Background and Summary
The invention relates to an add-on removable attachment for a hand held portable electric rotary drill or the like, and more particularly to an attachment for adapting the drill to perform as an endless loop belt sander.
The invention initially evolved from efforts to provide a portable belt sander for curved non-planar surfaces, for example in automotive repair work. The invention is usable in numerous other applications, including flat sanding.
The attachment includes a built-in belt changing system facilitating simple and efficient interchanging or replacing of belts. The attachment also incorporates a positive belt tracking system, including adjustable lateral alignment to ensure proper belt tracking under differing conditions. The attachment further includes a guard plate and pressure guide engageable by the user's hand or the like at a particularly ergonometric orientation.
Brief Description of the Drawings
FIG. 1 is a top view of a belt sander attachment in accordance with the invention, with the guard plate and pressure guide partially cut away and with a portable electric drill shown in phantom.
FIG. 2 is a side elevation view of the attachment of FIG. 1.
FIG. 3 is a cross sectional view taken along line 3--3 of FIG. 2.
FIG. 4 is a cross sectional view taken along line 4--4 of FIG. 2.
Description of the Invention
FIG. 1 shows a belt sander attachment 2 for a portable electric drill shown in phantom at 4. The attachment includes a frame 6, FIG. 2, having a drive roller 8 and a first idle roller 10 rotatably mounted to the frame on respective spindles or axles 12 and 14 extending between opposing frame sides 6a and 6b, FIG. 4. Spindle 12 extends laterally leftwardly through and beyond left frame side 6b to form a bit 16, FIGS. 1 and 4, receivable in chuck 18 of drill 4. Lateral reinforcing bar 20, FIG. 4, supports and maintains frame sides 6a and 6b in proper spaced and rigid relation.
A carriage 22 is movably mounted to the frame for forward-rearward movement (left-right as viewed in FIGS. 2 and 4). Carriage 22 has a second idle roller 24 rotatably mounted thereto by means of spindle or axle 26 extending laterally left-right between carriage sides 22a and 22b. Rollers 8, 10 and 24 are hard rubber wheels which may be scored or knurled for frictional gripping. The rollers form a triangular configuration for receiving an endless loop sanding belt 28 therearound.
Belt tensioning means are provided by biasing means 30, FIG. 4, bearing between frame 6 and carriage 22, and biasing the carriage rectilinearly forwardly (rightwardly in FIGS. 2 and 4) away from the frame to tension belt 28. As seen in FIG. 4, frame 6 is a rearwardly opening U-shaped member with right and left legs 6a and 6b. Carriage 22 is a forwardly opening U-shaped member with right and left legs 22a and 22b. Biasing means 30 comprises a pair of compression springs 32 and 34 bearing between the facing bights 6c and 22c of the frame and carriage. Springs 32 and 34 coaxially surround respective retaining bolts 36 and 38 secured to bights 6c and 22c. Springs 32 and 34 lie along the rectilinearly biased path of movement of carriage 22 in the straight line between drive roller 8 and second idle roller 24.
Positive belt tracking means 40 is provided for adjustably moving carriage 22 laterally left-right (up-down in FIGS. 1 and 4; in and out of the page in FIG. 2) relative to longitudinal belt movement around the rollers, to enable proper alignment under differing conditions and ensure tracking of the belt around the rollers. The adjustable positive belt tracking means 40 includes retainer means such as a fastening threaded bolt 42 extending between the frame and carriage and providing user controlled lateral adjustment of the carriage left-right while also permitting forward-rearward movement of the carriage toward and away from frame 6 perpendicularly to the lateral left-right movement of the carriage.
Retainer bolt 42 also provides a stop against carriage movement beyond a limited degree of up-down movement as viewed in FIG. 2 (which is out of an into the page in FIGS. 1 and 4). The up-down movement of carriage 22 is perpendicular to both the noted lateral left-right and the forward-rearward movements of carriage 22 and roller 24. Carriage 22 and roller 24 move upwardly in response to sanding pressure against belt 28, for example as applied between rollers 10 and 24. Belt tracking means 40 includes an elongated slot 44 in left carriage side 22b extending forward-rearward, and through which bolt 42 extends. The forward-rearward elongation of slot 44 permits the noted forward-rearward movement of carriage 22. Bolt 42 in slot 44 stops the noted up-down movement of carriage 22 upon engagement with upper or lower edges of the slot.
Bolt 42 has an enlarged right end 46 of diameter greater than the width of slot 44 and engaging the backside of carriage sidewall 22b. Bolt 42 has an enlarged washer or the like such as 47 staked thereto or otherwise fixed against axial movement and engaging the other side of carriage sidewall 22b. Frame 6 has a forward extension 48 along the left side thereof which overlaps carriage 22 and has a nut 50 soldered thereto through which bolt 42 threadably extends. Bolt 42 is shown with a wing nut 52 at its left end. Upon turning wing nut 52 clockwise, bolt 42 threads through nut 50 which in turn moves washer 47 rightwardly. Washer 47 pushes against carriage sidewall 22b, to push carriage 22 laterally rightwardly, and increase the lateral spacing between frame extension 48 and carriage left side 22b. Upon turning wing nut 52 counterclockwise, bolt 42 threads out of nut 50 and enlarged bolt end 46 moves leftwardly which in turn pushes against carriage leg 22b and moves carriage 22 laterally leftwardly to close the lateral spacing between frame extension 48 and carriage left side 22b.
A combined guard plate and pressure guide 54, FIGS. 1-3, is mounted to frame 6 and extends around an edge of belt 28 at C-shaped legs 56 and 58. The guard plate and pressure guide has an inner surface 60 facing an outer sanding surface 62 of belt 28 and spaced outwardly of and above belt 28. Guard plate and pressure guide 54 extends substantially the length of the straight line between drive roller 8 and second idle roller 24 and may be curved at its ends, as at 64 and 66. Guard plate and pressure guide 54 is engageable by a user's hand or the like for guidance and application of downward pressure against a surface to be sanded, for example between rollers 10 and 24 or between rollers 8 and 10. The position of the drill trigger and/or handle guide such as 68 in combination with the placement and orientation of the guard plate and pressure guide is found to be ergonometrically convenient for the user.
A drill mount 69 is attached to frame 6 at a point between drive roller 8 and idle roller 10 and extends laterally leftwardly away from the frame perpendicularly to the plane of the triangle formed by rollers 8, 10 and 24, and parallel to bit 16, for attachment to drill 4, as at handle 68, consistent with the noted relative orientation of drill and guard plate and pressure guide facilitating user convenience.
Compression springs 32 and 34 are spaced inwardly of belt 28 on the opposite side thereof from guard plate and pressure guide 54. First idle roller 10 is on the opposite side of compression springs 32 and 34 from guard plate and pressure guide 54. A belt tracking tray 70 is mounted to one of the frame and carriage. In the disclosed embodiment, tray 70 is mounted to the top side of carriage 22 and engages the inner non-sanding surface 72 of belt 28 for guiding the latter's movement and ensure tracking engagement with the rollers. Tracking tray 70 is a V-shaped member engaging the edges 74 and 76, FIG. 3, of belt 28 along the inner facing V-sides 70a and 70b and slightly bowing the middle of belt 28 downwardly toward the apex 70c of the V.
Attachment 2 includes belt changing means comprising locking means 78 for retaining carriage 22 and roller 24 in a rearwardly retracted position relative to frame 6 and against the bias of springs 32 and 34, to permit changing or replacement of belts. Locking means 78 includes a resiliently self-biased latch on one of the frame and carriage, and a catch on the other. As shown, latch 80 extends forwardly from frame 6 and overlaps the right side of the carriage, and a catch 82 is formed by a detent or soldered protrusion on right carriage side 22a. Latch 80 has an aperture 84 therethrough which frictionally engages the forward edge of protrusion 82 upon rearward retraction of the carriage, and is released upon lateral rightward movement of latch 80 and/or lateral leftward movement of carriage 22, for example by counterclockwise rotation of wing nut 52.
It is recognized that various alternatives are possible within the scope of the appended claims.