CN108774717A - A kind of corrosion-resistant ceramic based composites and preparation method thereof - Google Patents

A kind of corrosion-resistant ceramic based composites and preparation method thereof Download PDF

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Publication number
CN108774717A
CN108774717A CN201810717522.1A CN201810717522A CN108774717A CN 108774717 A CN108774717 A CN 108774717A CN 201810717522 A CN201810717522 A CN 201810717522A CN 108774717 A CN108774717 A CN 108774717A
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parts
corrosion
based composites
resistant ceramic
ceramic based
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程华风
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Hefei Lian Sen Yu Teng New Material Technology Development Co Ltd
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Hefei Lian Sen Yu Teng New Material Technology Development Co Ltd
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    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C49/00Alloys containing metallic or non-metallic fibres or filaments
    • C22C49/14Alloys containing metallic or non-metallic fibres or filaments characterised by the fibres or filaments
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C47/00Making alloys containing metallic or non-metallic fibres or filaments
    • C22C47/14Making alloys containing metallic or non-metallic fibres or filaments by powder metallurgy, i.e. by processing mixtures of metal powder and fibres or filaments

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Materials For Medical Uses (AREA)

Abstract

A kind of corrosion-resistant ceramic based composites, by weight, including following raw material:10~20 parts of nylon fiber, 10~20 parts of barite, 10~20 parts of diamond dust, 12~18 parts of silica flour, 10~20 parts of steel fibre, 8~16 parts of zirconium dioxide, 30~50 parts of zircon, 20~24 parts of nano aluminium oxide, 1~3 part of tricalcium phosphate, 3~4 parts of silver, 1~3 part of cobalt, 8~10 parts of titanium;The beneficial effects of the invention are as follows nylon fiber and steel fibre is added in the feed, to keep the corrosion resistance of ceramic matric composite more preferable, ceramic matric composite is prevented to be damaged after long-time use due to being corroded.

Description

A kind of corrosion-resistant ceramic based composites and preparation method thereof
Technical field
The present invention relates to technical field of composite materials, and in particular to a kind of corrosion-resistant ceramic based composites and its preparation side Method.
Background technology
Composite material is that people form material component optimum organization of different nature with advanced material preparation technology New material, the basis material of composite material is divided into metal and nonmetallic two major classes.There are commonly aluminium, magnesium, copper, titaniums for metallic matrix And its alloy.Nonmetal basal body mainly has synthetic resin, rubber, ceramics, graphite, carbon etc.;Reinforcing material mainly have glass fibre, Carbon fiber, boron fibre, aramid fiber, silicon carbide fibre, asbestos fibre, whisker, metal.
However traditional ceramic matric composite causes ceramic base multiple since constitutive material and preparation method are fairly simple The corrosion resistance of condensation material is bad, and after long-time use, ceramic matric composite is easy to occur due to being corroded Damage.
Invention content
The purpose of the present invention is to provide a kind of corrosion-resistant ceramic based composites and preparation method thereof, to solve the above-mentioned back of the body The problem of being proposed in scape technology.
To achieve the above object, the present invention provides the following technical solutions:
A kind of corrosion-resistant ceramic based composites, by weight, including following raw material:10~20 parts of nylon fiber, weight are brilliant 10~20 parts of stone, 10~20 parts of diamond dust, 12~18 parts of silica flour, 10~20 parts of steel fibre, 8~16 parts of zirconium dioxide, zircon 30~50 parts, 20~24 parts of nano aluminium oxide, 1~3 part of tricalcium phosphate, silver 3~4 parts, 1~3 part of cobalt, 8~10 parts of titanium.
It is as further technical solution of the invention:By weight, including following raw material:13~17 parts of nylon fiber, 13~17 parts of barite, 13~17 parts of diamond dust, 13~17 parts of silica flour, 13~17 parts of steel fibre, 10~14 parts of zirconium dioxide, zirconium 35~45 parts of diamond stone, 21~23 parts of nano aluminium oxide, 1~3 part of tricalcium phosphate, 3~4 parts of silver, 1~3 part of cobalt, 8~10 parts of titanium.
It is as further technical solution of the invention:By weight, including following raw material:15 parts of nylon fiber, again 15 parts of spar, 15 parts of diamond dust, 15 parts of silica flour, 15 parts of steel fibre, 12 parts of zirconium dioxide, 40 parts of zircon, nano aluminium oxide 22 Part, 2 parts of tricalcium phosphate, 3 parts of silver, 2 parts of cobalt, 9 parts of titanium.
A kind of preparation method of corrosion-resistant ceramic based composites, this approach includes the following steps:
(1) raw material is put into pulverizer and is crushed, grinding time is 20~60min, obtains the first mixture;
(2) the first mixture made from step (1) is used into 4~6h of wet ball grinding, 200 mesh sieve is crossed after drying, obtains the Two mixtures;
(3) it will be made into the second mixture in step (2) and the water glass that quality is the second mixing body weight 2~4% be added Glass mixes 10~30min, is then allowed to stand 8~12h, obtains third mixture;
(4) third mixture made from step (3) is sent in molding machine, the compression moulding at 60~80MPa, then will The adobe suppressed send into dry kiln the dry dry embryo for being 3~5% to water content;
(5) dry embryo is warming up to 1160~1230 DEG C, then keeps the temperature 1~3h, then cool down with the rate of 10~16 DEG C/min To 740~850 DEG C, 1h is kept the temperature, then is cooled to room temperature, obtains the first semi-finished product;
(6) it is polished the first semi-finished product made from step (5) using edge polisher, the polishing time is 20~40min, so It is packed afterwards using packing machine, to obtain corrosion-resistant ceramic based composites.
It is as further technical solution of the invention:The rotating speed of pulverizer is 200~300r/ in the step (1) min。
It is as further technical solution of the invention:The solid content of waterglass is 35% in the step (3).
The beneficial effects of the invention are as follows nylon fiber and steel fibre is added in the feed, to make ceramic matric composite Corrosion resistance it is more preferable, prevent ceramic matric composite to be damaged after long-time use due to being corroded, in addition exist It is ground again by wet ball grinding after crushed using pulverizer in preparation process, it is more uniform to make raw material mix, And then make the structural strength higher of ceramic matric composite.
Specific implementation mode
In the following, technical scheme in the embodiment of the invention is clearly and completely described, it is clear that described implementation Example is only a part of the embodiment of the present invention, instead of all the embodiments.Based on the embodiments of the present invention, this field is common The every other embodiment that technical staff is obtained without making creative work belongs to the model that the present invention protects It encloses.
Embodiment 1:
The corrosion-resistant ceramic based composites of the present embodiment include the weight of following component:10 parts of nylon fiber, barite 10 parts, 10 parts of diamond dust, 12 parts of silica flour, 10 parts of steel fibre, 8 parts of zirconium dioxide, 30 parts of zircon, 20 parts of nano aluminium oxide, phosphorus 1 part of sour tricalcium, 3 parts of silver, 1 part of cobalt, 8 parts of titanium.
The specific preparation method of the above corrosion-resistant ceramic based composites is as follows:
(1) raw material being put into pulverizer and is crushed, the rotating speed of pulverizer is 200r/min, grinding time 20min, Obtain the first mixture;
(2) the first mixture made from step (1) is used into wet ball grinding 4h, 200 mesh sieve is crossed after drying, it is mixed to obtain second It is fit;
(3) it is that the second waterglass for mixing body weight 2% mixes that will be made into the second mixture in step (2) and quality is added 10min is closed, 8h is then allowed to stand, obtains third mixture;
(4) third mixture made from step (3) is sent in molding machine, the compression moulding at 60MPa, it then will compacting Good adobe send into dry kiln the dry dry embryo for being 3% to water content;
(5) dry embryo is warming up to 1160 DEG C, then keeps the temperature 1h, then 740 DEG C are cooled to the rate of 10 DEG C/min, heat preservation 1h then is cooled to room temperature, and obtains the first semi-finished product;
(6) it is polished the first semi-finished product made from step (5) using edge polisher, the polishing time is 20min, is then made It is packed with packing machine, to obtain corrosion-resistant ceramic based composites.
Embodiment 2:
The corrosion-resistant ceramic based composites of the present embodiment include the weight of following component:20 parts of nylon fiber, barite 20 parts, 20 parts of diamond dust, 18 parts of silica flour, 20 parts of steel fibre, 16 parts of zirconium dioxide, 50 parts of zircon, 24 parts of nano aluminium oxide, phosphorus 3 parts of sour tricalcium, 4 parts of silver, 3 parts of cobalt, 10 parts of titanium.
The specific preparation method of the above corrosion-resistant ceramic based composites is as follows:
(1) raw material being put into pulverizer and is crushed, the rotating speed of pulverizer is 300r/min, grinding time 60min, Obtain the first mixture;
(2) the first mixture made from step (1) is used into wet ball grinding 6h, 200 mesh sieve is crossed after drying, it is mixed to obtain second It is fit;
(3) it is that the second waterglass for mixing body weight 4% mixes that will be made into the second mixture in step (2) and quality is added 30min is closed, 12h is then allowed to stand, obtains third mixture;
(4) third mixture made from step (3) is sent in molding machine, the compression moulding at 80MPa, it then will compacting Good adobe send into dry kiln the dry dry embryo for being 5% to water content;
(5) dry embryo is warming up to 1230 DEG C, then keeps the temperature 3h, then 850 DEG C are cooled to the rate of 16 DEG C/min, heat preservation 1h then is cooled to room temperature, and obtains the first semi-finished product;
(6) it is polished the first semi-finished product made from step (5) using edge polisher, the polishing time is 40min, is then made It is packed with packing machine, to obtain corrosion-resistant ceramic based composites.
Embodiment 3:
The corrosion-resistant ceramic based composites of the present embodiment include the weight of following component:13 parts of nylon fiber, barite 13 parts, 13 parts of diamond dust, 13 parts of silica flour, 13 parts of steel fibre, 10 parts of zirconium dioxide, 35 parts of zircon, 21 parts of nano aluminium oxide, phosphorus 1 part of sour tricalcium, 3 parts of silver, 1 part of cobalt, 8 parts of titanium.
The specific preparation method of the above corrosion-resistant ceramic based composites is as follows:
(1) raw material being put into pulverizer and is crushed, the rotating speed of pulverizer is 220r/min, grinding time 30min, Obtain the first mixture;
(2) the first mixture made from step (1) is used into wet ball grinding 4h, 200 mesh sieve is crossed after drying, it is mixed to obtain second It is fit;
(3) it is that the second waterglass for mixing body weight 2% mixes that will be made into the second mixture in step (2) and quality is added 15min is closed, 9h is then allowed to stand, obtains third mixture;
(4) third mixture made from step (3) is sent in molding machine, the compression moulding at 65MPa, it then will compacting Good adobe send into dry kiln the dry dry embryo for being 3% to water content;
(5) dry embryo is warming up to 1180 DEG C, then keeps the temperature 1h, then 760 DEG C are cooled to the rate of 12 DEG C/min, heat preservation 1h then is cooled to room temperature, and obtains the first semi-finished product;
(6) it is polished the first semi-finished product made from step (5) using edge polisher, the polishing time is 25min, is then made It is packed with packing machine, to obtain corrosion-resistant ceramic based composites.
Embodiment 4:
The corrosion-resistant ceramic based composites of the present embodiment include the weight of following component:17 parts of nylon fiber, barite 17 parts, 17 parts of diamond dust, 17 parts of silica flour, 17 parts of steel fibre, 14 parts of zirconium dioxide, 45 parts of zircon, 23 parts of nano aluminium oxide, phosphorus 3 parts of sour tricalcium, 4 parts of silver, 3 parts of cobalt, 10 parts of titanium.
The specific preparation method of the above corrosion-resistant ceramic based composites is as follows:
(1) raw material being put into pulverizer and is crushed, the rotating speed of pulverizer is 280r/min, grinding time 50min, Obtain the first mixture;
(2) the first mixture made from step (1) is used into wet ball grinding 6h, 200 mesh sieve is crossed after drying, it is mixed to obtain second It is fit;
(3) it is that the second waterglass for mixing body weight 4% mixes that will be made into the second mixture in step (2) and quality is added 25min is closed, 11h is then allowed to stand, obtains third mixture;
(4) third mixture made from step (3) is sent in molding machine, the compression moulding at 75MPa, it then will compacting Good adobe send into dry kiln the dry dry embryo for being 5% to water content;
(5) dry embryo is warming up to 1210 DEG C, then keeps the temperature 3h, then 830 DEG C are cooled to the rate of 14 DEG C/min, heat preservation 1h then is cooled to room temperature, and obtains the first semi-finished product;
(6) it is polished the first semi-finished product made from step (5) using edge polisher, the polishing time is 35min, is then made It is packed with packing machine, to obtain corrosion-resistant ceramic based composites.
Embodiment 5:
The corrosion-resistant ceramic based composites of the present embodiment include the weight of following component:15 parts of nylon fiber, barite 15 parts, 15 parts of diamond dust, 15 parts of silica flour, 15 parts of steel fibre, 12 parts of zirconium dioxide, 40 parts of zircon, 22 parts of nano aluminium oxide, phosphorus 2 parts of sour tricalcium, 3 parts of silver, 2 parts of cobalt, 9 parts of titanium.
The specific preparation method of the above corrosion-resistant ceramic based composites is as follows:
(1) raw material being put into pulverizer and is crushed, the rotating speed of pulverizer is 250r/min, grinding time 40min, Obtain the first mixture;
(2) the first mixture made from step (1) is used into wet ball grinding 5h, 200 mesh sieve is crossed after drying, it is mixed to obtain second It is fit;
(3) it is that the second waterglass for mixing body weight 3% mixes that will be made into the second mixture in step (2) and quality is added 20min is closed, 10h is then allowed to stand, obtains third mixture;
(4) third mixture made from step (3) is sent in molding machine, the compression moulding at 70MPa, it then will compacting Good adobe send into dry kiln the dry dry embryo for being 4% to water content;
(5) dry embryo is warming up to 1195 DEG C, then keeps the temperature 2h, then 795 DEG C are cooled to the rate of 13 DEG C/min, heat preservation 1h then is cooled to room temperature, and obtains the first semi-finished product;
(6) it is polished the first semi-finished product made from step (5) using edge polisher, the polishing time is 30min, is then made It is packed with packing machine, to obtain corrosion-resistant ceramic based composites.
Comparative example 1:
In addition to without steel fibre, formula and preparation process are consistent with embodiment 5.
Comparative example 2:
In addition to without diamond dust, formula and preparation process are consistent with embodiment 5.
After the corrosion-resistant ceramic based composites that embodiment 1 to 5 and comparative example 1-2 is prepared, the performance test results As shown in the table:
The modulus of rupture (MPa) Breakdown strength (N) High temperature resistance
Embodiment 1 46 3259 Well
Embodiment 2 47 3260 Well
Embodiment 3 47 3262 Well
Embodiment 4 48 3263 Well
Embodiment 5 49 3265 It is outstanding
Comparative example 1 31 2507 Generally
Comparative example 2 30 2420 Generally
As can be seen that being selected by the composition material to corrosion-resistant ceramic based composites from the comparison of three item datas It selects and matches, the correlated performance of corrosion-resistant ceramic based composites prepared by embodiment 5 is significantly higher than embodiment 1-4 and comparative example 1-2。
It is obvious to a person skilled in the art that invention is not limited to the details of the above exemplary embodiments, Er Qie In the case of without departing substantially from spirit or essential attributes of the invention, the present invention can be realized in other specific forms.Therefore, no matter From the point of view of which point, the present embodiments are to be considered as illustrative and not restrictive, and the scope of the present invention is by appended power Profit requires rather than above description limits, it is intended that all by what is fallen within the meaning and scope of the equivalent requirements of the claims Variation is included within the present invention.
In addition, it should be understood that although this specification is described in terms of embodiments, but not each embodiment is only wrapped Containing an independent technical solution, this description of the specification is merely for the sake of clarity, and those skilled in the art should It considers the specification as a whole, the technical solutions in the various embodiments may also be suitably combined, forms those skilled in the art The other embodiment being appreciated that.

Claims (6)

1. a kind of corrosion-resistant ceramic based composites, which is characterized in that by weight, including following raw material:Nylon fiber 10~ 20 parts, 10~20 parts of barite, 10~20 parts of diamond dust, 12~18 parts of silica flour, 10~20 parts of steel fibre, zirconium dioxide 8~16 Part, 30~50 parts of zircon, 20~24 parts of nano aluminium oxide, 1~3 part of tricalcium phosphate, 3~4 parts of silver, 1~3 part of cobalt, titanium 8~10 Part.
2. a kind of corrosion-resistant ceramic based composites according to claim 1, which is characterized in that by weight, including with Lower raw material:13~17 parts of nylon fiber, 13~17 parts of barite, 13~17 parts of diamond dust, 13~17 parts of silica flour, steel fibre 13~ 17 parts, 10~14 parts of zirconium dioxide, 35~45 parts of zircon, 21~23 parts of nano aluminium oxide, 1~3 part of tricalcium phosphate, silver 3~4 Part, 1~3 part of cobalt, 8~10 parts of titanium.
3. a kind of corrosion-resistant ceramic based composites according to claim 1, which is characterized in that by weight, including with Lower raw material:15 parts of nylon fiber, 15 parts of barite, 15 parts of diamond dust, 15 parts of silica flour, 15 parts of steel fibre, 12 parts of zirconium dioxide, zirconium 40 parts of diamond stone, 22 parts of nano aluminium oxide, 2 parts of tricalcium phosphate, 3 parts of silver, 2 parts of cobalt, 9 parts of titanium.
4. a kind of preparation method of corrosion-resistant ceramic based composites according to claim 1, which is characterized in that this method Include the following steps:
(1)Raw material is put into pulverizer and is crushed, grinding time is 20~60min, obtains the first mixture;
(2)By step(1)First mixture obtained uses 4~6h of wet ball grinding, and 200 mesh sieve is crossed after drying, it is mixed to obtain second It is fit;
(3)By step(2)In be made into the second mixture be added quality be second mixing body weight 2~4% waterglass mixing 10~30min is then allowed to stand 8~12h, obtains third mixture;
(4)By step(3)Third mixture obtained is sent in molding machine, the compression moulding at 60~80MPa, then will compacting Good adobe send into dry kiln the dry dry embryo for being 3~5% to water content;
(5)Dry embryo is warming up to 1160~1230 DEG C, then keeps the temperature 1~3h, then 740 are cooled to the rate of 10~16 DEG C/min ~850 DEG C, 1h is kept the temperature, then is cooled to room temperature, obtains the first semi-finished product;
(6)Using edge polisher to step(5)First semi-finished product obtained are polished, and the polishing time is 20~40min, is then made It is packed with packing machine, to obtain corrosion-resistant ceramic based composites.
5. a kind of preparation method of corrosion-resistant ceramic based composites according to claim 4, which is characterized in that the step Suddenly(1)The rotating speed of middle pulverizer is 200~300r/min.
6. a kind of preparation method of corrosion-resistant ceramic based composites according to claim 4, which is characterized in that the step Suddenly(3)The solid content of middle waterglass is 35%.
CN201810717522.1A 2018-07-03 2018-07-03 A kind of corrosion-resistant ceramic based composites and preparation method thereof Pending CN108774717A (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106007758A (en) * 2016-04-22 2016-10-12 葫芦岛市华能工业陶瓷有限公司 Toughened silicon nitride combined silicon carbide ceramic composite material and preparation method thereof
CN107827434A (en) * 2017-11-24 2018-03-23 桂林市雁山区青少年活动中心 A kind of high-strength ceramic metallic composite
CN107879728A (en) * 2017-10-31 2018-04-06 桂林加宏汽车修理有限公司 A kind of corrosion-resistant ceramic
CN107904467A (en) * 2017-11-24 2018-04-13 桂林市雁山区青少年活动中心 A kind of corrosion-resistant ceramic metallic composite
CN107937785A (en) * 2017-11-24 2018-04-20 桂林市雁山区青少年活动中心 A kind of wear-resistant ceramic metallic composite
CN107954693A (en) * 2017-11-24 2018-04-24 桂林市雁山区青少年活动中心 A kind of refractory ceramics metallic composite

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106007758A (en) * 2016-04-22 2016-10-12 葫芦岛市华能工业陶瓷有限公司 Toughened silicon nitride combined silicon carbide ceramic composite material and preparation method thereof
CN107879728A (en) * 2017-10-31 2018-04-06 桂林加宏汽车修理有限公司 A kind of corrosion-resistant ceramic
CN107827434A (en) * 2017-11-24 2018-03-23 桂林市雁山区青少年活动中心 A kind of high-strength ceramic metallic composite
CN107904467A (en) * 2017-11-24 2018-04-13 桂林市雁山区青少年活动中心 A kind of corrosion-resistant ceramic metallic composite
CN107937785A (en) * 2017-11-24 2018-04-20 桂林市雁山区青少年活动中心 A kind of wear-resistant ceramic metallic composite
CN107954693A (en) * 2017-11-24 2018-04-24 桂林市雁山区青少年活动中心 A kind of refractory ceramics metallic composite

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Application publication date: 20181109