Customization: | Available |
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Certification: | ISO9001:2008, ISO9001:2000, CE |
Tooth Form: | Sharp Teeth |
Shipping Cost: | Contact the supplier about freight and estimated delivery time. |
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Payment Methods: |
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Support payments in USD |
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1. Ingeniously designed with tooth split technology, this blade significantly reduces cutting force, thereby enhancing sawing efficiency with unparalleled precision;
2. Crafted with a high-hardness alloy cutter, this innovative tool boasts superior tooth hardness to effectively prevent cutting edge cracks, ensuring durability and reliability;
3. Featuring an exceptional tooth tip welding process, this blade is engineered to enhance the impact resistance of each tooth, offering remarkable performance in challenging conditions;
4. Utilizing a superior backing material heat treatment process, this product dramatically strengthens the backing, improving both its fatigue life and overall robustness.
Meticulously crafted with a tooth split design, this blade ensures the effective reduction of cutting force for optimal performance;
Featuring a large tooth groove design, this blade excels in facilitating efficient chip removal and superior tooth lubrication;
Engineered with a high-hardness alloy cutter, this blade effectively prevents cutting edge cracks, fortifying its strength and reliability.
Ideal for Building Materials
Perfect for Aluminum Alloy
Suitable for Copper, Brass, and Bronze
Optimized for Carbon Steel and Structural Steel
Designed for Structural Steel with Residual Stress
Durable for Bearing Steel and Forging Steel
Engineered for Mold Steel, Hot-work Steel, and Cold-work Steel
Tailored for Stainless Steel
Compatible with Heat Resistant Steel
Excellent for Tool Steel
Robust for High Strength Steel
Efficient with Grey Cast Iron
Versatile for Ductile Cast Iron
Perfectly suited for Titanium Alloy
Designed for Superalloy and Nickel Alloy
Specification | 0.7/1.0 | 0.75/1.25 | 1.0/1.4 | 1.4/2.0 | 2/3 | 3/4 |
Width×Thickness | ||||||
(mm) | ||||||
27*0.9 | N | N | ||||
34*1.1 | N | N | ||||
41*1.3 | N | N | N | |||
54*1.6 | N | N | N | N | N | N |
67*1.6 | N | N | N | N | N | N |
80*1.6 | N | N | N | N | N | |
Sawing material width | 950-2000mm | 650-1000mm | 500-700mm | 280-550mm | 150-300mm | 90-150mm |
Q: Are you a factory?
A: We are a professional saw blade factory specializing in the development and processing of saw blades.
Q: Is OEM service available?
A: Yes, we can OEM and customize. In addition, we can also provide label printing services.
Q: Do you have samples?
A: Yes, after confirming our price, you can take some samples for testing. But please pay the sample fee and shipping fee. The sample fee will be refunded to you after your official order.
Q: What is your delivery method?
A: We can provide express, air and sea transportation according to your requirements.
Q:What is your delivery time?
A: The usual delivery time is 5-10 days after receiving the advance payment.
For custom products, 15-30 days after receipt of prepayment.
Q: What are your terms of payment?
A: If it is a small payment, 100% must be wired and the buyer bears the bank charges. If the payment is large, 30%-50% advance payment is acceptable, but if L/C is used, the price will be higher, so please tell me your terms first.
Q: What is the minimum order quantity?
A: According to your request, a small amount of testing can be done at first. The larger the quantity, the bigger the discount.
Purpose of running in:
Running in is to make the height of the tooth tip uniform, avoiding premature cutting and tilting of the tooth tip due to early edge breakage during cutting. A well run in saw blade has a service life that is at least 30% longer than an un run in one.
Break in method:
1.During the break in period cutting, reduce the line speed to 60% of the normal line speed;
2.During the break in period, the cutting speed is 1/3 of the normal speed or 40% of the normal efficiency;
3.The cutting area during the running in period is 800-1200 square meters or the running in time is about 40-80 minutes.
Note: 1) The break in time for mold steel and difficult to cut materials can reach 120 minutes.
2) Titanium alloy does not require running in.