CN204585330U - The Wave crest and wave trough testing agency of corrugated pipe cut-off machine - Google Patents
The Wave crest and wave trough testing agency of corrugated pipe cut-off machine Download PDFInfo
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- CN204585330U CN204585330U CN201520048924.9U CN201520048924U CN204585330U CN 204585330 U CN204585330 U CN 204585330U CN 201520048924 U CN201520048924 U CN 201520048924U CN 204585330 U CN204585330 U CN 204585330U
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- corrugated pipe
- wave
- pipe cut
- testing agency
- wave crest
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Abstract
The utility model relates to a kind of pipe fitting cutting equipment, particularly relate to a kind of Wave crest and wave trough testing agency of corrugated pipe cut-off machine, comprise pedestal, photoelectric testing sensor, the adjustable plate of fixing described photoelectric testing sensor, drive described adjustable plate relative to the spindle gear of described pedestal movement, described spindle gear is arranged on described pedestal, the positional dissection that the utility model is corrugated pipe cut-off machine provides reliable guarantee, the position of photoelectric testing sensor can be regulated according to the external diameter of bellows, transmission device is made up of screw mandrel, transmission accuracy is high, regulate very convenient.
Description
Technical field
The utility model relates to a kind of pipe fitting cutting equipment, particularly relates to a kind of Wave crest and wave trough testing agency of corrugated pipe cut-off machine.
Background technology
The tubing of bellows to be a kind of profile be regular wave, common plastic film capicitor is generally applied to the fields such as automotive wire bundle, electronics, mechanical wire harness, is a kind of purposes wire harness sheath product widely.In bellows process, it is needed to cut into certain length as required, traditional bellows cutting mode is that pipe fitting is delivered to cutting tool place and cuts off by staff, rocking of pipe fitting is easily caused to cause cutting inaccurate by manually cutting off pipe fitting, cutting efficiency is lower simultaneously, therefore market has occurred replacing the artificial corrugated pipe cut-off machine cut off, drastically increase the stability of working (machining) efficiency and processed finished products quality, reduce hand labor intensity, have appreciable market prospects.
Existing ripple pipe cut-off apparatus great majority do not possess the checkout gear of Wave crest and wave trough, and therefore the usual optional position at bellows cuts off, otch sometimes at crest sometimes at trough.
Because above-mentioned defect, the design people, actively in addition research and innovation, to founding a kind of Wave crest and wave trough testing agency of corrugated pipe cut-off machine, make it have more value in industry.
Utility model content
For solving the problems of the technologies described above, the purpose of this utility model is to provide a kind of Wave crest and wave trough testing agency of corrugated pipe cut-off machine, the Wave crest and wave trough of bellows accurately can be detected, its position can also be regulated according to the external diameter of bellows simultaneously, corrugated pipe cut-off machine is located accurately to bellows, then cuts off.
The Wave crest and wave trough testing agency of a kind of corrugated pipe cut-off machine that the utility model proposes, comprise pedestal, photoelectric testing sensor, fixing described photoelectric testing sensor adjustable plate, drive described adjustable plate relative to the spindle gear of described pedestal movement, described spindle gear is arranged on described pedestal.
Further, described spindle gear comprises screw mandrel, the elevator of the motor driving described screw mandrel to rotate, fixing described adjustable plate, and described elevator is connected with described wire rod thread.
Further, described spindle gear also comprises the driving wheel be fixedly connected with the output shaft of described motor, the driven pulley be fixedly connected with described screw mandrel, and described driving wheel is connected by belt with described driven pulley.
Further, the outer circumference surface of described driving wheel and driven pulley is provided with the gear teeth, and the inner surface of described belt is provided with the intermeshing gear teeth of the gear teeth with described driving wheel and driven pulley outer circumference surface.
Further, the both sides of described screw mandrel are respectively equipped with the guide pillar be fixed on pedestal, and described guide pillar is connected by guide pin bushing with described elevator.
Further, described motor is by controller control action, described controller reading numerical values can be encoded and store the information that described numeric coding comprises, described numeric coding incorporates model and the machined parameters information of processed pipe fitting, described controller is according to the information of the numeric coding of reading, and the rotation number of turns controlling motor controls the stroke of screw mandrel.
Further, described photoelectric testing sensor comprises the top that is fixed on described adjustable plate and extends two adjutages from top downwards, and the madial wall of one of them adjutage is provided with light source launch point, and the madial wall of another adjutage is provided with light source acceptance point.
By such scheme, the utility model at least has the following advantages: can the utility model connect the crest and wave trough position that judge bellows by the light that photoelectric testing sensor sends, its judgment mode is accurate, for the positional dissection of corrugated pipe cut-off machine provides reliable guarantee, the position of photoelectric testing sensor can be regulated according to the external diameter of bellows, transmission device is made up of screw mandrel, and transmission accuracy is high, regulates very convenient.
Above-mentioned explanation is only the general introduction of technical solutions of the utility model, in order to better understand technological means of the present utility model, and can be implemented according to the content of description, coordinates accompanying drawing to be described in detail as follows below with preferred embodiment of the present utility model.
Accompanying drawing explanation
Fig. 1 is the structural representation being provided with corrugated pipe cut-off machine of the present utility model;
Fig. 2 is structural representation of the present utility model.
Detailed description of the invention
Below in conjunction with drawings and Examples, detailed description of the invention of the present utility model is described in further detail.Following examples for illustration of the utility model, but are not used for limiting scope of the present utility model.
See Fig. 1, a kind of corrugated pipe cut-off machine being provided with Wave crest and wave trough testing agency 3, comprise pedestal 1, the conveying mechanism 2 be successively set on pedestal 1, Wave crest and wave trough testing agency 3 and cutting mechanism 4, conveying mechanism 2 is connected mutually with cutting mechanism 4, Wave crest and wave trough testing agency 3 is arranged on the discharge end of conveying mechanism 2, for feeding back Wave crest and wave trough information, ensureing that cutting mechanism 4 is located accurately, then cutting off.Pedestal 1 is provided with the first fixed head 5 and the second fixed head 6 one in front and one in back vertically arranged, the top of the second fixed head 6 is connected with the first fixed head 5 by horizontally disposed 3rd fixed head 7, the rear end face of the 3rd fixed head 7 is connected with the 4th fixed head 8 vertically arranged, and the top of the 4th fixed head 8 is connected with horizontally disposed 5th fixed head 9, the 6th fixed head 10.
See Fig. 2, the Wave crest and wave trough testing agency 3 of the corrugated pipe cut-off machine described in the utility model embodiment, comprises the photoelectric testing sensor 11 being arranged on conveying mechanism 2 discharge end, fixing photoelectric testing sensor 11 and the adjustable plate 12 that can move up and down, the spindle gear that drives adjustable plate 12 to move.
Conveying mechanism 2 carries the upper surface material through hole part 13 of pipe fitting to be provided with a radial groove 131 to cutting mechanism 4, for the Wave crest and wave trough of exposed conveying bellows so far, photoelectric testing sensor 11 extends two adjutages 14 downwards and forms an inverted U-shaped and the top being plugged in radial groove 131 from top, the position of the corresponding radial groove 131 of madial wall of one of them adjutage 14 is provided with light source launch point, accordingly, the madial wall of another adjutage 14 is provided with light source acceptance point.The light that light source launch point sends in case of the wave trough position of bellows then light connect, in case of crest location then light source be blocked.
According to the external diameter of bellows, need the position of up-down adjustment photoelectric testing sensor 11, photoelectric testing sensor 11 is fixed on adjustable plate 12, and adjustable plate 12 drives it to move by spindle gear.Spindle gear comprises the ball screw 15 be vertically arranged between the 3rd fixed head 7 and the 5th fixed head 9, ball screw 15 drives it to rotate by motor 16, motor 16 is arranged on the lower surface of the 6th fixed head 10, the output shaft of motor 16 is fixedly connected with driving wheel 17, driving wheel 17 is arranged on the upper surface of the 6th fixed head 10, ball screw 15 is fixedly connected with driven pulley 18, driven pulley 18 is arranged on the upper surface of the 5th fixed head 9, driving wheel 17 is connected by belt with driven pulley 18, the outer circumference surface of driving wheel 17 and driven pulley 18 is provided with the gear teeth, the inner surface of belt is also provided with the intermeshing gear teeth of the gear teeth with driving wheel 17 and driven pulley 18, to prevent from skidding in transmission process.Ball screw 15 is provided with the elevator 19 be threaded with it, and the both sides of ball screw 15 are respectively equipped with guide pillar 20, and elevator 19 is connected by guide pin bushing (not shown) with guide pillar 20, and elevator 19 is fixedly connected with adjustable plate 12.Motor 16 drives driving wheel 17 to rotate to drive driven pulley 18 to rotate and then drive ball screw 15 to rotate to drive elevator 19 to move up and down, and realizes the adjustment of adjustable plate 12 upper-lower position.In other embodiments, also elevator 19 can be fixedly connected with ball screw 15, ball screw 15 arranges the screw be threaded with it, screw is arranged on the upper surface of the 5th fixed head 9 and it is connected with driving wheel 17 by belt, motor 16 drives driving wheel 17 to rotate to drive screw to rotate and then drive ball screw 15 to move up and down to drive elevator 19 to move up and down, and realizes the adjustment of the upper-lower position of adjustable plate 12.
The motor 16 of Wave crest and wave trough testing agency 3 is by controller control action, the model of the bellows of each type and machining information are compiled into the numeric coding of a group 14 by staff, this numeric coding can manually input control device or the form being made into bar code by scanner scanning t test controller, by obtaining the model of bellows and machining information after converting and being stored in controller, controller controls the stroke of ball screw 15 by these information, without the need to manual adjustments, save debug time, improve operating efficiency, as small adjustment need be done, can adjust at the fine setting interface of controller, parameter after adjustment also can be preserved, and form new processing encode with the parameter integration read, can directly call during processing this kind of bellows next time, adjust without the need to secondary.In addition, containing 2 bit flag check bit in this 14 bit value coding, when manually inputting, if any input error, controller can jump out code error alert interface, reminds operating personnel to input wrong, reduces because operating personnel manually input the loss of slipping up and causing.According to the external diameter of bellows, controller controls the stroke of ball screw 15 by the rotation number of turns controlling motor 16, realizes the adjustment of adjustable plate 12 upper-lower position, this mechanism design is reasonable, structure is simple, and regulates precisely, expands the scope of application of this corrugated pipe cut-off machine.
Photoelectric testing sensor 11 is connected with controller, and by the Wave crest and wave trough information feed back of bellows to after controller, controller controls cutting structure and cuts off at crest location, if needed, also can control cutting mechanism 4 and cut off in wave trough position.
In sum, the Wave crest and wave trough testing agency 3 of this corrugated pipe cut-off machine adopts the crest of photoelectric testing sensor 11 pairs of bellowss and trough to detect, so that cutting mechanism 4 cuts off at predeterminated position, cutting position is controlled, makes the product obtained have more practicality; The varying height positions of photoelectric testing sensor 11, to adapt to the detection of the Wave crest and wave trough position of various outer diameter bellows, transmission device is made up of ball screw 15, and transmission accuracy is high; Stepper motor 16 or servomotor 16 can be used highly to carry out accurate low location to detection, highly easy to adjust, height parameter can memory storage in controller, conveniently call, realize parametric control.
The above is only preferred embodiment of the present utility model; be not limited to the utility model; should be understood that; for those skilled in the art; under the prerequisite not departing from the utility model know-why; can also make some improvement and modification, these improve and modification also should be considered as protection domain of the present utility model.
Claims (7)
1. the Wave crest and wave trough testing agency of a corrugated pipe cut-off machine, it is characterized in that: comprise pedestal, photoelectric testing sensor, fixing described photoelectric testing sensor adjustable plate, drive described adjustable plate relative to the spindle gear of described pedestal movement, described spindle gear is arranged on described pedestal.
2. the Wave crest and wave trough testing agency of corrugated pipe cut-off machine according to claim 1, it is characterized in that: described spindle gear comprises screw mandrel, the elevator of the motor driving described screw mandrel to rotate, fixing described adjustable plate, and described elevator is connected with described wire rod thread.
3. the Wave crest and wave trough testing agency of corrugated pipe cut-off machine according to claim 2, it is characterized in that: described spindle gear also comprises the driving wheel be fixedly connected with the output shaft of described motor, the driven pulley be fixedly connected with described screw mandrel, and described driving wheel is connected by belt with described driven pulley.
4. the Wave crest and wave trough testing agency of corrugated pipe cut-off machine according to claim 3, it is characterized in that: the outer circumference surface of described driving wheel and driven pulley is provided with the gear teeth, the inner surface of described belt is provided with the intermeshing gear teeth of the gear teeth with described driving wheel and driven pulley outer circumference surface.
5. the Wave crest and wave trough testing agency of corrugated pipe cut-off machine according to claim 2, it is characterized in that: the both sides of described screw mandrel are respectively equipped with the guide pillar be fixed on pedestal, described guide pillar is connected by guide pin bushing with described elevator.
6. the Wave crest and wave trough testing agency of corrugated pipe cut-off machine according to claim 2, it is characterized in that: described motor is by controller control action, described controller reading numerical values can be encoded and store the information that described numeric coding comprises, described numeric coding incorporates model and the machined parameters information of processed pipe fitting, described controller is according to the information of the numeric coding of reading, and the rotation number of turns controlling motor controls the stroke of screw mandrel.
7. the Wave crest and wave trough testing agency of corrugated pipe cut-off machine according to claim 1, it is characterized in that: described photoelectric testing sensor comprises the top that is fixed on described adjustable plate and extends two adjutages from top downwards, the madial wall of one of them adjutage is provided with light source launch point, and the madial wall of another adjutage is provided with light source acceptance point.
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CN201520048924.9U CN204585330U (en) | 2015-01-23 | 2015-01-23 | The Wave crest and wave trough testing agency of corrugated pipe cut-off machine |
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CN201520048924.9U CN204585330U (en) | 2015-01-23 | 2015-01-23 | The Wave crest and wave trough testing agency of corrugated pipe cut-off machine |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104589393A (en) * | 2015-01-23 | 2015-05-06 | 苏州惠斯福自动化科技有限公司 | Crest and trough detection mechanism for corrugated pipe cutting machines |
-
2015
- 2015-01-23 CN CN201520048924.9U patent/CN204585330U/en not_active Withdrawn - After Issue
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104589393A (en) * | 2015-01-23 | 2015-05-06 | 苏州惠斯福自动化科技有限公司 | Crest and trough detection mechanism for corrugated pipe cutting machines |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20150826 Effective date of abandoning: 20160928 |
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C25 | Abandonment of patent right or utility model to avoid double patenting |