Device for calibrating a torque wrench
09664583 ยท 2017-05-30
Assignee
Inventors
Cpc classification
A61C8/0001
HUMAN NECESSITIES
G01L25/00
PHYSICS
International classification
A61C1/00
HUMAN NECESSITIES
Abstract
A device for calibrating a torque wrench includes a base plate, a strain gauge, a display, a cup, a rod and a ring. The strain gauge is non-rotationally connected to the base plate. The display is electrically connected to the strain gauge. The cup is non-rotationally connected to the base plate. The rod is non-rotationally connected to the cup. The ring is inserted in the cup so that the ring and the cup together define an annular gap for tightly receiving a socket.
Claims
1. A device for calibrating a torque wrench including: a base plate; a strain gauge non-rotationally connected to the base plate; a display electrically connected to the strain gauge; a cup non-rotationally connected to the base plate; a rod non-rotationally connected to the cup; a ring inserted in the cup so that the ring and the rod together define an annular gap for tightly receiving a socket; and a bearing placed between the ring and the cup.
2. The device according to claim 1, wherein the ring includes an annular lip inserted in the bearing.
3. The device according to claim 1, wherein the cup includes a lower portion made with a square opening, wherein the rod includes a square section inserted in the square opening of the cup.
4. The device according to claim 3, further including a screw driven in the rod via a washer to keep the rod in position.
5. The device according to claim 3, wherein the rod includes a lower annular flange placed on the lower portion of the cup.
6. The device according to claim 5, wherein the rod includes an upper annular flange for supporting the socket.
7. The device according to claim 1, further including a shell for covering the strain gauge.
8. The device according to claim 7, wherein the shell includes a window for exposing the display.
9. The device according to claim 8, further including a glass panel fit in the window, over the display.
10. The device according to claim 7, wherein the shell includes an opening through which the rod extends.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The present invention will be described via detailed illustration of two embodiments referring to the drawings wherein:
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF EMBODIMENTS
(7) Referring to
(8) The shell 16 includes a brim 11 and a crown 18. The brim 11 extends around the crown 18. The crown 18 is made with a window 13 and an opening 15.
(9) The cup 20 includes a lower portion 22. A square opening 24 is made in the lower portion of the cup 20. The cup 20 includes a space 26 in communication with the square opening 24. The space 26 is made of a stepped shape so that an annular shoulder 28 is formed on an internal side of the cup 20.
(10) The rod 30 includes a circular section 31, a square section 34, a lower annular flange 38, an upper annular flange 36 and a hexagonal section 32. The square section 34 is formed on the circular section 31. The lower annular flange 38 is formed on the square section 34. The upper annular flange 36 is formed above the lower annular flange 38. The hexagonal section 32 is formed on the upper annular flange 36.
(11) The bearing 40 can be a ball bearing or a roller bearing.
(12) The ring 50 includes an opening 52 and an annular lip 56. The opening 52 is centrally made in the ring 50. The annular lip 56 extends from a lower side of the ring 50.
(13) The electronic unit 60 includes a circuit board (not numbered), a strain gauge 62 and a display unit 64. The display unit 64 includes a display 66 and a glass panel 68.
(14) The cup 20 is supported on the base plate 12. Three screws (not numbered) are driven in screw holes made in the lower portion 22 of the cup 20 through apertures (not numbered) made in the base plate 12. Thus, the cup 20 is secured to the base plate 12.
(15) The circular section 31 of the rod 30 is inserted in the opening 14 of the base plate 12. A screw 17 is driven in a screw hole (not numbered) made in the circular section 31 of the rod 30 through an aperture made in a washer 21. The aperture of the washer 21 is made of a diameter marginally larger than that of the screw 17. The washer 21 expands larger than the opening 14. Thus, the rod 30 is kept in position. The square section 34 of the rod 30 is inserted in the square opening 24 of the cup 20. The lower annular flange 38 is supported on the lower portion 22 of the cup 20. The upper annular flange 36 is inserted in the space 26 of the cup 20. The hexagonal section 32 of the rod 30 is located out of the space 26 of the cup 20.
(16) The bearing 40 is supported on the annular shoulder 28 of the cup 20. The bearing 40 is flush with the upper annular flange 36.
(17) The annular lip 56 is inserted in and supported on the bearing 40 so that the ring 50 is allowed to smoothly rotate on the bearing 40. The upper annular flange 36 and the hexagonal section 32 of the rod 30 are inserted in the opening 52 so that an annular gap 54 is defined between the rod 30 and the ring 50.
(18) The circuit board and the strain gauge 62 are supported on the base plate 12. The strain gauge 62 is secured to the base plate 12 so that the strain gauge 62 can be deformed with the base plate 12. The strain gauge 62 is electrically connected to the circuit board.
(19) The glass panel 68 is fit in the window 13. The display 66 is attached to the crown 18 so that the display 66 is observable through the window 13. The display 66 is protected by the glass panel 68. The display 66 is electrically connected to the circuit board.
(20) The brim 11 is secured to the base plate 12 by screws (not shown). Thus, the circuit board and the strain gauge 62 are closed by the base plate 12 and the shell 16.
(21) In calibration of a torque wrench 72, a socket 74 connected to the torque wrench 72 is placed on the hexagonal section 32 of the rod 30. A force is exerted on the torque wrench 72 so that a torque is exerted on the socket 74. Hence, the torque is transferred into the rod 30. Then, the torque is transferred to the cup 20. Finally, the torque is transferred to the base plate 12 so that the base plate 12 is deformed, and so is the strain gauge 62. The strain gauge 62 sends a signal corresponding to the deformation. Thus, the value of the torque is calculated and shown on the display 66. The value of the torque shown on the display 66 is compared with a reading of the torque shown on the torque wrench 72. Thus, the torque wrench 72 is calibrated.
(22) Advantageously, the socket 74 is inserted in the annular gap 54. That is, an internal side of the socket 74 is in contact with the hexagonal section 32 of the rod 30 and an external side of the socket 74 is in contact with the ring 50. That is, the socket 74 is guided by both of the rod 30 and the ring 50. The ring 50 is allowed to smooth rotate as it is supported on the bearing 40. Hence, the rotation of the socket 74 is smooth, and so is the pivoting of the torque wrench 72. Moreover, the socket 74 is supported on the upper annular flange 36.
(23) Referring to
(24) The present invention has been described via the detailed illustration of the embodiments. Those skilled in the art can derive variations from the embodiments without departing from the scope of the present invention. Therefore, the embodiments shall not limit the scope of the present invention defined in the claims.