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Preparation method of novel 3D printing clay material

A 3D printing and clay technology, which is applied in the production and application of clay products and ceramic materials, can solve the problems of poor clay material properties, unfavorable support and modeling, etc., and achieve good dimensional accuracy, high wear resistance, and broad market prospects Effect

Inactive Publication Date: 2017-01-11
NANNING MENGHUAN 3D ENVIRONMENTAL PROTECTION TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] The invention provides a preparation method of a new type of clay material for 3D printing to solve the problems that the unmodified clay material has poor physical properties and is not conducive to support and shape in the molding process. The clay material of the invention has higher Wear-resistant strength, impact strength, seismic strength, good plasticity, easy molding, high precision, etc., are suitable for 3D printing molding technology, promote the popularization and application of 3D printing molding technology, and have broad market prospects

Method used

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  • Preparation method of novel 3D printing clay material
  • Preparation method of novel 3D printing clay material
  • Preparation method of novel 3D printing clay material

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preparation example Construction

[0063] The preparation method of described novel 3D printing clay material comprises the following steps:

[0064] S1: Take the soil with pH ≥ 7, air-dry it naturally, put it into a planetary ball mill to grind, pass the soil powder through a 200-400 mesh sieve, and obtain the clay material of the raw material;

[0065] S2: crushing the stone through a 100-300 mesh sieve to obtain calcium carbonate powder;

[0066] S3: Treat plants, fallen leaves, and residues at 1000-1400°C to make plant ash;

[0067] S4: Put the clay material prepared in step S1, the calcium carbonate powder prepared in step S2, and the plant ash prepared in step S3 into a pulverizer after mixing, pulverize the mixture at room temperature for 10-20min, and sieve to obtain 80- 90 mesh material A;

[0068] S5: Add a specific synthetic agent to the material A prepared in step S4, raise the temperature to 140-160° C., knead at a rotation speed of 40-60 r / min for 3-5 hours, and then cool to room temperature to ...

Embodiment 1

[0082] A new type of clay material for 3D printing, including raw materials with the following mass ratio: clay material: calcium carbonate powder: plant ash: specific synthetic agent: starch synthetic agent: water = 25:12:8:6:5:12;

[0083] The specific synthetic agent is in parts by weight, including the following raw materials: 15 parts of regulator, 15 parts of strengthening agent, 12 parts of stabilizer, 12 parts of bridging agent, 8 parts of toughening agent, 8 parts of thickener, stabilizer 6 parts, 4 parts of antifungal agent, 4 parts of terminator;

[0084] The regulator is JINHASS;

[0085] The strengthening agent is 701 powder strengthening agent;

[0086] The stabilizer is composed of bentonite, phosphogypsum, fluorogypsum, barium oxide, and zinc oxide;

[0087] The bridging agent is an acrylic acid type bridging agent;

[0088] The toughening agent is silicon nitride whisker;

[0089] The thickener is a cellulose ether thickener;

[0090] The stabilizer is ca...

Embodiment 2

[0112] A new type of clay material for 3D printing, including raw materials with the following mass ratio: clay material: calcium carbonate powder: plant ash: specific synthetic agent: starch synthetic agent: water = 20:8:6:5:4:10;

[0113] The specific synthetic agent is in parts by weight, including the following raw materials: 12 parts of regulator, 12 parts of strengthening agent, 10 parts of stabilizer, 10 parts of bridging agent, 6 parts of toughening agent, 6 parts of thickening agent, stabilizer 4 parts, 2 parts of antifungal agent, 2 parts of terminator;

[0114] The regulator is JINHASS;

[0115] The strengthening agent is 701 powder strengthening agent;

[0116] The stabilizer is composed of bentonite, phosphogypsum, fluorogypsum, barium oxide, and zinc oxide;

[0117] The bridging agent is an acrylic acid type bridging agent;

[0118] The toughening agent is silicon nitride whisker;

[0119] The thickener is a cellulose ether thickener;

[0120] The stabilizer i...

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Abstract

The invention discloses a preparation method of a novel 3D printing clay material and belongs to the technical field of 3D printing material preparation. The novel 3D printing clay material is prepared from clay, calcium carbonate powder, plant ash, a specific synthesis agent, a starch synthesis agent and water according to a mass ratio of 20-30: 8-16: 6-10: 5-8: 4-6: 10-25. The preparation method comprises clay preparation, calcium carbonate powder preparation, plant ash preparation, normal temperature crushing, modification with a specific synthesis agent and a starch synthesis agent, and extruding granulation. The clay material has the advantages of high wear resistance, impact strength, shock strength, good plasticity, molding easiness and high precision, is suitable for a 3D printing molding technology, promotes 3D printing molding technology promotion and has a wide market prospect.

Description

[0001] 【Technical field】 [0002] The invention belongs to the technical field of preparation of materials for 3D printing, and in particular relates to a novel clay material for 3D printing and a preparation method thereof. [0003] 【Background technique】 [0004] 3D printing technology, also known as additive manufacturing technology, is an emerging technology in the field of rapid prototyping. It is based on digital model files and uses bondable materials such as powdered metal or plastic to print layer by layer. Techniques for constructing objects. With the development and application of 3D printing technology, the development of materials determines whether 3D printing can be more widely used, and materials have become one of the key factors limiting the future direction of 3D printing technology. At present, 3D printing materials mainly include engineering plastics, photosensitive resins, rubber materials, metal materials, and ceramic materials. The field of printing ha...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B33/13C04B33/135
CPCB33Y70/00C04B33/1305C04B33/131C04B33/1315C04B33/1355C04B35/636C04B2235/3208Y02P40/60
Inventor 覃杨华
Owner NANNING MENGHUAN 3D ENVIRONMENTAL PROTECTION TECH CO LTD
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