BAND SAW
20250289072 ยท 2025-09-18
Inventors
Cpc classification
International classification
Abstract
A band saw includes a housing, a motor, a drive pulley configured to receive torque from the motor, causing the drive pulley to rotate, and a plurality of driven pulleys rotatably coupled to a plate that is coupled to the housing for sliding movement. The band saw further includes a cavity within the housing and located between the drive pulley and the plurality of driven pulleys and an endless saw blade wrapped around the drive pulley and the plurality of driven pulleys. The endless saw blade passes through the cavity. Moreover, the band saw includes a guide roller set coupled to the housing and configured to support the endless saw blade as the endless saw blade passes through the cavity. The plurality of driven pulleys gradually impart a twisting movement on the endless saw blade prior to the endless saw blade passing though the cavity.
Claims
1. A band saw comprising: a housing; a motor supported by the housing; a drive pulley configured to receive torque from the motor, causing the drive pulley to rotate; a plurality of driven pulleys rotatably coupled to a plate, the plate being coupled to the housing for sliding movement; a cavity within the housing and located between the drive pulley and the plurality of driven pulleys; an endless saw blade wrapped around the drive pulley and the plurality of driven pulleys, the endless saw blade passing through the cavity and configured to be driven by the drive pulley; and a guide roller set coupled to the housing and configured to support the endless saw blade as the endless saw blade passes through the cavity, wherein the plurality of driven pulleys gradually impart a twisting movement on the endless saw blade prior to the endless saw blade passing though the cavity.
2. The band saw of claim 1, wherein the guide roller set is a first guide roller set disposed on a first side of the cavity, and wherein the band saw further comprises a second guide roller set disposed on a second side opposite the first side of the cavity.
3. The band saw of claim 2, wherein each guide roller set includes aligned rollers configured to engage the endless saw blade.
4. The band saw of claim 3, wherein each guide roller set includes a mounting block configured to rotatably support the aligned rollers, and wherein the mounting block of each guide roller set is coupled to the housing.
5. The band saw of claim 1, wherein at least one driven pulley of the plurality of driven pulleys is rotatable about an axis that is obliquely oriented relative to the plate to impart the twisting movement to the endless saw blade.
6. The band saw of claim 5, wherein the axis defines an inclination angle of 15 degrees relative to a normal extending from the plate and within a common plane as the axis.
7. The band saw of claim 5, wherein the axis defines an inclination angle of 30 degrees relative to a normal extending from the plate and within a common plane as the axis.
8. The band saw of claim 5, wherein the axis defines an inclination angle of 45 degrees relative to a normal extending from the plate and within a common plane as the axis.
9. A band saw comprising: a housing; a motor supported by the housing; a drive pulley configured to receive torque from the motor, causing the drive pulley to rotate; a plurality of driven pulleys; a cavity within the housing and located between the drive pulley and the plurality of driven pulleys; an endless saw blade wrapped around the drive pulley and the plurality of driven pulleys, the endless saw blade passing through the cavity and configured to be driven by the drive pulley; a first guide roller set disposed on a first side of the cavity and configured to support the endless saw blade as the endless saw blade passes through the cavity; and a second guide roller set disposed on a second side of the cavity opposite the first side and configured to support the endless saw blade as the endless saw blade passes through the cavity, wherein the plurality of driven pulleys gradually impart a twisting movement on the endless saw blade prior to the endless saw blade passing though the cavity.
10. The band saw of claim 9, wherein each guide roller set includes aligned rollers configured to engage the endless saw blade.
11. The band saw of claim 10, wherein each guide roller set includes a mounting block configured to rotatably support the aligned rollers, and wherein the mounting block of each guide roller set is coupled to the housing.
12. A band saw comprising: a housing; a motor supported by the housing; a drive pulley configured to receive torque from the motor, causing the drive pulley to rotate; a plurality of driven pulleys rotatably coupled to a plate, each driven pulley is rotatably supported to the plate by a support shaft; a cavity within the housing and located between the drive pulley and the plurality of driven pulleys; an endless saw blade wrapped around the drive pulley and the plurality of driven pulleys, the endless saw blade passing through the cavity and configured to be driven by the drive pulley; and a guide roller set coupled to the housing and configured to support the endless saw blade as the endless saw blade passes through the cavity, wherein the plurality of driven pulleys gradually impart a twisting movement on the endless saw blade prior to the endless saw blade passing though the cavity.
13. The band saw of claim 12, wherein the guide roller set is a first guide roller set disposed on a first side of the cavity, and wherein the band saw further comprises a second guide roller set disposed on a second side of the cavity opposite the first side.
14. The band saw of claim 13, wherein each guide roller set includes aligned rollers configured to engage the endless saw blade.
15. The band saw of claim 14, wherein each guide roller set includes a mounting block configured to rotatably support the aligned rollers, and wherein the mounting block of each guide roller set is coupled to the housing.
16. The band saw of claim 12, wherein a rotational axis of at least one driven pulley defines a maximum inclination angle measured relative to a normal extending from the plate when the at least one driven pulley is proximate the cavity.
17. The band saw of claim 12, wherein each support shaft defines a rotational axis and is configured to be tilted such that the rotational axis defines an inclination angle measured relative to a normal extending from the plate, and wherein the inclination angle ranges from 0 degrees to 45 degrees to facilitate the twisting movement to the endless saw blade.
18. The band saw of claim 12, wherein each support shaft is configured as a shoulder bolt including a first end, a second end opposite the first end, and a cylindrical shank disposed between the first end and the second end.
19. The band saw of claim 18, wherein each driven pulley is positioned along the cylindrical shank of each support shaft.
20. The band saw of claim 19, wherein the second end of each support shaft is configured to be received within a hole formed within the plate.
Description
BRIEF DESCRIPTION OF DRAWINGS
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[0017] Before any embodiments of the invention are explained in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The invention is capable of other embodiments and of being practiced or of being carried out in various ways. Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting.
DETAILED DESCRIPTION
[0018]
[0019] With continued reference to
[0020] A combination of the deck 18 and the guard 20 defines a cavity 46 in which a work piece is received during a cutting operation. While the saw blade 22 is exposed across a length of the cavity 46, the guard 20 provides a recessed area 50 in which a substantial portion of the band saw blade 22 is positioned (
[0021] With reference to
[0022] With reference to
[0023] The band saw 10 also includes a blade tensioning assembly 75 having a blade tensioning lever 90 coupled to the deck 18 to adjust the amount of tension applied to the band saw blade 22. The blade tensioning assembly 75 further includes a tensioning plate 77, a tensioning bracket 79, a pair of pins 81, a pair of springs 83, and a contact plate 85. At a first end of the blade tensioning assembly 75, the tensioning plate 77 and the tensioning bracket 79 are coupled together by the contact plate 85. The contact plate 85 includes a pair of bracket apertures 87 configured to receive the tensioning bracket 79 and a plate aperture (not shown) configured to receive the tensioning plate 77. At a second end of the blade tensioning assembly 75, the tensioning bracket 79 extends through a pair of apertures 89 formed in the tensioning plate 77. The pair of pins 81, specifically coil pins, are inserted into a pair of pin holes 91 formed in the tensioning bracket 79, to further secure the tensioning bracket 79 to the tensioning plate 77. As such, the tensioning bracket 79 is affixed to the housing 14, and therefore is stationary. The tensioning plate 77 and the plate 78 are configured to move in a front direction and a rear direction to increase or decrease the tension in the band saw blade 22 as the lever 90 is adjusted by a user. The tensioning plate 77 is coupled to the plate 78 via fasteners (not shown), such that the tensioning plate 77 and the plate 78 are configured to move in unison as the lever 90 is operated. When the springs 83 rebound, the springs 83 apply tension to the band saw blade 22. As the spring 83 are compressed, the tension in the band saw blade 22 is released so that the saw blade 22 can be removed or replaced from the band saw 10.
[0024] With reference to
[0025] With reference to
[0026] Preferably, the inclination angle A of each driven pulley 66a-66c gradually increases along the oblong path 64, traveling towards the cavity 46. The inclination angle A is at a maximum value proximate the cavity 46. In the illustrated embodiment of
[0027] In operation of the band saw 10, the user depresses the switch assembly 30 positioned on the primary handle 28 to actuate the motor 21. The motor 21 outputs a torque through an output shaft (not shown) of the motor 21, in which the torque is transferred to the drive pulley 62 via the gear train and the drive pulley spindle. The drive pulley 62 is driven to rotate, causing the saw blade 22 to rotate and in turn, rotate the driven pulleys 66. As the saw blade 22 passes through the cavity 46, the user is allowed to complete a cutting operation.
[0028] Along the oblong path 64 of the saw blade 22, the driven pulleys 66 form a semi-circular path, in place of a single large-diameter driven pulley having the same size as the drive pulley 62, which permits the width of the cavity 46 to be increased compared to a traditional band saw 10 having a single large-diameter driven pulley having the same size as the drive pulley 62. Therefore, the increased width of the cavity 46 provides the user with more space to complete a cutting operation of a work piece.
[0029] To sustain the fatigue life of the saw blade 22, the distance over which the saw blade 22 is twisted should extend at an appropriate distance along the oblong path 64. By twisting the saw blade 22 to a desired tilt angle over an increased distance over the oblong path 64 leading to the cavity 46, the fatigue life of the saw blade 22 is increased compared to a traditional band saw 10, which requires the saw blade 22 to twist to a desired tilt angle over a shorter distance along the oblong path 64 (i.e., between the single large-diameter driven pulley and the second guide roller set 114).
[0030] Although the invention has been described in detail with reference to certain preferred embodiments, variations and modifications exist within the scope and spirit of one or more independent aspects of the invention as described.