The Cargo MVJNR/L 93° Turning Tool Holder is a precision external turning tool holder designed for CNC and conventional lathe machines. It features an optimized 93° approach angle and a multi-lock clamping system to securely hold VNMG indexable carbide inserts — offering excellent stability, precision, and chip control in external turning and profiling operations. This holder is ideal for industrial machining tasks in automotive, fabrication, and precision engineering sectors.
| Specification | Details |
|---|---|
| Product Name | Cargo MVJNR/L 93° Turning Tool Holder |
| Tool Type | External Turning Tool Holder |
| Approach Angle | 93° (ISO standard for MVJNR/L holders) |
| Insert Compatibility | VNMG style negative indexable carbide inserts (e.g., VNMG1604) |
| Clamping Type | Multi-Lock Clamp for secure insert locking |
| Material | Hardened alloy steel body for rigidity |
| Finish | Precision ground surfaces |
| Insert Included | No (inserts not included) |
| Machine Compatibility | CNC and conventional lathe machines |
| Hand Configuration | Right (R) and Left (L) options available |
Cargo MVJNR/L tool holders are offered in multiple shank sizes to suit different lathe tool posts and machining requirements. Common examples include:
| Model Code | Hand | Shank Size (mm) | Overall Length (mm) | Compatible Insert |
|---|---|---|---|---|
| MVJNR1616H16 | Right | 16×16 | ~100 | VNMG1604 |
| MVJNL1616H16 | Left | 16×16 | ~100 | VNMG1604 |
| MVJNR2020K16 | Right | 20×20 | ~125 | VNMG1604 |
| MVJNL2020K16 | Left | 20×20 | ~125 | VNMG1604 |
| MVJNR2525M16 | Right | 25×25 | ~150 | VNMG1604 |
| MVJNL2525M16 | Left | 25×25 | ~150 | VNMG1604 |
| MVJNR3232P16 | Right | 32×32 | ~170 | VNMG1604 |
| MVJNL3232P16 | Left | 32×32 | ~170 | VNMG1604 |
✔ 93° Cutting Edge Angle — Optimized for stable cutting forces and smooth chip flow in external turning and profiling.
✔ Compatible with VNMG Inserts — Supports VNMG series negative insert grades which are widely available in the tooling market.
✔ Rigid Multi-Lock Clamping — Ensures secure insert holding, reduces vibration, and improves dimensional accuracy.
✔ Heavy-Duty Construction — Hardened steel body provides durability and consistent machining performance.
✔ Left & Right Hand Configurations — Available for flexible mounting on various lathe setups.
✔ Versatile Use — Ideal for external turning, facing, and light to medium profiling across steel, stainless steel, cast iron, and non-ferrous metals..
Compatible VNMG negative indexable carbide inserts include:
VNMG1604 / VNMG160408 / VNMG160412
These inserts offer good chip control and multiple cutting edges for cost-effective use in various metals.
The Cargo MVJNR/L 93° Turning Tool Holder is ideal for:
External turning of shafts and cylindrical parts
Precision facing operations
Light to medium profiling
Automotive component machining
Engineering and fabrication workshop applications
This tool holder delivers reliable performance in both production and job-work environments.
✔ Stable Cutting Performance: The 93° approach angle balances forces for smooth machining operations.
✔ Strong Clamp System: Secure multi-lock clamping reduces vibration and lowers the risk of insert displacement under load.
✔ High Compatibility: Uses standard VNMG inserts widely stocked in India, reducing tooling costs.
✔ Durable Build: Hardened steel construction ensures long service life in demanding workshop conditions.
✔ Flexibility: Available in both right and left hand configurations for versatile lathe setups.
Q1: What type of inserts does this holder use?
It is designed for VNMG negative indexable carbide inserts such as VNMG1604.
Q2: Is this tool holder suitable for CNC machines?
Yes — it works with CNC turning centers and conventional lathe machines.
Q3: Are carbide inserts included with the tool holder?
No, inserts must be purchased separately.
Q4: What materials can be machined?
Ideal for steel, stainless steel, cast iron, and non-ferrous metals with appropriate insert grades.
Q5: What is the advantage of a 93° approach angle?
A 93° cutting edge angle balances cutting forces and enhances chip control, improving surface finish and stability.