CN204208773U - Split type inertia vibrator - Google Patents

Split type inertia vibrator Download PDF

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Publication number
CN204208773U
CN204208773U CN201420653273.1U CN201420653273U CN204208773U CN 204208773 U CN204208773 U CN 204208773U CN 201420653273 U CN201420653273 U CN 201420653273U CN 204208773 U CN204208773 U CN 204208773U
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China
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vibrating
power output
described multiple
type coupling
split type
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CN201420653273.1U
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Chinese (zh)
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盛金平
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Individual
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Abstract

The utility model discloses a kind of split type inertia vibrator, include transfer gear box, multiple separating type coupling with soft connection and multiple vibrating mechanism, dynamic power shaft and multiple power output shaft on transfer gear box, in multiple power output shaft, power output shaft corresponding between two rotates in opposite directions, multiple separating type coupling with soft connection includes initiatively connection, driven and software connector respectively, multiple vibrating mechanism includes bearing housing, main shaft and vibrating mass respectively, and the bearing housing of multiple vibrating mechanism is installed in parallel on installing mechanism; Multiple separating type coupling with soft connection is connected between corresponding power output shaft and the main shaft of vibrating mechanism.Vibrating device and power drive transmission system are effectively kept apart by the utility model, drastically increase the reliability of equipment, single motor can be adopted simultaneously to drive and achieve frequency control, significantly reduce energy resource consumption, be suitable for the demand of different operating mode.

Description

Split type inertia vibrator
Technical field
The utility model relates generally to mechanical vibrator, particularly relates to inertia vibrating machine, specifically a kind of split type inertia vibrator.
Background technology
Vibrating machine is widely used in numerous production field, along with the excitation method of the different vibrating machines of operating mode is also multifarious.Inertial oscillation is adopted in a large number because it has the characteristic of directional vibration.But in the inertial vibration machine used at present, also there is a lot of defect, bring larger trouble to applying unit.As independent suspension two vibrating motor schemes; although achieve directional vibration; but often there will be the problems such as motor oscillating is asynchronous, oscillatory torque is inconsistent, particularly motor body participates in vibration, often occurs that motor self shatters, power phase shortage motor damage appears in cable breakage.Cause maintenance cost to remain high, incur loss through delay and produce.Meanwhile, because two motor electromagnetic parameters are difficult to consistent, unified frequency control cannot be accomplished, greatly affect result of use.
Utility model content
The purpose of this utility model is to provide a kind of split type inertia vibrator, vibrating device and power drive transmission system are effectively kept apart, to improve the reliability of equipment, single motor can be adopted simultaneously to drive and realize frequency control, to reduce energy resource consumption, be suitable for the demand of different operating mode.
The technical solution of the utility model is as follows:
A kind of split type inertia vibrator, it is characterized in that: include transfer gear box, multiple separating type coupling with soft connection and multiple vibrating mechanism, dynamic power shaft and multiple power output shaft on described transfer gear box, in described multiple power output shafts, power output shaft corresponding between two rotates in opposite directions, described multiple separating type coupling with soft connections include initiatively connection respectively, driven and be connected to initiatively connection and driven between software connector, described multiple vibrating mechanisms include bearing housing respectively, main shaft and the vibrating mass be arranged on main shaft, the bearing housing of multiple vibrating mechanism is installed in parallel on installing mechanism, corresponding connection with the active of described multiple separating type coupling with soft connection is connected described multiple power output shafts respectively, and the driven corresponding respectively of described multiple separating type coupling with soft connection is connected with the main shaft of described multiple vibrating mechanism.
The split type inertia vibrator of described one, is characterized in that: described power input shaft is connected with external motor-driven.
The split type inertia vibrator of described one, is characterized in that: the software connector of described multiple separating type coupling with soft connection is the c-shaped damping ring in cross section or in multiple bending shock absorption bar spaced apart.
The split type inertia vibrator of described one, is characterized in that: the vibrating mass of described multiple vibrating mechanism is respectively secter pat or eccentric block.
The split type inertia vibrator of described one, is characterized in that: described installing mechanism is mount pad, erecting bed, installation casing or installation frame.
The beneficial effects of the utility model:
Vibrating device and power drive transmission system are effectively kept apart by the utility model, drastically increase the reliability of equipment, single motor can be adopted simultaneously to drive and achieve frequency control, significantly reduce energy resource consumption, be suitable for the demand of different operating mode.
Accompanying drawing explanation
Fig. 1 is the utility model structural representation.
Fig. 2 is the structural representation of separating type coupling with soft connection in the utility model.
Fig. 3 is the working state figure of two vibrating mechanisms in the utility model.
Detailed description of the invention
See accompanying drawing, a kind of split type inertia vibrator, include transfer gear box 1, two separating type coupling with soft connections 2 and two vibrating mechanisms 3, dynamic power shaft 4 and two power output shafts 5 on transfer gear box 1, two power output shafts 5 rotate in opposite directions, two separating type coupling with soft connections 2 include respectively and initiatively join 2-1, driven 2-2 and be connected to the software connector 2-3 initiatively joined between 2-1 and driven 2-2, two vibrating mechanisms 3 include bearing housing 3-1 respectively, main shaft 3-2 and the vibrating mass 3-3 be arranged on main shaft 3-2, the bearing housing 3-1 of two vibrating mechanisms 3 is installed in parallel on installing mechanism 6, two power output shafts 5 are corresponding to be respectively connected with the 2-1 that initiatively joins of two separating type coupling with soft connections 2, and the driven 2-2 of two separating type coupling with soft connections 2 respectively correspondence is connected with the main shaft 3-2 of two vibrating mechanisms 3.
In the utility model, power input shaft 4 is connected with external motor-driven; The software connector 2-3 of two separating type coupling with soft connections 2 is the c-shaped damping ring in cross section or in multiple bending shock absorption bar spaced apart; The vibrating mass 3-3 of two vibrating mechanisms 3 is respectively secter pat or eccentric block; Installing mechanism 6 is mount pad, erecting bed, installation casing or installation frame.
Below in conjunction with accompanying drawing, the utility model is further described:
The utility model adopts single motor as drive source, start this single motor, power is delivered to power input shaft 4 by motor, power through transfer gear box 1 distributes, two power output shafts 5 are rotated in opposite directions, thus drive the main shaft 3-2 of two vibrating mechanisms 3 to rotate in opposite directions, and then drive the vibrating mass 3-3 on the main shaft 3-2 of two vibrating mechanisms 3 to rotate in opposite directions, whole vibrator is made to produce the inertial oscillation moment in direction as shown in Figure 3, change the power supply incoming frequency of motor on demand, corresponding vibration frequency and other vibrating effects can be obtained, significantly reduce energy resource consumption, be suitable for the demand of different operating mode.
Vibrating device and power drive transmission system are effectively kept apart by the separating type coupling with soft connection in the utility model, and the vibration that vibrating device produces can not affect or interfere with driving transmission system, drastically increases the reliability of equipment.

Claims (5)

1. a split type inertia vibrator, it is characterized in that: include transfer gear box, multiple separating type coupling with soft connection and multiple vibrating mechanism, dynamic power shaft and multiple power output shaft on described transfer gear box, in described multiple power output shafts, power output shaft corresponding between two rotates in opposite directions, described multiple separating type coupling with soft connections include initiatively connection respectively, driven and be connected to initiatively connection and driven between software connector, described multiple vibrating mechanisms include bearing housing respectively, main shaft and the vibrating mass be arranged on main shaft, the bearing housing of multiple vibrating mechanism is installed in parallel on installing mechanism, corresponding connection with the active of described multiple separating type coupling with soft connection is connected described multiple power output shafts respectively, and the driven corresponding respectively of described multiple separating type coupling with soft connection is connected with the main shaft of described multiple vibrating mechanism.
2. the split type inertia vibrator of one according to claim 1, is characterized in that: described power input shaft is connected with external motor-driven.
3. the split type inertia vibrator of one according to claim 1, is characterized in that: the software connector of described multiple separating type coupling with soft connection is the c-shaped damping ring in cross section or in multiple bending shock absorption bar spaced apart.
4. the split type inertia vibrator of one according to claim 1, is characterized in that: the vibrating mass of described multiple vibrating mechanism is respectively secter pat or eccentric block.
5. the split type inertia vibrator of one according to claim 1, is characterized in that: described installing mechanism is mount pad, erecting bed, installation casing or installation frame.
CN201420653273.1U 2014-11-03 2014-11-03 Split type inertia vibrator Active CN204208773U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420653273.1U CN204208773U (en) 2014-11-03 2014-11-03 Split type inertia vibrator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420653273.1U CN204208773U (en) 2014-11-03 2014-11-03 Split type inertia vibrator

Publications (1)

Publication Number Publication Date
CN204208773U true CN204208773U (en) 2015-03-18

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420653273.1U Active CN204208773U (en) 2014-11-03 2014-11-03 Split type inertia vibrator

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CN (1) CN204208773U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104353600A (en) * 2014-11-03 2015-02-18 盛金平 Separated inertia vibrator
CN107225077A (en) * 2016-03-24 2017-10-03 武汉科技大学 A kind of unidirectional pulse forcer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104353600A (en) * 2014-11-03 2015-02-18 盛金平 Separated inertia vibrator
CN107225077A (en) * 2016-03-24 2017-10-03 武汉科技大学 A kind of unidirectional pulse forcer

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