IP Library Granted Patent US 9,597,742
Granted Patent B2
US 9,597,742 · App. 13/888,838 · Granted Mar 21, 2017

Saw blade including a cutting element made by powder metallurgy

Inventors: Joerg H. Kullmann (Spangenberg, DE); Gert Kellezi (Leoben, AT); Devrim Caliskanoglu (Giessen, DE)
Assignee: WIKUS-SAEGENFABRIK WILHELM H. KULLMANN GMBH & CO. KG
B23D61/00B22F7/062B22F7/08B23D61/028B23D61/127C21D9/24C22C33/0257C22C38/04C22C38/18C22C38/22C22C38/24C22C38/30B22F2005/001C21D6/002Y10T83/9317Y10T83/9319
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Quick Facts
Patent No.
US 9,597,742
App. No.
13/888,838
Granted
Mar 21, 2017
Kind
B2
Abstract

A saw blade ( 1 ) includes a tooth supporting body ( 2 ) and a plurality of teeth ( 3 ) being arranged at the tooth supporting body ( 2 ). Each of the plurality of teeth ( 3 ) includes a tooth tip ( 8 ) including a cutting portion ( 9 ). The cutting portion ( 9 ) and at least another part of the tooth tip ( 8 ) of the teeth ( 3 ) are made of a steel alloy that has been produced by powder metallurgy and full annealing.

Claims (36)

1. A saw blade, comprising:

a tooth supporting body; and

a plurality of teeth being arranged at the tooth supporting body, each of the plurality of teeth including a tooth tip having a cutting portion,

the cutting portion and at least another part of the tooth tip of the teeth being made of a steel alloy that has been produced by powder metallurgy and full annealing such that it includes metal carbides having an average size of more than 2.0 μm and less than 4.0 μm,

wherein the steel alloy has a structure including phases and full annealing has been conducted at a temperature of at least 1100° C., but at least 10° C. below the melting temperature of the structural phase of the steel alloy having the lowest melting temperature.

2. A saw blade, comprising:

a tooth supporting body; and

a plurality of teeth being arranged at the tooth supporting body, each of the plurality of teeth including a tooth tip having a cutting portion, the cutting portion and at least another part of the tooth tip of the teeth being made of a steel alloy that has been produced by powder metallurgy and full annealing such that it includes metal carbides having an average size of at least 2.8 μm and less than 4.0 μm, and wherein the steel alloy has a critical stress intensity factor of between 13 and 16 MPa·√m.

3. A saw blade, comprising:

a tooth supporting body; and

a plurality of teeth being arranged at the tooth supporting body, each of the plurality of teeth including a tooth tip having a cutting portion,

the cutting portion and at least another part of the tooth tip of the teeth being made of a steel alloy that has been produced by powder metallurgy and full annealing such that it includes metal carbides having an average size of more than 2.0 μm and less than 4.0 μm,

wherein each of the plurality of teeth in the region of its tooth tip includes a carrier strip portion and an edge wire portion being located thereon, the edge wire portion being made of the steel alloy that has been produced by powder metallurgy and full annealing, the edge wire portion forming a cutting element,

wherein the edge wire portion is connected to the carrier strip portion without a filler material.

4. A saw blade, comprising:

a tooth supporting body; and

a plurality of teeth being arranged at the tooth supporting body, each of the plurality of teeth including a tooth tip having a cutting portion,

the cutting portion and at least another part of the tooth tip of the teeth being made of a steel alloy that has been produced by powder metallurgy and full annealing such that it includes metal carbides having an average size of more than 2.0 μm and less than 4.0 μm,

wherein each of the plurality of teeth in the region of its tooth tip includes an insert being made by the steel alloy that has been produced by powder metallurgy and full annealing, the insert forming a cutting element.

5. A saw blade, comprising:

a tooth supporting body; and

a plurality of teeth being arranged at the tooth supporting body, each of the plurality of teeth including a tooth tip having a cutting portion,

the cutting portion and at least another part of the tooth tip of the teeth being made of a steel alloy that has been produced by powder metallurgy and full annealing such that it includes metal carbides having an average size of more than 2.0 μm and less than 4.0 μm,

wherein each of the plurality of teeth in the region of its tooth tip includes an insert being made by the steel alloy that has been produced by powder metallurgy and full annealing, the insert forming a cutting element, and

wherein the inserts are connected to the tooth base without filler materials.

6. A saw blade, comprising:

a tooth supporting body; and

a plurality of teeth being arranged at the tooth supporting body, each of the plurality of teeth including a tooth tip having a cutting portion,

the cutting portion and at least another part of the tooth tip of the teeth being made of a steel alloy that has been produced by powder metallurgy and full annealing such that it includes metal carbides having an average size of at least 2.8 μm and less than 4.0 μm, and

wherein the steel alloy includes the following components:

carbon: 0.8 to 1.4 percent by weight,

chromium: 3.5 to 5.0 percent by weight,

molybdenum: 0.1 to 10.0 percent by weight,

vanadium: 0.8 to 10.5 percent by weight,

tungsten: 0.1 to 10.0 percent by weight, and

cobalt: 1.0 to 12.0 percent by weight.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2013
From: KULLMANN, JOERG H., DR.; KELLEZI, GERT; CALISKANOGLU, DEVRIM
To: WIKUS-SAEGENFABRIK WILHELM H. KULLMANN GMBH & CO. KG
Reel/Frame 030847/0001 →
Priority Claims (1)
EP 12167121 · May 8, 2012 · regional
Continuity (1)
Related Publication 20130298743A1 · Nov 14, 2013