Roller bit for rock breaking by rotary cutting
A roller bit for rock breaking by rotary cutting comprises: a bit body ( 1 ), a roller ( 2 ) and cutting teeth ( 3 ). An included angle β between a roller journal plane of the bit body and the roller on a bit axis has a range of 0°<β<90°, a journal offset S has a range of −D/2<S<D/2, wherein D represents a diameter of the bit. Inner row of teeth rings on the bit cuts a center of a borehole bottom, and each row of teeth ring is capable of scraping a borehole wall, and thus the bit has good effects of gauge protection and sidetracking.
1. A roller bit for rock breaking by rotary cutting comprising: a bit body ( 1 ), a roller ( 2 ) and cutting teeth ( 3 ) provided on a working face of the roller ( 2 ), wherein an included angle between a roller journal plane of the bit body ( 1 ) and a roller body on a bit axis is denoted as β, β=30°, a journal offset is denoted as S, S=D/20, a diameter D=4.75″, a drilling rate n=180 rpm, wherein D represents a diameter of the bit;
wherein said included angle between said roller journal plane and said roller body on said bit axis, β i =β i+1 or β i ≠β i+1 , said journal offset s i =s i+1 or s i ≠s i+1 , wherein i represents a sequence number of said roller (i≧1), said included angle β i of said roller body is corresponding an ith roller and said journal offset Si is corresponding to said ith roller;
a cone/bit speed ratio, which is a ratio of a rotating speed of said roller to said bit, of said roller bit by rotary cutting is less than 1;
a motion trail of teeth of at least single roller reaches or crosses a position of an axis of said bit.
2. A roller bit for rock breaking by rotary cutting comprising: a bit body ( 1 ), a roller ( 2 ) and cutting teeth ( 3 ) provided on a working face of the roller ( 2 ), wherein an included angle β between a roller journal plane of the bit body ( 1 ) and a roller body on a bit axis is denoted as β, β=30°, a journal offset is denoted as S, S=−D/20, a diameter D=4.75″, a drilling rate n=180 rpm, wherein D represents a diameter of the bit;
wherein said included angle between said roller journal plane and said roller body on said bit axis, β i =β i+1 or β i ≠β i+1 , said journal offset s i =s i+1 or s i ≠s i+1 , wherein i represents a sequence number of said roller (i≧1), said included angle β i of said roller body is corresponding an ith roller and said journal offset Si is corresponding to said ith roller;
a cone/bit speed ratio, which is a ratio of a rotating speed of said roller to said bit, of said roller bit by rotary cutting is less than 1;
a motion trail of teeth of at least single roller reaches or crosses a position of an axis of said bit.