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The present invention relates generally to a tool for grinding or polishing, and more particularly to an abrasive wheel which can be provided with a piece of sandpaper.
The known abrasive wheel has a drum-shaped main body with a circular outer surface. The outer surface surrounds the axis of the main body. A slot is formed axially in the outer surface. A piece of sandpaper is stretched tight and adheres to the outer surface. Both ends of the sandpaper are inserted in the slot respectively. When the abrasive wheel is rotating, the sandpaper can grind or polish a workpiece. The main body can be provided with a piece of sandpaper of the corresponding specification according to different machining requirements.
When the sandpaper processes the workpiece, relative friction is formed between the sandpaper and the workpiece, and the sandpaper extends and deforms gradually, so that the tension of the sandpaper decreases gradually and the reliability of processing is influenced. On the other hand, it is difficult to stretch the sandpaper tight, and the convenience of changing the sandpaper is influenced.
The primary objective of the present invention is to provide an abrasive wheel which can be provided with a piece of sandpaper. It is a novel abrasive wheel which is easy to be provided with a piece of sandpaper.
Based on the aforementioned objective, the technical characteristic of problem solving of the present invention is that the abrasive wheel which can be provided with a piece of sandpaper comprises: a columnar main body with a mounting end and a driven end. The mounting end is opposite to the driven end in the axial direction of the main body. A first surface is formed on the circumference of the main body. The first surface is located between the mounting end and the driven end, so that a piece of sandpaper is arranged on the first surface. A first storage chamber and a second storage chamber are formed inside the main body. The first storage chamber and the second storage chamber extend into the main body from the mounting end respectively. The first surface forms a channel, one end of the channel extends at the mounting end, the other end of the channel points at the driven end. The channel extends into the main body, and the channel communicates with the first storage chamber. The second storage chamber extends on one side of the channel, so that one end of the sandpaper enters the first storage chamber to form a restricted part. The other end of the sandpaper is located in the second storage chamber. The first storage chamber has a compass circumferential wall.
The abrasive wheel further comprises a tension member disposed in the first storage chamber, and which can rotate in the first storage chamber. The tension member has a guide slot, the guide slot extends from the periphery of the tension member into the tension member, so that the restricted part enters the guide slot through the channel, and the restricted part is guided to adhere to the circumferential wall as the tension member rotates, and then the tension member and the circumferential wall oppositely press and localize the restricted part, and the sandpaper is stretched tight and adhering to the first surface.
The main effect and advantage of the present invention are easy installation of the sandpaper.
The embodiments of the abrasive wheel which can be provided with a piece of sandpaper of the present invention are for illustration only, the patent application is not limited to this structure.
As shown in
A first surface 13 is formed on the periphery of the main body 10. The first surface 13 is located between the mounting end 11 and the driven end 12, and the first surface 13 in approximately circular arc is preferred implementation, so that a piece of sandpaper 90 is arranged on the first surface 13. When the first surface 13 is a circular surface, the center of circle of the first surface 13 is on the central axis X. A first storage chamber 14 and a second storage chamber 15 are formed inside the main body 10. The first storage chamber 14 and the second storage chamber 15 extend from the mounting end 11 into the main body 10 respectively. A channel 16 is formed on the first surface 13. One end of the channel 16 extends at the mounting end 11, the other end of the channel 16 points at the driven end 12. The channel 16 extends into the main body 10, and the channel 16 communicates with the first storage chamber 14, the second storage chamber 15 extends on one side of the channel 16, so that one end of the sandpaper 90 enters the first storage chamber 14 to form a restricted part 92, the other end of the sandpaper 90 is located in the second storage chamber 15. The first storage chamber 14 has a compass circumferential wall 142.
The tension member 20 is disposed in the first storage chamber 14, and can rotate in the first storage chamber 14. The tension member 20 has a guide slot 21, the guide slot 21 extends from the periphery of the tension member 20 into the tension member 20, so that the restricted part 92 enters the guide slot 21 through the channel 16, and the restricted part 92 is guided to adhere to the circumferential wall 142 as the tension member 20 rotates, and then the tension member 20 and the circumferential wall 142 oppositely press and localize the restricted part 92, and the sandpaper 90 is stretched tight and adhering to the first surface 13.
As shown in
As shown in
Embodiment 1 with the sandpaper 90 can be arranged in the rotary driving device, so that the sandpaper 90 performs grinding or polishing operation on a workpiece (not shown in the figure). As the operation proceeds, the sandpaper 90 extends and deforms gradually, and the tension of the sandpaper 90 decreases gradually, the sandpaper 90 is further tightened by rotating the tension member 20, restoring the state of adhering to the first surface 13. After the sandpaper 90 is arranged, the tension member 20 can be rotated according to the state of the sandpaper 90 at any time, so as to restore the tight state of the sandpaper 90. When the abrasive particles of the grinding part 96 wear or drop off gradually, the grinding part 96 cannot perform grinding or polishing operation effectively, the sandpaper 90 can be changed to enhance the operation benefit of the sandpaper 90.
As shown in
To remove the sandpaper 90 from Embodiment 1, the tension member 20 is rotated clockwise as shown in
As shown in
Embodiment 1 can include a shaft lever 40 and a bolt 50, wherein the shaft lever 40 axially contacts the driven end 12, so that the shaft lever 40 is configured on the rotary driving device, the rotary driving device can pull the main body 10 to rotate. The bolt 50 axially penetrates the baffle 30 and the tension member 20 is screwed on the shaft lever 40, so as to localize the baffle 30. The bolt 50 has a cap 52, the bolt 50 axially penetrates a washer 60, the washer 60 is sandwiched in between the cap 52 and the baffle 30.
The baffle 30 penetrates a first punch hole 32 coordinating with the bolt 50, the tension member 20 penetrates a second punch hole 24 coordinating with the bolt 50. The bolt 50 axially penetrates the first punch hole 32 and the second punch hole 24 is screwed on the shaft lever 40, hereby, the first punch hole 32, the second punch hole 24 and the bolt 50 can be adapted in radial dimension, and the first punch hole 32, the second punch hole 24, the shaft lever 40 and the bolt 50 are coaxially arranged along the central axis X. Thus, when the bolt 50 axially penetrates the baffle 30 and the tension member 20 is screwed on the shaft lever 40, the tension member 20 centers inside the first storage chamber 14, so as to further enhance the reliability of the tension member 20 clamping the restricted part 92 with the circumferential wall 142.
The driven end 12 forms a joint holder 122 in axial direction, the joint holder 122 forms a polygonal embedding groove 124 in axial direction. The shaft lever 40 is provided with an insert 42 fitting the embedding groove 124. The insert 42 is embedded in the embedding groove 124, so that the shaft lever 40 is axially connected to the driven end 12. The relation between the shaft lever 40 and the driven end 12 can be replaced by integration of the shaft lever 40 and the driven end 12 or connection in other forms.
The tension member 20 forms an operation hole 25 in axial direction, so that a hand tool (not shown in the figure) is embedded in the operation hole 25 to pull the tension member 20 to rotate, so as to enhance the convenience of operating the tension member 20 to rotate. The quantity and shape of the operation hole 25 and the positioning of the operation hole 25 can be changed as required. The figures only show a feasible demonstration, not to limit the technical means disclosed in Embodiment 1.
As shown in
To remove the sandpaper 90 from Embodiment 2, the tension member 20 is rotated clockwise as shown in