Nanjing, China
T/T, Money Gram
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When looking for a shearing machine blade price, it’s easy to pick the cheapest quote.
But the initial price is only a small part of your total cost.
Cheap blades dull fast, chip easily, and cause costly downtime, re-grinding, and wasted material.
Material Grade: Standard steel (9CrSi) costs less. Premium alloys (H13, Cr12MoV) cost more but last 3x longer.
Size & Complexity: Larger blades (for 16mm+ plates) need more material and precise heat treatment—raising the quote.
Frequent sharpening
Machine downtime
Poor cuts (burrs, crooked edges)
Wasted material
Guillotine shear blades for metal plate cutting
Custom industrial hydraulic shear knives
Replacement blades for mobile hydraulic shears (excavators)
Materials: 9CrSi, 6CrW2Si, Cr12MoV, H13, H13K, LD (for all price points)
Shape: Rectangular cross-section
Hardness: HRC50–62
Quality: Precision cuts (no burrs, no crooked edges); good edge retention
Customization: Available per your drawings (get a quote for exactly what you need)
No distributor markups
Transparent pricing (no hidden fees)
Custom quotes (pay only for what you need)
Ready-to-install blades (cuts labor costs)
Blade dimensions (Length x Width x Thickness)
Material to cut (stainless steel, mild steel, etc.)
Machine brand (Amada, Durmazlar, etc.)
9CrSi (Alloy Tool Steel): Low price, hard, wear-resistant. Best for thin cold-rolled plate, aluminum, copper, plastic, leather.
6CrW2Si (Alloy Tool Steel): Mid-price, heat-resistant. Best for hot cutting, light stainless steel, medium-strength steel.
Cr12MoV/SKD-11 (High Carbon Steel): Higher price, wear-resistant. Best for stainless steel, silicon steel, high-strength steel, Q235.
H13 (4Cr5MoSiV1) (Hot Work Steel): Premium price, heat-resistant. Best for hot-rolled plate, thick plate, scrap metal.
Cr12Mo1V1/D2 (High Carbon Steel): Premium price, strong, wear-resistant. Best for medium/low-hardness steel, aluminum, copper, plastic.
LD (7Cr7Mo2V2Si) (Cold Work Steel): Premium price, tough. Best for high-strength steel, thick plate, large hydraulic/CNC shears.
Traits: Hard, wear-resistant, low price, budget-friendly
Hardness: HRC 58–60 (after heat treatment)
Best for: Thin cold-rolled plate, aluminum, copper, plastic, leather
Traits: Heat-resistant, stronger than 9CrSi, mid-price
Hardness: HRC 60–62 (after heat treatment)
Best for: Hot cutting, light stainless steel, medium-strength steel
Traits: Wear-resistant, long-lasting, higher price but lower total cost
Hardness: HRC 58–60 (after heat treatment)
Best for: Stainless steel, silicon steel, high-strength steel, Q235
Traits: Heat-resistant, tough, premium price, good for heavy use
Hardness: HRC 50–55 (after heat treatment)
Best for: Hot-rolled plate, thick plate, high-strength alloy steel
Traits: Very wear-resistant, premium price, long service life
Hardness: HRC 58–62 (after heat treatment)
Best for: Medium/low-hardness steel, aluminum, copper, plastic, composites
Traits: Strong, tough, premium price, reliable for large machines
Hardness: HRC 58–62 (after heat treatment)
Best for: High-strength steel, thick plate, hard-to-cut metals
Ordinary carbon steel (Q195, Q235): Choose 9CrSi or Cr12MoV (low to mid price, cost-effective)
Medium/low-hardness steel, aluminum/copper: Choose SKD11 or D2 (premium price, long life)
Light stainless steel, medium-strength steel: Choose SKD11 or D2 (premium price, stable cuts)
Thick stainless steel, high-strength steel: Choose H13 or LD (premium price, tough, chip-resistant)
Hot cutting (strip steel, thick plate): Choose H13 or H13K (premium price, heat-resistant)
Don’t just pick the cheapest price: Too hard = easy chipping; too soft = fast dulling. Both raise costs.
Heat treatment counts: Good materials need professional quenching—don’t cut costs here.
Sticky materials (stainless steel, aluminum): Choose Cr12MoV or SKD11 (higher price, no sticking/chipping).
NO. | Product Name | Specification Dimensions (length x width x height/thickness) ) | Material | Remarks |
1 | shearing machine blade sizeMetal guillotine blade dimensions | 508x70X22 | 55CrSi, | Customization services are available; we can manufacture according to your drawings, with a minimum order quantity of 1 piece. |
2 | 508x80x25mm | |||
3 | 1025x63x16 | |||
4 | 1025x80x20mm | |||
5 | 1025x100x25 | |||
6 | 1100x64x16mm | |||
7 | 1100x80x20 | |||
8 | 1100x100x25 | |||
9 | 1300x63x16 | |||
10 | 1300x63x18mm | |||
11 | 1300x80x20 | |||
12 | 1300x80x25 | |||
13 | 1300x100x25 | |||
14 | 1300x100x30 | |||
15 | Manual Shearing Machine Blade szie | 170*30*10 | ||
16 | 205*30*10 | |||
17 | 350*30*10 |

China (GB) | USA(ASTM) | Japan (JIS) | Germany (DIN) | Germany (W-Nr) | France (NF) | Russia (ROCT) | U.K (BS) |
9CrSi | - | - | 90CrSi5 | 1.2108 | - | 9XC | - |
6CrW2Si | - | - | 60WCrV7 | 1.255 | 55WC20 | 6XB2C | - |
Cr12MOV | - | SKD11 | X165CrMov12 | 1.2601 | - | X12M | - |
Cr12Mo1V1 | D2 | - | X155Cr12Mo12 | 1.2379 | X160CrMoV12 | - | BD |
4Cr5MoSiVI | H13 | SKD61 | X40CrMoV5-1 | 1.2344 | X40CrMoV5 | 4X5MO1C | BH13 |
LD | - | - | - | - | - | - | - |
W18Cr4V | T1 | SKH2 | S18-0-1 | 1.3355 | HS18-0-1 | P18 | BT1 |
W6Mo5Cr4V2 | M2 | SKH9 | S6-5-2 | 1.3343 | - | P6M5 | BM2 |
Heavy steel blades cost a lot for international shipping and import taxes.
We offer large discounts for bulk purchases.
Order 3–5 sets at once to greatly lower shipping cost per blade.
Buying directly from our China factory saves more money than buying from local suppliers.
A broken blade stops your production line and causes hourly financial loss.
We provide fast air shipping by DHL, FedEx and UPS.
Air freight is pricier, but our factory price is low.
Your overall cost is still lower than local market price, and you can restart production quickly.





Nanjing Alas International Co., Ltd. is a professional industrial tooling manufacturer focused on shear blades, bending dies, shredder blades, and custom wear parts. We offer full application engineering, material selection, setup guidance, and after-sales support to global customers.
Tell us your requirements, and our engineering team will provide professional solutions for blade specification, tool life optimization, and cost-effective production.
