CN112916448A - Descaling device for surface of mobile phone data line and use method - Google Patents
Descaling device for surface of mobile phone data line and use method Download PDFInfo
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- CN112916448A CN112916448A CN202110096530.0A CN202110096530A CN112916448A CN 112916448 A CN112916448 A CN 112916448A CN 202110096530 A CN202110096530 A CN 202110096530A CN 112916448 A CN112916448 A CN 112916448A
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- 238000000034 method Methods 0.000 title claims abstract description 5
- 230000007246 mechanism Effects 0.000 claims abstract description 71
- 238000004140 cleaning Methods 0.000 claims abstract description 18
- 230000001360 synchronised effect Effects 0.000 claims description 62
- 229920000742 Cotton Polymers 0.000 claims description 28
- 230000003287 optical effect Effects 0.000 claims description 26
- 230000006835 compression Effects 0.000 claims description 20
- 238000007906 compression Methods 0.000 claims description 20
- 230000002146 bilateral effect Effects 0.000 claims description 3
- 239000000835 fiber Substances 0.000 claims description 3
- 230000009191 jumping Effects 0.000 claims description 3
- 239000000463 material Substances 0.000 claims description 3
- 238000003825 pressing Methods 0.000 claims description 2
- 239000012530 fluid Substances 0.000 claims 2
- 230000000694 effects Effects 0.000 description 2
- 238000004026 adhesive bonding Methods 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B1/00—Cleaning by methods involving the use of tools
- B08B1/10—Cleaning by methods involving the use of tools characterised by the type of cleaning tool
- B08B1/14—Wipes; Absorbent members, e.g. swabs or sponges
- B08B1/143—Wipes
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B08—CLEANING
- B08B—CLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
- B08B13/00—Accessories or details of general applicability for machines or apparatus for cleaning
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Abstract
The invention relates to the technical field of daily necessities and discloses a descaling device for the surface of a mobile phone data line and a using method thereof. This scale removal device is used on cell-phone data line surface for the rotation that is located the outer inslot side of location runner cleans mechanism and the rotation of the cleaning ring of auxiliary wheel outside limit is cleaned through soft location to the data line that is located, and the rotation of data line body, thereby comprehensive effectual cleaning descaling is carried out to the surface of data line.
Description
The invention relates to a divisional application of a descaling device for the surface of a mobile phone data line, which is invented on the application date of 2018, 10 and 27 and has the application number of CN 201811262998.7.
Technical Field
The invention relates to the technical field of articles for daily use, in particular to a descaling device for the surface of a mobile phone data line and a using method thereof.
Background
The surface of the data line of the mobile phone is often stained with certain dirt after being used for a long time, which affects the aesthetic property of the data line of the mobile phone, especially for some light-colored data lines, people can also perform regular wiping treatment on the data line, the dirt stained on the surface of the data line is wiped off by using wiping liquid, the thumb and the index finger hold the wiping towel to pull the data line to wrap back and forth to wipe the dirt, but for some dirt with strong adhesiveness, repeated wiping is needed, great effort is needed, the wiping result is not ideal, and few devices for treating the surface dirt of the data line exist in the market, so that a device for repeatedly wiping the surface dirt of the data line is needed to effectively wipe and remove the dirt on the surface of the data line.
Disclosure of Invention
The problem of the cell-phone data line surface be stained with the dirt of adhering with and clean the clearance is not convenient for is solved.
A descaling device for the surface of a mobile phone data line comprises a case, a low-speed motor, a push screw rod, a push ball nut, a transverse movable groove, a transverse connecting block, two positioning plates, a first synchronous motor, two end clamp mechanisms, an interval adjusting mechanism, two connecting columns, a second synchronous motor, a positioning rotating wheel, a soft positioning wiping mechanism, an auxiliary wheel, a wiping ring and a control switch, wherein the low-speed motor is arranged at the bottom of the inner side of the case, an output shaft of the low-speed motor is connected with the push screw rod through a coupler, the push ball nut is connected onto the push screw rod, the transverse movable groove is formed in the top of the case, the transverse connecting block is positioned at the inner side of the transverse movable groove and connected with the push ball nut, the two positioning plates are symmetrically arranged on the two sides of the top of the case through bolts respectively, the first, the output shafts of the two first synchronous motors respectively penetrate through the side faces of the corresponding positioning plates and are connected with the two end clamp mechanisms in a distributed mode, the distance adjusting mechanism is connected with the transverse connecting block, the two connecting columns are connected with the distance adjusting mechanism, the two first synchronous motors are respectively installed at the tops of the two connecting columns, the output shaft of the second synchronous motor located on the front side is connected with the positioning rotating wheel, the output shaft of the second synchronous motor located on the rear side is connected with the auxiliary wheel, the soft positioning wiping mechanism is installed on the inner side of a rotating wheel groove of the positioning rotating wheel, the wiping ring is sleeved on the auxiliary wheel, and the control switch is arranged on the.
Two end anchor clamps mechanisms include two U type spares, two set nut, two clamp bolt, two compress tightly the ball, two support sheet boards and two screens grooves, two U type spares are fixed connection respectively at the end of two synchronous machine one, two set nut respectively fixed connection are in the through-hole department of two U type spares, two clamp bolt run through two set nut respectively and extend to corresponding U type spare inboard respectively, two clamp bolt's end is connected with two compress tightly the ball respectively, two support sheet boards are installed respectively in the inboard bottom of two U type spares, two screens grooves are seted up respectively at the top of two support sheet boards, two compress tightly the ball and are located corresponding screens groove directly over respectively.
The spacing adjusting mechanism comprises an adjusting box, a spacing ring, an optical axis, two star-shaped handles, a forward external thread, a reverse external thread, two movable nuts, four limiting rings, two movable through grooves and two movable connecting blocks, the adjusting box is fixedly connected to the top of the transverse connecting block, the spacing ring is installed at the middle position of the bottom of the inner side of the adjusting box through a bolt, the optical axis is arranged at the inner side of the adjusting box and penetrates through the inner side of the spacing ring, two ends of the optical axis respectively penetrate through the inner side walls of the front side and the rear side of the adjusting box and are respectively connected with the two star-shaped handles, the forward external thread and the reverse external thread are symmetrically arranged on the optical axis relative to the spacing ring, the two movable nuts are respectively connected to the forward external thread and the reverse external thread of the optical axis, the four limiting rings are respectively arranged at two ends of the forward, the two movable connecting blocks are respectively positioned on the inner sides of the two movable through grooves, the bottoms of the two movable connecting blocks are respectively connected with the two movable nuts, and the tops of the two movable connecting blocks are respectively connected with the two connecting columns.
The mechanism is cleaned including the location gasbag to soft location, elasticity magic subsides, cotton is cleaned to a plurality of strips, air duct and switch pneumatic valve, the location gasbag bonds at the wheel hub outer inslot side of location runner, the shape of location gasbag is similar with the wheel hub outer inslot inside wall shape of location runner, the inboard side at the location gasbag is pasted in the adhesion of elasticity magic, cotton annular equidistance is cleaned to the strip and bonds on the elasticity magic subsides, the air duct is installed in the air duct department of location gasbag, the air duct runs through the wheel hub outer inslot inside wall of location runner and extends to the outside of location runner and is connected with the switch pneumatic.
Preferably, two end anchor clamps mechanism sets up about the central bilateral symmetry of quick-witted case, and the screens groove is the hemisphere recess, and the recess radius in screens groove is seven millimeters, and the internal diameter in screens groove is greater than two millimeters of the external diameter that compresses tightly the ball, and the horizontal connecting line of two end anchor clamps mechanisms is located between location runner and the auxiliary wheel.
Preferably, the thread pitch of the forward external thread is equal to that of the reverse external thread in the opposite direction, the two movable nuts on the optical axis are symmetrically arranged relative to the spacing ring, and the two movable connecting blocks are respectively positioned right above the corresponding movable nuts.
Preferably, the thickness of the outer side edge of the auxiliary wheel is smaller than that of the inner side of the hub outer groove of the positioning rotating wheel, and the auxiliary wheel is positioned on the inner side of the hub outer groove of the positioning rotating wheel close to the outer side edge of the positioning rotating wheel and has a gap with the inner side edge of the positioning air bag.
Preferably, the control switch is electrically connected with the two first synchronous motors, the two second synchronous motors and the low-speed motor, the two first synchronous motors are in a synchronous running state, the two second synchronous motors are in a synchronous running state, and the low-speed motor adopts a low-speed forward and reverse rotating motor with the rotating speed of 30 r/min.
Preferably, the two connecting columns are symmetrically arranged in front and back of the center of the adjusting box, and the two synchronous motors corresponding to the tops of the two connecting columns are symmetrically arranged in front and back of the center of the adjusting box.
Preferably, the location gasbag adopts soft rubber material, the side thickness of location gasbag is two millimeters, elasticity magic subsides are including the subsides of elasticity son and the female subsides of elasticity, the subsides of elasticity son are pasted the inboard side of bonding at the location gasbag, the cotton bonding each other is cleaned with the strip to the female subsides of elasticity, it all adopts the fibre to clean the cotton to clean ring sum strip, the cotton is cleaned for strip form annular equidistance to bond the female side of pasting of elasticity magic, it all has certain elasticity to clean the cotton with the strip to clean the ring sum strip, the cooperation relation between the inboard side of cleaning the ring and the auxiliary wheel lateral surface is interference fit.
Compared with the prior art:
(1) the descaling device for the surface of the mobile phone data line is characterized in that two end clamp mechanisms are arranged to clamp the joints of two end joints of the data line and a lead, the ends of the data line are clamped into the inner side of a U-shaped part, then a compression bolt is rotated to push the compression ball under the pushing of the internal thread of a positioning nut, so that the compression ball presses the lower end joint of the data line into the inner side of a clamping groove, the end joint of the data line is bent and compressed, after the two ends are respectively clamped and positioned by the two end clamp mechanisms, the data line is just tensioned, when the device is operated, two synchronous motors drive the two ends of the data line to synchronously rotate through the two end clamp mechanisms respectively, the data line is prevented from being folded, the data line is tensioned at the same time, and the joints of the ends of the data line are pressed into the inner side of the clamping groove in an arc-shaped crimping mode by the compression ball, the connection position of the end of the data line is effectively protected.
(2) The descaling device for the surface of the mobile phone data line can be used for carrying out auxiliary clamping and positioning on the data line body by arranging the soft positioning wiping mechanism, when the device is used, two ends of the data line are respectively tensioned and positioned by two end clamp mechanisms, the data line is clamped into the inner side of the outer groove of the hub of the positioning rotating wheel, then the data line is externally connected with an air guide cylinder or an air pump through an air guide pipe, the switch air valve is opened, the positioning air bag is inflated, so that the inner side of the positioning air bag is expanded by high-pressure gas to generate deformation to correspondingly wrap the data line on the inner side, thereby leading the inner side edge of the positioning air bag to wrap the data wire through the elastic magic tape and the strip-shaped wiping cotton, effectively carrying out soft positioning on the data wire, the strip-shaped wiping cotton exerts pressure on the surface of the data line, so that the friction force between the data line and the strip-shaped wiping cotton can be increased, and the cleaning of dirt on the surface of the data line is facilitated.
(3) The descaling device for the surface of the mobile phone data line comprises an interval adjusting mechanism, a positioning rotating wheel and an auxiliary wheel which are matched with each other, wherein when the device is used, two ends of the data line are tensioned and positioned by two end clamp mechanisms respectively, the data line is clamped into the inner side of a hub outer groove of the positioning rotating wheel, the data line is wrapped by a soft positioning wiping mechanism, then a star handle is rotated, the star handle drives an optical axis to rotate, a forward external thread and a reverse external thread on the optical axis drive corresponding movable nuts to move relatively respectively, the two movable nuts drive corresponding movable connecting blocks to move in movable through grooves respectively, so that the two movable connecting blocks drive corresponding connecting columns to move, the two connecting columns drive corresponding synchronous motors to move relatively, and the outer side edge of the auxiliary wheel is inserted into the inner side of the hub outer side of the positioning rotating wheel, make the ring of cleaning on auxiliary wheel outside limit carry on spacing compressing tightly to the data line of location in soft location wiping mechanism, prevent that the data line from jumping out the wheel hub outer groove of location runner when cleaning, guarantee the stability of complex between the mechanism, two synchronous machine drive location runner and auxiliary wheel respectively rotate, make the data line that is located location runner outer inslot side clean the rotatory cleaning of mechanism and the rotatory cleaning of the ring of cleaning on auxiliary wheel outside limit through soft location and clean, and the rotation of data line body, thereby comprehensive effectual descaling of cleaning is carried out on the surface to the data line.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic side view of the spacing adjustment mechanism of the present invention;
FIG. 3 is an enlarged view of the structure at A in FIG. 2;
FIG. 4 is a schematic structural view of an end clamp mechanism according to the present invention;
FIG. 5 is a top view of the positioning wheel and the auxiliary wheel of the present invention.
In the figure: 1 chassis, 2 low-speed motor, 3 push screw rod, 4 push ball nut, 5 horizontal movable groove, 6 horizontal connecting block, 7 positioning plate, 8 synchronous motor I, 9 end clamp mechanism, 91U-shaped piece, 92 positioning nut, 93 hold-down bolt, 94 hold-down ball, 95 supporting plate, 96 clamping groove, 10 spacing adjusting mechanism, 101 adjusting box, 102 spacing ring, 103 optical axis, 104 star handle, 105 positive external thread, 106 reverse external thread, 107 movable nut, 108 spacing ring, 109 movable through groove, 1010 movable connecting block, 11 connecting column, 12 synchronous motor II, 13 positioning rotating wheel, 14 soft positioning wiping mechanism, 141 positioning air bag, 142 elastic magic tape, 143 strip wiping cotton, 144 air duct, 145 switch air valve, 15 auxiliary wheel, 16 wiping ring, 17 control switch.
Detailed Description
As shown in fig. 1 to 5, the present invention provides a technical solution: a descaling device for the surface of a mobile phone data line comprises a case 1, a low-speed motor 2, a push screw rod 3, a push ball nut 4, a transverse movable groove 5, a transverse connecting block 6, two positioning plates 7, two synchronous motors I8, two end clamp mechanisms 9, an interval adjusting mechanism 10, two connecting columns 11, two synchronous motors II 12, a positioning rotating wheel 13, a soft positioning wiping mechanism 14, an auxiliary wheel 15, a wiping ring 16 and a control switch 17, wherein the low-speed motor 2 is arranged at the bottom of the inner side of the case 1, an output shaft of the low-speed motor 2 is connected with the push screw rod 3 through a coupler, the push ball nut 4 is connected onto the push screw rod 3, the transverse movable groove 5 is arranged at the top of the case 1, the transverse connecting block 6 is positioned at the inner side of the transverse movable groove 5 and is connected with the push ball nut 4, the two positioning plates 7 are symmetrically arranged at two, two synchronous motors I8 are respectively installed on the side surfaces of the two positioning plates 7 through bolts, output shafts of the two synchronous motors I8 respectively penetrate through the side surfaces of the corresponding positioning plates 7 and are connected with the two end clamp mechanisms 9 in a distributed mode, the distance adjusting mechanism 10 is connected with the transverse connecting block 6, the two connecting columns 11 are both connected with the distance adjusting mechanism 10, the two synchronous motors II 12 are respectively installed on the tops of the two connecting columns 11, the synchronous motors I8 and the synchronous motors II 12 both adopt micro motors, the output shaft of the synchronous motor II 12 located on the front side is connected with the positioning rotating wheel 13, the output shaft of the synchronous motor II 12 located on the rear side is connected with the auxiliary wheel 15, the soft positioning wiping mechanism 14 is installed on the inner side of a rotating wheel groove of the positioning rotating wheel 13, the wiping ring 16 is sleeved on the auxiliary wheel 15, the control switch 17 is arranged on the left side of the, The two synchronous motors II 12 and the low-speed motor 2 are electrically connected, the two synchronous motors I8 are in a synchronous running state, the two synchronous motors II 12 are in a synchronous running state, and the low-speed motor 2 adopts a low-speed forward and reverse rotating motor with the rotating speed of 30 r/min.
The two end clamp mechanisms 9 comprise two U-shaped parts 91, two positioning nuts 92, two compression bolts 93, two compression balls 94, two supporting sheet plates 95 and two clamping grooves 96, the two U-shaped parts 91 are respectively and fixedly connected with the tail ends of the two synchronous motors I8, the two positioning nuts 92 are respectively and fixedly connected with the through holes of the two U-shaped parts 91, the two compression bolts 93 respectively penetrate through the two positioning nuts 92 and respectively extend to the inner sides of the corresponding U-shaped parts 91, the tail ends of the two compression bolts 93 are respectively connected with the two compression balls 94, the two supporting sheet plates 95 are respectively arranged at the bottom of the inner sides of the two U-shaped parts 91, the two clamping grooves 96 are respectively arranged at the top of the two supporting sheet plates 95, the two compression balls 94 are respectively positioned right above the corresponding clamping grooves 96, the two end clamp mechanisms 9 are arranged in bilateral symmetry with respect to the center of, the screens groove 96 is the hemisphere recess, and the recess radius of screens groove 96 is seven millimeters, and the internal diameter of screens groove 96 is greater than two millimeters of the external diameter that compresses tightly ball 94, and the horizontal connecting line of two end anchor clamps mechanisms 9 is located between location runner 13 and auxiliary wheel 15.
The spacing adjusting mechanism 10 comprises an adjusting box 101, a spacing ring 102, an optical axis 103, two star-shaped handles 104, a forward external thread 105, a reverse external thread 106, two movable nuts 107, four limiting rings 108, two movable through grooves 109 and two movable connecting blocks 1010, wherein the adjusting box 101 is fixedly connected to the top of the transverse connecting block 6, the spacing ring 102 is installed at the middle position of the bottom of the inner side of the adjusting box 101 through bolts, the optical axis 103 is arranged at the inner side of the adjusting box 101 and penetrates through the inner side of the spacing ring 102, two ends of the optical axis 103 respectively penetrate through the inner side walls of the front side and the rear side of the adjusting box 101 and are respectively connected with the two star-shaped handles 104, the forward external thread 105 and the reverse external thread 106 are symmetrically arranged on the optical axis 103 relative to the spacing ring 102, the two movable nuts 107 are respectively connected to the portions of the forward external thread 105 and the reverse external thread 106 of the optical axis 103, and, two movable through grooves 109 are symmetrically arranged at the top of the adjusting box 101, two movable connecting blocks 1010 are respectively positioned at the inner sides of the two movable through grooves 109, the bottoms of the two movable connecting blocks 1010 are respectively connected with two movable nuts 107, the tops of the two movable connecting blocks 1010 are respectively connected with two connecting columns 11, the thread pitch of the forward external thread 105 and the thread pitch of the reverse external thread 106 in opposite directions are equal, the two movable nuts 107 on the optical axis 103 are symmetrically arranged relative to the spacing ring 102, the two movable connecting blocks 1010 are respectively positioned right above the corresponding movable nuts 107, the two connecting columns 11 are symmetrically arranged front and back relative to the center of the adjusting box 101, and the two synchronous motors 12 corresponding to the tops of the two connecting columns 11 are symmetrically arranged front and back relative to the center of.
The soft positioning wiping mechanism 14 comprises a positioning air bag 141, an elastic magic tape 142, a plurality of strip-shaped wiping cotton 143, an air duct 144 and a switch air valve 145, the positioning air bag 141 is adhered to the inner side of the outer groove of the hub of the positioning rotating wheel 13, the shape of the positioning air bag 141 is similar to the shape of the inner side wall of the outer groove of the hub of the positioning rotating wheel 13, the elastic magic tape 142 is adhered to the inner side of the positioning air bag 141, the strip-shaped wiping cotton 143 is adhered to the elastic magic tape 142 in an annular equal distance, the air duct 144 is installed at the air duct of the positioning air bag 141, the air duct 144 penetrates through the inner side wall of the outer groove of the hub of the positioning rotating wheel 13 and extends to the outer side of the positioning rotating wheel 13 to be connected with the switch air valve 145, the thickness of the outer side of the auxiliary wheel 15 is smaller than the thickness of the inner side of the, the location gasbag 141 adopts soft rubber material, the side thickness of location gasbag 141 is two millimeters, elasticity magic subsides 142 include that elasticity sub-pastes and elasticity mother pastes, elasticity sub-pastes the inboard side of gluing at location gasbag 141, elasticity mother pastes and the mutual bonding of strip wiping cotton 143, wiping ring 16 and strip wiping cotton 143 all adopt the fibre wiper, strip wiping cotton 143 is long strip annular equidistance and bonds in the elasticity mother of elasticity magic subsides 142 and pastes the side, wiping ring 16 and strip wiping cotton 143 all have certain elasticity, the cooperation relation between the inboard side of wiping ring 16 and the auxiliary wheel 15 lateral surface is interference fit.
When the device is used, the end of the data line is clamped into the inner side of the U-shaped part 91, then the hold-down bolt 93 is rotated, so that the hold-down bolt 93 pushes the hold-down ball 94 under the pushing of the internal thread of the positioning nut 92, so that the hold-down ball 94 presses the lower data line end joint into the inner side of the clamping groove 96, so that the data line end joint is bent and pressed, after the two ends are respectively clamped and positioned by the two end clamp mechanisms 9, the data line is just tensioned, then cleaning solution is sprayed on the surface of the data line, or cleaning solution is sprayed on the inner side of the soft positioning wiping mechanism 14, the two ends of the data line are respectively tensioned and positioned by the two end clamp mechanisms 9, the data line is clamped into the inner side of the hub outer groove of the positioning rotary wheel 13, then an air guide tube or an air pump is externally connected by an air duct 144, the switch air valve, the inner side of the positioning air bag 141 is expanded by high-pressure gas to generate deformation to wrap the data line on the inner side relatively, so that the inner side of the positioning air bag 141 wraps the data line through the elastic magic tape 142 and the strip wiping cotton 143, the data line is effectively positioned softly, the strip wiping cotton 143 applies pressure to the surface of the data line, friction force between the data line and the strip wiping cotton 143 can be increased, thereby being more beneficial to cleaning dirt on the surface of the data line, after the data line is wrapped through the soft positioning wiping mechanism 14, the star-shaped handle 104 is rotated, the star-shaped handle 104 drives the optical axis 103 to rotate, the forward external thread 105 and the reverse external thread 106 on the optical axis 103 respectively drive the corresponding movable nuts 107 to move relatively, and the two movable nuts 107 respectively drive the corresponding movable connecting blocks 1010 to move in the movable through grooves 109, thereby two movable connecting blocks 1010 drive the corresponding connecting columns 11 to move, two connecting columns 11 drive the corresponding synchronous motors two 12 to move relatively, thereby the outer side edge of the auxiliary wheel 15 is inserted into the inner side of the outer side of the hub of the positioning rotating wheel 13, the wiping ring 16 on the outer side edge of the auxiliary wheel 15 carries out spacing and pressing on the data line positioned in the soft positioning wiping mechanism 14, the data line is prevented from jumping out of the outer groove of the hub of the positioning rotating wheel 13 when being wiped, the stability of the matching between the mechanisms is ensured, then two synchronous motors one 8, two synchronous motors two 12 and the low-speed motor 2 are started through a control switch 17, the output shaft of the low-speed motor 2 drives the push screw rod 3 to rotate, the push screw rod 3 drives the push ball nut 4 to move transversely, the push ball nut 4 to move in the transverse movable groove 5 through the transverse connecting block 6 so as to drive the spacing adjusting mechanism 10 to move transversely, spacing adjustment mechanism 10 drives location runner 13 and auxiliary wheel 15 respectively through spliced pole 11 and two synchronous machine two 12 and carries out synchronous horizontal activity, thereby control switch 17 control low-speed motor 2 output shaft carries out just reversing thereby realized location runner 13 and auxiliary wheel 15's circulation activity about the synchronization, two synchronous machine 12 drive location runner 13 and auxiliary wheel 15 respectively rotate, make the rotation that lies in location runner 13 outer inslot side clean mechanism 14 through soft location clean with the rotation of the ring 16 of cleaning on auxiliary wheel 15 outside limit clean, and the rotation of data line body, thereby comprehensive effectual descale is cleaned on the surface to the data line.
Claims (6)
1. The utility model provides a cell-phone is scale removal device for data line surface, including quick-witted case (1), low-speed motor (2), promote lead screw (3), promote ball nut (4), horizontal movable groove (5), transverse connection piece (6), two locating plates (7), two synchronous machine one (8), two end anchor clamps mechanisms (9), interval adjustment mechanism (10), two spliced poles (11), two synchronous machine two (12), location runner (13), soft location wiping mechanism (14), auxiliary wheel (15), wiping ring (16) and control switch (17), its characterized in that: the low-speed motor (2) is arranged at the bottom of the inner side of the case (1), an output shaft of the low-speed motor (2) is connected with the push screw rod (3) through a coupler, the push ball nut (4) is connected on the push screw rod (3), the transverse movable groove (5) is arranged at the top of the case (1), the transverse connecting block (6) is positioned at the inner side of the transverse movable groove (5) and is connected with the push ball nut (4), the two positioning plates (7) are symmetrically arranged at two sides of the top of the case (1) through bolts respectively, the two synchronous motors I (8) are arranged at the side surfaces of the two positioning plates (7) through bolts respectively, the output shafts of the two synchronous motors I (8) penetrate through the side surfaces of the corresponding positioning plates (7) respectively and are connected with the two end clamp mechanisms (9) respectively, and the interval adjusting mechanism (10) is connected with, the two connecting columns (11) are connected with the distance adjusting mechanism (10), the two synchronous motors II (12) are respectively installed at the tops of the two connecting columns (11), the output shaft of the synchronous motor II (12) positioned on the front side is connected with the positioning rotating wheel (13), the output shaft of the synchronous motor II (12) positioned on the rear side is connected with the auxiliary wheel (15), the soft positioning wiping mechanism (14) is installed on the inner side of a rotating wheel groove of the positioning rotating wheel (13), the wiping ring (16) is sleeved on the auxiliary wheel (15), and the control switch (17) is arranged on the left side of the case (1);
the two end clamp mechanisms (9) comprise two U-shaped pieces (91), two positioning nuts (92), two compression bolts (93), two compression balls (94), two supporting sheet plates (95) and two clamping grooves (96), the two U-shaped parts (91) are fixedly connected to the tail ends of the two synchronous motors I (8) respectively, the two positioning nuts (92) are fixedly connected to through holes of the two U-shaped parts (91) respectively, the two compression bolts (93) penetrate through the two positioning nuts (92) respectively and extend to the inner sides of the corresponding U-shaped parts (91) respectively, the tail ends of the two compression bolts (93) are connected with the two compression balls (94) respectively, the two supporting sheet plates (95) are installed at the bottom of the inner sides of the two U-shaped parts (91) respectively, the two clamping grooves (96) are formed in the tops of the two supporting sheet plates (95) respectively, and the two compression balls (94) are located right above the corresponding clamping grooves (96) respectively;
the spacing adjusting mechanism (10) comprises an adjusting box (101), a spacing ring (102), an optical axis (103), two star-shaped handles (104), a forward external thread (105), a reverse external thread (106), two movable nuts (107), four limiting rings (108), two movable through grooves (109) and two movable connecting blocks (1010), the adjusting box (101) is fixedly connected to the top of the transverse connecting block (6), the spacing ring (102) is installed at the middle position of the bottom of the inner side of the adjusting box (101) through bolts, the optical axis (103) is arranged on the inner side of the adjusting box (101) and penetrates through the inner side of the spacing ring (102), two ends of the optical axis (103) penetrate through the inner side walls of the front side and the rear side of the adjusting box (101) respectively and are connected with the two star-shaped handles (104) respectively, the forward external thread (105) and the reverse external thread (106) are symmetrically arranged on the optical axis (103) about, the two movable nuts (107) are respectively connected to a forward external thread (105) and a reverse external thread (106) of the optical axis (103), every two of four limiting rings (108) are respectively arranged at two ends of the forward external thread (105) and the reverse external thread (106) on the optical axis (103) in a group, the two movable through grooves (109) are symmetrically arranged at the top of the adjusting box (101), the two movable connecting blocks (1010) are respectively positioned at the inner sides of the two movable through grooves (109), the bottoms of the two movable connecting blocks (1010) are respectively connected with the two movable nuts (107), and the tops of the two movable connecting blocks (1010) are respectively connected with the two connecting columns (11);
the soft positioning wiping mechanism (14) comprises a positioning air bag (141), an elastic magic tape (142), a plurality of strip wiping cotton (143), an air guide pipe (144) and a switch air valve (145), the positioning air bag (141) is adhered to the inner side of the outer groove of the hub of the positioning rotating wheel (13), the shape of the positioning air bag (141) is similar to that of the inner side wall of the outer groove of the hub of the positioning rotating wheel (13), the elastic magic tape (142) is adhered to the inner side edge of the positioning air bag (141), the strip wiping cotton (143) is adhered to the elastic magic tape (142) in an annular and equidistant mode, the air guide pipe (144) is installed at the air guide opening of the positioning air bag (141), and the air guide pipe (144) penetrates through the inner side wall of the outer groove of the hub of the positioning rotating wheel (13;
the two end clamp mechanisms (9) are arranged in bilateral symmetry about the center of the case (1), the clamping grooves (96) are hemispherical grooves, the radius of the grooves of the clamping grooves (96) is seven millimeters, the inner diameter of each clamping groove (96) is two millimeters greater than the outer diameter of each pressing ball (94), and the horizontal connecting line of the two end clamp mechanisms (9) is positioned between the positioning rotating wheel (13) and the auxiliary wheel (15);
the thread pitch of the forward external thread (105) and the thread pitch of the reverse external thread (106) which are opposite in thread direction are equal, the two movable nuts (107) on the optical axis (103) are symmetrically arranged relative to the spacing ring (102), and the two movable connecting blocks (1010) are respectively positioned right above the corresponding movable nuts (107).
2. The descaling device for the surface of the mobile phone data line according to claim 1, wherein: the thickness of the outer side edge of the auxiliary wheel (15) is smaller than that of the inner side of the outer groove of the hub of the positioning rotating wheel (13), the auxiliary wheel (15) is positioned on the inner side of the outer groove of the hub of the positioning rotating wheel (13) close to the outer side edge of the positioning rotating wheel (13) and a gap is reserved between the auxiliary wheel and the inner side edge of the positioning air bag (141).
3. The descaling device for the surface of the mobile phone data line according to claim 1, wherein: the control switch (17) is electrically connected with the two synchronous motors I (8), the two synchronous motors II (12) and the low-speed motor (2), the two synchronous motors I (8) are in synchronous operation state, the two synchronous motors II (12) are in synchronous operation state, and the low-speed motor (2) adopts a low-speed forward and reverse rotating motor with the rotating speed of 30 r/min.
4. The descaling device for the surface of the mobile phone data line according to claim 1, wherein: the two connecting columns (11) are symmetrically arranged in front and back directions relative to the center of the adjusting box (101), and the two synchronous motors (12) corresponding to the tops of the two connecting columns (11) are symmetrically arranged in front and back directions relative to the center of the adjusting box (101).
5. The descaling device for the surface of the mobile phone data line according to claim 1, wherein: location gasbag (141) adopt soft rubber material, the side thickness of location gasbag (141) is two millimeters, elasticity magic subsides (142) are pasted and are pasted with the female subsides of elasticity including elasticity son, elasticity son pastes the bonding at the inboard side of location gasbag (141), the cotton (143) are cleaned with the strip to elasticity mother pastes and bonds each other, it all adopts the fibre piece to clean cotton (143) with the strip, the cotton (143) are cleaned for rectangular form annular equidistance to bond the female side of pasting of elasticity magic (142), it all has certain elasticity to clean cotton (143) with the strip to clean ring (16), the inboard side of cleaning ring (16) is interference fit with the cooperation relation between auxiliary wheel (15) lateral surface.
6. The descaling device for the surfaces of mobile phone data lines and the use method thereof as claimed in any one of claims 1-5, wherein: when the device is used, the end of the data line is clamped into the inner side of the U-shaped part (91), then the compression bolt (93) is rotated, the compression bolt (93) pushes the compression ball (94) under the pushing of the internal thread of the positioning nut (92), the compression ball (94) presses the joint of the lower data line end into the inner side of the clamping groove (96), the joint of the data line end is bent and compressed, after the two ends are respectively clamped and positioned by the two end clamp mechanisms (9), the data line is just tensioned, then cleaning fluid is sprayed on the surface of the data line, or cleaning fluid is sprayed on the inner side of the soft positioning wiping mechanism (14), the two ends of the data line are respectively tensioned and positioned by the two end clamp mechanisms (9), the data line is clamped into the inner side of the hub outer groove of the positioning rotating wheel (13), and then an air guide cylinder or an air pump is externally connected by the air guide tube (144), the switch air valve (145) is opened, the positioning air bag (141) is inflated, the inner side of the positioning air bag (141) is expanded by high-pressure gas to generate deformation to correspondingly wrap the inner side data line, the inner side of the positioning air bag (141) wraps the data line through the elastic magic tape (142) and the strip-shaped wiping cotton (143), the data line is effectively and flexibly positioned, the strip-shaped wiping cotton (143) applies pressure to the surface of the data line, the friction force between the data line and the strip-shaped wiping cotton (143) can be increased, and therefore dirt on the surface of the data line can be better cleared, after the data line is wrapped through the soft positioning wiping mechanism (14), the star-shaped handle (104) is rotated, the star-shaped handle (104) drives the optical axis (103) to rotate, the forward external thread (105) and the reverse external thread (106) on the optical axis (103) respectively drive the corresponding movable nuts (107) to relatively move, two movable nuts (107) drive corresponding movable connecting blocks (1010) to move in the movable through groove (109) respectively, so that the two movable connecting blocks (1010) drive corresponding connecting columns (11) to move, the two connecting columns (11) drive corresponding synchronous motors (12) to move relatively, so that the outer side edges of the auxiliary wheels (15) are inserted into the inner sides of the outer sides of hubs of the positioning rotating wheels (13), the wiping rings (16) on the outer side edges of the auxiliary wheels (15) limit and compress data lines positioned in the soft positioning wiping mechanisms (14), the data lines are prevented from jumping out of the outer grooves of the hubs of the positioning rotating wheels (13) when being wiped, the stability of matching between the mechanisms is ensured, and then two synchronous motors I (8), two synchronous motors II (12) and a low-speed motor (2) are started through a control switch (17), an output shaft of a low-speed motor (2) drives a pushing screw rod (3) to rotate, so that the pushing screw rod (3) drives a pushing ball nut (4) to move transversely, the pushing ball nut (4) moves in a transverse moving groove (5) through a transverse connecting block (6) to drive an interval adjusting mechanism (10) to move transversely, the interval adjusting mechanism (10) drives a positioning rotating wheel (13) and an auxiliary wheel (15) to move synchronously and transversely respectively through a connecting column (11) and two synchronous motors (12), a control switch (17) controls the output shaft of the low-speed motor (2) to rotate positively and reversely, so that synchronous left and right circulating movement of the positioning rotating wheel (13) and the auxiliary wheel (15) is realized, the two synchronous motors (12) drive the positioning rotating wheel (13) and the auxiliary wheel (15) to rotate respectively, and data lines on the inner side of an outer groove of the positioning rotating wheel (13) are cleaned through rotation of a soft positioning cleaning mechanism (14) and are cleaned outside the auxiliary wheel (15) The side edge of the data line is wiped by the wiping ring (16) in a rotating way, and the data line body rotates, so that the surface of the data line is wiped and descaled comprehensively and effectively.
Priority Applications (1)
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CN202110096530.0A CN112916448B (en) | 2018-10-27 | 2018-10-27 | Descaling device for surface of mobile phone data line and use method |
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CN202110096530.0A CN112916448B (en) | 2018-10-27 | 2018-10-27 | Descaling device for surface of mobile phone data line and use method |
CN201811262998.7A CN109225967B (en) | 2018-10-27 | 2018-10-27 | Descaling device for surface of mobile phone data line |
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CN201811262998.7A Division CN109225967B (en) | 2018-10-27 | 2018-10-27 | Descaling device for surface of mobile phone data line |
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CN112916448B CN112916448B (en) | 2022-06-17 |
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CN201811262998.7A Active CN109225967B (en) | 2018-10-27 | 2018-10-27 | Descaling device for surface of mobile phone data line |
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CN110238741B (en) * | 2019-07-23 | 2020-11-06 | 杭州卓维机械有限公司 | Handheld iron wire surface rust treatment equipment |
CN111495804B (en) * | 2020-04-23 | 2021-05-18 | 山东兆鑫石油工具有限公司 | Automatic treatment device and treatment process for hydraulic packer for oil well exploitation |
CN112191571A (en) * | 2020-10-27 | 2021-01-08 | 无锡德必隆新材料科技有限公司 | Surface cleaning pretreatment mechanism for plate processing |
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CN109225967B (en) | 2021-04-02 |
CN109225967A (en) | 2019-01-18 |
CN112916448B (en) | 2022-06-17 |
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