CN204371105U - Shock-resistant high-bearing roll-slide combined bearing - Google Patents

Shock-resistant high-bearing roll-slide combined bearing Download PDF

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Publication number
CN204371105U
CN204371105U CN201420856108.6U CN201420856108U CN204371105U CN 204371105 U CN204371105 U CN 204371105U CN 201420856108 U CN201420856108 U CN 201420856108U CN 204371105 U CN204371105 U CN 204371105U
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China
Prior art keywords
bearing
shock
rolling assembly
work plane
annular
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Withdrawn - After Issue
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CN201420856108.6U
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Chinese (zh)
Inventor
张新国
倪建成
冯涛
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YANGZHOU JFMMRI METALFORMING MACHINERY CO Ltd
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YANGZHOU JFMMRI METALFORMING MACHINERY CO Ltd
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Abstract

Shock-resistant high-bearing roll-slide combined bearing.Belong to mechanical industry equipment technical field.A kind of needs both having adapted to High Rotation Speed even running are provided, the supporting capacity of bearing and shock-resistant ability can be improved again, the shock-resistant high-bearing roll-slide combined bearing that the wearing and tearing that simultaneously can slow down sliding bearing extend the application life of bearing.Comprise internal support and external support, also comprise rolling assembly, elastic component and gland, described rolling assembly is annular, described internal support has columniform external surface, the middle part of described internal support external surface is provided with a circle outer lug, the end face of described outer lug forms work plane one, and be respectively equipped with domatic one at the two ends of described outer lug, described in two ends, the outside of domatic is the axle journal of internal support.Skid bearing of the present utility model both can meet the instructions for use under high-speed smooth loaded-up condition, emergent shock loading when working under can bearing again high-speed smooth load, or when steady load operation, the large loading movement supporting of moment in short-term needs.

Description

Shock-resistant high-bearing roll-slide combined bearing
Technical field
The utility model belongs to mechanical industry equipment technical field, relates to a kind of roll-slide combined bearing.
Background technology
Rolling bearing can bear certain load at high speed, but impact resistance is poor, the impact resistance of sliding bearing is better, but can only work at lower speeds, but in the application scenario that some are special, such as mine, gear wheel probing in oil, punching press etc. is forged in Forging equipment work, operating mechanism's high speed is pivotal while, its load mostly is impact load, this just has higher requirement to loading bearing, the needs of steady running during high rotating speed should be met, shock loading lower bearing can be met again not damaged, skid bearing arises at the historic moment for this reason.Traditional skid bearing is that the elastic deformation of the rolling assembly body utilizing supporting is to realize the conversion between rolling bearing and sliding bearing, this mode rolling assembly body under shock loading or high-strength load effect there occurs elastic deformation, its profile Yi Chengfei garden state, rolling reality now also becomes slip, the Internal and external cycle of rolling assembly body, bearing all can wear and tear heating seriously because of sliding friction, also have a strong impact on the life-span of bearing simultaneously.
Such as, the patented technology of State Intellectual Property Office's disclosed " title: the hollow roll-slide combined bearing of rock bit, application number: 201310011517. 6 ", the hollow roll-slide combined bearing of the rock bit provided under a kind of high speed, severe duty.Its objective is the fretting wear that can effectively reduce between each parts of bearing, improve its supporting capacity, and there is absorbing, vibration-damping function, thus effectively can extend the application life of rock bit.Its technical scheme comprises: between gear wheel endoporus and gear claw journal, be evenly arranged hollow cylinder rolling assembly, roller and quadrant block that quantity is equal, or at gear claw journal and the sliding sleeve being with oilhole can be arranged between rolling element and slide block.Its advantage is only the drawback of point cantact or linear contact lay when being and changing in the past carrying heavy duty at a high speed, but this case Problems existing is: when carrying severe duty, being still by the quadrant block bearing load of monomer, being difficult to the load that withstands shocks.
Utility model content
The purpose of this utility model is to provide one can overcome above-mentioned defect, both the needs of High Rotation Speed even running had been adapted to, the supporting capacity of bearing and shock-resistant ability can be improved again, the shock-resistant high-bearing roll-slide combined bearing that the wearing and tearing that simultaneously can slow down sliding bearing extend the application life of bearing.
The technical solution of the utility model is: comprise internal support and external support, also comprises rolling assembly, elastic component and gland, and described rolling assembly is annular,
Described internal support has columniform external surface, the middle part of described internal support external surface is provided with a circle outer lug, the end face of described outer lug forms work plane one, and be respectively equipped with domatic one at the two ends of described outer lug, described in two ends, the outside of domatic is the axle journal of internal support;
Described external support has the inner surface of cylinder hole shape, and the middle part of described external support inner surface is provided with a circle internal projection, and the end face of described internal projection forms work plane two, is respectively equipped with domatic two at the two ends of described internal projection;
On on internal support described in two ends domatic one and external support, domatic two described in two ends form the horn mouth of the annular of an outward opening respectively;
The described rolling assembly of annular is located in the described horn mouth of annular, and described elastic component ecto-entad is fitted described rolling assembly, and described gland ecto-entad fixes described elastic component, and described gland is fixedly connected on described external support or internal support;
Leave the working clearance between described work plane one and described work plane two, the internal diameter of described gland mesopore, slightly larger than the external diameter of described axle journal, makes described internal support freely can rotate relative to external support.
Lining is provided with between described work plane one and work plane two; Described lining is fixedly connected on described work plane one or described lining is fixedly connected on described work plane two or in the working clearance of described lining empty set between described work plane one and work plane two.
The described rolling assembly of annular comprises some balls or conical roller.
Described some balls or conical roller are retrained by retainer.
The described rolling assembly of annular is an overall annulus, and the cross section of described rolling assembly is fan-shaped, and described fan-shaped and described bell-mouthed shape is suitable.
Described fan-shaped dual-side is curvilinear, described bell-mouthed side and described curvilinear suitable.
The described rolling assembly of annular is an overall annulus, and the cross section of described rolling assembly is circular.
Described elastic component is metal spring piece or non-metal elastic part.
The dividing plate of annular is provided with between described elastic component and rolling assembly.
The outer annular surface of described toroidal membrane is provided with rolling mechanism.
Composite bearing of the present utility model comprises the rolling element assembly with rolling bearing performance and has sliding bearing effect carrying lining, under usual state, rolling bearing (internal support, external support, rolling assembly) takes on supporting role, can meet operation during lower load simultaneously; When having heavily loaded load or impact loading, by the bell-mouthed contraction between external support and internal support, can there is axial displacement in rolling assembly.Make to occur between work plane one and work plane two that slight axle center offsets, two work planes are bonded to each other towards the position of loading direction, and forming surface contacts; Now, two work planes (or carrying lining) adapter load sliding bearing takes on heavy duty supporting, after load transfers underloading to, rolling assembly resets under the effect of elastic force, rolling bearing recovers supporting loaded state, sliding bearing deviates from duty automatically, and the axle center of work plane one and work plane two resets, and still keeps original working clearance.The effect of this rolling bearing and sliding bearing is changed and is automatically completed according to the change of load completely.
The utility model compared with prior art its advantage is:
(1) feature of rolling bearing is suitable for steady load, can work at high speeds, and the feature of sliding bearing is that supporting capacity is high, normally can work under impact loading, but be unsuitable for working at high speeds, this refers to plain bearing certainly, not containing static pressure type sliding bearing.The load of static pressure type sliding bearing is more close with rolling bearing with speed characteristics.Skid bearing of the present utility model both can meet the instructions for use under high-speed smooth loaded-up condition, emergent shock loading when working under can bearing again high-speed smooth load, or when steady load operation, the large loading movement supporting of moment in short-term needs.
(2) elastic deformation of what existing skid bearing realized that rolling bearing and sliding bearing conversion rely on is rolling assembly body under load effect, but this elastic deformation of rolling assembly body also makes rolling assembly body become not rounded state, rolling assembly body deformability is after non-circle, its rolling will be also no longer pure rolling, but be turned into skid composite sport, the wearing and tearing of rolling assembly body and bearing enclose can be strengthened like this, shorten the life-span of bearing.And roll-slide combined bearing rolling assembly body of the present utility model is non-resilient, under heavy load effect, moving axially of rolling assembly body makes it take on aiding support, rolling element remains on better rolling condition always in the process, and fretting wear fever phenomenon can be very significantly improved.
(3) what known in addition skid bearing adopted is rolling element and sliding slider compartment structure, therefore loaded area and supporting capacity are restricted, the quantity of rolling rolling assembly body is very limited, can be lower with the load critical point of rolling bearing mode work, exceed this critical point, skid bearing will be devoted oneself to work in the mode of sliding bearing, too early incision sliding mode pattern also can strengthen the wearing and tearing of sliding bearing, roll-slide combined bearing of the present utility model can change design as required, load-carrying properties can meet and have heavy duty more, the need of work of occasion and bearing capacity changes.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model embodiment one,
Fig. 1 .1 is A-A echelon sectional view in Fig. 1,
Fig. 2 is the structural representation of external support in the utility model,
Fig. 3 is the structural representation of internal support in the utility model,
Fig. 4 is the structural representation of rolling assembly in the utility model,
Fig. 5 is the left view of Fig. 4,
Fig. 6 is another embodiment schematic diagram of annular rolling assembly in the utility model,
Fig. 7 is the structural representation of the utility model embodiment two,
Fig. 8 is the structural representation of the utility model embodiment three,
Fig. 9 is the structural representation of the utility model embodiment four,
Figure 10 is the structural representation of the utility model embodiment five,
Figure 11 is fundamental diagram one of the present utility model,
Figure 12 is fundamental diagram two of the present utility model;
In figure, 1 is internal support, and 11 is work planes one, and 12 is domatic one, and 13 is axle journals,
2 is linings,
3 is external supports, and 31 is work planes two, and 32 is domatic two,
4 is rolling assemblies,
5 is dividing plates, and 51 is rolling mechanisms,
6 is elastic components
7 is glands, and 71 is gland flange collars, and 72 is mesopores, and 721 is sealing rings,
8 is working clearances;
In figure, F is heavy load, and f is elastic force, and large hollow arrow represents heavy load action direction, and little filled arrows represents resilient force direction, and line arrow represents the direction of motion.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described further:
The utility model is as Figure 1-10 shows: comprise internal support 1 and external support 3, also comprise rolling assembly 4, elastic component 6 and gland 7, and rolling assembly 4 is annular,
Internal support 1 has columniform external surface, and the middle part of internal support 1 external surface is provided with a circle outer lug, and the end face of outer lug forms work plane 1, and be respectively equipped with domatic 1 at the two ends of outer lug, the outside at two ends domatic 1 is the axle journal 13 of internal support 1; As shown in Figure 3.
External support 3 has the inner surface of cylinder hole shape, and the middle part of external support 3 inner surface is provided with a circle internal projection, and the end face of internal projection forms work plane 2 31, is respectively equipped with domatic 2 32 at the two ends of internal projection; As shown in Figure 2.
On internal support 1 two ends domatic 1 and external support 3 on domatic 2 32 horn mouths forming the annular of an outward opening respectively at two ends; This horn mouth forms the effect of wedge on radial section.
The rolling assembly 4 of annular is located in horn mouth, elastic component 6 ecto-entad laminating rolling assembly 4, and gland 7 ecto-entad fixes elastic component 6, and gland 7 is fixedly connected on external support 3 or internal support 1; Namely by elastic component 6 by annular rolling assembly 4 " filling in " in horn mouth, remain on as far as possible without time heavy load (or underload) outward, the axiality of internal support so that without running up during heavy load.
Leave the working clearance 8 between work plane 1 and work plane 2 12, the internal diameter of the mesopore 72 of gland 7, slightly larger than the external diameter of axle journal 13, makes internal support 1 can rotate relative to external support 3.Here need illustrate: herein " slightly larger than " limit those skilled in the art can determine, be when trace eccentric (as shown in Figure 11,12) appears in internal support 1 and external support 3 when needing for mutually moving and guarantee heavy load, still can guarantee mutual motion between the two and a kind of dimensional fits relation of retaining.
Lining 2 is provided with between work plane 1 and work plane 2 12; Lining 2 is fixedly connected on work plane 1 or lining 2 is fixedly connected on work plane 2 31 or lining 2 empty set between work plane one and work plane two in the working clearance 8.
The rolling assembly of annular comprises some balls or conical roller.As shown in Fig. 1 .1, this kind of embodiment, when not loading heavy load, is rolling friction completely.To this situation, increase retainer, retrain some balls or conical roller more preferably.Be more suitable for running up.
Elastic component 6 is metal spring piece or non-metal elastic part or constant force thrust unit, in metal spring piece, can be mechanical spring class, such as disc spring, helical spring, ripple spring etc., preferred disc spring; Non-metal elastic part, the elastic component that such as elastomeric material or polyurethane material are obtained; Constant force thrust unit, can be the pneumatic or hydraulic mechanism of cylinder or hydraulic cylinder class, also can be magnetic suspension or other magnetic means.
The dividing plate 5 of annular is provided with between elastic component 6 and rolling assembly 4.
The outer annular surface of toroidal membrane 5 is provided with rolling mechanism 51.Such as: ball, rolling ring, rolling bearing or slide bushing bearing etc.
The utility model is further illustrated below in conjunction with various embodiments;
Fig. 1 embodies the utility model embodiment one, in its structure, rolling assembly 4 has two kinds of implementing measures, one is conical roller in groups, two are rolling assemblies 4 is as shown in Figure 4,5 an overall annulus, the cross section of rolling assembly 4 is fan-shaped, fan-shaped and bell-mouthed shape is suitable, to form wedge effect.For guaranteeing contact area further, fan-shaped dual-side is curvilinear, and bell-mouthed side (i.e. the surface of domatic 1 and domatic 2 32) is suitable with curvilinear; Aforesaid curve can be the curve such as camber line, involute, when there is unbalance loading load, can better guard block, and avoid occurring inordinate wear, as shown in figure 12.
Fig. 7 is the structural representation of the utility model embodiment two, and in its structure, rolling assembly 4 is two kinds of situations, and one is spherical ball in groups; The rolling assembly 4 of second ring is an overall annulus, and the cross section of rolling assembly is annular.I.e. standard annulus.As shown in Figure 6.
Fig. 8 is the structural representation of the utility model embodiment three, does not arrange lining 2 in its structure between work plane 1 and work plane 2 12, only remains with the working clearance 8.In this embodiment, the surface of work plane 1 and work plane 2 12 is suitably processed, makes that there is anti-wear performance, can technical problem to be solved in the utility model be solved equally.
Fig. 9 is the structural representation of the utility model embodiment four, and in its structure, one is that outer annular surface to toroidal membrane 5 is provided with rolling mechanism 51, and shown by the present embodiment is ball or rolling ring.In addition, take liquid sealing measure between axle journal 13, gland mesopore 72 in this example, be namely provided with sealing ring 721.
Figure 10 is the structural representation of the utility model embodiment five, directly processes on the axle, dish (wheel hub) of equipment, can solve technical problem to be solved in the utility model equally by inner support 1 structure of the present utility model, external support 3 structure.
Operating principle of the present utility model is:
Rolling assembly in rolling bearing assembly compresses elastic component and is pressed in the horn mouth between internal support and external support by dividing plate, the load that rolling bearing assembly can bear depends on the elastic force compressing elastic component, the elastic force simultaneously compressing elastic component can eliminate the gap between internal support and external support, thus it is more steady that rolling bearing assembly is run at high speeds.
After the load of bearing when roll-slide combined bearing increases the weight of, loading force passes to internal support by rolling assembly, the axial force that rolling assembly bears in the process of power transmission simultaneously can promote rolling assembly and goes to overcome the thrust of compression elastic component and be subjected to displacement vertically, internal support departs from external support center line the position that overlaps, gap between interior external support is radially equivalent distribution therefore and no longer, but the gap smaller that can produce along the applying direction of load near load applying position, gap away from load applying position becomes large, when the gap in load position between external support, equal external support and lining (or internal support and lining, specifically be fixed on external support according to lining or be fixed on internal support different) between gap time, load both passed through external support, lining, internal support transmits, lining becomes the main undertaker of dynamic changes process, rolling assembly withdraws to the secondary undertaker into load, the motion bearing mode of compound skid bearing also changes sliding bearing pattern at this point.
After load alleviates, the elastic force compressing elastic component can promote rolling assembly and reset, external support and internal support are also forced to reset simultaneously with it, the center line of interior external support returns unanimously again, gap between interior external support returns to uniform state, external support and lining (or internal support and lining) disengage motion state, and sliding bearing assembly is deactivated state, and compound skid bearing also revert to rolling bearing state.Conversion between this rolling bearing state and sliding bearing state completes automatically according to the change of load completely.
Rolling bearing that the utility model adopts and sliding bearing composite construction, being different from general roll-slide combined bearing utilizes the elastic deformation of rolling assembly body to realize skid conversion, but realize the supporting conversion between rolling and sliding by the slippage of rolling assembly body, avoid common skid bearing elastic rolling assembly body after elastic deformation, its supporting is still that skid is hybrid, and the large life-span of wearing and tearing is short.Roll-slide combined bearing of the present utility model is only rolling bearing carrying under high speed low year state, and heavy duty or shock loading time by sliding bearing as main carrying, rolling bearing serves as auxiliary carrying, supporting capacity high-impact is strong, frictional heating wearing and tearing are little, and the life-span is longer, can keep the stationarity operated in bearing working, unexpected impact load in operation process can be born again, be suitable for oil field, mining equiment, Forging equipment, heavily loaded reductor, directly drive many applications such as motor.
Situation during appearance load change as shown in Figure 11,12.
Figure 11 is in normal course of operation, occurs situation during heavy load F.Now, there is circumferential movement in external support 3 and internal support 1, produces trace eccentric, and original working clearance 8 retained occurs change in heavy load F arriving direction.The horn mouth in heavy load F arriving direction shrinks, diminishes, and causes in the axial direction " extruding " rolling assembly 4 outwards movement.But now elastic component 6 still produces active force to rolling assembly 4, rolling assembly 4 is made to occur the deflection of trace, as shown in solid arrow in Figure 11.Still can remain with rational movement clearance between each parts, remain with oil film, avoid inordinate wear.
Situation when Figure 12 is heavy load F unbalance loading.External support 3 deflects, and rolling assembly 4 diagonal angle bears substantially suitable elastic force f respectively.In this case, easily component wear is caused.But suitably design is carried out to rolling assembly 4 and can increase the ability that it bears unbalance loading situation.The i.e. embodiment of aforementioned to be side by rolling assembly 4 Cross section Design be camber line, involute.

Claims (10)

1. shock-resistant high-bearing roll-slide combined bearing, comprises internal support and external support, it is characterized in that, also comprises rolling assembly, elastic component and gland, and described rolling assembly is annular,
Described internal support has columniform external surface, the middle part of described internal support external surface is provided with a circle outer lug, the end face of described outer lug forms work plane one, and be respectively equipped with domatic one at the two ends of described outer lug, described in two ends, the outside of domatic is the axle journal of internal support;
Described external support has the inner surface of cylinder hole shape, and the middle part of described external support inner surface is provided with a circle internal projection, and the end face of described internal projection forms work plane two, is respectively equipped with domatic two at the two ends of described internal projection;
On on internal support described in two ends domatic one and external support, domatic two described in two ends form the horn mouth of the annular of an outward opening respectively;
The described rolling assembly of annular is located in the described horn mouth of annular, and described elastic component ecto-entad is fitted described rolling assembly, and described gland ecto-entad fixes described elastic component, and described gland is fixedly connected on described external support or internal support;
Leave the working clearance between described work plane one and described work plane two, the internal diameter of described gland mesopore, slightly larger than the external diameter of described axle journal, makes described internal support freely can rotate relative to external support.
2. shock-resistant high-bearing roll-slide combined bearing according to claim 1, is characterized in that, is provided with lining between described work plane one and work plane two; Described lining is fixedly connected on described work plane one or described lining is fixedly connected on described work plane two or in the working clearance of described lining empty set between described work plane one and work plane two.
3. shock-resistant high-bearing roll-slide combined bearing according to claim 1, is characterized in that, the described rolling assembly of annular comprises some balls or conical roller.
4. shock-resistant high-bearing roll-slide combined bearing according to claim 3, is characterized in that, described some balls or conical roller are retrained by retainer.
5. shock-resistant high-bearing roll-slide combined bearing according to claim 1, is characterized in that, the described rolling assembly of annular is an overall annulus, and the cross section of described rolling assembly is fan-shaped, and described fan-shaped and described bell-mouthed shape is suitable.
6. shock-resistant high-bearing roll-slide combined bearing according to claim 5, is characterized in that, described fan-shaped dual-side is curvilinear, described bell-mouthed side and described curvilinear suitable.
7. shock-resistant high-bearing roll-slide combined bearing according to claim 1, is characterized in that, the described rolling assembly of annular is an overall annulus, and the cross section of described rolling assembly is circular.
8. shock-resistant high-bearing roll-slide combined bearing according to claim 1, is characterized in that, described elastic component is metal spring piece or non-metal elastic part.
9. shock-resistant high-bearing roll-slide combined bearing according to claim 1, is characterized in that, is provided with the dividing plate of annular between described elastic component and rolling assembly.
10. shock-resistant high-bearing roll-slide combined bearing according to claim 9, it is characterized in that, the outer annular surface of described toroidal membrane is provided with rolling mechanism.
CN201420856108.6U 2014-12-30 2014-12-30 Shock-resistant high-bearing roll-slide combined bearing Withdrawn - After Issue CN204371105U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420856108.6U CN204371105U (en) 2014-12-30 2014-12-30 Shock-resistant high-bearing roll-slide combined bearing

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Application Number Priority Date Filing Date Title
CN201420856108.6U CN204371105U (en) 2014-12-30 2014-12-30 Shock-resistant high-bearing roll-slide combined bearing

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CN204371105U true CN204371105U (en) 2015-06-03

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104533294A (en) * 2014-12-30 2015-04-22 扬州捷迈锻压机械有限公司 Impact-resistant high-load rolling-sliding combined bearing
CN112128236A (en) * 2020-09-21 2020-12-25 西安电子科技大学 Rolling-sliding radial-sliding thrust combined bearing

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104533294A (en) * 2014-12-30 2015-04-22 扬州捷迈锻压机械有限公司 Impact-resistant high-load rolling-sliding combined bearing
CN112128236A (en) * 2020-09-21 2020-12-25 西安电子科技大学 Rolling-sliding radial-sliding thrust combined bearing
CN112128236B (en) * 2020-09-21 2021-06-25 西安电子科技大学 Rolling-sliding radial-sliding thrust combined bearing

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AV01 Patent right actively abandoned

Granted publication date: 20150603

Effective date of abandoning: 20160824

C25 Abandonment of patent right or utility model to avoid double patenting