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Custom Motor Gear MIM Stainless Steel Precision Injection Molding
  • Custom Motor Gear MIM Stainless Steel Precision Injection Molding
  • Custom Motor Gear MIM Stainless Steel Precision Injection Molding
  • Custom Motor Gear MIM Stainless Steel Precision Injection Molding
  • Custom Motor Gear MIM Stainless Steel Precision Injection Molding
  • Custom Motor Gear MIM Stainless Steel Precision Injection Molding

Custom Motor Gear MIM Stainless Steel Precision Injection Molding

Τόπος καταγωγής ΚΙΝΑ
Μάρκα didaINT
Πιστοποίηση ISO9001
Αριθμό μοντέλου Ε902
Λεπτομέρειες προιόντος
Υλικό κοιλότητας:
H13
Χρώμα:
Προσαρμόσιμος
Πρότυπο μούχλας:
DME
Αποστολή:
Με τη θάλασσα ή τον αέρα, ή με ταχυδρομείο.
Ακρίβεια:
0,02mm
πλαστική φόρμα:
Μούχλα οικιακής συσκευής
Αριθμός κοιλότητας:
Ενιαίο / Πολλαπλό
Λογισμικό σχεδιασμού μούχλας:
UG, ProE, SolidWorks
mouldLife:
Ένα εκατομμύριο σφαίρες.
Επισημαίνω: 

Custom Motor Gear MIM

,

Stainless Steel Precision Injection Molding

,

Precision Injection Mold with Warranty

Όροι πληρωμής & ναυτιλίας
Ποσότητα παραγγελίας min
100
Τιμή
0.1-1usd/pcs
Συσκευασία λεπτομέρειες
ΧΑΡΤΟΚΙΒΩΤΙΟ
Χρόνος παράδοσης
1-4 εβδομάδες
Όροι πληρωμής
T/T, D/P, Western Union
Δυνατότητα προσφοράς
100000pcs/μήνα
Περιγραφή προϊόντων
Custom Motor Gear MIM Stainless Steel Precision Injection Molding
Our custom motor gears are manufactured using advanced Metal Injection Molding (MIM) technology, offering a perfect blend of high precision, complex geometry, and exceptional strength. We provide a one-stop solution from initial design and custom mold creation to sintering and secondary operations, ensuring your motor assemblies operate with maximum efficiency and reliability.
Product Attributes & Specifications
Feature Specification
Process Metal Injection Molding (MIM)
Material 17-4PH Stainless Steel, 316L Stainless Steel, Custom alloys available
Density >7.5 g/cm³ (Typically 96-99% of theoretical density)
Tensile Strength Up to 1000 MPa (Varies by material and heat treatment)
Surface Finish As-sintered, Polished, Tumbled, or Plated
Tolerance ±0.3% typical, ±0.1% with secondary machining
Brand didaINT
Model Custom (Based on your drawing and specifications)
Secondary Operations Deburring, Heat Treatment, CNC Machining, Grinding
Summary Recommendations
Custom Motor Gear MIM Stainless Steel Precision Injection Molding 0
Machining Workshop
Custom Motor Gear MIM Stainless Steel Precision Injection Molding 1
FAQ
Q1: What is the main advantage of MIM for gears compared to traditional machining?
A: MIM allows for the production of complex, high-precision gear geometries (like helical gears or gears with intricate hubs) in a single, net-shape process. This eliminates expensive multi-step machining operations, reduces material waste, and lowers the overall cost, especially for production volumes from 10,000 to millions of parts.
Q2: What materials do you offer for MIM gears?
A: We primarily use high-performance stainless steels like 17-4PH (for high strength and hardness) and 316L (for superior corrosion resistance). We can also work with other low-alloy steels and custom material blends to meet your specific mechanical or magnetic property requirements.
Q3: Can you achieve the tight tolerances required for high-speed motor applications?
A: Absolutely. The MIM process itself holds tight tolerances (±0.3%). For critical features like bore diameters or gear profiles requiring tolerances under ±0.05mm, we offer secondary CNC machining and grinding services to meet the most demanding specifications.
Q4: Do you provide design for manufacturability (DFM) analysis?
A: Yes, as a full-service partner, we provide a comprehensive DFM analysis at no cost. Our engineering team will review your gear design and suggest optimizations for the MIM process to enhance performance, reduce cost, and ensure a smooth production cycle.
Q5: What is your typical lead time for a new custom gear project?
A: Lead time varies by project complexity. Typically, custom mold design and fabrication take 3-4 weeks. First article samples are delivered for approval shortly after. Once approved, mass production for a batch of 50,000 parts can be completed within 6-8 weeks. We offer expedited services upon request.

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