MEDICAL TORQUE HAND TOOL
20200170698 ยท 2020-06-04
Inventors
- CHE-AN PAI (KAOHSIUNG CITY, TW)
- MING FENG WU (KAOHSIUNG CITY, TW)
- HAO-YUAN TANG (TAIPEI CITY, TW)
- HSIANG-HO CHEN (NEW TAIPEI CITY, TW)
- CHING-AN LIN (KAOHSIUNG CITY, TW)
Cpc classification
B25B23/141
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention provides a medical torque hand tool, which comprises a holding part, a torque adjusting device, a torque damping device, and a surgery tool. The holding part is disposed in a hollow member. The torque damping device is disposed in said holding part. The torque adjusting device passes through said holding part. The torque adjusting device and the torque damping device control the elastic deformation of an elastic member for controlling the torque of screwing an object.
Claims
1. A medical torque hand tool, comprising: a torque adjusting device, including an adjusting pole and an elastic member, and said adjusting pole including a first hole and against said elastic member; a holding part, including a body and a blocking member, said body including an accommodating space, having a first opening on one end and a second opening on the other end, said blocking member including a bearing hole and communicating said second opening, said adjusting pole inserting said first opening, and said elastic member disposed in said accommodating space; and a torque damping device, disposed in said accommodating space, said adjusting pole enabling said elastic member to compress and deform, and to against said torque damping device, and said torque damping device including a penetrating part communicating said first hole; wherein when a user exerts an torque force on said holding part to screw an object, said torque damping device produces a torque by an inverse reaction force from said torque force; when said torque is greater than said torque force, said torque damping device is driven to carry a tool rotating along a direction of said torque force for screwing said object; and when said torque force is greater than said torque, said torque damping device idles and said tool stops to rotate.
2. The medical torque hand tool of claim 1, wherein said first opening further includes an inner thread on the inner side; said adjusting pole further includes an outer thread on the outer side; by matching said outer thread and said inner thread in said first opening, said adjusting pole can adjust the spring force exerted by said elastic member against said torque damping device.
3. The medical torque hand tool of claim 1, wherein said torque damping device includes: a sliding block, having a block hole and an undulated structure surrounding said block hole, and said undulate structure including a plurality of slopes and a plurality of recessed arranged at intervals; and a driving shaft body, including a spin shaft and one or more protrudent pillar, said penetrating part disposed at said spin shaft, said spin including an assembly hole at one end, said end of said spin shaft disposed in said block hole and said bearing hole, and said one or more protrudent pillar disposed on one side of said spin shaft; wherein said one or more protrudent pillar is wedged in one of said plurality of recesses.
4. The medical torque hand tool of claim 3, wherein said sliding block and said elastic member clip said protrudent pillars.
5. The medical torque hand tool of claim 3, wherein said sliding block and said blocking member clip said protrudent pillars.
6. The medical torque hand tool of claim 4, further comprising a surgery tool inserting said assembly hole of said torque damping device.
7. The medical torque hand tool of claim 5, further comprising a surgery tool inserting said assembly hole of said torque damping device.
8. The medical torque hand tool of claim 6, wherein said spin shaft includes a counter bore opposing to said first hole at the other end; said assembly hole communicates said counter bore to form said penetrating part; said surgery tool includes a second hole; and a through member passes through said first hole, said penetrating part, and said second hole.
9. The medical torque hand tool of claim 7, wherein said spin shaft includes a counter bore opposing to said first hole at the other end; said assembly hole communicates said counter bore to form said penetrating part; said surgery tool includes a second hole; and a through member passes through said first hole, said penetrating part, and said second hole.
10. The medical torque hand tool of claim 1, further comprising a hollow member enveloping one side of said holding part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION
[0025] In order to make the structure and characteristics as well as the effectiveness of the present invention to be further understood and recognized, the detailed description of the present invention is provided as follows along with embodiments and accompanying figures. The concepts of the present invention can be embodied by various forms. Those embodiments are not used to limit the scope and range of the present invention.
[0026] The present invention improves the drawbacks of complicated operations and maintenance in the hand tools with adjustable torque according to the prior art. In addition, in the structure according to the prior art, lubricant is required, which is disadvantageous to surgeries. For operation usage, germ-free condition is mandatory and the tool can sustain high-temperature and high-pressure sterilization. The hand tools according to the prior art generally adopt normal mechanical operations, leading to incompliance with the standard for medical application and inconvenience in surgeries.
[0027] By research and development, the present invention provides a hand tool with adjustable torque, which comprises a torque adjusting device, a holding part, and a torque damping device. The holding part contains the torque adjusting device and the torque damping device. The torque adjusting device includes an elastic member, which is a device for adjusting torque. The torque damping device includes a sliding block and a driving shaft body. By using the elastic member to press the sliding block and the driving shaft body, the protrudent pillars of the driving shaft body will be fixed to a plurality of recesses of the sliding block. Then, the holding part is turned for driving the driving shaft body to screw an object. If the torque force is greater than the torque produced by the elastic member, the protrudent pillars of the driving shaft body will slide off the plurality of recesses to make the hand tool turn idly, and thus achieving the effect of fixing the torque.
[0028] First, please refer to
[0029] The torque adjusting device 10 includes a handheld part 12, an adjusting post 14, and an elastic member 16. The adjusting post 14 is against the elastic member 16. The adjusting post 14 further includes an outer thread 142. A first hole 18 passes through the handheld part 12 and the adjusting post 14. The holding part 20 includes a body 22 and a blocking member 24. The body includes an accommodating space 222, a first opening 224, and a second opening 226. The first opening 224 further includes an inner thread 2242. The blocking member includes a bearing hole 242. The elastic member 16 and the torque damping device 30 are disposed in the accommodating space 222. One end of the torque damping device 30 is against the elastic member 16 while the other end against the blocking member 24. By matching the outer thread 142 and the inner thread 2242 in the first opening 224, the adjusting post 14 can adjust the spring force of the elastic member 16 against the torque damping device 30. The surgery tool 40 includes a second hole 42 and passes through the torque damping device 30. The second hole 42 communicates the first hole 18. The surgery tool 40 can be a replaceable component. The post can be replaced according to surgery requirements.
[0030] Please refer to
[0031] Next, please refer to
[0032] According to the above description, the first sliding block 32 and the second sliding block 36 have identical structures and features. The difference between the embodiment in
[0033] Please refer to
[0034] Next, when a user exerts a torque P3 to the holding part 20 for screwing an object, since the one or more protrudent pillar 344 is wedged into one or more of the plurality of recessed 3284, the first sliding block 32 in the torque damping device 30 and the driving shaft body 34 will produce a torque P4 due to a reaction force. When the torque P4 is greater than the torque P3, the first sliding block 32 and the driving shaft body 34 have no relation rotation. Thereby, the user can screw using the hand tool normally. When torque P3 applied by the user is greater than the torque P4 produced by the reaction force, the first sliding block 32 slides off the driving shaft body 34 and relative rotation occurs. Thereby, given the predetermined torque value has been reached, the hand tool will not rotate.
[0035] Next, please refer to
[0036] Next, please refer to
[0037] Accordingly, the present invention conforms to the legal requirements owing to its novelty, nonobviousness, and utility. However, the foregoing description is only embodiments of the present invention, not used to limit the scope and range of the present invention. Those equivalent changes or modifications made according to the shape, structure, feature, or spirit described in the claims of the present invention are included in the appended claims of the present invention.