CN106438909A - Clutch driving device - Google Patents

Clutch driving device Download PDF

Info

Publication number
CN106438909A
CN106438909A CN201611059617.6A CN201611059617A CN106438909A CN 106438909 A CN106438909 A CN 106438909A CN 201611059617 A CN201611059617 A CN 201611059617A CN 106438909 A CN106438909 A CN 106438909A
Authority
CN
China
Prior art keywords
clutch
mono
coupling portion
directional overrun
shaft coupling
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201611059617.6A
Other languages
Chinese (zh)
Inventor
胡小青
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Suzhou Beitente Electronic Technology Co Ltd
Original Assignee
Suzhou Beitente Electronic Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Suzhou Beitente Electronic Technology Co Ltd filed Critical Suzhou Beitente Electronic Technology Co Ltd
Priority to CN201611059617.6A priority Critical patent/CN106438909A/en
Publication of CN106438909A publication Critical patent/CN106438909A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H37/00Combinations of mechanical gearings, not provided for in groups F16H1/00 - F16H35/00
    • F16H37/02Combinations of mechanical gearings, not provided for in groups F16H1/00 - F16H35/00 comprising essentially only toothed or friction gearings
    • F16H37/06Combinations of mechanical gearings, not provided for in groups F16H1/00 - F16H35/00 comprising essentially only toothed or friction gearings with a plurality of driving or driven shafts; with arrangements for dividing torque between two or more intermediate shafts
    • F16H37/065Combinations of mechanical gearings, not provided for in groups F16H1/00 - F16H35/00 comprising essentially only toothed or friction gearings with a plurality of driving or driven shafts; with arrangements for dividing torque between two or more intermediate shafts with a plurality of driving or driven shafts

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transmission Devices (AREA)

Abstract

The invention discloses a clutch driving device. The clutch driving device comprises a driving motor and a clutch transmission mechanism; the clutch transmission mechanism comprises a frame body, a worm, a belt pulley, a turbine, a first one-way overrun clutch, a first transmission shaft, a second one-way overrun clutch and a second transmission shaft, wherein the worm is rotatably installed on the rack, the belt pulley is fixedly installed on the worm, the turbine is matched with the worm; the first one-way overrun clutch and the second one-way overrun clutch are installed on a shaft hole of the turbine; the first transmission shaft is inserted in an installing hole of the first one-way overrun clutch; the second transmission shaft is inserted in an installing hole of the second one-way overrun clutch; lock-up directions of the first one-way overrun clutch and the second one-way overrun clutch are opposite; when the driving motor rotates in the forward direction, the first transmission shaft and a first driving shaft coupling portion are driven to rotate through the first one-way overrun clutch; and when the driving motor rotates in the reversed direction, the second transmission shaft and the second driving shaft coupling portion are driven to rotate through the second one-way overrun clutch. The clutch driving device is compact and reasonable in structure.

Description

Clutch driving unit
Technical field
Present invention relates particularly to a kind of clutch driving unit.
Background technology
Be traditionally used at present storing the logistics warehouse of granular material, be for example used for storing plastic pellet, feed granules, The warehouse of the granular materials such as paddy rice, rice, soybean, corn, mostly adopts monolithic design, can only store a kind of material simultaneously, Single function.Also there is fraction of stream warehouse to adopt catamaran design, but but adopt two sets of single device for discharging dischargings, lead to account for Larger, the relatively costly shortcoming in ground.In addition, at present the level of IT application in traditional warehouse relatively low it is impossible to storing in warehouse especially It is that deep layer storing is effectively and timely detected and monitored, lead to evils to find slow, regulation is difficult.If designing a kind of clutch to drive Dynamic device, motor passes through its a set of device for discharging of forward and reverse respective drive, you can overcome disadvantages mentioned above.Existing clutch drives Device is a lot, cuts both ways, and how to design one kind and takes up room less, load is larger, reliable and stable, and lower-cost clutch is driven Dynamic device has just become an important problem.
Content of the invention
Less, the lower-cost clutch driving unit it is an object of the invention to provide one kind takes up room.
The technical scheme realizing the object of the invention is:A kind of clutch driving unit, including motor and clutch transmission machine Structure;Clutch transmission includes support body, the worm screw being rotatably arranged on support body, the belt pulley being fixedly installed on worm screw and snail The turbine of bar adaptation, the first mono-directional overrun clutch, the first power transmission shaft, the second mono-directional overrun clutch, second driving shaft;Turbine Shaft hole inner wall be provided with the first mounting groove and the second mounting groove, the first mono-directional overrun clutch is arranged in the first mounting groove, Second mono-directional overrun clutch is arranged in the second mounting groove;One end of first power transmission shaft is plugged in the first mono-directional overrun clutch Installing hole in, the other end of the first power transmission shaft is provided with the first active shaft coupling portion with the first driven shaft coupling portion adaptation;Second biography One end of moving axis is plugged in the installing hole of the second mono-directional overrun clutch, and the other end of second driving shaft is provided with driven with second Second active shaft coupling portion of shaft coupling portion adaptation;The locking direction phase of the first mono-directional overrun clutch and the second mono-directional overrun clutch Instead;First mono-directional overrun clutch and the second mono-directional overrun clutch all include being provided with the ring support of installing hole, are arranged on ring support Multiple breach, the roller that is arranged in each breach and be arranged on multiple on ring support for providing reseting elasticity for roller Elastic component;Each breach has vertical wall and skew wall;The central axis of each vertical wall place plane and ring support is coplanar, each skew wall perpendicular to Its vertical wall being connected;When motor drives belt pulley to rotate forward, worm screw drives turbine to rotate forward, and it is single that turbine passes through first The first power transmission shaft and the first active shaft coupling portion is driven to rotate to freewheel clutch;When motor drives belt pulley to rotate backward, Worm screw drives turbine to rotate backward, and turbine passes through the second mono-directional overrun clutch and drives second driving shaft and the second active shaft coupling portion Rotate.
In such scheme, each elastic component includes cylinder base, thimble, the spring for thimble offer reseting elasticity and tail-hood.
In such scheme, thimble has sliding pin portion and anticreep plate portion;Cylinder base has cylinder and is located at the spacing of cylinder one end Plate portion, the external diameter of spacing plate portion is more than cylinder external diameter, and the center of spacing plate portion is provided with slide opening, the external diameter of the anticreep plate portion of thimble Aperture more than slide opening;The sliding pin portion of thimble is plugged in slide opening and stretches out cylinder, and the anticreep plate portion of thimble and spring are located at cylinder In body, tail-hood is fixedly installed on the other end of cylinder.
In such scheme, vertical wall is stretched out in the sliding pin portion of each thimble, and top pressure is on a corresponding roller.
In such scheme, each vertical wall is provided with an accommodating hole, and the central axis upright of accommodating hole is in vertical wall;Each elastic component Cylinder base be fixedly installed in a corresponding accommodating hole.
In such scheme, motor is provided with driving wheel, and the belt pulley in driving wheel and clutch transmission passes through skin V belt translation, motor drives belt pulley and worm screw reciprocating rotation.
In such scheme, the cylinder base of each elastic component passes through to be spirally connected or bonding mode is fixed in a corresponding accommodating hole.
In such scheme, the first active shaft coupling portion is fixedly installed on the first power transmission shaft by key pin, the first active shaft coupling Portion is provided with one embedding.
In such scheme, the second active shaft coupling portion is fixedly installed on second driving shaft by key pin.
In such scheme, the second active shaft coupling portion is provided with one embedding.
The present invention has following positive technique effect:(1)The present invention takes up room less, and load is larger, and structure is simple, surely Fixed reliable, cost is relatively low.
Brief description
Fig. 1 is a kind of perspective view of the present invention;
Fig. 2 is a kind of side view that in clutch driving unit shown in Fig. 1, clutch transmission removes after support body;
Fig. 3 is the line A-A sectional view of Fig. 2;
Fig. 4 is a kind of perspective view of the first mono-directional overrun clutch in clutch driving unit shown in Fig. 1;
Fig. 5 is that one kind of the first mono-directional overrun clutch shown in Fig. 4 partly cuts open structural representation;
Fig. 6 is a kind of perspective view of elastic component in the first mono-directional overrun clutch shown in Fig. 4;
Fig. 7 is that one kind of elastic component shown in Fig. 6 partly cuts open structural representation;
Fig. 8 is a kind of explosive view of elastic component shown in Fig. 6;
Fig. 9 is a kind of a kind of structural representation in the binary warehouse made using clutch driving unit shown in Fig. 1;
Figure 10 is a kind of perspective view of device for discharging in binary warehouse shown in Fig. 9;
Figure 11 is a kind of explosive view of device for discharging shown in Fig. 9;
Figure 12 is a kind of structural representation in the second binary warehouse made using clutch driving unit shown in Fig. 1;
Figure 13 is a kind of perspective view of information acquiring instrument in binary warehouse shown in Figure 12;
Figure 14 is a kind of top view of information acquiring instrument shown in Figure 13;
Figure 15 is a kind of explosive view of information acquiring instrument shown in Figure 13;
Figure 16 is a kind of explosive view that information acquiring instrument shown in Figure 13 decomposes further;
Figure 17 is a kind of sectional view of information acquiring instrument shown in Figure 13;
Figure 18 is a kind of sectional view of barrel shell in information acquiring instrument shown in Figure 13;
Figure 19 is to advance in information acquiring instrument shown in Figure 13 to roll a kind of sectional view of pipe.
Specific embodiment
(Embodiment 1, clutch driving unit)
Fig. 1 to Fig. 8 shows a kind of specific embodiment of the present invention.
The present embodiment is a kind of clutch driving unit, and as shown in Fig. 1 to Fig. 8, this clutch driving unit 5 includes motor 7 and clutch transmission 8;Motor is provided with driving wheel 71.Clutch transmission includes support body 81, is rotatably arranged on support body On worm screw 82, the belt pulley 83 being fixedly installed on worm screw be adapted to worm screw turbine 84, the first mono-directional overrun clutch 85th, the first power transmission shaft 86, the second mono-directional overrun clutch 87, second driving shaft 88;Worm screw passes through 89 turns of two roller bearing seats Move and be arranged on support body.
Each roller bearing seat 89 includes the pedestal being fixedly installed on support body, the rolling bearing being arranged in pedestal and is used for End cap in pedestal for the rolling bearing closure.Worm screw is provided with the driving threaded portion with turbine adaptation, drives threaded portion to be located at two Between individual roller bearing seat.
The shaft hole inner wall of turbine 84 is provided with the first mounting groove 841 and the second mounting groove 842, the first mono-directional overrun clutch It is arranged in the first mounting groove, the second mono-directional overrun clutch is arranged in the second mounting groove;One end of first power transmission shaft plugs In the installing hole of the first mono-directional overrun clutch, and be fixedly connected by key pin 100, the other end of the first power transmission shaft be provided with and First active shaft coupling portion 861 of the first driven shaft coupling portion adaptation;In the present embodiment, the first active shaft coupling portion 861 passes through key pin 100 It is fixedly installed on the first power transmission shaft, the first active shaft coupling portion is provided with one embedding.
One end of second driving shaft is plugged in the installing hole of the second mono-directional overrun clutch, and fixing by key pin 100 Connect, the other end of second driving shaft is provided with the second active shaft coupling portion 881 with the second driven shaft coupling portion adaptation;The present embodiment In, the second active shaft coupling portion 881 is fixedly installed on second driving shaft by key pin, the second active shaft coupling portion be provided with one embedding Platform.
The hole wall of the axis hole of belt pulley is circular, and the first mono-directional overrun clutch and the second mono-directional overrun clutch are being in During lockup state, respective roller is locked on the axis hole hole wall of belt pulley.
Belt pulley in the driving wheel and clutch transmission of motor is driven by belt 72, and motor drives skin Belt wheel and worm screw reciprocating rotation.
As shown in Fig. 4 to Fig. 8, the first mono-directional overrun clutch and the second mono-directional overrun clutch all include being provided with installing hole 8511 ring support 851, the multiple breach 852 being arranged on ring support, the roller 853 being arranged in each breach and be arranged on ring support On multiple for for roller provide reseting elasticity elastic components 854;Each breach has vertical wall 8521 and skew wall 8522;Each vertical wall The central axis of place plane and ring support is coplanar, and each skew wall is perpendicular to coupled vertical wall.Second mono-directional overrun clutch Structure is identical with the structure of the first mono-directional overrun clutch.First mono-directional overrun clutch and the lock of the second mono-directional overrun clutch Only in opposite direction.
Each elastic component includes cylinder base 8541, thimble 8542, the spring 8543 for thimble offer reseting elasticity and tail-hood 8544; Thimble has sliding pin portion 85421 and anticreep plate portion 85422;The spacing plate portion that cylinder base has cylinder 85411 and is located at cylinder one end 85412, the external diameter of spacing plate portion is more than cylinder external diameter, and the center of spacing plate portion is provided with slide opening 85413, the anticreep plate portion of thimble External diameter be more than slide opening aperture;The sliding pin portion of thimble is plugged in slide opening and stretches out cylinder, the anticreep plate portion of thimble and spring In cylinder, tail-hood is fixedly installed on the other end of cylinder.
Each vertical wall is provided with an accommodating hole 8523, and the central axis upright of accommodating hole is in vertical wall;The cylinder base of each elastic component It is fixedly installed in a corresponding accommodating hole, for example, pass through to be spirally connected or bonding mode is connected;Vertical wall is stretched out in the sliding pin portion of each thimble, Top pressure is on a corresponding roller.
The course of work of the present embodiment is as follows:When motor drives the belt pulley in clutch transmission to rotate forward, Worm screw drives turbine to rotate forward, and turbine passes through the first mono-directional overrun clutch and drives the first power transmission shaft and the first active shaft coupling portion Rotate;Now because the locking direction of the second mono-directional overrun clutch and the locking of the first mono-directional overrun clutch are in opposite direction, Therefore turbine will not drive second driving shaft to rotate;
When motor drives the belt pulley in clutch transmission to rotate backward, worm screw drives turbine to rotate backward, and turbine leads to Crossing the second mono-directional overrun clutch drives second driving shaft and the second active shaft coupling portion to rotate;Now due to the first mono-directional overrun from The locking of the locking direction of clutch and the second mono-directional overrun clutch is in opposite direction, therefore turbine will not drive the first power transmission shaft to turn Dynamic.
The present embodiment has advantages below:(1)The more compact simplification of present configuration, relatively reasonable in structure a, motor Two drive axis can be operated alone, compare with traditional structure, reduce entirety and take up room, reduce cost, favorably In miniaturization, especially meet carrier and install and use demand.
(Application examples 1, binary warehouse)
Fig. 9 to Figure 11 shows the first concrete application mode of the present invention.
Should use-case be a kind of binary warehouse made using above-described embodiment 1, as shown in Fig. 9 to Figure 11, including binary Warehouse 1 and the device for discharging 2 being arranged on below binary warehouse.
Binary warehouse 1 has the first adjacent warehouse 11 and the second warehouse 12, and the first warehouse and the second warehouse are positioned at same On one straight line;The bottom in the first warehouse is tapered, has the first discharging opening at its bottom centre;The bottom in the second warehouse is also in cone Shape, has the second discharging opening at its bottom centre.In the present embodiment, the bottom in binary warehouse is provided with four daggers 13, binary storehouse Stood on the ground by this four daggers in storehouse.In concrete practice, also shouldn't dagger, but binary warehouse is directly fixed On body of wall or on carrier, for example, the present embodiment is used for united reaper.
Device for discharging 2 includes the first discharge box 3, the second discharge box 4 and the clutch driving unit 5 described in above-described embodiment 1; First discharge box and the second discharge box are respectively positioned at the both sides of clutch driving unit.
First discharge box 3 includes the first casing 31, the first auger 32, the first charging aperture being arranged on the first box top wall 33 and be arranged on the first discharge nozzle 34 on the first casing diapire;First auger includes first rotating shaft 321, is fixed on first turn The first spiral plate 322 on axle and the first driven shaft coupling portion 323 being fixed in first rotating shaft;First rotating shaft is rotatably arranged on On one casing, the body rotation of first rotating shaft is arranged in the first casing, and the first casing is stretched out in one end of first rotating shaft, first from Dynamic shaft coupling portion 323 is fixedly installed on first rotating shaft and stretches out on one end of the first casing;First spiral plate is located in the first casing.
Second discharge box 4 includes the second casing 41, the second auger 42, the second charging aperture being arranged on the second box top wall 43 and be arranged on the second discharge nozzle 44 on the second casing diapire;Second auger includes the second rotating shaft 421, is fixed on second turn Secondary spiral lamina 422 on axle and the second driven shaft coupling portion 423 being fixed in the second rotating shaft;Second axis of rotation is arranged on On two casings, the body rotation of the second rotating shaft is arranged in the second casing, and the second casing is stretched out in one end of the second rotating shaft, second from Dynamic shaft coupling portion is fixedly installed on the second rotating shaft and stretches out on one end of the second casing;Secondary spiral lamina is located in the second casing.
The hand of spiral of the hand of spiral of the first spiral plate and secondary spiral lamina is contrary.First charging aperture and the first warehouse First discharging opening be connected, second charging aperture is connected with second discharging opening in the second warehouse, and the first auger and the second auger pass through Rotation push mode elapses the storing entering respective casing from warehouse.
First active shaft coupling portion and the first driven shaft coupling portion are fixedly linked, and the first power transmission shaft drives first rotating shaft to rotate;The One driven shaft coupling portion is provided with the caulking groove of and described embedding adaptation, and embedding of described first active shaft coupling portion is embedded in described the In the caulking groove in one driven shaft coupling portion.
Second active shaft coupling portion and the second driven shaft coupling portion are fixedly linked, and second driving shaft drives the second axis of rotation;The Two driven shaft coupling portions are provided with the caulking groove of and described embedding adaptation, and embedding of described second active shaft coupling portion is embedded in described the In the caulking groove in two driven shaft coupling portions.
The course of work of the present embodiment is as follows:Storing in first warehouse enters into the first discharge box through first charging aperture In, the storing in the second warehouse enters in the second discharge box through second charging aperture;
When motor drives the belt pulley in clutch transmission to rotate forward, worm screw drives turbine to rotate forward, and turbine leads to Cross the first mono-directional overrun clutch and drive the first power transmission shaft, and then drive first rotating shaft to rotate forward, namely drive the first auger Rotate, the storing in first auger passage the first discharge box is so as to drop out from the first discharge nozzle;Now because second is unidirectional super More the locking direction of clutch and the locking of the first mono-directional overrun clutch are in opposite direction, therefore turbine will not drive second driving shaft Rotate;
When motor drives the belt pulley in clutch transmission to rotate backward, worm screw drives turbine to rotate backward, and turbine leads to Cross the second mono-directional overrun clutch and drive second driving shaft, and then drive the second rotating shaft to rotate backward, namely drive the second auger Rotate, the storing in second auger passage the second discharge box is so as to drop out from the second discharge nozzle;Now because first is unidirectional super More the locking direction of clutch and the locking of the second mono-directional overrun clutch are in opposite direction, therefore turbine will not drive the first power transmission shaft Rotate.
The present embodiment has advantages below:(1)Clutch driving unit relatively reasonable in structure compact, two augers only use with One motor drives, and compares with traditional product, saves a motor, also reduces entirety and takes up room, is conducive to Miniaturization, especially meets carrier and installs and uses demand.
(Application examples 2, binary warehouse)
Figure 12 to Figure 19 shows the second concrete application mode of the present invention.
Should use-case be the second binary warehouse made using above-described embodiment 1, should use-case and above-mentioned application examples 1 base This is identical, and difference is:As shown in Figure 12 to Figure 19, it is equipped with least one information in the first warehouse and the second warehouse and adopts Collection instrument 6.
Information acquiring instrument 6 include barrel shell 61, the master gear 62 being rotatably arranged in barrel shell, be rotatably arranged on barrel shell four Individual rolling pipe 63 of advancing, the pinion 64 being fixedly installed in each traveling rolling pipe outer wall, the former dynamic electricity for driving master gear to rotate Machine 65;Four pinions are uniformly arranged on master gear outer circumferential side, setting in a center of symmetry;When master gear rotates, drive each pair tooth Wheel synchronous axial system.
In the present embodiment, the periphery wall of master gear is provided with driving cog 621, and internal perisporium is provided with driven tooth 622;Former dynamic electricity The quantity of machine 65 is two, and each driving motor is provided with the output gear 651 with output gear;Output gear and the driven tooth of master gear Engagement adaptation;The driving cog of master gear and pinion engagement adaptation.
It is fixed with spiral power plate 631, spiral power plate is with rolling pipe turn of advancing on the lumen wall of traveling rolling pipe When dynamic, moved ahead by the material acquisition thrust that spiral is stirred in rolling pipe of advancing or retreat.In the present embodiment, spiral power plate Center enclose the circular material path 639 of formation one, when rolling pipe of advancing is advanced, storing is mainly from this circular material path and spiral Release backward in the gap between screw of power plate, this structure can be fed in rolling pipe of advancing in time and be advanced with smooth, in addition by In the presence of this circular material path, to the larger mobile space of storing advanced in rolling pipe, prevent storing because overcrowding and by spiral shell Rotation power plate blends.
Barrel shell 61 includes main cylinder 611 and four secondary cylinders 612, and four secondary cylinders become center around the central axis of main cylinder It is symmetrical arranged;The central axis of main cylinder is also the center of rotation axis of described master gear, the center of rotation axis of each pair cylinder Parallel with the center of rotation axis of master gear.
Each two ends advancing rolling pipe are equipped with the Taper Pipe portion 632 of reduced diameter as drag reduction portion, advance for reducing Resistance.
The two ends of barrel shell are respectively fixed with a coniform antidrag cap 66, and each antidrag cap is provided with a temperature sensor 67 With a humidity sensor 68, the induction end of each temperature sensor and humidity sensor is exposed independent from antidrag cap.
It is arranged with the first rolling bearing 633 and the second rolling bearing 634 on the outer wall of each rolling pipe of advancing, each rolling pipe of advancing Outer wall is provided with first step wall 635 and second step wall 636;
One side of barrel shell is provided with four clutch shaft bearing storage tanks 613, and this four clutch shaft bearing storage tanks are located at this end of barrel shell On inwall;Each first rolling bearing is embedded in a corresponding clutch shaft bearing storage tank, and the inner ring of each first rolling bearing is sheathed It is fixed on one end of corresponding one rolling pipe of advancing, and the first step wall of rolling pipe of advancing is along the central axial direction pressure of this rolling pipe It is connected on the inner ring of corresponding first rolling bearing;
Another side of barrel shell is provided with four second bearing storage tanks 614, and this four second bearing storage tanks are located at and expose to cylinder This end of shell;Each rolling pipe of advancing is provided with male threaded joint 637;The internal thread crimp that one is screwed onto on male threaded joint 638, it is crimped on the outer ring of a corresponding second bearing, and roll the central axial direction of pipe this second bearing along this traveling Inner ring is crimped on this traveling and rolls on the second step wall of pipe;This internal thread crimp blocks a corresponding second bearing simultaneously to be held Put the opening of groove.
It is fixed with installing plate 615, master gear is rotatably arranged on installing plate, the motor body of each driving motor in barrel shell Also it is fixedly installed on this installing plate.
Information acquiring instrument in the present embodiment, when using, is powered to driving motor by built-in power, driving motor band Dynamic master gear rotates, and then synchronously drives four rolling pipes of advancing to rotate by each pinion, thus storing up by promotion in warehouse Expect and advance or retreat.
Because each antidrag cap is provided with temperature sensor and humidity sensor, the information acquiring instrument in the present embodiment is being advanced In, the temperature and humidity of the drill-through bed of material being given, thus obtaining the physical message of the storing of different depth, and can pass through interior The radio-cell being placed in antidrag cap or barrel shell is transferred to user.
It is also possible to be powered and transmission data to the information acquiring instrument in the present embodiment by cable in concrete practice, tool Body is that cable is passed through behind the tip of an antidrag cap, is connected with the wiring board in antidrag cap or barrel shell.
The present embodiment also can be arranged in each coniform antidrag cap has lamplit camera, each coniform antidrag cap Made using transparent material so that camera can photograph the in good time state of storing, for example observe go mouldy, insect bite etc. Bad phenomenon, prevents and treats to it in time.
Obviously, the above embodiment of the present invention is only intended to clearly illustrate example of the present invention, and is not right The restriction of embodiments of the present invention.For those of ordinary skill in the field, also may be used on the basis of the above description To make other changes in different forms.There is no need to be exhaustive to all of embodiment.And these Belong to the obvious change that the connotation of the present invention extended out or change and still fall within protection scope of the present invention.

Claims (10)

1. a kind of clutch driving unit, including motor and clutch transmission;It is characterized in that:Clutch transmission includes Turbine that support body, the worm screw being rotatably arranged on support body, the belt pulley being fixedly installed on worm screw are adapted to worm screw, first single To freewheel clutch, the first power transmission shaft, the second mono-directional overrun clutch, second driving shaft;The shaft hole inner wall of turbine is provided with One mounting groove and the second mounting groove, the first mono-directional overrun clutch is arranged in the first mounting groove, the second mono-directional overrun clutch It is arranged in the second mounting groove;One end of first power transmission shaft is plugged in the installing hole of the first mono-directional overrun clutch, the first biography The other end of moving axis is provided with the first active shaft coupling portion with the first driven shaft coupling portion adaptation;One end of second driving shaft is plugged in In the installing hole of two mono-directional overrun clutch, the other end of second driving shaft is provided with the second master with the second driven shaft coupling portion adaptation Dynamic shaft coupling portion;The locking of the first mono-directional overrun clutch and the second mono-directional overrun clutch is in opposite direction;First mono-directional overrun from Clutch and the second mono-directional overrun clutch all include the ring support being provided with installing hole, the multiple breach being arranged on ring support, are arranged on Roller in each breach and be arranged on the multiple elastic components for providing reseting elasticity for roller on ring support;Each breach has Vertical wall and skew wall;The central axis of each vertical wall place plane and ring support is coplanar, and each skew wall is perpendicular to coupled vertical wall;Drive When motor drives belt pulley to rotate forward, worm screw drives turbine to rotate forward, and turbine passes through the first mono-directional overrun clutch and drives First power transmission shaft and the first active shaft coupling portion rotate;When motor drives belt pulley to rotate backward, worm screw drives turbine reverse Rotate, turbine passes through the second mono-directional overrun clutch and drives second driving shaft and the second active shaft coupling portion to rotate.
2. clutch driving unit according to claim 1 it is characterised in that:Each elastic component includes cylinder base, thimble, is thimble Spring and the tail-hood of reseting elasticity are provided.
3. clutch driving unit according to claim 2 it is characterised in that:Thimble has sliding pin portion and anticreep plate portion;Cylinder The spacing plate portion that seat tool has cylinder and is located at cylinder one end, the external diameter of spacing plate portion is more than cylinder external diameter, the center of spacing plate portion Place is provided with slide opening, and the external diameter of the anticreep plate portion of thimble is more than the aperture of slide opening;The sliding pin portion of thimble is plugged in slide opening and stretches out Cylinder, the anticreep plate portion of thimble and spring are located in cylinder, and tail-hood is fixedly installed on the other end of cylinder.
4. clutch driving unit according to claim 3 it is characterised in that:Vertical wall, top pressure are stretched out by the sliding pin portion of each thimble On a corresponding roller.
5. clutch driving unit according to claim 4 it is characterised in that:Each vertical wall is provided with an accommodating hole, houses The central axis upright in hole is in vertical wall;The cylinder base of each elastic component is fixedly installed in a corresponding accommodating hole.
6. clutch driving unit according to claim 5 it is characterised in that:Motor is provided with driving wheel, driving wheel Pass through belt transmission with the belt pulley in clutch transmission, motor drives belt pulley and worm screw reciprocating rotation.
7. clutch driving unit according to claim 6 it is characterised in that:The cylinder base of each elastic component passes through to be spirally connected or bond Mode is fixed in a corresponding accommodating hole.
8. clutch driving unit according to claim 7 it is characterised in that:First active shaft coupling portion is set by key pin fixation Put on the first power transmission shaft, the first active shaft coupling portion is provided with one embedding.
9. clutch driving unit according to claim 8 it is characterised in that:Second active shaft coupling portion is set by key pin fixation Put on second driving shaft.
10. clutch driving unit according to claim 9 it is characterised in that:Second active shaft coupling portion is provided with one embedding.
CN201611059617.6A 2016-11-27 2016-11-27 Clutch driving device Pending CN106438909A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201611059617.6A CN106438909A (en) 2016-11-27 2016-11-27 Clutch driving device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201611059617.6A CN106438909A (en) 2016-11-27 2016-11-27 Clutch driving device

Publications (1)

Publication Number Publication Date
CN106438909A true CN106438909A (en) 2017-02-22

Family

ID=58218560

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201611059617.6A Pending CN106438909A (en) 2016-11-27 2016-11-27 Clutch driving device

Country Status (1)

Country Link
CN (1) CN106438909A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108673738A (en) * 2018-07-26 2018-10-19 佛山意瑞达建筑机械有限公司 A kind of worm and gear blender with arrangement of clutch

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3533306A (en) * 1967-05-19 1970-10-13 Index Werke Kg Hahn & Tessky Programming apparatus for machine tools or the like
US20010027146A1 (en) * 2000-01-19 2001-10-04 Philip Spaziani Electro-mechanical actuator
CN202883377U (en) * 2012-11-27 2013-04-17 中国石油天然气集团公司 Anti-reversion structure of ground drive device of novel worm-gear screw pump
CN205361563U (en) * 2015-12-07 2016-07-06 殷国亮 Minced steak, cut meat all -in -one power drive device
CN205657314U (en) * 2016-05-05 2016-10-19 厦门安达兴电气集团有限公司 A reduction gear for cubical switchboard

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3533306A (en) * 1967-05-19 1970-10-13 Index Werke Kg Hahn & Tessky Programming apparatus for machine tools or the like
US20010027146A1 (en) * 2000-01-19 2001-10-04 Philip Spaziani Electro-mechanical actuator
CN202883377U (en) * 2012-11-27 2013-04-17 中国石油天然气集团公司 Anti-reversion structure of ground drive device of novel worm-gear screw pump
CN205361563U (en) * 2015-12-07 2016-07-06 殷国亮 Minced steak, cut meat all -in -one power drive device
CN205657314U (en) * 2016-05-05 2016-10-19 厦门安达兴电气集团有限公司 A reduction gear for cubical switchboard

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108673738A (en) * 2018-07-26 2018-10-19 佛山意瑞达建筑机械有限公司 A kind of worm and gear blender with arrangement of clutch

Similar Documents

Publication Publication Date Title
CN106438909A (en) Clutch driving device
CN106477343A (en) A kind of binary warehouse for storing granular material
CN106523547A (en) Clutch driving device
CN106477345A (en) Device for discharging for logistics warehouse
CN106429514A (en) Twin warehouse for storing granular materials
CN106477342A (en) Device for discharging for binary warehouse
CN106364937A (en) Discharge device for double-body warehouse
CN106629117A (en) Intelligent double-body warehouse used for storing granular materials
CN106697988A (en) Intelligent twin warehouse for storing particulate materials
CN106763545A (en) Clutch transmission
CN106586597A (en) Intelligent type double-body warehouse used for storing granulated materials
CN106429509A (en) Logistics warehouse with information collecting function
CN106364936A (en) Logistics warehouse
CN106335799A (en) Logistics warehouse
CN106743764A (en) Logistics warehouse with information acquiring instrument
CN106717658A (en) A kind of intelligent binary warehouse for storing granular material
CN106348047A (en) Double-body warehouse
CN106829538A (en) Logistics warehouse with information collection function
CN106348045A (en) Dual-body warehouse used for storing granular material
CN106364933A (en) Binary warehouse
CN106672650A (en) Logistics warehouse with information collection device
CN106743756A (en) A kind of device for discharging for logistics warehouse
CN106429505A (en) Twin warehouse for storing granular materials
CN106416639A (en) Unloading device for double-body logistic granary
CN106429080A (en) Self-unloading type logistics warehouse with information acquisition instrument

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication
RJ01 Rejection of invention patent application after publication

Application publication date: 20170222