CN110928171A - Timepiece assembly device - Google Patents

Timepiece assembly device Download PDF

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Publication number
CN110928171A
CN110928171A CN201911314739.9A CN201911314739A CN110928171A CN 110928171 A CN110928171 A CN 110928171A CN 201911314739 A CN201911314739 A CN 201911314739A CN 110928171 A CN110928171 A CN 110928171A
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China
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assembly
fixed
hand
feeding
support
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Granted
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CN201911314739.9A
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CN110928171B (en
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郭玉霞
丘秋静
谢霞
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    • GPHYSICS
    • G04HOROLOGY
    • G04DAPPARATUS OR TOOLS SPECIALLY DESIGNED FOR MAKING OR MAINTAINING CLOCKS OR WATCHES
    • G04D3/00Watchmakers' or watch-repairers' machines or tools for working materials
    • G04D3/0002Watchmakers' or watch-repairers' machines or tools for working materials for mechanical working other than with a lathe
    • G04D3/0043Watchmakers' or watch-repairers' machines or tools for working materials for mechanical working other than with a lathe for components of the time-indicating mechanisms
    • G04D3/0046Watchmakers' or watch-repairers' machines or tools for working materials for mechanical working other than with a lathe for components of the time-indicating mechanisms for hands
    • GPHYSICS
    • G04HOROLOGY
    • G04DAPPARATUS OR TOOLS SPECIALLY DESIGNED FOR MAKING OR MAINTAINING CLOCKS OR WATCHES
    • G04D3/00Watchmakers' or watch-repairers' machines or tools for working materials
    • G04D3/0002Watchmakers' or watch-repairers' machines or tools for working materials for mechanical working other than with a lathe

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Perforating, Stamping-Out Or Severing By Means Other Than Cutting (AREA)

Abstract

The invention discloses clock assembling equipment.A graduated disk is arranged on the upper surface of a bracket, and a bottom shell placing position and a movement placing position are arranged on the upper surface of the graduated disk; the outer side of the dividing disc is sequentially provided with a prepressing device, a timing hand device, a fixed dividing hand device, a fixed second hand device and a discharge device, wherein the prepressing device is used for pressing the movement into the dial plate, the fixed second hand device is used for placing a fixed second hand into the movement and fixing the fixed second hand in the movement through a nut, and the discharge device is used for simultaneously adsorbing the watch cover and the dial plate assembly and placing the watch cover and the dial plate assembly on a conveyor; the prepressing device, the timing needle device, the fixed minute needle device, the fixed second needle device, the combining device and the discharging device are all fixed on the upper surface of the bracket; through the pre-compaction, carry out blank, hour hand, minute hand and second hand to the pointer and put into the core on to make dial plate, core, hour hand, minute hand and second hand form the key core equipment, and put into the conveyer belt with end shell and core subassembly, carry out the later stage by manual work or machinery and assemble, thereby realize improving packaging efficiency, reduce the cost of labor and guarantee the product quality after the equipment.

Description

Timepiece assembly device
Technical Field
The invention belongs to the field of machining, and particularly relates to a clock assembling device for assembling a clock time hand, a minute hand and a second hand.
Background
The watch, common are wrist-watch, alarm clock, wall clock, water gauge, etc., refer to the instrument used for timing/metering/display time, the common header structure includes watch cover, core, hour hand, dial plate and bottom cover, core, hour hand, dial plate need borrow various supporting structures while fixing, this kind of precision finishing way makes the shaping and assembly process of the watch class become very complicated, its cost is higher and higher too.
Therefore, the prior art has certain defects, and the prior assembly process needs to be changed, so that the assembly efficiency is improved, the labor cost is reduced, and the quality of the assembled product is ensured.
Disclosure of Invention
The present invention provides a timepiece assembly device solving the above problems.
In order to solve the above problems, the technical scheme provided by the invention is as follows: the clock assembling equipment is provided with a support, wherein the upper surface of the support is provided with an index plate 1, and the upper surface of the index plate 1 is provided with a bottom shell placing position for storing a bottom shell; the outer edge of the index plate 1 is provided with a movement A placing position 12 matched with the bottom shell placing position in number; the outer side of the index plate 1 is sequentially provided with a prepressing device 2 for pressing the movement A into the dial, a timing hand device 3 for putting a timing hand into the movement A, a timing minute hand device 4 for putting a timing minute hand into the movement A, a timing second hand device 5 for putting a timing second hand into the movement A and fixing the timing second hand in the movement A through a nut E, and a discharge device 6 for simultaneously adsorbing the watch cover and the dial component and placing the watch cover and the dial component on a conveyor belt;
the prepressing device 2, the timing hand device 3, the timing minute hand device 4, the timing second hand device 5, the combining device and the discharging device 6 are all fixed on the upper surface of the bracket.
Preferably, the prepressing device 2 is used for prepressing the bracket, the prepressing cylinder 21 and the prepressing piece 22; the prepressing support is fixed on the support, the prepressing cylinder 21 is vertically installed on the prepressing support, the movable end of the prepressing cylinder 21 extends towards the upper surface of the support and is fixedly connected with one end of the prepressing piece 22, and the core A shell are pressed through the prepressing piece 22.
Preferably, the timing needle device 3 is provided with a discharging component, a cutting mechanism and a feeding component 33 which are all fixed on the bracket; the discharging assembly is provided with a discharging support, a pointer flow channel, a main material tray and an auxiliary material tray; the feeding support is fixed on the support, the main tray is fixed at one end of the top of the feeding support, and the auxiliary tray is fixed at the other end of the top of the feeding support; the pointer flow channel is fixed in the middle of the discharging support; the plurality of pointers C are arranged in sequence, the adjacent pointers C form a material belt through the connecting part, and a material disc formed by the material belt enters the material cutting mechanism through the main material disc, the auxiliary material disc and the pointer flow channel.
Preferably, the feeding component 33 is provided with a feeding base, a feeding support, a feeding transverse plate, a feeding electric push rod, a feeding vertical plate, a feeding cylinder and a feeding suction head; the base is fixed on the rack, the feeding support is fixed on one side of the upper part of the feeding base, and the feeding transverse plate is fixed on the top of the feeding support; the feeding electric push rod is fixed at the lower part of the feeding transverse plate; the output end of the feeding electric push rod is fixedly connected with one side surface of the feeding vertical plate, so that the feeding vertical plate horizontally slides on the feeding transverse plate;
and the two sides of the feeding vertical plate are fixedly provided with the feeding air cylinders, and the output ends of the feeding air cylinders drive the feeding suction heads to move up and down.
Preferably, the material cutting mechanism is provided with a material conveying device 31 and a material cutting device 32; the material cutting device 32 is fixed on the other side of the upper part of the feeding base, and the material conveying device 31 is fixedly connected with the material cutting device 32, so that the hour hand is conveyed from the output end of the material conveying device 31 to the receiving end of the material cutting device 32;
the material conveying device 31 is provided with a material conveying bottom plate 311, a material conveying pressing plate 312, a transmission assembly 313 and a hole opening device for positioning and punching the material belt; the material conveying bottom plate 311 is arranged at the bottom of the material conveying pressing plate 312, and a material belt gap is formed between the material conveying bottom plate and the material conveying pressing plate; the transmission component 313 is arranged at the initial end of the material transmission bottom plate 311;
the surface of the material conveying pressing plate 312 is provided with a hole gap;
the hole forming device is provided with a hole forming base, a horizontal sliding table cylinder 314, a vertical sliding table cylinder and a punching plate 315; the trompil base is fixed pass the upper surface of material bottom plate 311, horizontal slip table cylinder 314 is installed the surface of trompil base, horizontal slip table cylinder 314 drives perpendicular slip table cylinder horizontal migration, perpendicular slip table cylinder drives the board 315 that punches reciprocates perpendicularly, be fixed with the perforating needle on the board 315 that punches.
Preferably, the blanking device 32 is provided with a blanking bracket, a blanking power assembly, a blanking platform 322 and a blanking assembly; the blanking bracket is arranged at the upper part of the feeding base; the blanking power assembly is arranged in the blanking bracket, and the blanking platform 322 is fixed at the top of the blanking bracket and is parallel to the upper surface of the material conveying bottom plate 311; the blanking assembly is fixed in the blanking platform 322; the material cutting power assembly drives the material cutting assembly to move up and down in the material cutting platform 322, so that the single pointer C in the material belt is separated;
the blanking platform 322 is provided with a blanking press plate, and the blanking press plate and the blanking platform have a material passing gap; the bearing end of the material passing gap is jointed and communicated with the output end of the material conveying device 31;
the material cutting power assembly is provided with a material cutting air cylinder 321, an operation block 326, a rolling bearing 328 and a connecting rod 329; the output end of the material cutting cylinder 321 passes through one side wall of the material cutting bracket and is fixedly connected with one end of the running block 326;
one side surface of the operation block 326 is provided with a curved channel 327, the rolling bearing 328 rolls in the channel 327, one end of the connecting rod 329 is fixedly connected with an inner shaft of the rolling bearing 328, and the other end of the connecting rod 329 is fixedly connected with the blanking assembly.
Preferably, the blanking assembly is provided with a jacking assembly and a pressing assembly; the jacking assembly is arranged in a groove of the blanking platform 322, and the pressing assembly is arranged in the blanking platform 322;
the jacking assembly is provided with a mounting cylinder 323 and a stop block 3231; the output end of the mounting cylinder 323 is fixedly connected with the extending end of the middle part of the stop block 3231; protrusions are arranged at two ends of the stop block 3231;
the pressing component is provided with a connecting block 325, two ends of the connecting block 325 are respectively fixedly connected with one ends of two guide pillars, the other ends of the two guide pillars penetrate through the blanking platform 322 and are respectively fixed at the bottoms of two ends of a fixing block 324, and a cutter 3241 is fixedly arranged on the fixing block 324;
the connecting block 325 is fixedly connected with the other end of the connecting rod 329.
Preferably, the second hand fixing device 5 is provided with a nut feeding assembly and a second hand fixing assembly 41; the timing second hand assembly 41 has the same structure as the timing hand device 3 and the timing minute hand device 4; the nut feeding assembly is arranged on one side of the seconds setting needle assembly 41;
the nut feeding assembly is provided with a nut vibrating disc 420, a nut conveying track, a picking support, a picking sliding table cylinder 422, a picking vertical cylinder 423 and a nut sucker 424; one end of the nut conveying track is communicated with a vibration outlet of the nut vibration disc 420, and the nut sucker 424 sucks the nut E at the other end of the nut conveying track and places the nut E into a mounting hole of a second hand;
the picking sliding table cylinder 422 is horizontally arranged at the top of the picking support, and the picking sliding table cylinder 422 drives the picking vertical cylinder 423 to horizontally move; the pick-up vertical cylinder 423 moves the nut nozzle 424 up and down.
The discharging device 6 is provided with a discharging bracket, a discharging sliding table cylinder 51, a discharging rotary cylinder 52, an adsorption strip 53 and a conveying belt; the discharge support is arranged on the support, the discharge sliding table air cylinder 51 is arranged on the discharge support, the discharge sliding table air cylinder 51 drives the discharge rotating air cylinder 52 to move up and down, and the discharge rotating air cylinder 52 drives the adsorption strip 53 to rotate horizontally in a circumferential direction; the adsorption strip 53 is provided with a plurality of suction nozzles.
And a grating sensor 7 is arranged between the prepressing device 2 and the discharging device 6.
Compared with the prior art, the automatic assembling machine has the beneficial effects that by adopting the scheme, the pre-pressing, the material cutting of the pointer C, the hour hand, the minute hand and the second hand are placed on the machine core A, the key core assembly of the machine core shell, the machine core A, the hour hand, the minute hand and the second hand is formed, the bottom shell and the core assembly are placed on the conveying belt, and the later-stage assembly is carried out manually or mechanically, so that the assembly efficiency is improved, the labor cost is reduced, and the quality of the assembled product is ensured.
Drawings
For a clearer explanation of the embodiments or technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for a person skilled in the art that other drawings can be obtained from the drawings without creative efforts.
FIG. 1 is a general schematic of the structure of the present invention;
FIG. 2 is a schematic structural view of a pre-pressing device according to the present invention;
FIG. 3 is a schematic structural diagram of a material transfer device according to the present invention;
FIG. 4 is a schematic structural view of a timing pin device according to the present invention;
FIG. 5 is a schematic front view of the blanking device of the present invention;
FIG. 6 is a schematic view of the reverse structure of the blanking device of the present invention;
FIG. 7 is a schematic view of the cutting power assembly of the present invention;
FIG. 8 is a schematic view of the second hand device according to the present invention;
FIG. 9 is a schematic view of the discharge device of the present invention;
fig. 10 is a schematic view of the movement of the present invention;
figure 11 is a schematic view of the cartridge and cartridge housing assembly of the present invention;
FIG. 12 is a schematic view of the combination of the hour hand and the nut of the present invention;
FIG. 13 is a schematic structural diagram of the outer casing of the present invention;
as shown in the above legend: an index plate 1, a prepressing device 2, a timing hand device 3, a timing minute hand device 4, a timing second hand device 5, a discharge device 6, a grating sensor 7, a shell placing position 1, a machine core placing position 12, a prepressing cylinder 21, a prepressing piece 22, a material conveying device 31, a material cutting device 32, a feeding component 33, a material conveying bottom plate 311, a material conveying pressing plate 312, a transmission component 313, a horizontal sliding table cylinder 314, a punching plate 315, a material cutting cylinder 321, a material cutting platform 322 and an installation cylinder 323, the device comprises a stop block 3231, a fixed block 324, a cutter 3241, a connecting block 325, an operation block 326, a channel 327, a rolling bearing 328, a connecting rod 329, a fixed second hand assembly 41, a nut vibrating disk 420, a pickup sliding table cylinder 422, a pickup vertical cylinder 423, a nut suction head 424, a discharge sliding table cylinder 51, a discharge rotating cylinder 52, a suction strip 53, a movement A, a movement shell B, a pointer C, a positioning hole D, a nut E and an outer shell F.
Detailed Description
In order to facilitate an understanding of the invention, the invention is described in more detail below with reference to the accompanying drawings and specific examples. Preferred embodiments of the present invention are shown in the drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The use of the terms "fixed," "integrally formed," "left," "right," and the like in this specification is for illustrative purposes only, and elements having similar structures are designated by the same reference numerals in the figures.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
As shown in fig. 1-13, one embodiment of the present invention is:
firstly, a mechanical arm or a worker simultaneously puts the outer shell F and the movement A into a shell placing position 11 and a movement placing position 12 through the grating sensor 7 (because the movement A shell is directly placed on the movement A, but is not firmly combined); when the index plate 1 rotates to the prepressing device 2, the prepressing cylinder 21 presses the core A shell downwards through the prepressing piece 22, so that the core A is clamped into the core A shell;
when the dividing disc 1 rotates to the timing needle device 3, the transmission component 313 rotates to drive the material belt to pass through a material belt gap formed between the material conveying bottom plate 311 and the material conveying pressing plate 312 from the main material disc, the auxiliary material disc and the pointer C flow channel; when the material belt reaches the hole-forming gap, the hole-forming device realizes horizontal and vertical displacement through the horizontal sliding table cylinder 314 and the vertical sliding table cylinder, so that the hole is formed on the hole-forming plate 315 by driving the hole to form a hole at the preset position of the pointer C on the material belt;
when the material belt moves to the upper cutter 3241 of the material cutting platform 322, the material cutting cylinder 321 drives the operation block 326 to move horizontally, the other end of the connecting rod 329 is connected with the connecting block 325, when the operation block 326 moves horizontally, the rolling bearing 328 moves in the channel 327, the rolling bearing drives the guide post through the connecting rod 329 to lift the fixing block 324, the fixing block 324 cuts and separates the pointer C of the material belt, and meanwhile, when the feeding electric push rod pushes the feeding cylinder to move to the hole of the pointer C, the feeding cylinder pushes the feeding suction head to move downwards to adsorb the pointer C and move to the installation position of the movement A; and (5) carrying out the next procedure, and carrying out minute hand installation through the minute hand setting device 4, wherein the working principle is consistent with that of an hour hand.
When the index plate 1 reaches the second hand setting device 5, the nut E is put in the opening of the second hand C, and the nut E and the second hand are put in the second hand placing position of the movement a.
When the index plate 1 rotates to the discharging device 6, the discharging sliding table cylinder 51 lifts the discharging rotary cylinder 52, the discharging rotary cylinder 52 rotates to enable the adsorption strip 53 to move onto the index plate 1, the assembled movement A assembly and the outer shell F are adsorbed through the suction nozzle on the adsorption strip 53, and the assembly and the outer shell F rotate and move onto the conveying belt to flow into the next process.
Compared with the prior art, the invention has the beneficial effects that by adopting the scheme, the invention improves the assembly efficiency, reduces the labor cost and ensures the quality of the assembled product by pre-pressing, cutting the pointer, placing the hour hand, the minute hand and the second hand on the machine core, forming key core assembly by the dial plate, the machine core, the hour hand, the minute hand and the second hand, placing the bottom shell and the core assembly on the conveying belt and carrying out later-stage assembly manually or mechanically.
The technical features mentioned above are combined with each other to form various embodiments which are not listed above, and all of them are regarded as the scope of the present invention described in the specification; also, modifications and variations may be suggested to those skilled in the art in light of the above teachings, and it is intended to cover all such modifications and variations as fall within the true spirit and scope of the invention as defined by the appended claims.

Claims (10)

1. The clock assembling equipment is provided with a support, and the upper surface of the support is provided with an index plate; the outer edge of the index plate is provided with a movement placing position matched with the bottom shell placing position; the outer side of the index plate is sequentially provided with a prepressing device for pressing the machine core into the dial, a timing hand device for putting a timing hand into the machine core, a fixed minute hand device for putting a fixed minute hand into the machine core, a fixed second hand device for putting a fixed second hand into the machine core and fixing the fixed second hand in the machine core through a screw cap, and a discharge device for simultaneously adsorbing the watch cover and the dial component and placing the watch cover and the dial component on a conveyor belt;
the prepressing device, the timing needle device, the fixed minute needle device, the fixed second needle device, the combining device and the discharging device are all fixed on the upper surface of the bracket.
2. The timepiece assembling device according to claim 1, wherein the pre-pressing means pre-presses the holder, the pre-pressing cylinder, and the pre-pressing member; the prepressing support is fixed on the support, the prepressing cylinder is vertically installed on the prepressing support, the movable end of the prepressing cylinder extends towards the upper surface of the support and is fixedly connected with one end of the prepressing piece, and the prepressing piece is pressed down to press the machine core and the machine core shell.
3. The timepiece assembly device according to claim 1, wherein the chronograph pin mechanism is provided with a discharge member, a blanking mechanism, and a feed member, all of which are fixed to the holder; the discharging assembly is provided with a discharging support, a pointer flow channel, a main material tray and an auxiliary material tray; the feeding support is fixed on the support, the main tray is fixed at one end of the top of the feeding support, and the auxiliary tray is fixed at the other end of the top of the feeding support; the pointer flow channel is fixed in the middle of the discharging support; the plurality of pointers are arranged in sequence, the two adjacent pointers form a material belt through a connecting part, and a material disc formed by the material belt enters the material cutting mechanism through the main material disc, the auxiliary material disc and the pointer flow channel.
4. The timepiece assembly device according to claim 3, wherein the feed assembly is provided with a feed base, a feed bracket, a feed cross plate, a feed electric push rod, a feed vertical plate, a feed cylinder, and a feed suction head; the base is fixed on the rack, the feeding support is fixed on one side of the upper part of the feeding base, and the feeding transverse plate is fixed on the top of the feeding support; the feeding electric push rod is fixed at the lower part of the feeding transverse plate; the output end of the feeding electric push rod is fixedly connected with one side surface of the feeding vertical plate, so that the feeding vertical plate horizontally slides on the feeding transverse plate;
and the two sides of the feeding vertical plate are fixedly provided with the feeding air cylinders, and the output ends of the feeding air cylinders drive the feeding suction heads to move up and down.
5. The timepiece assembly device according to claim 4, wherein the blanking mechanism is provided with a transfer device and a blanking device; the material conveying device is fixedly connected with the material cutting device, so that the hour hand is conveyed from the output end of the material conveying device to the receiving end of the material cutting device;
the material conveying device is provided with a material conveying bottom plate, a material conveying pressing plate, a transmission assembly and a hole forming device for positioning and punching the material belt; the material conveying bottom plate is arranged at the bottom of the material conveying pressing plate, and a material belt gap is formed between the material conveying bottom plate and the material conveying pressing plate; the transmission assembly is arranged at the starting end of the material transmission bottom plate; the transmission assembly is provided with a motor and a rolling shaft, and the motor drives the rolling shaft to rotate so as to enable the material belt to move forwards;
the surface of the material conveying pressing plate is provided with a hole gap;
the hole drilling device is provided with a hole drilling base, a horizontal sliding table cylinder, a vertical sliding table cylinder and a punching plate; the punching machine is characterized in that the punching base is fixed on the upper surface of the material conveying bottom plate, the horizontal sliding table cylinder is installed on the surface of the punching base, the horizontal sliding table cylinder drives the vertical sliding table cylinder to move horizontally, the vertical sliding table cylinder drives the punching plate to vertically move up and down, and punching needles are fixed on the punching plate.
6. The timepiece assembly device of claim 5 wherein the blanking device is provided with a blanking support, a blanking power assembly, a blanking platform and a blanking assembly; the blanking bracket is arranged at the upper part of the feeding base; the material cutting power assembly is installed in the material cutting support, and the material cutting platform is fixed at the top of the material cutting support and is parallel to the upper surface of the material conveying bottom plate; the cutting assembly is fixed in the cutting platform; the material cutting power assembly drives the material cutting assembly to move up and down in the material cutting platform, so that the single pointers in the material belt are separated;
the blanking platform is provided with a blanking press plate, and the blanking press plate and the blanking platform are provided with a material passing gap; the bearing end of the material passing gap is jointed and communicated with the output end of the material conveying device;
the material cutting power assembly is provided with a material cutting cylinder, an operation block, a rolling bearing and a connecting rod; the output end of the material cutting air cylinder penetrates through one side wall of the material cutting support and is fixedly connected with one end of the running block;
and a curved channel is arranged on one side surface of the operation block, the rolling bearing rolls in the channel, one end of the connecting rod is fixedly connected with an inner shaft of the rolling bearing, and the other end of the connecting rod is fixedly connected with the blanking assembly.
7. The timepiece assembly device of claim 6 wherein the blank assembly is provided with a jacking assembly and a hold-down assembly; the jacking assembly is arranged in a groove of the blanking platform, and the pressing assembly is arranged in the blanking platform;
the jacking assembly is provided with a mounting cylinder and a stop block; the output end of the mounting cylinder is fixedly connected with the extending end of the middle part of the stop block; the two ends of the stop block are provided with bulges;
the pressing assembly is provided with a connecting block, two ends of the connecting block are fixedly connected with one ends of two guide pillars respectively, the other ends of the two guide pillars penetrate through the blanking platform and are fixed at the bottoms of two ends of a fixing block respectively, and a cutter is fixedly arranged on the fixing block;
the connecting block is fixedly connected with the other end of the connecting rod.
8. The timepiece assembly device according to claim 7, wherein the chronograph hand device is provided with a nut feeding assembly and a chronograph hand assembly; the structure of the second hand fixing component is the same as that of the second hand fixing device and the second hand fixing device; the nut feeding assembly is arranged on one side of the second fixing needle assembly;
the nut feeding assembly is provided with a nut vibrating disc, a nut conveying track, a picking support, a picking sliding table cylinder, a picking vertical cylinder and a nut sucker; one end of the nut conveying rail is communicated with a vibration outlet of the nut vibration disc, and the nut suction head adsorbs and places the nut at the other end of the nut conveying rail into an installation hole of the second hand;
the picking sliding table cylinder is horizontally arranged at the top of the picking support and drives the picking vertical cylinder to horizontally move; the picking vertical cylinder drives the nut sucker to move up and down.
9. The timepiece assembling device according to claim 1, wherein the ejector is provided with an ejector holder, an ejector slide cylinder, an ejector rotation cylinder, an adsorption bar, and a conveyor belt; the discharge support is arranged on the support, the discharge sliding table cylinder is arranged on the discharge support, the discharge sliding table cylinder drives the discharge rotating cylinder to move up and down, and the discharge rotating cylinder drives the adsorption strip to rotate horizontally in a circumferential manner; the adsorption strip is provided with a plurality of suction nozzles.
10. The timepiece assembly device according to claim 1, wherein a grating sensor is provided between the pre-pressing means and the ejector means.
CN201911314739.9A 2019-12-19 2019-12-19 Timepiece assembly device Active CN110928171B (en)

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CN110928171B CN110928171B (en) 2020-10-13

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Publication number Priority date Publication date Assignee Title
CN112180709A (en) * 2020-09-29 2021-01-05 深圳市深科达智能装备股份有限公司 Automatic laminating equipment of lid behind smart meter
CN112684692A (en) * 2020-12-25 2021-04-20 浙江卓越电子有限公司 Mounting system for a watch hand

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CN209525568U (en) * 2019-02-25 2019-10-22 深圳市协鼎兴自动化设备有限公司 A kind of full-automatic assembly three needle machine of clock and watch
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GB713252A (en) * 1951-03-09 1954-08-11 Samuel Du Gal Improvements in machines for cleaning watch and like small machine parts
US4028967A (en) * 1976-03-30 1977-06-14 Fried Henry B Watch jeweling tool
CN201442166U (en) * 2009-07-25 2010-04-28 锦州华一汽车部件有限公司 Automobile starter stator packing press
CN105215675A (en) * 2015-09-30 2016-01-06 东莞市典航自动化设备科技有限公司 Full automatic watch hat mounting equipment
CN207630128U (en) * 2017-11-21 2018-07-20 东莞艾锐精密金属制品科技有限公司 One Seed packaged band cutting means
CN107976894A (en) * 2017-12-23 2018-05-01 珠海朗宇自动化设备有限公司 A kind of watchcase automatic assembling machine
CN109521665A (en) * 2018-12-26 2019-03-26 厦门理工学院 A kind of casing for clock and watch automatic assembling and hold-down mechanism
CN209525568U (en) * 2019-02-25 2019-10-22 深圳市协鼎兴自动化设备有限公司 A kind of full-automatic assembly three needle machine of clock and watch
CN209590565U (en) * 2019-05-15 2019-11-05 刘旭 A kind of novel quick nondestructive watch hand installation equipment

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112180709A (en) * 2020-09-29 2021-01-05 深圳市深科达智能装备股份有限公司 Automatic laminating equipment of lid behind smart meter
CN112180709B (en) * 2020-09-29 2022-05-13 深圳市深科达智能装备股份有限公司 Automatic laminating equipment of lid behind smart meter
CN112684692A (en) * 2020-12-25 2021-04-20 浙江卓越电子有限公司 Mounting system for a watch hand

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