CN203778339U - Vibrating screen - Google Patents

Vibrating screen Download PDF

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Publication number
CN203778339U
CN203778339U CN201420070804.4U CN201420070804U CN203778339U CN 203778339 U CN203778339 U CN 203778339U CN 201420070804 U CN201420070804 U CN 201420070804U CN 203778339 U CN203778339 U CN 203778339U
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CN
China
Prior art keywords
vibrator
shaft
eccentric block
main
vibratory sieve
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.)
Withdrawn - After Issue
Application number
CN201420070804.4U
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Chinese (zh)
Inventor
徐怀玉
郑永生
孟艳伟
陈永强
陈为兵
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.)
Xuzhou XCMG Schwing Machinery Co Ltd
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Xuzhou XCMG Schwing Machinery 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
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Application filed by Xuzhou XCMG Schwing Machinery Co Ltd filed Critical Xuzhou XCMG Schwing Machinery Co Ltd
Priority to CN201420070804.4U priority Critical patent/CN203778339U/en
Application granted granted Critical
Publication of CN203778339U publication Critical patent/CN203778339U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model relates to a vibrating screen which comprises a screen tank, wherein the screen tank is arranged on a rack by virtue of a spring support device; the screen tank is provided with a vibrator; the vibrator is connected with a driving motor by virtue of a driving device; the driving motor is arranged on a motor support base; the driving device comprises a main shaft, an eccentric flange and a tire-type coupler; the driving motor is in driving connection with one end of the main shaft; the other end of the main shaft is connected with the eccentric flange which is arranged on one side of the tire-type coupler; the other side of the tire-type coupler is connected with a vibrator shaft in the vibrator; the spring support device comprises a lower spring support base, an upper spring support base and a spring; the lower spring support base and the upper spring support base are respectively and correspondingly articulated with the rack and the screen tank; the rack, the eccentric flange, the screen tank and the spring support device constitute a crank-rocker mechanism. When the vibrating screen is in operation, the vibrator generates vibration, and dust pan-like bumping is also realized by the crank-rocker mechanism. The vibrating screen has a multi-vibration effect and is high in working efficiency.

Description

A kind of vibratory sieve
Technical field
The utility model relates to engineering machinery field, relates in particular to a kind of vibratory sieve.
Background technology
Vibratory sieve refers to and utilizes answering that oscillator exciting produces revolve type vibration and work, to logistics screen, the equipment of classification.Vibratory sieve is generally used for the sieving and grading of mining, building waste recovery, mainly realizes classification according to material physical dimension size, to reach the object that sub-elects different purposes materials.
As shown in Figure 1, be the structural representation of a kind of vibratory sieve of the prior art, this vibratory sieve is mainly made up of parts such as frame 1 ', vibrator 2 ', drive motors 3 ', transmission device 4 ', screen box 5 ' and spring supporting devices 6 '.It is upper that screen box 5 ' is arranged on frame 1 ' by spring supporting device 6 ', and drive motors 3 ' is arranged on drive motors bracing frame, and drive motors 3 ' connects vibrator 2 ' by transmission device 4 ', and vibrator 2 ' is arranged on screen box 5 '.When vibratory sieve work, under drive motors 3 ' drives, vibrator 2 ' circles, and between screen box 5 ' and frame 1 ', is connected by spring supporting device 6 ', and screen box 5 ' is driven and carried out regular vibration by the eccentric block on vibrator 2 '.Be positioned at material in sieve under effect of vibration, travel forward, meet the material of mesh size demand by compass screen surface, enter next screen cloth or directly enter discharging opening, outside eliminating machine; Can not move to discharge gate along compass screen surface by the large particle diameter material of compass screen surface, and then outside eliminating machine.Every layer of compass screen surface has special material collection system, and material successively goes out vibratory sieve, completes screening, classification work.Vibratory sieve is only realized vibration by one or two vibrator at present, and operating efficiency awaits further raising; And the starting of oscillation mode of vibratory sieve only depends on vibrator or vibrator, and the mode of action is single, there is no the effect of multiple vibration.
Utility model content
For the problems referred to above, the purpose of this utility model is to propose a kind of vibratory sieve, and it has multiple vibrating effect, and operating efficiency is higher.
For achieving the above object, the utility model provides a kind of vibratory sieve, it comprises screen box, described screen box is arranged in frame by spring supporting device, on described screen box, be provided with vibrator, described vibrator connects drive motors by described transmission device, described drive motors is arranged on motor supporting base, described transmission device comprises main shaft, eccentric flange and elasticity movable coupling, described drive motors drives the one end that connects described main shaft, the other end of described main shaft connects described eccentric flange, described eccentric flange is arranged on a side of described elasticity movable coupling, the opposite side of described elasticity movable coupling connects the vibrator shaft in described vibrator, described spring supporting device comprises lower spring bearing, upper spring support and spring, and described lower spring bearing employing articulated manner and described frame are hinged, and described upper spring support employing articulated manner and described screen box are hinged.
Further, described vibrator comprises the first vibrator body, the second vibrator body and power transmission shaft, described the first vibrator body and described the second vibrator body be the corresponding both sides that are arranged on described screen box respectively, described the first vibrator body comprises the first vibrator shaft, described the second vibrator body comprises the second vibrator shaft, one end of described the first vibrator shaft connects described elasticity movable coupling, the other end of described the first vibrator shaft connects one end of described power transmission shaft, and the other end of described power transmission shaft connects described the second vibrator shaft.
Further, described the first vibrator body also comprises two spaced the first vibrator protective covers, described the first vibrator shaft is through two described the first vibrator protective covers, in two described the first vibrator protective covers, be provided with one for supporting the clutch shaft bearing structure of described the first vibrator shaft, and a first main eccentric block and a first secondary eccentric block, described the first main eccentric block is fixedly connected with described the first vibrator shaft, described the first secondary eccentric block is fixedly connected with described the first main eccentric block, between described the first secondary eccentric block and described the first main eccentric block, there is adjustable angle.
Further, described the second vibrator body also comprises two spaced the second vibrator protective covers, described the second vibrator shaft is through two described the second vibrator protective covers, in two described the second vibrator protective covers, be provided with one for supporting the second bearing arrangement of described the second vibrator shaft, and a second main eccentric block and a second secondary eccentric block, described the second main eccentric block is fixedly connected with described the first vibrator shaft, described the second secondary eccentric block is fixedly connected with described the second main eccentric block, between described the second secondary eccentric block and described the second main eccentric block, there is adjustable angle.
Further, two described the first vibrator protective covers are fixedly installed on respectively inner side and the outside of one of them side plate of described screen box; Two the second vibrator protective covers are fixedly installed on respectively inner side and the outside of another side plate of described screen box.
Further, described power transmission shaft is Cardan shaft, and the peripheral closure of described Cardan shaft is provided with power transmission shaft protective cover.
Further, described drive motors drives the one end that connects described main shaft by pulley transmission mechanism, described pulley transmission mechanism comprises the small belt pulley, the driving belt that are connected with the output shaft of described drive motors, and the big belt pulley being connected with described main shaft, the diameter of described big belt pulley is greater than the diameter of described small belt pulley.
Further, described big belt pulley supports by the belt pulley bracing or strutting arrangement being arranged on described motor supporting base, and described main shaft passes described belt pulley bracing or strutting arrangement, and by the bearings arranging on described belt pulley bracing or strutting arrangement.
Further, described lower spring bearing and described upper spring support in described spring supporting device are inverted trapezoidal structure, middle part between described lower spring bearing and described upper spring support is provided with a described spring, and the both sides between described lower spring bearing and described upper spring support arrange a described spring respectively.
Further, described elasticity movable coupling adopts coupling with rubber type element.
Based on technique scheme, the utility model at least has following beneficial effect:
The vibratory sieve that the utility model provides, not only carry out operation by the effect of vibration being produced by vibrator, main shaft in transmission device is connected the transmission shaft of vibrator in vibrator by eccentric flange with elasticity movable coupling simultaneously, main shaft drives eccentric flange rotation, between main shaft and transmission shaft of vibrator, there is certain eccentric throw, and spring supporting device is not to be directly fixedly connected with frame and screen box, but by articulated manner connection frame and screen box, eccentric flange is equivalent to crank like this, screen box is equivalent to connecting rod, spring supporting device is equivalent to rocking bar, frame and motor supporting base are all fixed on ground, frame, eccentric flange, screen box and spring supporting device composition crank and rocker mechanism, when whole vibratory sieve work, screen box has complex vibration effect: the vibration that the eccentric block in vibrator produces and crank and rocker mechanism are realized " jolt " of the similar operations dustpan of link motion formation, therefore, the utlity model has multiple vibrating effect, operating efficiency is higher.
Brief description of the drawings
Accompanying drawing described herein is used to provide further understanding of the present utility model, forms the application's a part, and schematic description and description of the present utility model is used for explaining the utility model, does not form improper restriction of the present utility model.In the accompanying drawings:
Fig. 1 is a kind of Structure of Vibrating Screen schematic diagram of the prior art;
Fig. 2 looks schematic diagram for the vibratory sieve master that the utility model provides;
The vibratory sieve schematic side view that Fig. 3 provides for the utility model;
The vibrator structure schematic diagram that Fig. 4 provides for the utility model;
The spring supporting device structural representation that Fig. 5 provides for the utility model;
The screen box structural representation that Fig. 6 provides for the utility model;
The powerdriven structure diagram of vibratory sieve that Fig. 7 provides for the utility model;
The crank and rocker mechanism schematic diagram forming in the vibratory sieve that Fig. 8 provides for the utility model;
The main eccentric block of vibrator and the scheme of installation of secondary eccentric block in the vibratory sieve that Fig. 9 provides for the utility model.
In figure:
1-frame; 2-motor supporting base;
3-screen box; 31-screen frame; 32-screen cloth;
4-spring supporting device; Hinged seat under 41-; 42-lower spring bearing; 43-upper spring support; 44-spring;
5-drive motors;
6-transmission device; 61-pulley transmission mechanism; 611-big belt pulley; 612-driving belt; 613-belt pulley bracing or strutting arrangement; 62-main shaft; 63-eccentric flange; 64-coupling with rubber type element;
7-vibrator; 71-the first vibrator body; 711-the first vibrator shaft; 712-the first vibrator protective cover; 713-clutch shaft bearing structure; The main eccentric block of 714-first; The secondary eccentric block of 715-first; 72-the second vibrator body; 73-Cardan shaft; 74-power transmission shaft guard shield.
Detailed description of the invention
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in embodiment is clearly and completely described.Obviously, described embodiment is only a part of embodiment of the present utility model, instead of whole embodiment.Based on embodiment of the present utility model, those of ordinary skill in the art are not making the every other embodiment obtaining under creative work prerequisite, all belong to the scope of the utility model protection.
As shown in Figure 2 and Figure 3, the vibratory sieve that the utility model provides comprises frame 1, motor supporting base 2, screen box 3, spring supporting device 4, drive motors 5, transmission device 6 and vibrator 7.
As shown in Figure 2 and Figure 3, frame 1 is fixed on ground, some spring supporting devices 4 that screen box 3 arranges by both sides are arranged in frame 1, vibrator 7 is arranged on screen box 3, vibrator 7 connects drive motors 5 by transmission device 6, drive motors 5 is arranged on motor supporting base 2, and motor supporting base 2 is fixed on ground.
As in Figure 2-4, transmission device 6 comprises pulley transmission mechanism 61, main shaft 62, eccentric flange 63 and coupling with rubber type element 64.Wherein, pulley transmission mechanism 61 comprises the small belt pulley being connected with the output shaft of drive motors 5, the big belt pulley 611 being connected with main shaft 62, and driving belt 612 between small belt pulley and big belt pulley 611, wherein the diameter of small belt pulley is less than the diameter of big belt pulley 611.Big belt pulley 611 supports by belt pulley bracing or strutting arrangement 613; belt pulley bracing or strutting arrangement 613 can be bolted and be arranged on motor supporting base 2; main shaft 62 is through belt pulley bracing or strutting arrangement 613; and support by the bearing arrangement arranging on belt pulley bracing or strutting arrangement 613, belt pulley bracing or strutting arrangement 613 can also be protected the periphery of main shaft 62.One end of main shaft 62 is connected with big belt pulley 611, and the other end can be connected with eccentric flange 63 by connecting key, and eccentric flange 63 is arranged on a side of coupling with rubber type element 64, and the opposite side of coupling with rubber type element 64 is connected with the vibrator shaft in vibrator 7.Due to eccentric flange 63 being set, vibrator shaft is not only rotation under the drive of main shaft 62, also rotates around the axis of main shaft 62.
As shown in Figure 4, vibrator 7 comprises the first vibrator body 71, the second vibrator body 72 and Cardan shaft 73.The first vibrator body 71 and the second vibrator body 72 be the corresponding both sides that are arranged on screen box 3 respectively, the first vibrator body 71 comprises the first vibrator shaft 711, the second vibrator body 72 comprises the second vibrator shaft, one end of the first vibrator shaft 711 connects coupling with rubber type element 64, one end of the other end universal-joint power transmission shaft 73 of the first vibrator shaft 711, the other end of Cardan shaft 73 connects the second vibrator shaft.
The vibratory sieve providing due to the utility model has certain amplitude in the time working, in vibration processes, cannot ensure the first vibrator shaft 711 and the axiality of the second vibrator shaft and the uniformity of motion completely, use general shaft coupling easily to damage, reduce operating efficiency, therefore, the utility model preferably adopts Cardan shaft 73.
As shown in Figure 4, the first vibrator body 71 also comprises two the first vibrator protective covers 712, two clutch shaft bearing structures 713, two the first main eccentric blocks 714 and two the first secondary eccentric blocks 715.The first vibrator shaft 711 is through spaced two the first vibrator protective covers 712; two the first vibrator protective covers 712 are interior arranges respectively a clutch shaft bearing structure 713; two adjacent settings of clutch shaft bearing structure 713 and be positioned at the middle part of the first vibrator shaft 711, for supporting the first vibrator shaft 711.The two ends of the first vibrator shaft 711 all arrange a first main eccentric block 714 and a first secondary eccentric block 715.Two the first main eccentric blocks 714 are symmetrical arranged, and two the first secondary eccentric blocks 715 are symmetrical arranged.The first main eccentric block 714 can be fixedly connected with the first vibrator shaft 711 by hold-down bolt or connecting key, between the first secondary eccentric block 715 and the first main eccentric block 714, there is certain default angle, this default angle can be by regulating the first secondary eccentric block 715 to rotate and obtain with respect to the first main eccentric block 714, when the relative angle of the first secondary eccentric block 715 and the first main eccentric block 714 reaches after default angle, can the first secondary eccentric block 715 be fixedly connected with the first main eccentric block 714 by connecting bearing pin.
The structure of the structure of the second vibrator body 72 and the first vibrator body 71 is basic identical, not shown.The second vibrator body 72 also comprises two the second vibrator protective covers, two the second bearing arrangements, two the second main eccentric blocks and two the second secondary eccentric blocks.The second vibrator shaft is through spaced two the second vibrator protective covers; in two the second vibrator protective covers, second bearing arrangement is set respectively; the adjacent setting of two the second bearing arrangements and be positioned at the middle part of the second vibrator shaft, for supporting the second vibrator shaft.The two ends of the second vibrator shaft all arrange a second main eccentric block and a second secondary eccentric block.Two the second main eccentric blocks are symmetrical arranged, and two the second secondary eccentric blocks are symmetrical arranged.The second main eccentric block can be fixedly connected with the second vibrator shaft by hold-down bolt or connecting key, between the second secondary eccentric block and the second main eccentric block, there is certain default angle, this default angle can be by regulating the second secondary eccentric block to rotate and obtain with respect to the second main eccentric block, when the second secondary eccentric block and the second main eccentric block relative angle reach after default angle, can the second secondary eccentric block be fixedly connected with the second main eccentric block by connecting bearing pin.
In above-described embodiment, two the first vibrator protective covers 712 can be fixedly installed on respectively on one of them side plate of screen box 3 by bolt, and correspondence is positioned at the inside and outside of screen box 3 respectively; Two the second vibrator protective covers can be fixedly installed on respectively on another side plate of screen box 3 by bolt, and correspondence is positioned at the inside and outside of screen box 3 respectively.
In above-described embodiment, the peripheral closure of Cardan shaft 73 is provided with power transmission shaft guard shield 74, for the protection of Cardan shaft 73.
As shown in Fig. 3, Fig. 5, spring supporting device 4 mainly comprises lower hinged seat 41, lower spring bearing 42, upper spring support 43 and spring 44.Lower hinged seat 41 is fixedly installed in frame 1, and lower hinged seat 41 tops are hinged by pivot pin and bearing arrangement and lower spring bearing 42, and upper spring support 43 is hinged by bearing pin and bearing arrangement and screen box 3.Spring 44 is arranged between lower spring bearing 42 and the upper spring support 43 of its top.Because upper spring support 43 and screen box 3 are hinged, lower spring bearing 42 is hinged with lower hinged seat 41, therefore, spring supporting device 4 is with in screen box 3 motion processes, the motion of upper spring support 43 and lower spring bearing 42 is more flexible, spring 44 between upper spring support 43 and lower spring bearing 42 is not easy to be worn, and has improved the life-span of spring 44.
In above-described embodiment, upper spring support 43, lower spring bearing 42 can all be set to inverted trapezoidal structure, comprise flat board, and the swash plate that is wholely set with dull and stereotyped two ends and tilts obliquely upward.A spring 44 can be set between the flat board of the flat board of upper spring support 43 and lower spring bearing 42,44 formation of 44, three springs of a spring also can be set respectively between the both sides swash plate of upper spring support 43 and the both sides swash plate of lower spring bearing 42 and be similar to leg-of-mutton structure.The vibratory sieve that the utility model provides in the course of the work Oscillation Amplitude and oscillation intensity all larger, use the structure of three springs, working strength that can reinforcement spring bracing or strutting arrangement 4, prevents that single spring from holding flimsy problem; In addition, upper spring support 43 and lower spring bearing 42 are all set to inverted trapezoidal structure, prevent skew and the dislocation of screen box 3 in vibration processes.
In above-described embodiment, frame 1 is main to be adopted shaped steel welding or is bolted formation.
As shown in Figure 6, in above-described embodiment, screen box 3 mainly comprises screen frame 31 and screen cloth 32, is provided with at least one deck screen cloth 32 in screen frame 31, and screen frame 31 comprises the side plate and the crossbeam that is connected both sides side plate of both sides.Screen box 3 for material is screened, classification requirement has enough rigidity.
In above-described embodiment, spring supporting device 4 can arrange four, is symmetricly set between two the both sides of screen box 3.
In above-described embodiment, can adjust the motion amplitude of screen box 3 by changing eccentric flange 63, if eccentric flange 63 choose the intensity that reaches enough.
In above-described embodiment, coupling with rubber type element 64 belongs to the wherein a kind of of elasticity movable coupling, also can adopt other elasticity movable coupling to replace coupling with rubber type element 64, to compensate the relative radial displacement of two between centers in the utility model.
Coupling with rubber type element 64 has simple in structure, and mounting or dismounting are convenient, and noise is little, need not lubricate, radial dimension is larger, long service life, and torsional rigidity is little, and damping capacity is strong, the advantages such as the ability of compensation diaxon relative displacement is larger, are applicable to start frequent, and rotating is changeable, impacts larger transmission.The vibratory sieve providing due to the utility model all has larger vibration in startup and the course of work,
And in starting, often there is overload operating mode, so, coupling with rubber type element preferably used.
The assembling mode of the vibratory sieve that the utility model provides is as follows: vibrator 7 is assemblied on screen box 3, then by spring supporting device 4, screen box 3 is assembled in frame 1; Main shaft 62 is assemblied on belt pulley bracing or strutting arrangement 613, then one end of main shaft 62 is connected with vibrator 7 with coupling with rubber type element 64 by eccentric flange 63; Big belt pulley 611 is assembled on the other end of main shaft 62, and drive motors 5 and small belt pulley are fixed on motor supporting base 2, then by driving belt 612, big belt pulley 611 is connected with small belt pulley.
The operation principle of the vibratory sieve that the utility model provides is as follows:
As shown in Figure 7, the kinetic energy that when work, drive motors 5 is rotation by electric energy conversion drives small belt pulley, power is sent to big belt pulley 611 by driving belt 612, big belt pulley 611 drives main shaft 62 to rotate, main shaft 62 is arranged on belt pulley bracing or strutting arrangement 613 by bearing, main shaft 62 is connected power is delivered to eccentric flange 63 by key, eccentric flange 63 tire on the drive wheels formula shaft couplings 64 do eccentric rotary, and then driving vibrator 7 to do the rotation that offset is e, four main eccentric blocks, four secondary eccentric blocks of vibrator 7 can produce vibration in the time that vibrator shaft rotates.
As shown in Figure 8, because spring supporting device 4 is not to be directly fixedly connected with screen box 3 with frame 1, but utilize articulated manner connection frame 1 and screen box 3 by bearing pin and bearing, and frame 1 and motor supporting base 2 are fixed on ground, screen box 3 is connected with frame 1 by spring supporting device 4, and spring supporting device 4 has certain flexibility, and frame 1, eccentric flange 63, screen box 3 and spring supporting device 4 form crank and rocker mechanism, eccentric flange 63 is equivalent to crank, and screen box 3 is equivalent to connecting rod.The motion of final screen box 3 is " jolt " of the similar operations dustpan that in the crank and rocker mechanism of realizing by eccentric flange 63, connecting rod swing forms, and the resultant motion of main eccentric block and secondary eccentric block excited vibrational in vibrator 7.Screen cloth 32 is with screen box 3 motion, to the material of feeding screen, classification.The vibratory sieve that the utility model provides has been realized plane motion and eccentric vibrating dual-vibration effect.
As shown in Figure 9, vibrator 7 changes exciting force by the relative angle that regulates main eccentric block and secondary eccentric block.By regulating the installation angle between secondary eccentric block and main eccentric block, can also regulate the centroid position of this group eccentric block, the namely centroid position of adjustable eccentric piece group, and then can regulate the overall mass of vibration of vibrator 7, thereby reach and adjust the object of amplitude of screen box 3 (the overall mass of vibration of vibrator 7 is larger, and the amplitude of screen box 3 is less.
The concrete computational process of overall mass of vibration MA is as follows:
MA=n zW kr
In formula:
N z-eccentric block group number;
W kthe quality of-every group of eccentric block, kg;
The radius of gyration of r-eccentric block, m.
W zthe quality of-main eccentric block, kg;
W fthe quality of-secondary eccentric block, kg;
R zthe radius of gyration of-main eccentric block, m;
R fthe radius of gyration of-secondary eccentric block, m;
-main eccentric block and secondary eccentric block relative angle.
From above formula, overall mass of vibration is by the radius of gyration of main eccentric block and secondary eccentric block, the quality of main eccentric block and secondary eccentric block, and the relative angle of main eccentric block and secondary eccentric block determines jointly, therefore, can, by regulating above-mentioned parameter to regulate the overall mass of vibration of vibrator 7, reach the object of the Oscillation Amplitude that regulates screen box 3, and can assess the Oscillation Amplitude of screen box 3.
Based on the various embodiments described above, the utility model at least has the following advantages: can adjust the offset of screen box by changing eccentric flange, as long as eccentric flange choose the intensity that reaches enough; Vibrator structure is simple, can regulate vibration force by controlling main eccentric block and secondary eccentric block relative angle, reaches and regulates the exciting force of screen box and the object of Oscillation Amplitude, easy to adjust; Have " jolt " of the similar operations dustpan of the vibration of vibrator generation and the link motion formation that crank and rocker mechanism is realized, vibration force is powerful, and screening efficiency is high, is difficult for producing the clogging of surfing the Net; The tyre coupling adopting has very high elasticity, and the ability of compensation diaxon relative displacement is larger, and has good damping, and simple in structure, do not need to lubricate, install and remove and safeguard all more convenient; Complete machine structure is simple, safe.
Finally should be noted that: above embodiment is only in order to illustrate that the technical solution of the utility model is not intended to limit; Although the utility model is had been described in detail with reference to preferred embodiment, those of ordinary skill in the field are to be understood that: still can modify or part technical characterictic is equal to replacement detailed description of the invention of the present utility model; And not departing from the spirit of technical solutions of the utility model, it all should be encompassed in the middle of the technical scheme scope of the utility model request protection.

Claims (10)

1. a vibratory sieve, it comprises screen box, described screen box is arranged in frame by spring supporting device, on described screen box, be provided with vibrator, described vibrator connects drive motors by described transmission device, described drive motors is arranged on motor supporting base, it is characterized in that: described transmission device comprises main shaft, eccentric flange and elasticity movable coupling, described drive motors drives the one end that connects described main shaft, the other end of described main shaft connects described eccentric flange, described eccentric flange is arranged on a side of described elasticity movable coupling, the opposite side of described elasticity movable coupling connects the vibrator shaft in described vibrator, described spring supporting device comprises lower spring bearing, upper spring support and spring, and described lower spring bearing employing articulated manner and described frame are hinged, and described upper spring support employing articulated manner and described screen box are hinged.
2. vibratory sieve as claimed in claim 1, it is characterized in that: described vibrator comprises the first vibrator body, the second vibrator body and power transmission shaft, described the first vibrator body and described the second vibrator body be the corresponding both sides that are arranged on described screen box respectively, described the first vibrator body comprises the first vibrator shaft, described the second vibrator body comprises the second vibrator shaft, one end of described the first vibrator shaft connects described elasticity movable coupling, the other end of described the first vibrator shaft connects one end of described power transmission shaft, the other end of described power transmission shaft connects described the second vibrator shaft.
3. vibratory sieve as claimed in claim 2, it is characterized in that: described the first vibrator body also comprises two spaced the first vibrator protective covers, described the first vibrator shaft is through two described the first vibrator protective covers, in two described the first vibrator protective covers, be provided with one for supporting the clutch shaft bearing structure of described the first vibrator shaft, and a first main eccentric block and a first secondary eccentric block, described the first main eccentric block is fixedly connected with described the first vibrator shaft, described the first secondary eccentric block is fixedly connected with described the first main eccentric block, between described the first secondary eccentric block and described the first main eccentric block, there is adjustable angle.
4. vibratory sieve as claimed in claim 3, it is characterized in that: described the second vibrator body also comprises two spaced the second vibrator protective covers, described the second vibrator shaft is through two described the second vibrator protective covers, in two described the second vibrator protective covers, be provided with one for supporting the second bearing arrangement of described the second vibrator shaft, and a second main eccentric block and a second secondary eccentric block, described the second main eccentric block is fixedly connected with described the first vibrator shaft, described the second secondary eccentric block is fixedly connected with described the second main eccentric block, between described the second secondary eccentric block and described the second main eccentric block, there is adjustable angle.
5. vibratory sieve as claimed in claim 4, is characterized in that: two described the first vibrator protective covers are fixedly installed on respectively inner side and the outside of one of them side plate of described screen box; Two the second vibrator protective covers are fixedly installed on respectively inner side and the outside of another side plate of described screen box.
6. vibratory sieve as claimed in claim 2, is characterized in that: described power transmission shaft is Cardan shaft, and the peripheral closure of described Cardan shaft is provided with power transmission shaft protective cover.
7. vibratory sieve as claimed in claim 1, it is characterized in that: described drive motors drives the one end that connects described main shaft by pulley transmission mechanism, described pulley transmission mechanism comprises the small belt pulley, the driving belt that are connected with the output shaft of described drive motors, and the big belt pulley being connected with described main shaft, the diameter of described big belt pulley is greater than the diameter of described small belt pulley.
8. vibratory sieve as claimed in claim 7, it is characterized in that: described big belt pulley supports by the belt pulley bracing or strutting arrangement being arranged on described motor supporting base, described main shaft passes described belt pulley bracing or strutting arrangement, and by the bearings arranging on described belt pulley bracing or strutting arrangement.
9. vibratory sieve as claimed in claim 1, it is characterized in that: described lower spring bearing and described upper spring support in described spring supporting device are inverted trapezoidal structure, middle part between described lower spring bearing and described upper spring support is provided with a described spring, and the both sides between described lower spring bearing and described upper spring support arrange a described spring respectively.
10. vibratory sieve as claimed in claim 1, is characterized in that: described elasticity movable coupling adopts coupling with rubber type element.
CN201420070804.4U 2014-02-19 2014-02-19 Vibrating screen Withdrawn - After Issue CN203778339U (en)

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Application Number Priority Date Filing Date Title
CN201420070804.4U CN203778339U (en) 2014-02-19 2014-02-19 Vibrating screen

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CN201420070804.4U Withdrawn - After Issue CN203778339U (en) 2014-02-19 2014-02-19 Vibrating screen

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103769362A (en) * 2014-02-19 2014-05-07 徐州徐工施维英机械有限公司 Vibrating screen

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103769362A (en) * 2014-02-19 2014-05-07 徐州徐工施维英机械有限公司 Vibrating screen
CN103769362B (en) * 2014-02-19 2015-12-23 徐州徐工施维英机械有限公司 A kind of vibratory sieve

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