Product Name:Plastic Mold Ejector Guide Bushing
Material:Japan(SKD11.SKD61.SKH51.S45C)USA(AISA.D2.H13.P20.M2)Germany(DIN.2379.2363.2344.2347)ASSAB(Rigor.Stavax.Impax.Elmax.ASP23).etc.
Hardness:58-60 HRC
Grinding precision:0.001mm
Electri
Product Name:Plastic Mold Ejector Guide Bushing
Main Tungsten Carbide:K10,K20,K30,K40,CD650,CF-H40S,KG7,WF30,KD20,V10,V20,V30,ST6,ST7
Other Material:Copper, Aluminium alloy.
5.R minimum dimension 0.03mm inside & 0.02mm outside
Notice: Above Mentioned Specification is for reference only. In different order, customers point out different requirements.

Advantages
1. Short lead time , 3-30 working days according your quantity.
2. 100% on time delivery to our dear customers.
3. Low MOQ , 1 pcs rapid prototype sample is available.
4. Near Shenzhen and HK, its convenient for transportation.
5. OEM is available ,and also welcome ODM

Order Process Flow:
Production-heat treatment-surface treatment(Grinding & Optical Grinding & WEDM & Drilling & Milling)-quality detection-package- shipment
Packing: Anti-rust Oil + Plastic box + Carton, or clients' requirement
Quality:
1. Good experience and technology in manufacturing mold parts, some engineers have more than 10 years experience in producing various kinds of precision parts, so could offer good technology support to customers.
2. Advanced measurement equipments (Seibu Wire Cuting Machine & Sodick Wire Cutting Machine & PG Grinder) to make sure all the requirement from our dear customers will be measurable.
3.100% inspection before shipment.
Quality Control: IQC - PQC - FQC
1> IQC:
Incoming material control to make sure all the raw materials are qualified.
2> IPQC:
2.1 Operators follow the daily check list to check the machines to make sure they are in good conditions, and follow the spec to make products
2.2 Use qualified operators and correct parameters to make sure good quality.
2.3 Technicians / team leaders online check the quality.
2.4 IQPC according to the quality assurance procedure to check the quality.
3> OQC
QC 100% quality check after production with testing machines.
Delivery Details:
1. Fedex / UPS / DHL / TNT for examples
2. By air or by sea for batch goods
3. Customer designated freight forwarding

General Information
Tool steels are steels that are primarily used to make tools used in manufacturing processes as well as for machining metals, woods, and plastics. Tool steels are generally ingot-cast wrought products, and must be able to withstand high specific loads as well as be stable at elevated temperatures.
Types: High-Speed Tool Steels,Hot-work Tool Steels,Cold-work Tool Steels,Shock-Resistant Tool Steels,Mold Steels,Special-Purpose Tool Steels,Water-Hardening Tool Steels
AISI Designations:
W: Water-Hardening
S: Shock-Resisting
O: Cold-Work (Oil-Hardening)
A: Cold-Work (Medium-Alloy, Air-Hardening)
D: Cold-Work (High-Carbon, High-Chromium)
L: Low-Alloy
F: Carbon-Tungsten
P: P1-P19 Low-Carbon Mold Steels
P20-P39 Other Mold Steels
H: H1-H19: Chromium-Base Hot Work
H20-H29: Tungsten-Base Hot Work
H40-H59: Molybdenum-Base Hot Work
T: High-Speed (Tungsten-Base)
M: High-Speed (Molybdenum-Base)
1. Part of Galaxy3DM Mold&Mold Parts Material List1:
| Type | China | USA | JAPAN | Sweden | Germany | Hardness range | Quenching temperature |
| GB | ASTM | JIS | ASSAB | DIN | HB | ℃ | |
| Cold work die steel | CrWMn | SKS31 | 105W | 207-255 | 820-840 | ||
| Cr6 | |||||||
| 9Mn2V | O2 | DF-2 | ≤229 | 780-800 | |||
| 9CrWMn | O1 | SKS3 | DF-3 | 100Mn | 197-241 | 820-840 | |
| CrW4 | |||||||
| 9SiCr | X100Cr | 197-241 | 860-880 | ||||
| MoV51 | |||||||
| Cr5Mo1V | A2 | SKD12 | XW-10 | X210 | ≤255 | 950-1000 | |
| Cr12 | |||||||
| Cr12 | D3 | SKD1 | X165Cr | 217-269 | 950-980 | ||
| MoV12 | |||||||
| Cr12MoV | X155Cr | 207-255 | 1000-1020 | ||||
| VMo121 | |||||||
| Cr12Mo1V1 | D2 | SKD11 | XW-42 | ≤255 | 1000-1020 | ||
| 7Cr7Mo2V2Si | 241-269 | 1100-1150 | |||||
| 7CrSiMnMoV | 217-241 | 880-910 | |||||
| Hot work die steel | 5CrMnMo | 197-241 | 820-850 | ||||
| 5CrNiMo | L6 | 56Cr | 197-241 | 830-860 | |||
| NiMoV7 | |||||||
| 5CrNiMoV | SKT4 | ≤240 | 830-880 | ||||
| 4Cr5MoSiV1 SWG8407 | H13 H13ESR | SKD61 | X40Cr | ≤235 | 1020-1050 | ||
| MoV51 | |||||||
| 4Cr5MoSiV | H11 | SKD6 | 8402 8407 | X38Cr | ≤235 | 1000-1050 | |
| MoV51 | |||||||
| 3Cr2W8V | H21 | SKD5 | 207-255 | 1100-1150 | |||
| Plastic Mold Steel | 45-55 | 1045 | S45 | 800-870 | |||
| - | - | ||||||
| 1055 | 55C | ||||||
| 40Cr | 840-860 | ||||||
| 3Cr2Mo | P20 | 618 | 40Cr | HRC28-32 | 840-880 | ||
| Mo7 | |||||||
| 3Cr2NiMnMo | P20+Ni | PDS5S | 718 | 2738 | HRC30-34 | 840-880 | |
| 3-4Cr13 | 420 | S-136 | 2083 | ≤230 | 950-1050 | ||
| 9Cr18Mo | T440C | SUS | 4125 | ≤285 | 1050-1100 | ||
| 440C |
2. Part of Galaxy3DM Mold&Mold Parts Material List 2 :
Material type and properties of carbide
| Material classification | Material name | hardness | Transverse rupture strength | Tensile strength | Toughness | Compressive Strength | specific gravity | Young's modulus |
| (HRA) | (GPa) | (GPa) | (MPa・m1/2) | (GPa) | (GPa) | |||
| Ultra fine particle type | KM10 | 91.5 | 3.4 | 1.8 | 11.2 | 6.4 | 14 | 550 |
| Ultra fine particle type | KH10 | 92 | 2.4 | 1.2 | 7.5 | 6.1 | 14.7 | 620 |
| K1F | 92 | 2.6 | 1.2 | 9 | 6.1 | 15.1 | 660 | |
| K2F | 91.5 | 2.7 | 1.5 | 9.3 | 5.2 | 14.9 | 630 | |
| General wear resistant material | KV10 | 91 | 2.7 | 1.5 | 10 | 5.2 | 15 | 640 |
| KV20 | 90.5 | 3.1 | 1.8 | 10.2 | 4.8 | 14.8 | 620 | |
| KV25 | 89 | 3.3 | 2 | 12.4 | 4.4 | 14.5 | 580 | |
| KV30 | 88 | 3.6 | 2.3 | 13.5 | 4.2 | 14.2 | 540 | |
| KV40 | 87 | 3.7 | 2.5 | 14.1 | 3.9 | 13.9 | 500 |
Each company's carbide material type contrast table
| Classification | Tondabayashi Factory | Tungaloy | Sumitomo Electric Industries | Mitsubishi Materials |
| V10 | K1F | G1F | D1 | GTi05 |
| K2F | G2F | |||
| KV10 | D10 | |||
| V20 | KV20 | D20 | D2 | GTi10 |
| KV25 | D25 | GTi15 | ||
| V30 | KV30 | D30 | D3 | GTi20 |
| V40 | KV40 | D40 | G5 | GTi30 |
| ※The life of the Carbide material changes greatly depending on the application. | ||||
| ※We will propose the material type appropriate for each application, so please consult us. | ||||
| ※The material type control table does not confirm each company's agreement. | ||||

3. Material Comparision Table

Welcome contact Galaxy3DM to get more details about Mold&Mold Parts Material.
There are so many different standard institutes and organizations worldwide. Every country will have their own standard system by national organization or sectors. In this post, we list 9 common international known standard institute and organizations.
1. AISI – American Iron and Steel Institute

The American Iron and Steel Institute (AISI) is an association of North American steel producers. Its predecessor organizations date back to 1855 making it one of the oldest trade associations in the United States. AISI assumed its present form in 1908, with Elbert H. Gary, chairman of the United States Steel Corporation, as its first president.
Its development was in response to the need for a cooperative agency in the iron and steel industry for collecting and disseminating statistics and information, carrying on investigations, providing a forum for the discussion of problems and advancing the interests of the industry.
2. ASTM – American Society for Testing and Materials

ASTM International, known until 2001 as the American Society for Testing and Materials (ASTM), is an international standard organization that develops and publishes voluntary consensus technical standards for a wide range of materials, products, systems, and services. Some 12,575 ASTM voluntary consensus standard operate globally.The organization’s headquarters is in West Conshohocken, Pennsylvania, about 5 mi (8.0 km) northwest of Philadelphia.
ASTM, founded in 1898 as the American Section of the International Association for Testing and Materials, predates other standards organizations such as BSI (1901), DIN (1917), ANSI (1918) and AFNOR (1926).
3. DIN – Deutsches Institut für Normung

Deutsches Institut für Normung e.V. (DIN; in English, the German Institute for Standardization) is the German national organization for standardization and is the German ISO member body. DIN is a Registered German Association (e.V.) headquartered in Berlin. There are currently around thirty thousand DIN Standards, covering nearly every field of technology.
Founded in 1917 as the Normenausschuß der deutschen Industrie (NADI, “Standardisation Committee of German Industry”), the NADI was renamed Deutscher Normenausschuß (DNA, “German Standardisation Committee”) in 1926 to reflect that the organization now dealt with standardization issues in many fields; viz., not just for industrial products. In 1975 it was renamed again to Deutsches Institut für Normung, or ‘DIN’ and is recognized by the German government as the official national-standards body, representing German interests at the international and European levels.
4. BS – British Standards

British Standards (BS)are the standards produced by BSI Group which is incorporated under a Royal Charter (and which is formally designated as the National Standards Body (NSB) for the UK).The BSI Group produces British Standards under the authority of the Charter, which lays down as one of the BSI’s objectives.
Products and services which BSI certifies as having met the requirements of specific standards within designated schemes are awarded the Kitemark.
5. ANSI – American National Standards Institute

The American National Standards Institute (ANSI, /ˈænsiː/ an-see) is a private non-profit organization that oversees the development of voluntary consensus standards for products, services, processes, systems, and personnel in the United States. The organization also coordinates U.S. standards with international standard so that American products can be used worldwide. For example, standards ensure that people who own cameras can find the film they need for that camera anywhere around the globe.
ANSI accredits standards that are developed by representatives of other standards organizations, government agencies, consumer groups, companies, and others. These standards ensure that the characteristics and performance of products are consistent, that people use the same definitions and terms, and that products are tested the same way. ANSI also accredits organizations that carry out product or personnel certification in accordance with requirements defined in international standard.
6. JIS – Japanese Industrial Standards

Japanese Industrial Standards (JIS) (Nippon Kōgyō Kikaku?) specifies the standards used for industrial activities in Japan. The standardization process is coordinated by the Japanese Industrial Standard Committee and published through the Japanese Standards Association.
7. AFNOR – Association Française de Normalisation

Association Française de Normalisation (AFNOR) is the French national organization for standardization and its International Organization for Standardization member body.
The AFNOR Group develops its international standardization activities, information provision, certification and training through a network of key partners in France who are members of the association.
8. AS – Standards Australia

Standards Australia is a standards organisation established in 1922 and is recognised through a Memorandum of Understanding with the Australian government as the peak non-government standards development body in Australia.
Standards Australia develops internationally aligned Australian standard (AS) and participates in standards-related activities that deliver benefit to the nation. Standards Australia and Standard New Zealand work together to develop joint standards (AS/NZS) Standards Australia is also the Principal Sponsor of the Australian International Design Awards.
9. ASME – American Society of Mechanical Engineers

The American Society of Mechanical Engineers (ASME) is a professional association that, in its own words, “promotes the art, science, and practice of multidisciplinary engineering and allied sciences around the globe” via “continuing education, training and professional development, codes and standards, research, conferences and publications, government relations, and other forms of outreach.” ASME is thus an engineering society, a standards organization, a research and development organization, a lobbying organization, a provider of training and education, and a nonprofit organization. Founded as an engineering society focused on mechanical engineering in North America, ASME is today multidisciplinary and global.
ASME has over 140,000 members in 158 countries worldwide.
There should be other institute and organizations in your countries that we have not list. Please leave us a comment and we will list it for more people to check and favorite. Following is useful weblink of International standard org.
ISO www.iso.ch
ASTM www.astm.org
NACE www.nace.org
IEEE www.ieee.org
UL www.ul.com
CSA www.csa-international.org
DIN www.din.de
VDE www.vde.de
VDI www.vdi.de
BSI www.bsi.org.uk
CEN www.cenorm.be
IEC www.iec.ch
AASHTO www.aashto.org
AATCC www.aatcc.org
ACI www.aci-int.net
AGMA www.agma.org
ANSI www.ansi.org
ASME www.asme.org
AWS www.aws.org
EIA www.eia.org
FMVSS www.nhtsa.dot.gov
IPC www.ipc.org
ISA www.isa.org
MIL www.arl.mil
NEMA www.nema.org
NFPA www.nfpa.com
SAE www.sae.org
TAPPI www.tappi.org
CNS www.cns.org.tw
CNLA www.cnla.org.tw
BSN www.bsn.go.id
GB www.csicci.gov.cn
MS www.sirim.my
SASO www.saso.org
ASM www.asm-intl.org
QEMA tqm.com
ASQC www.asqc.org
NIST www.nist.org
APQC www.apqc.org
MRS www.mrs.org b]
SACAC www.ee.up.ac.za/sacac
SAIEE www.saiee.org.za
SAIMC www.technews.co.za/saimc/
IQMA www.openhouse.org.uk/iqma/
Data Interchange
File Transfer Security
| SolidWorks 2004 | Advice on STL creation available. |
| PTC Pro/Engineer 2000i2 & Wildfire | |
| Materialise Magics RP | Rapid Prototyping software. |
| Autodesk | DWF |
| Materialise Magics Communicator | Internet based STL viewing package allowing customers to share 3D files with 3T RPD via the internet. |
| Adobe Photoshop 5.0 | Photo/Image editing software. |
CAD/CAM Systems currently in use:
| .STL | Rapid Prototyping file (Binary with 0.01mm tolerance preferred) |
| .IGES | Initial Graphics Exchange Specification universal translator |
| .STEP | International Standard for Exchange of Product Model Data |
| .SET | Standard for Exchange & Transfer V89-06 |
| .VDA | Surfaced Data Interface V2.0 |
| .SLDPRT | Solidworks model file |
| .EXP | Catia export file |
| .MDL | Catia native model file |
| .EPS | Encapsulated PostScript format file* |
| .DXF | 2D drafting translator* |
| .DXF | 3D faces |
| .DWG | AutoCad drawing file* |
| .PRT | Pro/Engineer Part file |
| .BMP | Windows Bitmap image format file* |
| .JPEG | Joint Photographic Experts Group image file* |
| .TIFF | Tagged-Image File Format image file* |
| .WRL | VRML (Virtual Reality Modelling Language)* |
| .OBJ | Wavefront Model file* |
File Compression Types used by Galaxy3DM include:
| EXE | DOS executable file |
| ZIP | WinZip compression file |
| SIT | Macintosh Stuffit compression file |
| MGX | Materialise Magics compression file |
| If any of these files are not possible, please contact us for alternative requirements. | |

FAQ
1.Q: How to process if we cannot find the model we need in your catalog!
Pls kindly tell us your detailed requriements and send us your design file.
A: Please offer us 2D or 3D drawings (with material, dimension, tolerance, surface treatment and other technical requirement etc.) ,quantity, application or samples. Then we will quote the best price within 24h.
3.Q: What is your MOQ?
A: MOQ depends on our client's needs, besides,we welcome trial order before mass-production.
4.Q: What is the production cycle?
A: It varies a lot depending on product dimension,technical requirements and quantity. We always try to meet customers' requirement by adjusting our workshop schedule.
5.Q: What kind of payment terms do you accept?
A.: T/T, Paypal, western union etc.
6.Q: Is it possible to know how is myproduct going on without visiting your company?
A: We will offer a detailed products schedule and send weekly reports with digital pictures and videos which show the machining progress.

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