The present invention relates to a hand tool for grinding, and more particularly to a handheld belt sander.
A conventional belt sander as shown in
However, the rod 73 extends forwardly from the main body 7 in a straight direction, tightening the grinding belt 8 to be very close to the rod 73. Being stopped by the rod 73, the grinding belt 8 is not able to move to an appropriate position to fit an arc surface for grinding. Then the arc shape of the ground surface may be damaged.
Besides, when using the conventional belt sander to grind on a flat surface of an item, user must twist his wrist to make the grinding belt 8 parallel to the flat surface to engage with the ground surface completely due to the same straight extension direction of the handle 72 and the rod 73. User's wrist may feel unwell after a long time use.
The primary object of the present invention is to provide a handheld belt sander having a straight rod extending upward from the body of the belt sander at an angle for tightening a grinding belt, forming a space between the straight rod and the grinding belt for being entered by the grinding belt when pressed. It is suitable to grind arc surfaces of items and keeps a good hand posture to avoid damages when grinding on flat surfaces.
In order to achieve the above object, a handheld belt sander is provided. The handheld belt sander comprises a main body, a base, a mount, a straight rod and a grinding belt. The main body has a motor connected with a rotating wheel. The base is formed at a fore end of the main body and extends along a first straight direction. The mount is fixed to the base through a first positioning portion of the base and a second positioning portion of the mount to prevent the mount from rotating relative to the base. The straight rod extending along a second straight direction with no bend is disposed on the mount, wherein the second straight direction is upward from the first straight direction at a raise angle. A roller is disposed at an end of the straight rod. A flat plate extending under the straight rod is disposed on the mount. The grinding belt encircles the rotating wheel, the roller and the flat plate and is tightened by the straight rod. A lower part of the grinding belt under the straight rod abuts against the flat plate. A space to be entered for the grinding belt is formed between the straight rod and an upper part of the grinding belt above the straight rod, so that the grinding belt moves into the space after being pressed.
In an embodiment, the mount extends along the second straight direction and has a hole extending along the second straight direction for coupling with the straight rod.
In another embodiment, the mount extends along the first straight direction and has a hole extending along the second straight direction for coupling with the straight rod.
Preferably, the raise angle is 15 degrees.
Preferably, the first positioning portion is one of a concave and a convex in a shape of noncircle while the second positioning portion is the other.
Embodiments of the present invention will now be described, by way of example only, with reference to the accompanying drawings.
Referring to
A mount 2 is fixed to the base 14. In detail, a first positioning portion is provided on the base 14 while a second positioning portion is provided on the mount 2. In this embodiment, the first positioning portion is a rectangular concave 141, and the second positioning portion is a rectangular convex 21. By inserting the rectangular convex 21 into the rectangular concave 141, the mount 2 is not able to rotate relative to the base 14. However, not limited to rectangle, as long as shapes of the first positioning portion and the second positioning portion are noncircular, the mount 2 is not able to rotate relative to the base 14.
As shown in
A bottom of the mount 2 is provided with a long flat plate 4, which is under the straight rod 3. A grinding belt 5 encircles the rotating wheel 12, the roller 31 and the flat plate 4 and is tightened by the straight rod 3. The grinding belt 5 can be divided into a lower part and an upper part according to the location of the straight rod 3. The lower part of the grinding belt 5 is under the straight rod 3 and abuts against the flat plate 4 to be defined as a flat straight section 51 as a result of the grinding belt 5 being tightened. On the other hand, the upper part of the grinding belt 5 is above the straight rod 3, and a space 52 is formed between the straight rod 3 and the upper part of the grinding belt 5 due to the raise angle a When the upper part of the grinding belt 5 is pressed, it changes to curve and move into the space 52.
Referring to
Moreover, referring to
A second embodiment of the present invention is shown in
Although particular embodiments of the present invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the present invention. Accordingly, the present invention is not to be limited except as by the appended claims.