WO2023204591A1 - Outil de serrage rotatif automatique pouvant commander le nombre de tours, et procédé de serrage l'utilisant - Google Patents
Outil de serrage rotatif automatique pouvant commander le nombre de tours, et procédé de serrage l'utilisant Download PDFInfo
- Publication number
- WO2023204591A1 WO2023204591A1 PCT/KR2023/005293 KR2023005293W WO2023204591A1 WO 2023204591 A1 WO2023204591 A1 WO 2023204591A1 KR 2023005293 W KR2023005293 W KR 2023005293W WO 2023204591 A1 WO2023204591 A1 WO 2023204591A1
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- Prior art keywords
- nut
- fastening
- unit
- tool
- rotation
- Prior art date
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- 238000000034 method Methods 0.000 title claims abstract description 18
- PXHVJJICTQNCMI-UHFFFAOYSA-N Nickel Chemical compound [Ni] PXHVJJICTQNCMI-UHFFFAOYSA-N 0.000 description 4
- 230000007547 defect Effects 0.000 description 4
- 230000000694 effects Effects 0.000 description 3
- 238000012423 maintenance Methods 0.000 description 3
- RYGMFSIKBFXOCR-UHFFFAOYSA-N Copper Chemical compound [Cu] RYGMFSIKBFXOCR-UHFFFAOYSA-N 0.000 description 2
- 229910052782 aluminium Inorganic materials 0.000 description 2
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 2
- 229910052802 copper Inorganic materials 0.000 description 2
- 239000010949 copper Substances 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 239000012530 fluid Substances 0.000 description 2
- 239000007788 liquid Substances 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 229910052759 nickel Inorganic materials 0.000 description 2
- 230000008439 repair process Effects 0.000 description 2
- 239000004065 semiconductor Substances 0.000 description 2
- 229910001220 stainless steel Inorganic materials 0.000 description 2
- 239000010935 stainless steel Substances 0.000 description 2
- 230000009471 action Effects 0.000 description 1
- 230000008901 benefit Effects 0.000 description 1
- 230000008878 coupling Effects 0.000 description 1
- 238000010168 coupling process Methods 0.000 description 1
- 238000005859 coupling reaction Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 229910052751 metal Inorganic materials 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000007789 sealing Methods 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25B—TOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
- B25B23/00—Details of, or accessories for, spanners, wrenches, screwdrivers
- B25B23/14—Arrangement of torque limiters or torque indicators in wrenches or screwdrivers
Definitions
- the present invention relates to an automatic rotating fastening tool capable of controlling the rotation speed and a fastening method using the same. More specifically, when a nut is coupled to a body connecting a pipe, the nut is automatically rotated at a preset rotation speed so that the operator can tighten the nut.
- This relates to an automatic rotary fastening tool that enables pull-up without having to manually turn the nut, and that can control the rotation speed to help work easily even in harsh environments, and a fastening method using the same.
- pipes used for piping to transport liquid or gas are manufactured and supplied to a certain length according to specifications, so to form a pipe of the desired length and structure, multiple pipes must be connected to each other. and use it.
- pipe connectors made of various materials and shapes are used to connect pipes, and these pipe connectors have a structure that can be sealed to prevent the transported fluid from leaking through the pipe connector.
- a typical pipe connector includes a body, which is the coupling main body, and a nut fastened to a male thread formed on the body.
- a tapered ferrule for airtightness is installed between the body and the nut, and when the body and the nut rotate relative to each other, the ferrule As it is pushed axially and “pulled up,” the ferrule firmly grips the tube wall by a swaging action.
- the tube connector as described above is finger tight by tightening the nut by hand to connect it to the body, and then the assembler uses a wrench or spanner to rotate the body and the nut relative to each other so that the fitting is pulled up.
- the number of turns of the nut to properly pull up a tube fitting is 1-1/4 turns, or 450°, to allow the ferrule to properly swage to the tube wall.
- Korean Patent Publication No. 10-2002-0039671 provides a marking that is visible during initial tightening and invisible during additional tightening, so that the fitting is A tube fitting that allows an operator to visually confirm that it has been properly pulled up is disclosed.
- the place where the pipe is connected is a difficult place for work, such as a high position, a low position, or a narrow place that is difficult for workers to enter, even if there is a marking, the connection part is not visible during work, so some workers may use it by sense.
- the fastening work is performed, and the fastening is completed without proper pull-up.
- the present invention was developed to solve the above problems, and the nut, which is a fitting part, is automatically rotated at a preset number of rotations to enable appropriate pull-up without the operator manually rotating the number of rotations to reduce human error.
- the purpose is to provide a controllable automatic rotating fastening tool.
- the purpose is to provide an automatic rotating fastening tool that can be easily used for maintenance of fittings by selectively controlling the rotation speed of the nut as needed, so that the ferrule of the fitting effectively grips and seals the pipe.
- the purpose is to provide an automatic rotation fastening tool capable of controlling the rotation speed, which greatly facilitates workability by automatically fastening or disconnecting the nut even in dark places with poor working environments or in places where it is difficult for workers to fasten the nut. There is.
- an automatic rotation fastening tool with rotation speed control is provided to prevent fastening defects such as the body and nut being tightened crookedly or the screw threads being damaged.
- the purpose is to provide.
- the purpose is to provide a fastening method using an automatic rotation fastening tool that allows the operator to pull up the fitting by automatically rotating the nut at a preset number of rotations without manually rotating the nut.
- the present invention provides an automatic rotating fastening tool for fastening a nut to a body for connecting a pipe, comprising a tool body that is held by the user's hand, one end of the tool body, and the nut. a nut fastening unit for fastening the nut to the body by applying a rotational force to the nut fastening unit, a driving unit providing rotational driving force to the nut fastening unit so that the nut fastening unit rotates the nut and fastening it to the body, and a power supply for supplying power to the driving unit.
- An automatic rotating fastening tool including a supply unit, a switch unit installed in the tool body to apply power to the driving unit, and a controller that controls the driving unit to automatically rotate the nut by a preset number of rotations. provided.
- the nut fastening part is open on one side so that the nut can be inserted, and a nut fitting groove having a shape corresponding to the polygonal shape of the nut is formed, and a fastening gear for rotating the nut is engaged with the fastening gear and is inserted into the nut fitting groove.
- a plurality of driven gears that enable accurate position control despite the resulting gap, and a rotation axis that engages the driven gears and is located on the same line as the central axis of the fastening gear rotates in the forward or reverse direction according to the rotation of the motor of the drive unit. It may include a fastening body in which at least one driving gear, the fastening gear, driven gear, and driving gear are installed, and a fitting groove of a shape corresponding to the nut fitting groove is formed.
- a guide step extending inward by a predetermined amount be formed in the fitting groove of the fastening unit body to hold the nut in an accurate position and at an accurate angle.
- a body holder for holding the body may be installed on one surface of the nut fastening part.
- the body holder is open on one side so that the body can be inserted, and a body fitting groove having a shape corresponding to the polygonal shape of the body is formed, and the body holder is moved forward and backward so that the body holder can easily grasp the body according to the position of the body. It may include a means of movement that allows movement.
- the moving means consists of a moving groove formed on both sides of the body holder in the front and rear direction, and a fixing part fixed to one side of the nut fastening part and provided with a protrusion that is inserted into the moving groove, and the protrusion is connected to the moving groove.
- the body holder can move in the forward and backward directions while being inserted into the body.
- the nut fasteners are each manufactured with a nut fitting groove that matches the size of the nut so that the nut size can be applied differently depending on the outer diameter of the tube used (1/4" to 1" or 6mm to 24mm). Therefore, it can be used by fastening it to one tool body.
- a nut fastening part that matches the size of the nut can be incorporated into the tool body to produce a tool body that is limited to each size.
- the fastening tool of the present invention includes a pull-up button for driving the driving part to rotate the nut by the number of rotations capable of pulling up the nut, and a pull-up button for driving the driving part to return the nut fastening part to its original position after completing fastening of the nut.
- a rotation selection unit including a reset button for driving the nut and a rotation button for driving the drive unit to rotate the nut by a set predetermined number of rotations is further included, and the rotation selection unit includes the pull-up button, the reset button, or the rotation button.
- a selection lever may be provided that can be operated by selecting one of the buttons.
- the controller of the present invention includes a drive control unit that outputs a drive signal according to the operation of the switch unit to drive the drive unit, and rotates the nut fastener at a 1-1/4 rotation speed for pulling up the fitting or a set arbitrary rotation speed. It may be configured to include a rotation speed setting unit that sets the number of rotations, and a reset unit that sends a reset signal to return the nut fastening unit to its original position after the nut fastening is completed.
- the controller when the torque level must be different depending on the parts of the fitting, the controller includes a torque control unit that sets the torque level to enable torque control, and a torque control unit that sets the torque level when the torque generated from the nut fastening unit exceeds a certain torque value.
- a drive stop unit that sends a signal to the drive unit to stop the motor of the drive unit, and a warning alarm when the torque generated by the nut fastener exceeds a set torque value or when the nut fastener does not rotate at a set number of rotations. It may further include an alarm unit for output.
- the alarm unit outputs a warning alarm in various cases. For example, not only does the operation stop without reaching the desired rotation speed due to overtorque, but also the charging tool does not rotate to the desired position due to a decrease in power. A warning alarm may be output even when the device is not installed.
- the torque adjuster may control the amount of current supplied to the drive unit to enable torque adjustment.
- the warning alarm of the alarm unit may be made of sound, light, or vibration.
- the fastening tool of the present invention may be further equipped with a knob for changing the rotation direction of the nut fastener to the forward or reverse direction, and the power supply may be made of a rechargeable battery.
- the present invention is a fastening method in which a nut is automatically rotated to a body for connecting a pipe and fastened to the pull-up position, and the nut is attached to the nut fastening part provided in the fastening tool. Inserting a drive unit that rotates the nut fastening unit by operating a switch installed on the fastening tool, and automatically fastening the nut to the body by applying a rotational force to the nut fastening unit according to a preset rotation speed.
- It may include a step of disengaging the nut that has been fastened from the nut fitting groove of the nut fastener, and a step of resetting the nut fastener by sending a reset signal to the drive unit so that the nut fastener returns to its original position.
- the fitting groove of the fastening tool is inserted into the pipe and then the nut can be held at the correct position and angle using the guide step formed on the nut fastening part. Additional steps may be included.
- the body holder and the nut fastener can be simultaneously inserted into the body and the nut using a body holder for holding the body on one surface of the nut fastener, and then the nut can be fastened.
- a step of setting the torque level to enable torque control may be further included.
- a step of outputting a warning alarm may be further included when the torque generated from the nut fastening unit exceeds a set certain torque value.
- the nut of the fitting is automatically rotated at a preset number of rotations, enabling an appropriate pull-up without the operator having to manually tighten the nut, thereby reducing human error.
- Figure 1 is a perspective view showing an automatic rotating fastening tool according to the present invention.
- Figure 2 is a plan view showing the internal configuration of the nut fastening part in Figure 1.
- Figure 3 is a plan view showing the nut fastening part of the present invention after 1-1/4 rotation.
- Figure 4 is a perspective view showing the nut fastening part of the present invention.
- Figure 5 is a bottom perspective view showing a nut being caught on a guide step in the present invention.
- Figure 6 is a bottom perspective view showing the body holder that holds the body in the present invention.
- Figure 7 is a side view showing the body holder in use in the present invention.
- Figure 8 is a front view showing the rotation selection unit in the present invention.
- Figure 9 is a block diagram showing the configuration of the controller of the present invention.
- Figure 10 is a flowchart showing a fastening method using the automatic rotating fastening tool of the present invention.
- Figure 1 is a perspective view showing an automatic rotating fastening tool according to the present invention.
- the nut when fastening a nut to a body connecting a pipe (pipe or tube) used for piping to transport liquid or gas, the nut is automatically rotated by a preset number of rotations, so that the worker does not have to manually tighten the nut.
- It relates to an automatic rotary fastening tool (10) capable of pulling up without turning. As shown in FIG. 1, it largely consists of a tool body (20), a nut fastening part (100), a driving part, and a power supply part (50). ), a switch unit 30, and a controller.
- the tool body 20 is formed in a substantially cylindrical shape with a predetermined length so that the user can hold it by hand.
- the tool body 20 is preferably formed to have a soft curved surface so that the user can easily hold it, and a switch unit 30 for applying power supplied to the driving unit is installed in the middle portion in the longitudinal direction to perform a nut tightening operation. Turn it on/off.
- the power supply unit 50 may be installed at the rear end of the tool body 20.
- the power supply unit 50 supplies power to the driving unit and may be made of a commonly used rechargeable battery.
- the nut fastening unit 100 is for fastening a nut to the body by applying a rotational force to the nut, and is provided at one end, that is, the distal end, of the tool body 20, and the drive unit rotates the nut fastening unit 100. Provides driving force to fasten the nut to the body.
- Figure 2 is a plan view showing the internal configuration of the nut fastening part in Figure 1.
- the nut fastener 100 includes a plurality of gears and a fastener body 110 that accommodates the gears therein.
- the gears of the nut fastening part 100 are formed with a nut fitting groove 122 into which the nut 4 is inserted, and a fastening gear 120 for rotating the nut 4 and the fastening gear 120.
- the rotation axis located at consists of at least one drive gear 140, 150 that rotates in the forward or reverse direction according to the rotation of the motor of the drive unit.
- the nut fitting groove 122 is open on one side so that the nut 4 can be inserted and has a shape corresponding to the polygonal shape of the nut, and the driven gear 130 is mutually symmetrical on both sides of the fastening gear 120. It is desirable to install two if possible.
- the two driven gears 130 which are installed symmetrically on both sides of the fastening gear 120, rotate in mesh with the fastening gear 120 at the same time, thereby creating a space due to the nut fitting groove 122. Despite this, accurate position control is possible.
- the driving gear is engaged with the two driven gears 130 and has a rotation axis located on the same line as the central axis of the fastening gear 120, and the first driving gear 140 ) and may be composed of a second drive gear 150 that has a rotation axis 152 located on the same line as the rotation axis of the drive unit and rotates in the forward or reverse direction according to the rotation of the motor of the drive unit.
- the motor rotation axis of the drive unit is connected to the rotation axis 152 of the second drive gear 150, and the second drive gear 150, the first drive gear 140, and the driven gear ( 130) and the fastening gear 120 engage and rotate, allowing the nut to be rotated by driving the driving unit.
- the driving gear is composed of a first driving gear 140 and a second driving gear 150, but the fastening tool of the present invention is not limited to this, and the driving gear may be configured as one.
- the rotation shaft of the drive gear is connected to the motor shaft of the drive unit to transmit rotation force.
- the fastening gear 120, the driven gear 130, and the driving gears 140 and 150 of the present invention are installed inside the fastening body 110, and the nut fitting groove 122 is installed in the fastening body 110.
- a fitting groove 112 of a shape corresponding to ) is formed.
- Figure 3 is a plan view showing the nut fastening part of the present invention after 1-1/4 rotation
- Figure 4 is a perspective view showing the nut fastening part of the present invention.
- the number of turns that can pull up the nut is set to 1-1/4, and the nut is automatically pulled up by 1-1/4. Rotate by /4.
- pre-swaging may be necessary, and in this case, only 1/2 turn rather than 1-1/4 turn may be required.
- 1/4" to 1" and 6mm to 24mm fittings require a 1-1/4 turn after finger tight, often in the field using a pre-swaging tool to eliminate the finger tight procedure. There are cases where it happens.
- the nut fastening part is manufactured in different sizes so that the size of the nut can be applied differently depending on the outer diameter of the tube used (1/4" to 1" or 6mm to 24mm) and can be used by fastening to the tool body 20. .
- nut fastening parts each having a nut fitting groove that matches the size of the nut can be manufactured and fastened to a single tool body 20 for use.
- known techniques may be applied to fastening the nut fastening portion 100 and the tool body 20, and the present invention is not limited thereto.
- a nut fastening part that matches the size of the nut can be incorporated into the tool body to produce a tool body that is limited to each size.
- the nut 4 is fastened to the body 6 while being inserted into the pipe 2, and the nut fastening part 100 of the present invention attaches the nut to the fitting groove 112 of the fastening part body 110.
- a guide step 114 is formed to hold (4) in the correct position and angle.
- Figure 5 is a bottom perspective view showing a nut being caught on a guide step in the present invention.
- the guide step 114 is formed on one surface of the fitting groove 112 of the fastening unit body 110, and extends a predetermined amount inside the fitting groove. It has the shape of an extended step.
- This guide step 114 is operated by inserting the fitting groove 112 of the nut fastening part 100 into the pipe 2 and then moving the fastening tool to the position of the nut 4. The guide step 114 is then connected to the nut 4. ) so that the nut can be held in the correct position and at the correct angle.
- Figure 6 is a bottom perspective view showing the body holder that holds the body in the present invention
- Figure 7 is a side view showing the body holder in use in the present invention.
- a body holder 200 for holding the body 6 may be installed on one surface of the nut fastening portion 100.
- the body holder 200 is open on one side so that the body 6 can be inserted, and a body fitting groove 210 having a shape corresponding to the polygonal shape of the body 6 is formed, and is located at the position of the body 6. Accordingly, the body holder 200 may include a moving means that allows the body holder 200 to move forward and backward so that it is easy to hold the body 6.
- the moving means includes a moving groove 220 formed in the front-back direction on both sides of the body holder 200, and a protrusion ( 232) may be composed of a fixing part 230 provided.
- the moving groove 220 may be formed in a wave shape as shown in the drawing, and the protrusion 232 may be formed in a cylindrical shape, and the body holder may be formed in a state where the protrusion 232 is inserted into the moving groove 220.
- moving (200) back and forth it becomes possible to adjust the moving distance of the body holder 200 as desired by the operator.
- the fastening tool of the present invention is further provided with a rotation selection unit that can select the rotation speed of the nut.
- Figure 8 is a front view showing the rotation selection unit in the present invention, wherein the rotation selection unit 60 includes a pull-up button 66 for driving the drive unit to rotate the nut by 1-1/4 rotations that can pull up the nut. and a reset button 64 for driving the driving unit so that the nut fastening part 100 returns to its original position after completing the tightening of the nut, and a reset button 64 for driving the driving unit to rotate the nut by a predetermined number of rotations. It may be configured to include a rotation button 68 for driving.
- the pull-up button 66, reset button 64, or rotation button 68 can also be configured so that the operator can control the operation of the driving unit by pressing each button. For example, the operator presses one of the pull-up button 66, the reset button 64, or the rotation button 68 and operates the switch unit 30, so that the driving unit rotates the nut by the number of rotations set for the selected button. A rotational driving force is provided to the fastening part 100.
- the rotation selection unit 60 may be provided with a selection lever 62 that can be operated by selecting one of the pull-up button 66, reset button 64, or rotation button 68.
- the driving of the driving unit can be controlled by rotating the selection lever 62 to select one of the pull-up button 66, the reset button 64, or the rotation button 68, and the rotation Rotate the selection lever 62 in the selection unit 60 to select the number of revolutions (1-1/4, 1/2, 1/4, or 1/8) or reset, and drive with the switch unit 30. You can divide selection and operation by doing so.
- the rotation selection unit 60 is preferably installed on the side of the tool body 20 so that the user can easily operate it with one hand.
- the rotation button 68 is preferably set to allow 1/2, 1/4 or 1/8 rotation. Often, it is necessary to reassemble loose fittings for various repairs and maintenance of fluid systems. In this case, assembly is performed by setting the rotation speed of the nut fastening part 100 to 1/4 or 1/8 rotation. It can be tightened automatically by setting the number of rotations according to the situation.
- semiconductor fittings are fastened using a metal-to-metal face seal by inserting a separate gasket for sealing.
- the fitting is finger-tight, and in the case of stainless steel or nickel gasket, turn 1/8 turn, and copper
- the present invention includes a controller that controls the driving unit to rotate the nut by a preset number of rotations.
- Figure 9 is a block diagram showing the configuration of the controller of the present invention.
- the controller 80 of the present invention includes a drive control unit 82 that outputs a drive signal according to the operation of the switch unit 30 to drive the drive unit 70, and a 1-1/4 rotation for pulling up the fitting.
- a rotation speed setting unit 84 that sets the rotation speed of the nut fastening unit 100 at a number or a set random number of rotations, for example, 1/2, 1/4 or 1/8 rotation, and a rotation speed setting unit 84 of the nut. It may be configured to include a reset unit 86 that sends a reset signal to return the nut fastening unit 100 to its original position after fastening is completed.
- controller 80 may include a torque adjuster 88 that allows torque control by setting the torque level when the torque level needs to be changed depending on the parts of the fitting.
- pull-up by rotation speed is possible, but pull-up by torque is also possible. Pull-up by such torque can be achieved by fastening the body and the nut using a set torque level, without requiring the relative rotation speed of the nut to the body.
- the torque level must be turned differently depending on the component specifications of the fitting, but in the present invention, a torque adjuster ( 88) may be included.
- the fastening tool 10 of the present invention is capable of controlling not only the rotation speed but also the torque, and the torque control unit 88 controls the amount of current supplied to the drive unit 70. Torque can be adjusted.
- the torque generated from the nut fastening unit 100 exceeds a predetermined torque value, it is necessary to stop the motor of the driving unit 70. For example, if the nut is not properly fastened to the body, overtorque may occur when the nut is rotated. In this case, it is necessary to stop the motor of the drive unit 70.
- the controller 80 is a drive stop unit 72 that sends a signal to the drive unit 70 to stop the motor of the drive unit 70 when the torque generated by the nut fastening unit 100 exceeds a set certain torque value.
- an alarm unit 90 that outputs a warning alarm so that the operator can be notified when the torque generated from the nut fastening unit 100 exceeds a set certain torque value.
- the alarm unit 90 may be applied in a variety of ways when outputting a warning alarm.
- a warning alarm can be output not only when the operation stops without reaching the desired rotation speed due to overtorque beyond a certain torque value, but also when the preset rotation speed is not reached due to a decrease in the power of the charged fastening tool. there is.
- the warning alarm of the alarm unit 90 can be issued in various ways.
- the warning alarm of the alarm unit 90 generates a warning sound (sound) when the torque generated from the nut fastening unit 100 exceeds a certain torque value, turns on lights such as an LED, or causes the tool body to turn on.
- a warning alarm can be given to the worker through vibration.
- a reset signal is not sent from the reset unit 86, which sends a reset signal to return the nut fastener 100 to its original position. You can control it so that it doesn't happen.
- the fastening tool 10 of the present invention may be further equipped with a knob 40 that changes the rotation direction of the nut fastening part 100 to the forward or reverse direction.
- a knob 40 that changes the rotation direction of the nut fastening part 100 to the forward or reverse direction.
- the rotation direction of the nut fastening portion 100 can be changed using the knob 40.
- the configuration for changing the forward/reverse direction of the knob 40 can be a commonly known configuration, a detailed description thereof will be omitted in the present invention.
- the fastening method using the automatic rotating fastening tool of the present invention configured as described above is as follows.
- Figure 10 is a flowchart showing a fastening method using the automatic rotating fastening tool of the present invention.
- the worker inserts the fitting groove 112 of the fastening tool 10 into the pipe 2 into which the nut 4 is inserted, and tightens the nut 4.
- the fitting groove 112 of the fastening tool 10 is inserted into the pipe 2 and then the guide step 114 formed in the nut fastening part 100 ) can be used to hold the nut in the correct position and at the correct angle.
- the switch unit 30 installed on the fastening tool 10 is operated to rotate the nut fastening part 100 (S120).
- the controller 80 outputs a drive signal according to the operation of the switch unit 30 to drive the motor of the drive unit 70, and the second drive gear 150 according to the rotation of the motor of the drive unit 70. ), the first driving gear 140, the driven gear 130, and the fastening gear 120 engage and rotate, thereby allowing the nut fastening part 100 to rotate.
- the controller 80 automatically fastens the nut to the body by applying rotational force to the nut fastening part 100 according to the preset rotation speed (S130).
- the fastening tool 10 of the present invention can be set to 1-1/4 rotation or a predetermined number of rotations to pull up the nut to the body by the rotation selection unit 60, so in case of first assembly Depending on the fitting standard, the pull-up can be done with 1-1/4 or 1/2 turns, and in the case of reassembly, it can be tightened with 1/4 or 1/8 turns.
- the controller 80 rotates the nut through the nut fastening part 100 by a preset number of rotations, and automatically stops the rotation after rotating the nut by the preset number of rotations. do.
- the fastened nut must be removed from the nut fastening part 100 whose rotation has stopped, and the fastening tool 10 is pulled in the longitudinal direction of the pipe 2 to remove the nut from the nut fastening part (S140).
- the nut fastening part 100 of the fastening tool 10 is in a state of 1-1/4 rotation, 1/2, 1/4 or 1/8 rotation according to the preset rotation number, as shown in FIG. 3 As shown, the rotation stops while the nut fitting groove 122 of the nut fastening part 100 is still inserted into the pipe 2.
- the nut fastening part 100 is always in its original position, that is, the fitting groove 112 of the nut fastening part 100 and the nut fitting groove 122 of the fastening gear 120 are aligned. It must be reset to its current state.
- a reset signal is sent to the driving unit to reset the nut fastening part 100 so that the nut fastening part 100 returns to its original position (S150).
- the body holder 200 and the nut fastening part 100 are simultaneously inserted into the body 6 and the nut 4 using the body holder 200 provided on one side of the nut fastening part 100. Afterwards, the nut can be tightened.
- the body 6 and the nut 4 are simultaneously held by the body holder 200 and the nut fastening part 100, and the nut is automatically rotated to pull up the nut. Do it.
- the torque level can be set to enable torque control.
- the controller 80 since the controller 80 includes a torque adjuster 88 that sets the torque level to enable torque control, the torque adjuster 88 changes the torque level according to the component specifications of the fitting. Pull-up by torque can be made possible.
- This invention reduces human error by automatically enabling an appropriate pull-up without the operator having to manually tighten the nut, and automatically tightens or disconnects the nut even in dark places with poor working environments or in places where it is difficult for workers to tighten the nut. This has the effect of greatly facilitating workability.
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Abstract
La présente invention concerne un outil de serrage rotatif automatique pouvant commander le nombre de tours, et un procédé de serrage l'utilisant, l'outil comprenant : un corps d'outil tenu par la main d'un utilisateur ; une partie de serrage d'écrou qui est disposée au niveau d'une extrémité du corps de l'outil, et qui applique une force de rotation à un écrou afin de serrer l'écrou contre le corps ; une partie d'entraînement permettant de fournir une force d'entraînement en rotation à la partie de serrage d'écrou de telle sorte que la partie de serrage d'écrou fait tourner l'écrou et le serre contre le corps ; une partie d'alimentation électrique permettant de fournir une alimentation électrique à la partie d'entraînement ; une partie interrupteur disposée au niveau du corps de l'outil de façon à appliquer l'alimentation électrique fournie à la partie d'entraînement ; et un dispositif de commande destiné à commander la partie d'entraînement de telle sorte que l'écrou peut être automatiquement amené à tourner d'un nombre prédéfini de tours.
Applications Claiming Priority (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR10-2022-0048964 | 2022-04-20 | ||
KR20220048964 | 2022-04-20 | ||
KR10-2023-0050061 | 2023-04-17 | ||
KR1020230050061A KR20230149739A (ko) | 2022-04-20 | 2023-04-17 | 회전수 제어가 가능한 자동회전 체결공구 및 이를 이용한 체결방법 |
Publications (1)
Publication Number | Publication Date |
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WO2023204591A1 true WO2023204591A1 (fr) | 2023-10-26 |
Family
ID=88420141
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/KR2023/005293 WO2023204591A1 (fr) | 2022-04-20 | 2023-04-19 | Outil de serrage rotatif automatique pouvant commander le nombre de tours, et procédé de serrage l'utilisant |
Country Status (2)
Country | Link |
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TW (1) | TW202407226A (fr) |
WO (1) | WO2023204591A1 (fr) |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20080134841A1 (en) * | 2006-12-06 | 2008-06-12 | American Power Tools Company | Drive engagement, safety and control apparatus for a powered connector driver |
US7631580B2 (en) * | 2007-11-13 | 2009-12-15 | Gm Global Technology Operations, Inc. | Wrench for tightening pipe nuts |
US20100269638A1 (en) * | 2009-04-24 | 2010-10-28 | American Power Tool Company | Utility tools and mounting adaptation for a nut driving tool and methods |
CN206677853U (zh) * | 2017-03-06 | 2017-11-28 | 浙江豪情汽车制造有限公司 | 一种汽车制动油管连接预拧紧工具 |
WO2020222230A1 (fr) * | 2019-04-28 | 2020-11-05 | Ham-Let (Israel - Canada ) Ltd | Clé |
-
2023
- 2023-04-19 WO PCT/KR2023/005293 patent/WO2023204591A1/fr unknown
- 2023-04-19 TW TW112114495A patent/TW202407226A/zh unknown
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20080134841A1 (en) * | 2006-12-06 | 2008-06-12 | American Power Tools Company | Drive engagement, safety and control apparatus for a powered connector driver |
US7631580B2 (en) * | 2007-11-13 | 2009-12-15 | Gm Global Technology Operations, Inc. | Wrench for tightening pipe nuts |
US20100269638A1 (en) * | 2009-04-24 | 2010-10-28 | American Power Tool Company | Utility tools and mounting adaptation for a nut driving tool and methods |
CN206677853U (zh) * | 2017-03-06 | 2017-11-28 | 浙江豪情汽车制造有限公司 | 一种汽车制动油管连接预拧紧工具 |
WO2020222230A1 (fr) * | 2019-04-28 | 2020-11-05 | Ham-Let (Israel - Canada ) Ltd | Clé |
Also Published As
Publication number | Publication date |
---|---|
TW202407226A (zh) | 2024-02-16 |
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