Portable power tool
10179399 ยท 2019-01-15
Assignee
Inventors
Cpc classification
F04F13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B41/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25F1/00
PERFORMING OPERATIONS; TRANSPORTING
G01N7/00
PHYSICS
B25B27/0021
PERFORMING OPERATIONS; TRANSPORTING
B25B21/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25B27/00
PERFORMING OPERATIONS; TRANSPORTING
F04B41/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G01N7/00
PHYSICS
B25B21/00
PERFORMING OPERATIONS; TRANSPORTING
B25F1/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present disclosure provides a portable power tool. The power tool includes a tool body, a tool assembly and a gas pressure detection assembly. The tool assembly includes a tool bit furnished detachably in an end of the tool body. The gas pressure detection assembly is furnished detachably in another end of the tool body. The gas pressure detection assembly is communicatively coupled to the tool body.
Claims
1. A portable power tool, comprising: a frame disposed at one distal end of the portable power tool, the frame internally housing a power transmission assembly comprising a motor and a reducer; a tool assembly including a single bit detachably disposed at a distal end of the frame, the single bit coupled to the reducer; and a gas pressure detection assembly detachably disposed at the other distal end of the portable power tool opposite the single bit, the gas pressure detection assembly communicatively coupled to the frame; wherein, a gear set in the reducer is locked and unable to rotate while the power transmission assembly is unpowered.
2. The portable power tool of claim 1, the frame further internally housing a case and a containing space; wherein, the power transmission assembly and the containing space are respectively disposed in an interior of the case; wherein, one or more additional bits compatible with the reducer are stored in the containing space.
3. The portable power tool of claim 2, wherein the frame further comprising: a first energy storage element, furnished inside the case at a position between the power transmission assembly and the containing space, the first energy storage element transmitting electricity to the power transmission assembly.
4. The portable power tool of claim 3, wherein the first energy storage element is a rechargeable battery.
5. The portable power tool of claim 3, wherein the first energy storage element receives power from an USB device when externally connected thereto.
6. The portable power tool of claim 2, further comprising: a first control element; and a second control element; wherein, the first control element and the second control element are furnished respectively on the exterior of the frame for enabling the first control element and the second control element to activate the power transmission assembly to rotate accordingly and thus to drive the tool assembly to rotate clockwise or counterclockwise, respectively.
7. The portable power tool of claim 6, further comprising: a display element, furnished on the frame proximal to the first control element and the second control element; wherein the display element receives a detection data from the gas pressure detection assembly and displays the detection data on the display element.
8. The portable power tool of claim 7, further comprising: a lighting element, furnished on the frame at a position next to the tool assembly; and a third control element, furnished on the frame, for turning the lighting element on or off.
9. The portable power tool of claim 8, wherein the lighting element is a device selected from the group consisting of: a light emitting diode (LED) device, a tungsten lamp, and a halogen lamp.
10. The portable power tool of claim 2, wherein the single bit is a bit selected from the group consisting of: a slotted screwdriver bit, a crosshead screwdriver bit, a hex key wrench, and a star key wrench.
11. The portable power tool of claim 2, wherein the motor is coupled to the reducer while the reducer is coupled to the single bit.
12. The portable power tool of claim 2, wherein the frame is made of a material selected from the group consisting of: a metal, a plastic, a composite material and an organic material.
13. The portable power tool of claim 1, wherein the gas pressure detection assembly is fixed to the frame by a coupling element.
14. The portable power tool of claim 1, wherein the gas pressure detection assembly further comprising: a shell; a gas pressure detector, furnished inside the shell; a gas nozzle, connected to an end of the gas pressure detector; a gas inlet element; and a gas control element, connected to an end of the gas pressure detector such that the gas control element is spaced from the gas inlet element by a distance.
15. The portable power tool of claim 14, wherein the gas pressure detector is a device selected from the group consisting of: an electronic pressure sensor chip and a mechanic pressure sensor device.
16. The portable power tool of claim 14, wherein the gas inlet element is connected to a gas supply by one end and the gas control element controls the amount of gas passing through the gas inlet element.
17. The portable power tool of claim 14, wherein the gas inlet element is made of a material selected from the group consisting of: an aluminum alloy, iron, stainless steel and galvanized iron.
18. The portable power tool of claim 14, wherein the shell is made of a material selected from the group consisting of: a metal, a plastic, and a composite material.
19. The portable power tool of claim 18, wherein the metal can be an aluminum alloy, iron, stainless steel, or cast iron; and the plastic can be ABS, PC, PP or PS.
20. The portable power tool of claim 14, wherein the gas pressure detection assembly further comprising: a second energy storage element, furnished inside the shell for providing power to the gas pressure detector.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present disclosure will become more fully understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present disclosure and wherein:
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DETAILED DESCRIPTION
(9) In the following detailed description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the disclosed embodiments. It will be apparent, however, that one or more embodiments may be practiced without these specific details. In other instances, well-known structures and devices are schematically shown in order to simplify the drawing.
(10)
(11) In an embodiment shown in
(12) It is noted that the frame 110 can be made of a metal, a plastic, a composite material or an organic material whereas the metal can be an aluminum alloy, iron, stainless steel or cast iron; the plastic can be ABS, PC, PP, or PS; the composite material can be a carbon fiber or a glass fiber; and the organic material can be wool or bamboo.
(13) In this embodiment, the frame 110 is further comprising: a case 111, a containing space 112, a display element 113, a first control element 114, a second control element 115, a third control element 116, a tool coupler 117, a first energy storage element 130, a lighting element 140 and a power transmission assembly 160.
(14) The containing space 112 is a space formed and enclosed inside the case to be used for storing uncoupled bits compatible with the tool assembly 150.
(15) As shown in
(16) In an embodiment, a bit 150A selected from bits compatible with the tool assembly 150, as shown in
(17) Thus, there can be more than one types of bits 150A150E to be used in the present disclosure, as shown in
(18) The power transmission assembly 160 that is furnished inside the case 110 is composed of a motor 162 and a reducer 164 in a manner that the motor 162 is coupled to the reducer 164 while enabling the reducer 164 to be coupled to one bit selected from the bits 150A150E. It is noted that although in this embodiment the portable power tool 100 is configured with a reducer, the reducer is not necessary and the portable power tool of the present disclosure can do well without the reducer as the overall volume can be decreased without the reducer and also the manufacturing cost is reduced.
(19) The first energy storage element 130 is furnished inside the case 111 at a position between the containing space 112 and the power transmission assembly 160. The first energy storage element 130 can be a power supply such as a lithium battery set or a nickel-cadmium battery set; and further the first energy storage element 130 can includes a rechargeable battery that can be adapted to connect to an USB device externally for charging.
(20) By the power from the first energy storage element 130, the power transmission assembly 160 can be driven to rotate for bringing along the tool assembly 150 to rotate accordingly, as the selected bit 150A in
(21) The lighting element 140 is furnished at the front end of the frame 110 next to the tool assembly 150. In this embodiment, the lighting element 140 is a device selected from the group consisting of: a light emitting diode (LED) device, a tungsten lamp, and a halogen lamp.
(22) The display element 113, the first control element 114, the second control element 115 and the third control element 116 are furnished respectively on the surface of the case 111 of the frame 110, in which the display element 113 and the third control element 116 are furnished respectively on two opposite sides of the case 111, while allowing the display element 113 to be furnished at a side of the first control element 114 and the second control element 115. It is noted that the relative positioning of the display element 113, the first control element 114 and the second control element 115 that are shown in
(23) The first control element 114 and the second control element 115 are used to activate the power transmission assembly 160 to rotate and thus to drive the tool assembly 150 to rotate clockwise or counterclockwise. The third control element 116 is used for turning the lighting element 140 on or off.
(24) As shown in
(25) On the other hand, when the power is turned off on the power transmission assembly 160, the gear set in the reducer 164 is locked for fixing the bit in the tool assembly 150 from rotation, such as the bit 150A shown in
(26) Furthermore, in a condition when extra lighting is required, the user can simply press the third control element 116 for turning on the lighting element 140 to project a beam onto the workpiece.
(27) The gas pressure detection assembly 120 is designed to send a detection data to the display element 113 for displaying in a wireless manner. It is noted that the display element 113 can be an LCD device, an OLED device, a TFT device or a mechanical display device, but it is not limited thereby.
(28) The gas pressure detection assembly 120 is fixed to the frame 110 by a coupling element 170. There is no limit to the type of coupling element 170 that can be used in the present disclosure. In an embodiment, the gas pressure detection assembly 120 is screwed to the frame 110, while the screwing of the coupling element 170 can be released simply by pressing a button for detaching the gas pressure detection assembly 120 from the frame 110. In another embodiment, the frame is further being configured with a magnetic element while the gas pressure detection assembly 120 is correspondingly configured with another magnetic element, thus the gas pressure detection assembly 120 can be fixed to the frame 110 by the attracting between the two magnetic elements. Moreover, by the attracting between the two magnetic elements, the gas pressure detection assembly 120 is attracted to a specific position on the frame 110 where it is designed to be fixed to.
(29) As shown in
(30) The shell including the first shell 121 and the second shell 122 can be made of a metal, a plastic, a composite material or an organic material whereas the metal can be an aluminum alloy, iron, stainless steel or cast iron; the plastic can be ABS, PC, PP, or PS; the composite material can be a carbon fiber or a glass fiber; and the organic material can be wool or bamboo.
(31) The gas pressure detection assembly 120 is furnished inside the shell. In this embodiment, the gas pressure detection assembly 120 includes a device selected from the group consisting of: an electronic pressure sensor chip and a mechanic pressure sensor device, but is not limited thereby.
(32) The gas nozzle 124 which can be made of a metal or a plastic is connected to one end of the gas pressure detector 127, whereas another end of the gas pressure detector 127 is connected to the gas control element 125.
(33) In this embodiment, the gas control element 125 is furnished spacing from the gas inlet element 123 by a distance. Moreover, the gas control element 125 can be a control valve, and the gas inlet element 123 can be made of a metal, a plastic, or a composite material, whereas the metal can be an aluminum alloy, iron, stainless steel or cast iron; the plastic can be ABS, PC, PP, or PS; the composite material can be a carbon fiber or a glass fiber.
(34) The gas inlet element 123 is connected to a gas supply 50 by one end thereof, as shown in
(35) The second energy element 126 is furnished inside the first shell 121 of the shell, whereas the second energy element 126 can be a lithium battery set or a nickel-cadmium battery set, and the likes, whichever is capable of providing power to the gas pressure detector 127.
(36) In view of the frame 110, the first energy storage element 130 that is furnished inside the frame 110 can be used as a portable power source by itself.
(37) As shown in
(38) As shown in
(39) To sum up, by the cooperation between the tool assembly and a gas pressure detection assembly, the portable power tool is a multifunction tool that is able to operate as a power tool or as a common manual tool, while it is also capable of working as a tire pressure detector or as an air pump. Since the portable power tool of the present disclosure can be transformed between various function modes so as to be used in different tasks as required, it is conveniently used in almost any location for any tasks.
(40) In addition, as the bit in the present disclosure can be locked from rotating by the use of a locking element, the portable power tool is able to function as a manual tool, so that the portable power tool of the present disclosure is able to function as a manual tool or power tool at will.
(41) In the aforesaid description, the gas pressure detection assembly 120 can be integrated with the frame 110 so as to work cooperatively, or the gas pressure detection assembly 120 is able to work independently while separating from the frame 110. In view of the frame 110, since the first energy storage element 130 is furnished inside the frame 110, the frame 110 can be used as a portable power source by itself.
(42) With respect to the above description then, it is to be realized that the optimum dimensional relationships for the parts of the disclosure, to include variations in size, materials, shape, form, function and manner of operation, assembly and use, are deemed readily apparent and obvious to one skilled in the art, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by the present disclosure.