of preparation is made to have higher reinforcement volume fraction, the impact wear resistance of more uniform reinforcement distribution and excellence; The feature that the surface recombination thickness of strong, the particulate reinforced metal-based composite surface material of method liquid metal filling ability described in the utility model is thick; The utility model method is not only applicable to prepare general particulate reinforced metal-based composite surface material, is also applicable to prepare preparation composite physical dimension being required to higher mechanical test material.

Description

A kind of device preparing particulate reinforced metal-based composite surface material
Technical field
The utility model relates to a kind of device preparing particulate reinforced metal-based composite surface material, belongs to anti-high-abrasive material preparing technical field.
Background technology
The development of modern industry requires more and more higher to the anti-wear performance of material, the departments such as metallurgy, mine, building materials, electric power, chemical industry, coal and agricultural will use mining machinery, engineering machinery, agricultural machinery and various crushing and grinding machinery respectively, the consumable accessory of these plant equipment receives the wearing and tearing of the various material box abrasive body such as sandstone, soil, will consume a large amount of metal every year.According to incomplete statistics, 1/3 ~ 2/3 of the energy is consumed in friction and wear; Concerning material, the part failure of about 80% causes owing to wearing and tearing, and what wherein lost efficacy with abrasive material accounts for 50%, and China is used for the abrasion-resistant stee ironware of abrasive wear operating mode according to statistics, will consume more than 200 ten thousand tons every year; Thus, developing one can under wear working condition, and the plastics on new materials with the long life seems very important.
Technology of infiltration casting alloy powder or ceramic particle etc. is fixed on the ad-hoc location of type wall in advance, and then make cast(ing) surface have special structure and properties by cast, this technique is a kind of surface treatment and the shaping technique combined.The method is simple, and without the need to special treatment facility, surface-treated layer has certain thickness, with short production cycle, part is indeformable, has the advantage that other process is incomparable, is the effective way improving the performances such as cast(ing) surface is wear-resisting, anti-corrosion, high temperature resistant.After the method occurs, obtain continuous development, especially after nineteen nineties, casting infiltration prepares the favor that composite receives people.
At present, the method for cast-infiltration method preparation table surface composite material is utilized to mainly contain following several: (1) common cast-infiltration method; (2) centrifugal casting infiltration method; (3) V method technology of infiltration casting; (4) full mold technology of infiltration casting (EPC); (5) vacuum carries out technology of infiltration casting (V-EPC).In these techniques, front four kinds of techniques also exist surface quality of continuous castings difference, dimensional accuracy is low, the defect such as easily occur pore or be mingled with, and surface composite layer thinner thickness separately, though and the more front four kinds of techniques of the material that vacuum full mold technology of infiltration casting is prepared compare pore, be mingled with minimizing, dimensional accuracy improves, surface quality also has a certain upgrade, but its composite bed thickness only has 3 ~ 5mm thick at present, to the mechanical property of test compound layer, then cannot to meet in various Mechanics Performance Testing GB to the dimensional requirement of material, based on this, the device and method that vacuum-evaporative pattern casting tungsten carbide strengthens metal surface composite well solves the thin problem of Material cladding layer thickness, the thickness of the particle reinforced surface metal using this installation method to prepare reaches 17mm, meet the requirement to composite material size in current various mechanical test, this kind of method has great importance for material properties test research.
Summary of the invention
The purpose of this utility model is to provide a kind of device preparing particulate reinforced metal-based composite surface material, this device comprises die cavity 1, interior quartz ampoule 2, eps foam 3, preformed layer 4, wire netting I 5, quartz sand 6, wire netting II 7, rubber stopper I 8, right angle quartz ampoule 9, sand mold 10, rubber stopper II 11, outer quartz ampoule 12, vavuum pump 13, vacuum meter 14, the vacuum valve 15 of band boss, and the die cavity 1 of band boss is positioned on sand mold 10 and sand mold 10 is connected; Die cavity 1 with boss is connected with interior quartz ampoule 2, puts into eps foam 3, preformed layer 4, wire netting I 5, quartz sand 6, wire netting II 7 in quartz ampoule 2 successively, and the lower end rubber stopper I 8 of interior quartz ampoule 2 seals; One end and the rubber stopper I 8 of right angle quartz ampoule 9 are tightly connected, the other end and rubber stopper II 11 are tightly connected; One end rubber stopper II 11 of outer quartz ampoule 12 seals, and the other end is connected with vavuum pump 13, and vacuum meter 14, vacuum valve 15 are vertically arranged on the top of vavuum pump 13.
The thickness of eps foam 3 described in the utility model is 5 ~ 10mm, the thickness of preformed layer 4 is 15 ~ 25mm, the thickness of quartz sand 6 is 10 ~ 15mm.
The wire netting of more than 150 μm that wire netting I 5 described in the utility model is, quartz sand 6 granular size is 600 ~ 850 μm.
The diameter of die cavity (1) cylinder of band boss described in the utility model is Φ120 ~ Φ160mm, be highly 180 ~ 280mm, boss length is 50 ~ 60mm, the wide 50 ~ 60mm of being, height are 8 ~ 15mm.
Interior quartz ampoule 2 described in the utility model is placed vertically, perpendicular to the bottom surface of band boss die cavity 1, makes it in cast, obtain a larger fall head thus power is oozed in the larger casting of acquisition.
Sand mold 10 described in the utility model prepares by the following method: the moulding sand that first bottom sandbox, layer overlay 40 ~ 50mm is thick, vacuum full mold casting except vavuum pump is oozed device and to be placed in sandbox precalculated position on the moulding sand of bottom, the die cavity wooden model of band boss is placed above device vertical direction, and then carry out moulding with water-glass sand, ooze device by being placed with the casting of vacuum full mold in advance and being with the sandbox water-glass sand of the die cavity wooden model of boss to fill up, outer quartz ampoule is connected with vavuum pump, fill up and consolidation moulding sand after, take out the die cavity wooden model of band boss, be blown into carbon dioxide, carbon dioxide and waterglass are reacted, realize the solidification of sand mold, thus complete moulding.
The device of the particulate reinforced metal-based composite surface material of preparation described in the utility model, for the preparation of particulate reinforced metal-based composite surface material, specifically comprises the following steps:
(1) enhancing particle and metal dust are mixed, the powder mixed is put into quartzy 2 pipes, complete the preparation of preformed layer, mixed process can use planetary ball mill, ball material mass ratio 3:1 in ball mill, and sizes of balls number is than 1:4 ~ 1:7;
(2) use vavuum pump 13 pairs of suction pouring castings to ooze device to bleed, make the vacuum inside interior quartz ampoule 2 and outer quartz ampoule 12 be 0.065 ~ 0.075MPa;
(3) substrate metal liquid is added in the die cavity 1 of band boss, the suction produced by vacuum, the gravity of molten metal and molten metal soaking tungsten carbide, molten metal is sucked into and comprises in the preset body of tungsten carbide particle, after casting mold cooling, obtain particulate reinforced composite;
(4) terminate final vacuum pump 13 in casting and continue 2 ~ 5 min that bleed, after pouring parent metal liquid to enter the die cavity 1 of band boss, obtain the casting continued ooze mold-filling capacity, the gas produced in casting cycle is by continuing to bleed and discharge in casting mold along with vavuum pump 13, obtain the composite that even tissue defect is less, and at mo(U)ld face spreading thermal-insulating covering agent, improve the heat insulation effect of parent metal liquid in die cavity, thus improve the composite effect of composite.
Parent metal described in the utility model is cast iron or cast steel, and described enhancing particle is that one or more in alundum (Al2O3), carborundum, titanium carbide, hard ceramic, tungsten carbide mix in any proportion, and grain diameter is 150 ~ 630 μm.
Vacuum valve 15 described in the utility model, is regulated the size of vavuum pump vacuum values, regulates the mold-filling capacity of molten metal by vacuum valve, thus regulates the thickness of composite bed, and is characterized the thickness of composite bed by vacuum values reading size.
The assembling process of the device of the particulate reinforced metal-based composite surface material of preparation described in the utility model comprises the following steps:
(1) seal one end of interior quartz ampoule 2 with transparent adhesive tape, then put into eps foam 3, preformed layer 4, wire netting I 5, quartz sand successively;
(2) seal quartz sand with wire netting II 7 again, make quartz sand keep stratiform, not loose;
(3) utilize right angle quartz ampoule 9 and rubber stopper to be connected with outer quartz ampoule by interior quartz ampoule, right angle quartz ampoule 9 two ends contact with wire netting I 5 and rubber stopper respectively, prevent preformed layer and quartz sand from occurring to loosen;
(4) rubber stopper is connected with outer quartz ampoule 12, connect the vacuum valve 15 of vacuum instrumentation 14, size with a scale respectively successively from outer quartz ampoule 12 toward vavuum pump direction in rubber stopper, the final one end of rubber stopper is tightly connected quartz ampoule outside, and one end is connected in vavuum pump 13.
The beneficial effects of the utility model:
(1) the utility model is by vacuum sealing technology, the gas that the air be involved in and foamed plastics produce because of vaporization in casting process is taken away, improve the mold-filling capacity of molten metal, in order to molten metal in intergranular infiltration, thus obtain thicker finer and close composite bed, the volume fraction of reinforcement is high, and the combination property of composite is greatly improved;
(2) composite bed thickness utilizing the utility model to prepare can reach 17mm, makes particulate reinforced metal-based composite surface material can have better wearability in operating mode now, is applicable to the preparation of various mechanical test sample, meets the requirement of its size aspect;
(3) die cavity with boss in the utility model be arranged so that sampling, cutting composite sample in cut along boss, whole sampling cutting process is convenient, fast.
Accompanying drawing explanation
Fig. 1 is the structural representation of the device of the particulate reinforced metal-based composite surface material of preparation described in the utility model.
In figure: 1-is with the die cavity of boss, quartz ampoule in 2-, 3-EPS foam, 4-preformed layer, 5-wire netting I, 6-quartz sand, 7-wire netting II, 8-rubber stopper I, 9-right angle quartz ampoule, 10-sand mold, the outer quartz ampoule of 11-rubber stopper II, 12-, 13-vavuum pump, 14-vacuum meter, 15-vacuum valve.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, the utility model is described in further details, but protection domain of the present utility model is not limited to described content.
Embodiment 1
The device preparing particulate reinforced metal-based composite surface material described in the present embodiment comprises die cavity 1, interior quartz ampoule 2, eps foam 3, preformed layer 4, wire netting I 5, quartz sand 6, wire netting II 7, rubber stopper I 8, right angle quartz ampoule 9, sand mold 10, rubber stopper II 11, outer quartz ampoule 12, vavuum pump 13, vacuum meter 14, the vacuum valve 15 of band boss, and the die cavity 1 of band boss is positioned on sand mold 10 and sand mold 10 is connected; Die cavity 1 with boss is connected with interior quartz ampoule 2, puts into eps foam 3, preformed layer 4, wire netting I 5, quartz sand 6, wire netting II 7 in quartz ampoule 2 successively, and the lower end rubber stopper I 8 of interior quartz ampoule 2 seals; One end and the rubber stopper I 8 of right angle quartz ampoule 9 are tightly connected, the other end and rubber stopper II 11 are tightly connected; One end rubber stopper II 11 of outer quartz ampoule 12 seals, and the other end is connected with vavuum pump 13, and vacuum meter 14, vacuum valve 15 are vertically arranged on the top of vavuum pump 13, as shown in Figure 1.
The thickness of eps foam 3 described in the present embodiment is 5mm, the thickness of preformed layer 4 is 15mm, the thickness of quartz sand 6 is 10mm; 150 μm of wire nettings that wire netting I 5 is, quartz sand 6 granular size is 2000 μm; The diameter of die cavity (1) cylinder of described band boss is Φ140mm, be highly 220mm, boss long for 55mm, wide be 55mm, high be 11mm.
Described in the present embodiment, sand mold 10 prepares by the following method: the moulding sand that first bottom sandbox, layer overlay 40mm is thick, vacuum full mold casting except vavuum pump is oozed device and to be placed in sandbox precalculated position on the moulding sand of bottom, the die cavity wooden model of band boss 1 is placed above device vertical direction, and then carry out moulding with water-glass sand, ooze device by being placed with the casting of vacuum full mold in advance and being with the sandbox water-glass sand of the die cavity wooden model of boss to fill up, outer quartz ampoule 12 is connected with vavuum pump 13, fill up and consolidation moulding sand after, take out die cavity 1 wooden model of band boss, be blown into carbon dioxide, carbon dioxide and waterglass are reacted, realize the solidification of sand mold, thus complete moulding.
The device of the particulate reinforced metal-based composite surface material of the preparation described in the present embodiment, for the preparation of tungsten carbide grain reinforced metal base composite surface material, is characterized in that, specifically comprises the following steps:
(1) to be the tungsten carbide particle of 250 ~ 425 μm and granularity by granularity be, and 150 μm of Ni6025WC powder load planetary ball mills particle and powder is mixed, setting drum's speed of rotation is 100 r/min, the mixed powder time is 30min, ball material mass ratio 3:1, sizes of balls number compares 1:6, tungsten carbide particle 60% ~ 80%, Ni6025WC powder 20% ~ 40% in mixed-powder, described Ni6025WC powder is the mixed-powder of 65% nickel alloy clading and 35%WC; The powder mixed is put into quartz ampoule 2, completes the preparation of preformed layer;
(2) use vavuum pump 13 pairs of suction pouring castings to ooze device to bleed, make the vacuum inside interior quartz ampoule 2 and outer quartz ampoule 12 be 0.065 ~ 0.075MPa;
(3) use the cast steel of intermediate frequency furnace to configuration to carry out melting, cast steel molten metal is 1620 DEG C from the temperature that breeds of intermediate frequency furnace, and the pouring temperature recorded before cast in casting ladle is 1580 DEG C;
(4) cast steel molten metal is added in the die cavity 1 of band boss, molten metal is sucked into and comprises in the preset body of tungsten carbide particle, after casting mold cooling, obtain particulate reinforced composite;
(5) terminate final vacuum pump 13 in casting and continue 3 min that bleed, and at mo(U)ld face spreading thermal-insulating covering agent;
The tungsten carbide particle that the present embodiment prepares strengthens skin layer composite material and is of a size of × 17mm, and meet Mechanics Performance Testing specimen size requirement, through compression verification, obtaining compression yield strength is 847MPa, and compression strength is 1215.03MPa.
Embodiment 2
The device preparing particulate reinforced metal-based composite surface material described in the present embodiment comprise the die cavity 1 of band boss, interior quartz ampoule 2, eps foam 3, preformed layer 4, wire netting I 5, quartz sand 6, wire netting II 7, rubber stopper I 8, right angle quartz ampoule 9, sand mold 10, rubber stopper II 11, outer quartz ampoule 12, vavuum pump 13, vacuum meter 14, vacuum valve 15, the die cavity 1 of band boss is positioned on sand mold 10 and sand mold 10 is connected; Die cavity 1 with boss is connected with interior quartz ampoule 2, puts into eps foam 3, preformed layer 4, wire netting I 5, quartz sand 6, wire netting II 7 in quartz ampoule 2 successively, and the lower end rubber stopper I 8 of interior quartz ampoule 2 seals; One end and the rubber stopper I 8 of right angle quartz ampoule 9 are tightly connected, the other end and rubber stopper II 11 are tightly connected; One end rubber stopper II 11 of outer quartz ampoule 12 seals, and the other end is connected with vavuum pump 13, and vacuum meter 14, vacuum valve 15 are vertically arranged on the top of vavuum pump 13, as shown in Figure 1.
The thickness of eps foam 3 described in the present embodiment is 5mm, the thickness of preformed layer 4 is 15mm, the thickness of quartz sand 6 is 10mm; 150 μm of wire nettings that wire netting I 5 is, quartz sand 6 granular size is 2000 μm; The diameter of die cavity (1) cylinder of described band boss is Φ160mm, be highly 280mm, boss long for 60mm, wide be 60mm, high be 15mm.
Described in the present embodiment, sand mold 10 prepares by the following method: the moulding sand that first bottom sandbox, layer overlay 40mm is thick, vacuum full mold casting except vavuum pump is oozed device and to be placed in sandbox precalculated position on the moulding sand of bottom, the die cavity wooden model of band boss 1 is placed above device vertical direction, and then carry out moulding with water-glass sand, ooze device by being placed with the casting of vacuum full mold in advance and being with the sandbox water-glass sand of the die cavity wooden model of boss to fill up, outer quartz ampoule 12 is connected with vavuum pump 13, fill up and consolidation moulding sand after, take out die cavity 1 wooden model of band boss, be blown into carbon dioxide, carbon dioxide and waterglass are reacted, realize the solidification of sand mold, thus complete moulding.
The device of the particulate reinforced metal-based composite surface material of the preparation described in the present embodiment, for the preparation of SiC particles reinforced Metal Substrate composite surface material, is characterized in that, specifically comprises the following steps:
(1) to get particle diameter be the silicon-carbide particle of 500 ~ 630 μm and particle diameter is that the chromium powder of 60 μm loads planetary ball mill and particle and powder mixed, setting drum's speed of rotation is 100 r/min, the mixed powder time is 30min, ball material mass ratio 3:1, sizes of balls number is than 1:5, and in mixed-powder, silicon-carbide particle is 40%, chromium powder is 1.5%, all the other are particles filled with EPS, the powder mixed and EPS particle are put into quartz ampoule, completes the preparation of preformed layer;
(2) use vavuum pump to ooze device to suction pouring casting to bleed, make the vacuum inside interior quartz ampoule 2 and outer quartz ampoule 12 be 0.065 ~ 0.075MPa;
(3) use intermediate frequency furnace that the cast steel of configuration is carried out melting, cast steel molten metal is 1620 DEG C from the temperature that breeds of intermediate frequency furnace, and the pouring temperature recorded before cast in casting ladle is 1560 DEG C;
(4) cast steel molten metal is added in the die cavity 1 of band boss, molten metal is sucked into and comprises in the preset body of tungsten carbide particle, after casting mold cooling, obtain particulate reinforced composite;
(5) terminate final vacuum pump 13 in casting and continue 3 min that bleed, and at mo(U)ld face spreading thermal-insulating covering agent;
The SiC particles reinforced skin layer composite material that the present embodiment prepares is of a size of × 12mm, meets Mechanics Performance Testing specimen size requirement.
Embodiment 3
The device preparing particulate reinforced metal-based composite surface material described in the present embodiment comprise the die cavity 1 of band boss, interior quartz ampoule 2, eps foam 3, preformed layer 4, wire netting I 5, quartz sand 6, wire netting II 7, rubber stopper I 8, right angle quartz ampoule 9, sand mold 10, rubber stopper II 11, outer quartz ampoule 12, vavuum pump 13, vacuum meter 14, vacuum valve 15, the die cavity 1 of band boss is positioned on sand mold 10 and sand mold 10 is connected; Die cavity 1 with boss is connected with interior quartz ampoule 2, puts into eps foam 3, preformed layer 4, wire netting I 5, quartz sand 6, wire netting II 7 in quartz ampoule 2 successively, and the lower end rubber stopper I 8 of interior quartz ampoule 2 seals; One end and the rubber stopper I 8 of right angle quartz ampoule 9 are tightly connected, the other end and rubber stopper II 11 are tightly connected; One end rubber stopper II 11 of outer quartz ampoule 12 seals, and the other end is connected with vavuum pump 13, and vacuum meter 14, vacuum valve 15 are vertically arranged on the top of vavuum pump 13, as shown in Figure 1.
The thickness of eps foam 3 described in the present embodiment is 5mm, the thickness of preformed layer 4 is 15mm, the thickness of quartz sand 6 is 10mm; 150 μm of wire nettings that wire netting I 5 is, quartz sand 6 granular size is 2000 μm, and the diameter of die cavity (1) cylinder of described band boss is Φ120mm, be highly 180mm, boss long for 50mm, wide be 50mm, high be 8mm.
Described in the present embodiment, sand mold 10 prepares by the following method: the moulding sand that first bottom sandbox, layer overlay 40mm is thick, vacuum full mold casting except vavuum pump is oozed device and to be placed in sandbox precalculated position on the moulding sand of bottom, the die cavity wooden model of band boss 1 is placed above device vertical direction, and then carry out moulding with water-glass sand, ooze device by being placed with the casting of vacuum full mold in advance and being with the sandbox water-glass sand of the die cavity wooden model of boss to fill up, outer quartz ampoule 12 is connected with vavuum pump 13, fill up and consolidation moulding sand after, take out die cavity 1 wooden model of band boss, be blown into carbon dioxide, carbon dioxide and waterglass are reacted, realize the solidification of sand mold, thus complete moulding.
The device of the particulate reinforced metal-based composite surface material of the preparation described in the present embodiment strengthens Metal Substrate composite surface material for the preparation of alumina particle, it is characterized in that, specifically comprises the following steps:
(1) to get particle diameter be alumina particle, the particle diameter of 850 μm is that the boron carbide powder of 75 μm loads planetary ball mill and particle and powder mixed, setting drum's speed of rotation is 100 r/min, the mixed powder time is 30min, ball material mass ratio 3:1, sizes of balls number is than 1:6, and in mixed-powder, alumina particle is 30% ~ 35%, boron carbide is 3% ~ 5%, all the other are EPS particle, the powder mixed and EPS particle are put into quartz ampoule, completes the preparation of preformed layer;
(2) use vavuum pump 12 pairs of suction pouring castings to ooze device to bleed, make the vacuum inside interior quartz ampoule 2 and outer quartz ampoule 11 be 0.065 ~ 0.075MPa;
(3) use intermediate frequency furnace that the cast steel of configuration is carried out melting, cast steel molten metal is 1610 DEG C from the temperature that breeds of intermediate frequency furnace, and the pouring temperature recorded before cast in casting ladle is 1550 DEG C;
(4) cast steel molten metal is added in the die cavity 1 of band boss, molten metal is sucked into and comprises in the preset body of tungsten carbide particle, after casting mold cooling, obtain particulate reinforced composite;
(5) terminate final vacuum pump 13 in casting and continue 3 min that bleed, and at mo(U)ld face spreading thermal-insulating covering agent.
The alumina particle that the present embodiment prepares strengthens skin layer composite material and is of a size of × 16mm, meets Mechanics Performance Testing specimen size requirement.

Claims (5)

1. prepare the device of particulate reinforced metal-based composite surface material for one kind, it is characterized in that: this device comprises die cavity (1), interior quartz ampoule (2), eps foam (3), preformed layer (4), wire netting I (5), quartz sand (6), wire netting II (7), rubber stopper I (8), right angle quartz ampoule (9), sand mold (10), rubber stopper II (11), outer quartz ampoule (12), vavuum pump (13), vacuum meter (14), the vacuum valve (15) of band boss, the die cavity (1) of band boss is positioned on sand mold (10) and sand mold (10) is connected; Die cavity (1) with boss is connected with interior quartz ampoule (2), put into eps foam (3), preformed layer (4), wire netting I (5), quartz sand (6), wire netting II (7) in interior quartz ampoule (2) successively, the lower end rubber stopper I (8) of interior quartz ampoule (2) seals; One end and the rubber stopper I (8) of right angle quartz ampoule (9) are tightly connected, the other end and rubber stopper II (11) are tightly connected; One end rubber stopper II (11) of outer quartz ampoule (12) seals, and the other end is connected with vavuum pump (13), and vacuum meter (14), vacuum valve (15) are vertically arranged on the top of vavuum pump (13).
2. prepare the device of particulate reinforced metal-based composite surface material according to claim 1, it is characterized in that: the thickness of described eps foam (3) is 5 ~ 10mm, the thickness of preformed layer (4) is 15 ~ 25mm, the thickness of quartz sand (6) is 10 ~ 15mm.
3. prepare the device of particulate reinforced metal-based composite surface material according to claim 1, it is characterized in that: the aperture of described wire netting I (5) mesh is more than 150 μm, and quartz sand (6) granular size is 600 ~ 850 μm.
4. prepare the device of particulate reinforced metal-based composite surface material according to claim 1, it is characterized in that: described interior quartz ampoule (2) is placed vertically, perpendicular to the bottom surface of the die cavity (1) of band boss.
5. prepare the device of particulate reinforced metal-based composite surface material according to claim 1, it is characterized in that: the diameter of die cavity (1) cylinder of described band boss is Φ120 ~ Φ160mm, be highly 180 ~ 280mm, boss length is 50 ~ 60mm, the wide 50 ~ 60mm of being, height are 8 ~ 15mm.
CN201420408621.9U 2014-07-24 2014-07-24 A kind of device preparing particulate reinforced metal-based composite surface material Withdrawn - After Issue CN204545382U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104209496A (en) * 2014-07-24 2014-12-17 昆明理工大学 Device and method for preparing particle-reinforced metal matrix surface composite material
CN109202046A (en) * 2018-09-13 2019-01-15 昆明理工大学 A kind of layered periodicity pore structure aluminum or aluminum alloy foam and preparation method thereof
CN110895122A (en) * 2018-09-13 2020-03-20 南京理工大学 Metal-ceramic gradient composite armor and preparation method thereof

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104209496A (en) * 2014-07-24 2014-12-17 昆明理工大学 Device and method for preparing particle-reinforced metal matrix surface composite material
CN104209496B (en) * 2014-07-24 2016-05-25 昆明理工大学 A kind of device and method of preparing particulate reinforced metal-based composite surface material
CN109202046A (en) * 2018-09-13 2019-01-15 昆明理工大学 A kind of layered periodicity pore structure aluminum or aluminum alloy foam and preparation method thereof
CN110895122A (en) * 2018-09-13 2020-03-20 南京理工大学 Metal-ceramic gradient composite armor and preparation method thereof

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