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Injection Molding: Disadvantages, Thickness Limits & Comparison with 3D Printing and CNC Machining

2026-03-20

 

Injection Molding is one of the most widely used manufacturing processes for producing plastic parts at scale. From automotive dashboards to medical device housings and consumer electronics enclosures, Injection Molding enables manufacturers to produce millions of highprecision, consistent, and durable plastic components efficiently.

However, despite its advantages, Injection Molding is not always the best solution for every project. Many engineers and product developers ask critical questions:

· What are the disadvantages of Injection Molding? 

· 3D printing vs. Injection Molding: Which is better? 

· CNC machining vs. Injection Molding for plastic parts?

 

· How thick can an Injection Molded part be?

This comprehensive guide answers these questions in depth while providing expert-level insights into design, cost, material limitations, and real-world applications.

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Table of Contents

· What Is Injection Molding?

· What Are the Disadvantages of Injection Molding?

· 3D Printing vs. Injection Molding: Which Is Better?

· CNC Machining vs. Injection Molding for Plastic Parts?

· How Thick Can an Injection Molded Part Be?

· Cost Analysis of Injection Molding

· Environmental and Sustainability Considerations

· Frequently Asked Questions (FAQ)

· Conclusion

· Start Your Injection Molding Project




What Is Injection Molding?

Injection Molding is a manufacturing process in which molten thermoplastic or thermoset material is injected under high pressure into a precisely machined mold cavity. After cooling and solidification, the part is ejected and ready for use or secondary processing.

The process is especially suitable for high-volume production because once the mold is built, each additional part can be produced at a very low unit cost.

How Injection Molding Works

1. Clamping – The mold halves are securely closed.


2. Injection – Molten plastic is injected into the cavity.


3. Packing/Holding – Pressure is maintained to compensate for shrinkage.


4. Cooling – The material solidifies.


5. Ejection – The finished part is removed.


Core Technical Parameters in Injection Molding

Parameter

Typical Range

Influence on Part Quality

Injection Pressure

10,000–30,000 psi

Surface finish & detail

Mold Temperature

20–120°C

Shrinkage control

Cooling Time

5–60 seconds

Warpage prevention

Machine Tonnage

50T–5000T

Determined by part size

Cycle Time

10–120 seconds

Production efficiency




What Are the Disadvantages of Injection Molding?

1. High Initial Tooling Cost

Simple mold: $5,000–$15,000
Medium complexity: $20,000–$60,000
Complex multi-cavity mold: $100,000+

2. Design Modification Is Difficult

Steel mold changes are expensive and time-consuming. Early DFM analysis is essential.

3. Long Lead Time for Mold Fabrication

Typically 4–12 weeks depending on complexity.

4. Not Cost-Effective for Low Volume Production

For production volumes in the range of 1,000–3,000 units, alternative processes may be more suitable, or the use of a bridge mold or aluminum mold is more cost-effective than a conventional injection mold

5. Wall Thickness and Design Constraints

Thick sections may cause sink marks, voids, and warpage.


Summary of Injection Molding Disadvantages

Disadvantage

Impact

Possible Solution

High tooling cost

High

Prototype molds

Long lead time

Medium

Early DFM

Hard to modify

High

Simulation testing

Not ideal for small runs

Medium

Use 3D printing

Thickness limitations

Medium

Structural rib design




3D Printing vs. Injection Molding: Which Is Better?

When to Choose 3D Printing

· Prototyping

 

· Low volume production

 

· Complex geometries

 

· No tooling investment

When to Choose Injection Molding

· High production volume

 

· Strong mechanical properties

 

· Long-term manufacturing

Comparison Table

Factor

3D Printing

Injection Molding

Tooling Cost

None

High

Unit Cost

High

Very Low at Scale

Lead Time

1–7 Days

4–12 Weeks

Strength

Moderate

High

Surface Finish

Variable

Excellent

Production Volume

1–1,00

1,000–Millions




CNC Machining vs. Injection Molding for Plastic Parts?

Criteria

CNC Machining

Injection Molding

Setup Cost

Low

High

Unit Cost

High

Low at Scale

Material Waste

High

Minimal

Surface Finish

Good

Excellent

Production Volume

Low

Medium–High

Geometry Complexity

Limited

High




How Thick Can an Injection Molded Part Be?

Recommended Wall Thickness by Material

Material

Recommended Thickness

ABS

1.2–3.5 mm

PP

0.8–3.8 mm

PC

1.0–4.0 mm

Nylon

0.7–3.0 mm

PC+ABS

1.2–3.5 mm

Excessive thickness may cause sink marks, voids, uneven cooling, and warpage.




Cost Analysis of Injection Mold

* The cost in the table does not include fitting or assembly of the mold

Component

Cost Contribution

Mold Steel

30%-40&

CNC Machining

20%-35%

EDM & Finishing

10%-25%

Cooling System

10%-15%-

Hot Runner

5%-10%




Environmental and Sustainability Considerations

Injection Molding reduces material waste, allows recycling of thermoplastics, and offers energy efficiency at scale compared to subtractive manufacturing methods.




Frequently Asked Questions (FAQ)

Is Injection Molding cheaper than 3D printing?

Yes, at high production volumes.

Why are injection molds expensive?

Because of precision steel machining and complex engineering.

What is the break-even point?

Typically 5,000–10,000 units.

Can Injection Molding produce thick parts?

Yes, but careful design is required.

Is CNC machining more precise?

CNC is precise for low volumes; Injection Molding ensures repeatability at scale.




Conclusion

Injection Molding remains the most efficient solution for high-volume plastic manufacturing when design stability and long-term production are required.




Ready to Start Your Injection Molding Project?

Professional design review
Wall thickness optimization
Structural design and the strengh verification are approved
Tooling cost evaluation
Production stability improvement
Long-term cost reduction

Contact us today to discuss your Injection Molding project.


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