CN103073319A - Alumina-based ceramic core for support plate forming - Google Patents

Alumina-based ceramic core for support plate forming Download PDF

Info

Publication number
CN103073319A
CN103073319A CN2013100449162A CN201310044916A CN103073319A CN 103073319 A CN103073319 A CN 103073319A CN 2013100449162 A CN2013100449162 A CN 2013100449162A CN 201310044916 A CN201310044916 A CN 201310044916A CN 103073319 A CN103073319 A CN 103073319A
Authority
CN
China
Prior art keywords
powder
ceramic core
fused corundom
granularity
ammonium chloride
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN2013100449162A
Other languages
Chinese (zh)
Other versions
CN103073319B (en
Inventor
袁锁军
刘锐昌
张建国
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.)
Jiangsu Tu Nan alloy limited company
Original Assignee
DANYANG PRECISION ALLOY FACTORY 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.)
Filing date
Publication date
Application filed by DANYANG PRECISION ALLOY FACTORY Co Ltd filed Critical DANYANG PRECISION ALLOY FACTORY Co Ltd
Priority to CN201310044916.2A priority Critical patent/CN103073319B/en
Publication of CN103073319A publication Critical patent/CN103073319A/en
Application granted granted Critical
Publication of CN103073319B publication Critical patent/CN103073319B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The invention relates to an alumina-based ceramic core for support plate forming. The alumina-based ceramic core comprises fused corundum powder with different granularities, organic fiber, ammonium chloride and silica sol; the fused corundum powder with different granularities are respectively more than or equal to 99 percent by weight in alumina content and respectively 20-40 meshes, 50-100 meshes and 200-325 meshes in granularity; the fused corundum powder with the granularity of 20-40 meshes is 10-30 percent in mass percentage, the fused corundum powder with the granularity of 50-100 meshes is 20-40 percent in mass percentage, and the fused corundum powder with the granularity of 200-325 meshes is 30-70 percent in mass percentage; the organic fiber is 0.1-3mm in length and 20-200 Mu m in diameter, and the addition amount of the organic fiber is 1-20 percent of the mass of the fused corundum powder; the addition amount of the ammonium chloride is 0.08-0.12 percent of the fused corundum powder; and the mass of the silica sol is 60-70 percent of the total mass of the fused corundum powder, the organic fiber and the ammonium chloride.

Description

Prop up the sheet metal forming alumina based ceramic core
The application divides an application, the application number of original application: 201110413926X, the applying date: 2011-12-13, invention and created name: ceramic core for molding of support plate and preparation method thereof.
Technical field
The present invention relates to a kind of investment cast technology of the massive casting with hollow support plate, particularly a kind of for the moulding of aero-engine casing class annular cast hollow support plate with alumina based ceramic core material and preparation method.
Background technology
Increasing the front inlet air temperature of aero-turbine and loss of weight is the main path that improves its thrust-weight ratio.Consist of the main load parts of aircraft engine, also increasingly sophisticated such as the structure design of the parts such as superalloy rear housing, titanium alloy intermediary casing, therefore harsher requirement has been proposed for its metal matrix material and processing technology thereof.Course and future trend from the development of World Airways developed country, in the certain situation of motor power, design and adopt whole smart casting technology by casing class foundry goods thin-walled property, make the loss of weight of engine own and improve reliability, greatly having promoted motor performance, also is one of effective way that improves thrust-weight ratio.
Nearly clean shape melted module precise casting technology is to prepare the most important technology of motor case class formation spare both at home and abroad.Then this technology makes ceramic shell by adopting the wax material compacting wax-pattern of fusible mistake, after the dewaxing ceramic shell is carried out roasting, at last with the casting of metals of melting in shell, clear shell namely obtains required foundry goods after metal freezing, cooling.By to mold material and to the strict control of each process procedure and technological factor in the foundry goods moulding process, can obtain the near clean shape foundry goods that working face need not mechanical workout or only carries out detail sanding.Therefore melted module precise casting technology has large thin-wall element and the unitarily formed advantage that the casting dimensional precision is high, surfaceness is low, can be used for casting complex-shaped (particularly inner chamber is complicated).
The aero-engine casing base part has some hollow support plates usually, in order to obtain its hollow structure, must increase ceramic core in the oblique support plate position in ceramic shell, until casting pouring, solidify, cool off after, at first remove shell, then ceramic core is removed with machinery or chemical process from support plate, namely obtained the casing foundry goods that support plate has hollow structure.
Summary of the invention
The technical problem to be solved in the present invention provides a kind of ceramic core for molding of support plate and preparation method thereof, with the demand of the melted module precise casting technology that satisfies aero-engine casing class foundry goods.
For solving the problems of the technologies described above, the invention provides a kind of ceramic core for molding of support plate, it comprises: varigrained fused corundom powder, organic fibre, ammonium chloride and silicon sol; Described varigrained fused corundom powder, its alumina content 〉=99wt%, granularity is respectively 20-40 order, 50-100 order and 200-325 order; Wherein, granularity is that the mass percent of 20-40 purpose fused corundom powder is 10%-30%, and granularity is that the mass percent of 50-100 purpose fused corundom powder is 20%-40%, and granularity is that the mass percent of 200-325 purpose fused corundom powder is 30%-70%; Described organic fibre is one of nylon fiber, polyurethane fiber, tynex, length 0.1-3mm, and diameter 20-200 μ m, add-on is the 1-20% of described fused corundom opaque amount; Described ammonium chloride is analytical pure, and size-grade distribution is between the 200-325 order, and the add-on of ammonium chloride is the 0.08-0.12% of fused corundom powder; Described silicon sol, pH value are 8-10, wherein content 〉=the 28wt% of silicon dioxide colloid particle; The quality of this silicon sol is the 60-70% of the quality summation of described fused corundom powder, organic fibre and ammonium chloride.
The making method of above-mentioned ceramic core for molding of support plate comprises:
The first step, the preparation powder raw material: above-mentioned varigrained fused corundom powder, organic fibre and ammonium chloride powder are joined in the V-type mixer, force to be dry mixed, the rotating speed of V-type mixer is 120 to turn/min, mixing time is 12-24h, namely obtains the ceramic core raw material;
Second step, preparation slurry: described ceramic core raw material is joined in the silicon sol, with machine,massing mixing 50-70s, namely obtain ceramic core casting slurry;
The 3rd step, casting: described slurry is poured in the support plate cavity of foundry goods moltening mold castings wax-pattern, solidifies through the 8-12min disposed slurry, obtain the solid core.This core can be removed behind casting pouring, makes the support plate of foundry goods have the hollow structure of certain size and shape.
Below the present invention is further illustrated:
The fused corundom powder that adopts among the present invention is the material of main part that consists of ceramic core, because thermal expansivity is very low, so substantially do not have dimensional change in roasting and casting pouring process, is conducive to the control of support plate cavity size precision.
Organic fibre of the present invention, its effect are to provide certain enhancement to the wet base substrate of ceramic core, and the moisture evaporation causes the generation of cracking phenomena when avoiding simultaneously core because of roasting; Simultaneously, organic fibre because of the oxidation burn off, makes ceramic core produce certain hole after roasting in the Baking process, is beneficial to the removing of core.
Ammonium chloride of the present invention is the solidifying agent of silicon sol, and its effect is to make silicon sol that gelation namely occur at normal temperatures, and the ceramic powder raw material is bonded together, and becomes the ceramic core with some strength.By adjusting the ratio of ammonium chloride and silicon sol, can accurately control the time that ceramic core solidifies.
Silicon sol of the present invention, its effect are the binding agents as ceramic powder, through reacting and gelation with ammonium chloride, give the certain normal temperature strength of ceramic core and hot strength.
The present invention has the following advantages:
(1) to prepare the used stupalith main component of alumina-based ceramic core be varigrained fused corundom powder in the present invention, and fused corundom is chemical grade α-Al 2O 3Make through fixed electric furnace or Dumpage type electric furnace smelting process, density is high, and sintering activity is low, and thermal expansivity is very little.After forming ceramic core, size is lower because of thermal expansivity in roasting and metal melt casting process, so dimensional change is very little, and is not yielding, is conducive to keep the dimensional precision of support plate cavity;
(2) alumina based ceramic core material of the present invention, can adjust its set time by the add-on of adjusting solidifying agent ammonium chloride, namely shortens along with the increase of solidifying agent add-on the set time of ceramic core.The controllability of ceramic core set time has guaranteed that the operator can reserve the sufficient time and finish the process of core cast;
(3) organic fibre of the present invention can provide significant enhancement to the wet base substrate of ceramic core, and can avoid the cracking of core in roasting process; Organic fibre can also make ceramic core have certain hole because of the high temperature oxidation burn off simultaneously, is beneficial to core and removes from the foundry goods support plate after cast.
Embodiment
The below elaborates to embodiments of the invention: present embodiment is implemented under take technical solution of the present invention as prerequisite, has provided detailed embodiment and concrete operating process.
Embodiment 1:
Taking by weighing granularity is 20-40 purpose fused corundom powder 1kg, granularity is 50-100 purpose fused corundom powder 20g, granularity is 200-325 purpose fused corundom powder 7kg, nylon fiber 0.1kg, ammonium chloride 0.08kg puts in the V-type mixer, at rotating speed is 120 to turn/be dry mixed 12h under the condition of min, obtain the ceramic core material powder, for subsequent use.
Take by weighing silicon sol 400g, put in the beaker of 1000ml, then take by weighing above-mentioned raw materials powder 600g, join in the beaker, under the condition of strong stirring, make material powder and silicon sol mixing 1min, obtain the good slurry of flowing property; Slurry is poured in the cavity of casting wax mould support plate, behind about 10min, slurry curing namely obtains having the solid ceramic core of some strength.
By the pouring experiment of the actual part of casing, show that the wall thickness of casing support plate is even, distortion do not occur, and dimensional precision is qualified, after cast finished, core was more easily removed from the support plate cavity.
Embodiment 2:
Taking by weighing granularity is 20-40 purpose fused corundom powder 2kg, granularity is 50-100 purpose fused corundom powder 3kg, granularity is 200-325 purpose fused corundom powder 3kg, polyurethane fiber 0.25kg, ammonium chloride 0.10kg puts into and puts into the V-type mixer, at rotating speed is 120 to turn/be dry mixed 18h under the condition of min, obtain the ceramic core material powder, for subsequent use.
Take by weighing silicon sol 400g, put in the beaker of 1000ml, then take by weighing above-mentioned raw materials powder 600g, join in the beaker, under the condition of strong stirring, make material powder and silicon sol mixing 1min, obtain the good slurry of flowing property; Slurry is poured in the cavity of casting wax mould support plate, behind about 8min, slurry curing namely obtains having the solid ceramic core of some strength.
By the pouring experiment of the actual part of casing, show that the wall thickness of casing support plate is even, distortion do not occur, and dimensional precision is qualified, after cast finished, core was easily removed from the support plate cavity.
Embodiment 3:
Taking by weighing granularity is 20-40 purpose fused corundom powder 3kg, granularity is 50-100 purpose fused corundom powder 3kg, granularity is 200-325 purpose fused corundom powder 3kg, tynex 0.5kg, ammonium chloride 0.12kg puts into and puts into the V-type mixer, at rotating speed is 120 to turn/be dry mixed 24h under the condition of min, obtain the ceramic core material powder, for subsequent use.
Take by weighing silicon sol 400g, put in the beaker of 1000ml, then take by weighing above-mentioned raw materials powder 600g, join in the beaker, under the condition of strong stirring, make material powder and silicon sol mixing 1min, obtain the good slurry of flowing property; Slurry is poured in the cavity of casting wax mould support plate, behind about 5min, slurry curing namely obtains having the solid ceramic core of some strength.
By the pouring experiment of the actual part of casing, show that the wall thickness of casing support plate is even, distortion do not occur, and dimensional precision is qualified, after cast finished, core was defeated and dispersed voluntarily, was easy to remove.

Claims (2)

1. a ceramic core for molding of support plate is characterized in that comprising: varigrained fused corundom powder, organic fibre, ammonium chloride and silicon sol;
Described varigrained fused corundom powder, its alumina content 〉=99 wt%, granularity is respectively 20-40 order, 50-100 order and 200-325 order; Wherein, granularity is that the mass percent of 20-40 purpose fused corundom powder is 10%-30%, and granularity is that the mass percent of 50-100 purpose fused corundom powder is 20%-40%, and granularity is that the mass percent of 200-325 purpose fused corundom powder is 30%-70%;
Described organic fibre is one of nylon fiber, polyurethane fiber, tynex, length 0.1-3mm, and diameter 20-200 μ m, add-on is the 1-20% of described fused corundom opaque amount;
Described ammonium chloride is analytical pure, and size-grade distribution is between the 200-325 order, and the add-on of ammonium chloride is the 0.08-0.12% of fused corundom powder;
Described silicon sol, pH value are 10, wherein the content of silicon dioxide colloid particle 〉=28 wt%; The quality of this silicon sol be described fused corundom powder, organic fibre and ammonium chloride the quality summation 60%.
2. the making method of a ceramic core for molding of support plate claimed in claim 1 is characterized in that comprising:
The first step, the preparation powder raw material: varigrained fused corundom powder, organic fibre and ammonium chloride powder are joined in the V-type mixer, force to be dry mixed, the rotating speed of V-type mixer is 120 to turn/min, and mixing time is 24h, namely obtains the ceramic core raw material;
Second step, preparation slurry: described ceramic core raw material is joined in the silicon sol, with machine,massing mixing 70s, namely obtain ceramic core casting slurry;
The 3rd step, casting: described slurry is poured in the support plate cavity of foundry goods moltening mold castings wax-pattern, solidifies through 8-12 min disposed slurry, obtain the solid core.
CN201310044916.2A 2011-12-13 2011-12-13 Alumina-based ceramic core for support plate forming Active CN103073319B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310044916.2A CN103073319B (en) 2011-12-13 2011-12-13 Alumina-based ceramic core for support plate forming

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310044916.2A CN103073319B (en) 2011-12-13 2011-12-13 Alumina-based ceramic core for support plate forming

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
CN 201110413926 Division CN102489670B (en) 2011-12-13 2011-12-13 Ceramic core for molding of support plate and preparation method thereof

Publications (2)

Publication Number Publication Date
CN103073319A true CN103073319A (en) 2013-05-01
CN103073319B CN103073319B (en) 2014-01-15

Family

ID=48150043

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201310044916.2A Active CN103073319B (en) 2011-12-13 2011-12-13 Alumina-based ceramic core for support plate forming

Country Status (1)

Country Link
CN (1) CN103073319B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104209465A (en) * 2013-05-29 2014-12-17 贵阳市新航铸造材料科技开发有限公司 Manufacture method of ceramic sprue cup for investment casting
CN111995414A (en) * 2020-07-31 2020-11-27 西安欧中材料科技有限公司 Polyacrylonitrile-based carbon fiber reinforced ceramic core and preparation method thereof

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5697418A (en) * 1993-10-13 1997-12-16 Societe Nationale D'etude Et De Construction De Moteurs D'aviation "Snecma" Method of making ceramic cores for use in casting
CN102039375A (en) * 2010-11-20 2011-05-04 沈阳工业大学 Method for quickly manufacturing high-temperature alloy hollow blade casting
CN102093040A (en) * 2010-12-07 2011-06-15 山东理工大学 Composite ceramic mold core for water pump impeller and preparation method thereof

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5697418A (en) * 1993-10-13 1997-12-16 Societe Nationale D'etude Et De Construction De Moteurs D'aviation "Snecma" Method of making ceramic cores for use in casting
CN102039375A (en) * 2010-11-20 2011-05-04 沈阳工业大学 Method for quickly manufacturing high-temperature alloy hollow blade casting
CN102093040A (en) * 2010-12-07 2011-06-15 山东理工大学 Composite ceramic mold core for water pump impeller and preparation method thereof

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
赵红亮 等: "空心叶片用陶瓷型芯", 《特种铸造及有色合金》 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104209465A (en) * 2013-05-29 2014-12-17 贵阳市新航铸造材料科技开发有限公司 Manufacture method of ceramic sprue cup for investment casting
CN111995414A (en) * 2020-07-31 2020-11-27 西安欧中材料科技有限公司 Polyacrylonitrile-based carbon fiber reinforced ceramic core and preparation method thereof

Also Published As

Publication number Publication date
CN103073319B (en) 2014-01-15

Similar Documents

Publication Publication Date Title
CN102489670B (en) Ceramic core for molding of support plate and preparation method thereof
CN103286273B (en) Making method of ceramic core for molding of casing annular casting hollow support plate
CN102039375B (en) Method for quickly manufacturing high-temperature alloy hollow blade casting
CN100506428C (en) Method for direct production of core in narrow groove and blind hole of wax mould
CN102351519A (en) Cast ceramic core and preparation method thereof
CN103056302A (en) Ceramic core for molding aeroengine case type annular casting hollow support plate
CN105522112B (en) Magnesium alloy investment casting high collapsibility ceramic shell and preparation method thereof
CN103231021B (en) Alumina-based ceramic core and preparation method thereof
CN101658918A (en) Water glass type magnesium alloy fusible pattern casting process
CN103008547B (en) Resin sand shell mold casting method of automotive turbocharger shell
MX2012006584A (en) Foundry mixes containing an organic acid salt and their uses.
TW200533436A (en) Process for producing cast item
CN107838402A (en) A kind of manufacture method of complicated magnesium alloy structural part
CN103073319B (en) Alumina-based ceramic core for support plate forming
CN108296417A (en) It is a kind of to be used for laser sintered and nanometer 3D printing technique precoated sand and preparation method thereof
CN102836966A (en) Casting cooling process for shell of central refrigeration compressor
CN108031788A (en) A kind of aluminium alloy casting compound sand core of high heat conduction and preparation method thereof
CN1994964A (en) Composite alumina ceramic core material adopting alumina hollow sphere and its forming preparation process
CN103073272B (en) Production method of ceramic core for support plate forming
CN109834220A (en) A kind of aluminium alloy full form casting process
CN103056303A (en) Ceramic core for supporting plate forming
CN101372033A (en) Self-spreading method for quickly casting armored vehicle aluminium alloy part or blank for emergency in battlefield
CN104550725A (en) Method for investment casting automobile heat-resistant steel exhaust manifold
CN114682729A (en) Preparation method of precision casting silica sol shell
CN109732036A (en) Moltening mold castings fill core material and preparation method

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C56 Change in the name or address of the patentee

Owner name: JIANGSU TUNAN ALLOYS CO., LTD.

Free format text: FORMER NAME: DANYANG PRECISION ALLOY FACTORY CO., LTD.

CP03 Change of name, title or address

Address after: 212000, Jiangsu, Zhenjiang Province, Danyang City, Lu Town, 1 Military and civilian canal West

Patentee after: Jiangsu Tu Nan alloy limited company

Address before: 212000, No. 1, army West Road, Yunhe Town, Zhenjiang City, Jiangsu Province, Danyang

Patentee before: Danyang Precision Alloy Factory Co., Ltd.