CN205193657U - Electronic equipment and flexible device - Google Patents
Electronic equipment and flexible device Download PDFInfo
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- CN205193657U CN205193657U CN201520772714.4U CN201520772714U CN205193657U CN 205193657 U CN205193657 U CN 205193657U CN 201520772714 U CN201520772714 U CN 201520772714U CN 205193657 U CN205193657 U CN 205193657U
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Abstract
The utility model discloses a flexible device, including first sliding shaft, second sliding shaft, middle sliding shaft combinatorial sum connecting elements group, middle sliding shaft group is including a plurality of middle sliding shafts that set in a row, connecting elements group organizes middle sliding shaft can move to another place and connects in first sliding shaft and second sliding shaft, the extending direction of sliding shaft group buckled in the middle of flexible device can be followed to the department of buckling of this flexibility device is the arc structure all the time. The utility model provides a flexible device adopts mechanical structure to realize the bending deformation, compares to take place bending property variation and cracked problem after the plasticity board can be avoided frequently using. The utility model provides an electronic equipment, this electronic equipment have used above -mentioned flexible device, have the crooked flow of flexible screen, longe -lived effect.
Description
Technical field
The utility model relates to Mechanical Industry Technology field, more particularly, relates to a kind of flexible apparatus, also relates to a kind of electronic equipment applying above-mentioned flexible apparatus.
Background technology
Along with the development of society, electronic equipment is applied to the productive life of people more and more widely.
At present, in electronic equipment, have can diastrophic flexible screen for display screen, but, device for supporting above-mentioned flexible screen is set to plastic plate, and after frequent use, above-mentioned plastic plate easily produces stress hardening, cannot be smooth bending, even rupture, affect the serviceable life of flexible screen.
In sum, how a kind of flexible apparatus is provided, to avoid it as the plastic plate problem that bending degradation even ruptures after long-time use, and how providing a kind of electronic equipment applying above-mentioned flexible apparatus, is those skilled in the art's problem demanding prompt solutions.
Utility model content
In view of this, the utility model provides a kind of flexible apparatus, and this flexible apparatus adopts physical construction to realize flexural deformation, compared to the problem of bend after plastic plate can avoid frequent use degradation and fracture.The utility model also provides a kind of electronic equipment, and the above-mentioned flexible apparatus of this electronic apparatus application, has a bending flow process, the effect that the life-span is long.
For achieving the above object, the utility model provides following technical scheme:
A kind of flexible apparatus, comprising:
First sliding axle;
Second sliding axle;
Middle slip axle group, described middle slip axle group comprises multiple middle slip axle set in a row;
Connecting elements group, described middle slip axle group is movably connected to described first sliding axle and described second sliding axle by described connecting elements group;
Wherein, described flexible apparatus can bend along the bearing of trend of described middle slip axle group, and the bending place of described flexible apparatus curved structure all the time.
Preferably, in above-mentioned flexible apparatus, described bending place comprises M root sliding axle, and the arcuate structure of described bending place refers to that the outer tangent plane of described M root sliding axle is arcwall face.
Preferably, in above-mentioned flexible apparatus, when described M root sliding axle forms arcuate structure, be positioned at each sliding axle geo-stationary of described M root sliding axle first side; Be positioned at each sliding axle geo-stationary of described M root sliding axle second side.
Preferably, in above-mentioned flexible apparatus, the two ends of described connecting elements group are set with in described first sliding axle and described second sliding axle, and the center section of described connecting elements group is set in described middle slip axle group.
Preferably, in above-mentioned flexible apparatus, described connecting elements group comprises:
First connecting elements, described first connecting elements has five suit holes along the first rectilinear direction distribution, and wherein, middle suit hole is the first suit hole, and 4 suit holes of both sides are respectively the second suit hole; Described first suit hole can make first be set with sliding axle that hole coordinates around own axis with this, and this direction vertical with described first rectilinear direction, sliding axle edge can be made to slide; Described second suit hole can make second to be set with sliding axle that hole coordinates around own axis with this;
Second connecting elements, described second connecting elements has five suit holes along the second rectilinear direction distribution, and wherein, middle suit Kong Wei tri-is set with hole, two that are set with that hole is close to the 3rd are set with hole and are respectively the 4th and are set with hole, and two the suit holes being positioned at two ends are respectively the 5th suit hole; Described 3rd suit hole enough makes be set with the 3rd sliding axle that hole coordinates around own axis, and this direction vertical with described second rectilinear direction, sliding axle edge can be made to slide; Described 4th suit hole enough makes the sliding axle coordinated with the 4th hole around own axis, and this sliding axle can be made to slide along the bearing of trend of described second straight line; Described 5th suit hole can make to be set with the 5th sliding axle that hole coordinates around own axis;
Wherein, described first connecting elements along the orientation head and the tail connection successively of described middle slip axle group, and forms the first connecting elements group; Described second connecting elements along the orientation head and the tail connection successively of described middle slip axle group, and forms the second connecting elements group; Described first suit hole and described 5th suit borehole jack are loaded on same sliding axle.
Preferably, in above-mentioned flexible apparatus, described in described first connecting elements group, the number of the first connecting elements is at least 5, and described in described second connecting elements group, the number of the second connecting elements is at least 4.
Preferably, in above-mentioned flexible apparatus, described flexible apparatus only can along curving; The one end in described first suit hole protrudes from the side of described first straight line, and the end that described first other end and described second being set with hole is set with hole is concordant; The one end in described 3rd suit hole protrudes from the side of described second straight line, and the other end and the described 4th in described 3rd suit hole is set with hole and the described 5th, and to be set with the end in hole concordant; Described first suit hole and the described 3rd is set with the homonymy of jag towards described flexible apparatus in hole.
Preferably, in above-mentioned flexible apparatus, described flexible apparatus can along two lateral bends; The two ends in described first suit hole protrude from the both sides of described first straight line respectively; The two ends in described 3rd suit hole protrude from the both sides of described second straight line respectively.
Preferably, in above-mentioned flexible apparatus, described flexible apparatus can remain on any bending state.
Preferably, in above-mentioned flexible apparatus, described connecting elements group has the 3rd connecting elements and the 4th connecting elements; Wherein, structure and the arrangement mode of the 3rd connecting elements and the first connecting elements of described connecting elements group are identical, and both are sleeved on identical sliding axle; Structure and the arrangement mode of the 4th connecting elements and the second connecting elements of described connecting elements group are identical, and both are sleeved on identical sliding axle; The sliding axle that two the second suit holes being positioned at two ends in described 3rd connecting elements can be respectively corresponding with it provides rotation damping; 5th suit hole of described 4th connecting elements can provide rotation damping for sliding axle corresponding with it.
Preferably, in above-mentioned flexible apparatus, described flexible apparatus also comprises fill block; Described fill block is sleeved on described sliding axle, and in the connecting elements group that is connected to form of same connecting elements head and the tail between two spaced connecting elements.
Preferably, in above-mentioned flexible apparatus, in described connecting elements group, on the first connecting elements, the second suit hole at two ends place can provide rotary damping for the sliding axle coordinated with it; In described connecting elements group, the 5th suit hole of the second connecting elements can provide rotary damping for the sliding axle coordinated with it.
Preferably, in above-mentioned flexible apparatus, when described flexible apparatus flattens, side is smooth.
A kind of electronic equipment, comprise flexible screen and the flexible apparatus for supporting above-mentioned flexible screen, described flexible apparatus is the flexible apparatus in technique scheme described in any one.
The utility model provides a kind of flexible apparatus, comprises the first sliding axle, the second sliding axle, the combination of middle slip axle and connecting elements group; Middle slip axle group comprises multiple middle slip axle set in a row; Middle slip axle group is movably connected to the first sliding axle and the second sliding axle by connecting elements group; Flexible apparatus can bend along the bearing of trend of middle slip axle group, and the bending place of this flexible apparatus curved structure all the time.
Flexible apparatus that the utility model provides adopts physical construction to realize flexural deformation, compared to the problem of bend after plastic plate can avoid frequent use degradation and fracture.
The utility model also provides a kind of electronic equipment, and the above-mentioned flexible apparatus of this electronic apparatus application, has flexible screen and bend flow process, the effect that the life-span is long.
Accompanying drawing explanation
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment or description of the prior art below, apparently, accompanying drawing in the following describes is only embodiments more of the present utility model, for those of ordinary skill in the art, under the prerequisite not paying creative work, other accompanying drawing can also be obtained according to these accompanying drawings.
The structural representation of the first connecting elements that Fig. 1 provides for the utility model embodiment;
Another structural representation of the first connecting elements that Fig. 2 provides for the utility model embodiment;
Another structural representation of the first connecting elements that Fig. 3 provides for the utility model embodiment;
The structural representation of the second connecting elements that Fig. 4 provides for the utility model embodiment;
Another structural representation of the second connecting elements that Fig. 5 provides for the utility model embodiment;
Another structural representation of the second connecting elements that Fig. 6 provides for the utility model embodiment;
The structural representation of the fill block that Fig. 7 provides for the utility model embodiment;
The assembling schematic diagram of the first connecting elements that Fig. 8 provides for the utility model embodiment, the second connecting elements and sliding axle;
Fig. 9 is the exploded perspective view of structure shown in Fig. 8;
Another angle schematic diagram that Figure 10 is structure shown in Fig. 8;
The structural representation in bending state of structure shown in Figure 11 Figure 10;
Figure 12 is the structural representation of the structure shown in Figure 10 when maximum bending degree;
The structural representation of the 3rd connecting elements that Figure 13 provides for the utility model embodiment;
Another structural representation of the 3rd connecting elements that Figure 14 provides for the utility model embodiment;
The structural representation of the 4th connecting elements that Figure 15 provides for the utility model embodiment;
Another structural representation of the 4th connecting elements that Figure 16 provides for the utility model embodiment;
Another structural representation of the 4th connecting elements that Figure 17 provides for the utility model embodiment;
The assembling schematic diagram of the first connecting elements that Figure 18 provides for the utility model embodiment, the second connecting elements, the 3rd connecting elements, the 4th connecting elements, fill block and sliding axle;
The assembling explosive view of the first connecting elements that Figure 19 provides for the utility model embodiment, the second connecting elements, the 3rd connecting elements, the 4th connecting elements, fill block and sliding axle;
The structural representation of the flexible apparatus that Figure 20 provides for the utility model embodiment;
Another angled arrangement schematic diagram of the flexible apparatus that Figure 21 provides for the utility model embodiment;
Figure 22 for flexible apparatus that the utility model embodiment provides be the structural representation of bending state;
Figure 23 for flexible apparatus that the utility model embodiment provides be the structural representation of another bending state;
The structural representation of the sheet fill block that Figure 24 provides for the utility model embodiment;
The structural representation of sheet the 3rd connecting elements that Figure 25 provides for the utility model embodiment;
The structural representation of sheet the 4th connecting elements that Figure 26 provides for the utility model embodiment;
Figure 27 is the structural representation of the flexible apparatus of schistose texture for connecting elements that the utility model embodiment provides;
What Figure 28 cut out the first connecting elements of crimping manufacture for employing punching press that the utility model embodiment provides faces structural representation;
Figure 29 is the stereographic map of structure shown in Figure 28;
What Figure 30 cut out the second connecting elements of crimping manufacture for employing punching press that the utility model embodiment provides faces structural representation;
Figure 31 is the stereographic map of structure shown in Figure 30;
The structural representation with the flexible apparatus of connecting elements as shown in figures 29 and 30 that Figure 32 provides for the utility model embodiment;
Figure 33 is the explosive view of structure shown in Figure 22;
Figure 34 is the structural representation of flexible apparatus shown in Figure 32 when bending state;
The main TV structure schematic diagram of the first component portion that Figure 35 provides for the utility model embodiment;
Figure 36 is the perspective view of the first component portion shown in Figure 35;
The main TV structure schematic diagram in the second component portion that Figure 37 provides for the utility model embodiment;
Figure 38 is the perspective view of the first component portion shown in Figure 37;
The main TV structure schematic diagram of the 3rd component portion that Figure 39 provides for the utility model embodiment;
Figure 40 is the perspective view of the 3rd component portion shown in Figure 39;
The main TV structure schematic diagram of the 4th component portion that Figure 41 provides for the utility model embodiment;
Figure 42 is the three-dimensional structure diagram of the 4th component portion shown in Figure 41;
The structural representation of flexible apparatus with the first component portion, second component portion, the 3rd component portion, the 4th component portion that Figure 43 provides for the utility model embodiment;
Figure 44 is for the flexible apparatus shown in Figure 43 is at the structural representation of bending state;
The structural representation of the first fixed connecting piece that Figure 45 provides for the utility model embodiment;
The structural representation of the second fixed connecting piece that Figure 46 provides for the utility model embodiment;
Wherein, in Fig. 1-Figure 46:
First connecting elements 101; First suit hole 111; Second suit hole 112; First component portion 1011; Second component portion 1012; Second connecting elements 102; 3rd suit hole 121; 4th suit hole 122; 5th suit hole 123; 3rd component portion 1021; 4th component portion 1022; 3rd connecting elements 103; 4th connecting elements 104; Fill block 200; First sliding axle 301; Second sliding axle 302; Middle slip axle 303; Suit portion 401; Installing handle 402; Second fixed connecting piece 500.
Embodiment
The utility model embodiment discloses a kind of flexible apparatus, and this flexible apparatus adopts physical construction to realize flexural deformation, compared to the problem of bend after plastic plate can avoid frequent use degradation and fracture.The invention also discloses a kind of electronic equipment, the above-mentioned flexible apparatus of this electronic apparatus application, has a bending flow process, the effect that the life-span is long.
Below in conjunction with the accompanying drawing in the utility model embodiment, be clearly and completely described the technical scheme in the utility model embodiment, obviously, described embodiment is only the utility model part embodiment, instead of whole embodiments.Based on the embodiment in the utility model, those of ordinary skill in the art are not making the every other embodiment obtained under creative work prerequisite, all belong to the scope of the utility model protection.
Refer to as 1-Figure 46, the utility model embodiment provides a kind of flexible apparatus, comprises the first sliding axle 301, second sliding axle 302 and middle slip axle group; Middle slip axle group comprises multiple middle slip axle 303 set in a row; Above-mentioned first sliding axle 301, second sliding axle 302 is parallel mutually with the axis of middle slip axle 303, and the first sliding axle 301 and the second sliding axle 302 are positioned at the both sides of middle slip axle group; Middle slip axle group is movably connected to the first sliding axle 301 and the second sliding axle 302 by connecting elements group; Wherein, this flexible apparatus can bend along the bearing of trend of middle slip axle group, and the bending place of flexible apparatus curved structure all the time.
The flexible apparatus that the utility model provides adopts physical construction to realize flexural deformation, compared to plastic plate of the prior art, and the problem of bend after can avoiding frequent use degradation and fracture.
In above-mentioned flexible apparatus, bending place comprises M root sliding axle, and the curved structure in bending place refers to that the outer tangent plane of M root sliding axle is arcwall face.
Further, above-mentioned flexible apparatus, when above-mentioned M root sliding axle forms arcuate structure, is positioned at the mutual geo-stationary of each sliding axle of this M root sliding axle first side, is positioned at the mutual geo-stationary of each sliding axle of the second side of this M root sliding axle.In this flexible apparatus, M root sliding axle forms each sliding axle geo-stationary respectively of its both sides in the process of arcuate structure, namely M root sliding axle is formed in the process of arcuate structure, and on flexible apparatus, the both sides of bending part all deformation do not occur, and facilitates user's bending flexible apparatus according to actual needs.Certainly, above-mentioned M root sliding axle can be set to comprise the first sliding axle 301 and part middle slip axle group or comprise the second sliding axle 302 and part middle slip axle group; M root sliding axle can be set to comprise the first sliding axle 301, second sliding axle 302 and sliding axle group, and accordingly, this flexible apparatus can form C type arcuate structure, can also be curled into spool-shape, facilitates user to receive.
Concrete, in above-mentioned flexible apparatus, the two ends of connecting elements group are set with in the first sliding axle 301 and the second sliding axle 302, and the center section of connecting elements group is set in middle slip axle group.
Above-mentioned connecting elements group can be set to comprise the twin shaft tooth block being set in sliding axle, twin shaft tooth block makes sliding axle connect for overall, and adjacent twin shaft tooth block engagement is formed to interfere and connects, thus realizes enabling M sliding axle in this flexible apparatus form arcuate structure.In order to simplify structure, convenient for assembly, above-mentioned syndeton is preferably set to comprise:
First connecting elements 101, first connecting elements 101 has five suit holes along the first rectilinear direction distribution, and wherein, middle suit hole is the first suit hole 111, and the suit hole of both sides is respectively the second suit hole 112; First suit hole 111 can make first be set with sliding axle that hole 111 coordinates around own axis with this, and this direction vertical with above-mentioned first rectilinear direction, sliding axle edge can be made to slide; Second suit hole 112 can make second to be set with sliding axle that hole 112 coordinates around own axis with this;
Second connecting elements 102, second connecting elements 102 has five suit holes along the second rectilinear direction distribution, wherein, middle suit Kong Wei tri-is set with hole 121, two that are set with that hole 121 is close to the 3rd are set with hole and are respectively the 4th and are set with hole 122, and two the suit holes being positioned at two ends are respectively the 5th suit hole 123; 3rd suit hole 121 enough makes be set with the 3rd sliding axle that hole 121 coordinates around own axis, and this direction vertical with above-mentioned second rectilinear direction, sliding axle edge can be made to slide; 4th suit hole 122 enough makes the sliding axle coordinated with the 4th hole around own axis, and this sliding axle can be made to slide along above-mentioned second rectilinear direction; 5th suit hole 123 can make to be set with the 5th sliding axle that hole 123 coordinates around own axis;
Wherein, the first connecting elements 101 along the orientation head and the tail connection successively of middle slip axle group, and forms the first connecting elements group; Second connecting elements 102 along the orientation head and the tail connection successively of middle slip axle group, and forms the second connecting elements group; First suit hole 111 and the 5th suit hole 123 are set in same sliding axle.Above-mentioned head and the tail connection refers to that the suit hole, end of two adjacent connecting elements is set on same sliding axle, thus forms the first connecting elements group and the second connecting elements group of connecting elements difference alternative arrangement.Certainly, for the ease of manufacturing, above-mentioned 3rd suit hole 121 and two the 4th suit holes 122 can be set to be interconnected, as illustrated in Figures 5 and 6.
In the flexible apparatus that the present embodiment provides, two kinds of connecting elements are set on sliding axle, sliding axle can be in use utilized to realize making M sliding axle form arcuate structure in the microdeformation of the motion be set with in hole and sliding axle itself, structure is simple, and easy to assembly.By carrying out reasonable reality to the size in each suit hole in actual application, the circumscribed facial disfigurement of an above-mentioned M sliding axle can be made to be arc surface, the use needs of user can be met on the one hand, be beneficial on the other hand the volume reduced when flexible apparatus is folded into U-shaped structure or serpentine configuration, facilitate user to receive.
In the flexible apparatus that above-described embodiment provides, in first connecting elements group, the number of the first connecting elements 101 is at least 5, in second connecting elements group, the number of the second connecting elements 102 is at least 4, to guarantee that this flexible apparatus can bend, and in BENDING PROCESS, sweep is curved all the time.
Above-mentioned flexible apparatus can be set to only can along curving, and accordingly, the one end in the first suit hole 111 protrudes from the side of the first straight line, and the end that first other end and second being set with hole 111 is set with hole 112 is concordant; The one end in above-mentioned 3rd suit hole 121 protrudes from the side of the second straight line, and the end and the 4th in the 3rd suit hole 121 is set with hole 122, the 5th, and to be set with the end in hole 123 concordant; Meanwhile, the first suit hole 111 and the 3rd is set with the homonymy of projected direction towards flexible apparatus in hole 121.The flexible apparatus that the present embodiment provides only can by the curving of straightened condition towards this flexible apparatus, can avoid by this flexible apparatus support as device generation back-flexings such as flexible screen, prevent as the devices such as above-mentioned flexible screen are damaged.
Certainly, according to actual needs, flexible apparatus can also be set to can to two lateral bends, and accordingly, the two ends in the first suit hole 111 protrude from the both sides of the first straight line respectively, and the two ends in the 3rd suit hole 121 protrude from the both sides of the second straight line respectively.The bending direction of the present embodiment to this flexible apparatus does not limit, and only need adjust the protrusion direction in the first suit hole 111 and the 3rd suit hole 121 according to actual needs.In addition, according to actual needs by adjusting the length dimension in the first suit hole 111 and the 3rd suit hole 121 to adjust the degree of crook of flexible apparatus.
The article (as flexible screen) supported due to flexible apparatus often need keep stationary state in application process, and the flexible apparatus that therefore above-described embodiment provides preferably is set to remain on any bending state.
Concrete, above-mentioned flexible apparatus realizes remaining on any bending state by arranging extra component, the 3rd connecting elements 103 and the 4th connecting elements 104 is also comprised as connecting elements group being set to, structure and the arrangement mode of the 3rd connecting elements 103 and the first connecting elements 101 are identical, and the 3rd connecting elements 103 and the first connecting elements 101 are sleeved on identical sliding axle; Structure and the arrangement mode of the 4th connecting elements 104 and the second connecting elements 102 are set to identical, and both are sleeved on identical sliding axle; The sliding axle that two the second suit holes 112 being positioned at two ends in 3rd connecting elements 103 can be respectively corresponding with it provides rotation damping; 5th suit hole 123 of the 4th connecting elements 104 can for being set with sliding axle corresponding to hole 123 providing rotation damping with the 5.The 5th suit hole 123 in two the second suit holes 112 and the 4th web member 104 that above-mentioned 3rd connecting elements 103 are positioned at two ends can be set to open pore respectively, both convenient both assemble with suit hole, can realize again making above-mentioned two kinds of suit holes to provide rotary damping by the sliding axle that the mode of interference fit is correspondence with it.
Certainly, in order to reduce quantity, the simplification assembly manipulation of connecting elements, the flexible apparatus that above-described embodiment provides can also be set to be set with the suit hole that hole 123 is set to provide for sliding axle corresponding with it rotation damping, to realize enabling this flexible apparatus remain on any bending state by the 5th of second of two ends on the first web member the suit hole 112 and the second web member the.Specifically can be used for friction pad close-fitting with sliding axle, as rubber blanket etc. at above-mentioned suit hole internal fixtion.
In above-mentioned flexible apparatus, connecting elements in connecting elements group is all in alternative arrangement, therefore there is more space, the equipment easily causing this flexible apparatus to support is damaged by after external force, therefore the flexible apparatus that above-described embodiment provides also comprises fill block 200, this fill block 200 is sleeved on sliding axle, and between its two connecting elements arranged separately in connecting elements group.Have three sliding axles between two connecting elements arranged separately in above-mentioned connecting elements group, in order to avoid the relative motion of sliding axle is influenced, above-mentioned fill block 200 is only sleeved on a sliding axle in three sliding axles; Certainly according to actual needs, also in three sliding axles, fill block 200 can be set respectively on any two, or fill block 200 is all set on three sliding axles.
Preferably, the flexible apparatus that above-described embodiment provides its side when flattening is smooth, be convenient to arrange flexible screen, this flexible apparatus can adopt the first connecting elements 101 shown in Fig. 1, the second connecting elements 102 shown in Fig. 4, the 3rd connecting elements 103 shown in Figure 13 and the 4th connecting elements 104 shown in Figure 15.
In above-mentioned flexible apparatus, the first connecting elements 101, second connecting elements 102 can be set to block structure respectively, and as shown in figure xy, accordingly, the structure of the 3rd connecting elements 103, the 4th connecting elements 104, fill block 200 as shown in figures 1 to 6.First connecting elements 101, second connecting elements 102 also can be set to the convenient schistose texture adopting stamped, accordingly, the 3rd connecting elements 103, the 4th connecting elements 104, fill block 200 are respectively the structure being convenient to stamped as shown in Figure 24, Figure 25, Figure 26.
In order to reduce the size of flexible apparatus, above-mentioned first connecting elements 101, second connecting elements 102 also can be set to the structure as shown in Figure 28-31, the mode that first connecting elements 101 and the second connecting elements 102 adopt steel disc punching press to bend crimping respectively makes, each suit hole is surrounded by crimping, and the 5th suit hole 123 place crimping making to be positioned at second suit hole 112, second connecting elements 102 at the first connecting elements 101 two ends roll tightly sliding axle and provide rotation damping for sliding axle.
Further, in order to save crimping procedures, be convenient to manufacture, in above-mentioned flexible apparatus, the first connecting elements 101 also can be set to be made up of the first component portion 1011 and second component portion 1012, two component portions are set on identical sliding axle, and both form the first suit hole 111 and the second suit hole 112 jointly, as shown in Figure 35-38,43-44; Accordingly, second connecting elements 102 is set to comprise the 3rd component portion 1021 and the 4th component portion 1022, two component portions are set on identical sliding axle, and both form the 3rd suit hole 121, the 4th suit hole 122 and the 5th suit hole 123 jointly, as Figure 39-44.The flexible apparatus that the present embodiment provides can accomplish integral thickness only 1.2mm.
In above-mentioned flexible apparatus, also comprise the first dead joint member for being fixedly connected with the framework of electronic equipment, as shown in figure 45.The suit portion 401 that above-mentioned first dead joint member comprises installing handle 402 and is fixedly connected with installing handle, suit portion 401 is provided with suit hole, and suit portion is for being sleeved on the first sliding axle 301 and the middle slip axle 303 adjacent with the first sliding axle 301, or for being set in the second sliding axle 302 and the middle slip axle 303 adjacent with the second sliding axle.According to the exact arrangement of the first connecting elements 101 and the second connecting elements 102 in flexible apparatus, above-mentioned suit hole can be set to identical with the suit hole on the first connecting elements 101 or identical with the suit hole on the second connecting elements 102, can also be set to only comprise three suit holes, and three suit holes and first be set withs hole 111 and be positioned at two second of the first suit hole homonymy that be set with hole 112 identical respectively, or three suit Kong Yu tri-are set with hole 121 and are positioned at the 4th of the 3rd suit hole 121 homonymy and are set with hole 122, the 5th to be set with hole 123 difference identical.The present embodiment does not limit the number and structure that suit portion are set with hole, but it makes the normal deformation of this flexible apparatus after need guaranteeing to be set in sliding axle.
Further, in above-mentioned flexible apparatus, also comprise the second fixed connecting piece 500, second fixed connecting piece identical with the first fixed connecting piece structure, and the suit hole its suit portion being positioned at end is open pore, for same sliding axle interference fit corresponding with it.
The utility model embodiment also provides a kind of electronic equipment, and this electronic equipment has flexible screen and the flexible apparatus for supporting flexible screen, wherein, and the flexible apparatus that flexible apparatus provides for above-described embodiment.
The flexible apparatus that the electronic apparatus application that the present embodiment provides above-described embodiment provides, can guarantee flexible screen flexural deformation flow process, and long service life.Certainly, the electronic equipment that the present embodiment provides also has other effect of the flexible apparatus that above-described embodiment provides, and does not repeat them here.
In this instructions, each embodiment adopts the mode of going forward one by one to describe, and what each embodiment stressed is the difference with other embodiments, between each embodiment identical similar portion mutually see.
To the above-mentioned explanation of the disclosed embodiments, professional and technical personnel in the field are realized or uses the utility model.To be apparent for those skilled in the art to the multiple amendment of these embodiments, General Principle as defined herein when not departing from spirit or scope of the present utility model, can realize in other embodiments.Therefore, the utility model can not be restricted to these embodiments shown in this article, but will meet the widest scope consistent with principle disclosed herein and features of novelty.
Claims (14)
1. a flexible apparatus, is characterized in that, comprising:
First sliding axle;
Second sliding axle;
Middle slip axle group, described middle slip axle group comprises multiple middle slip axle set in a row;
Connecting elements group, described middle slip axle group is movably connected to described first sliding axle and described second sliding axle by described connecting elements group;
Wherein, described flexible apparatus can bend along the bearing of trend of described middle slip axle group, and the bending place of described flexible apparatus curved structure all the time.
2. flexible apparatus according to claim 1, is characterized in that, described bending place comprises M root sliding axle, and the arcuate structure of described bending place refers to that the outer tangent plane of described M root sliding axle is arcwall face.
3. flexible apparatus according to claim 2, is characterized in that, when described M root sliding axle forms arcuate structure, is positioned at each sliding axle geo-stationary of described M root sliding axle first side; Be positioned at each sliding axle geo-stationary of described M root sliding axle second side.
4. flexible apparatus according to claim 3, is characterized in that, the two ends of described connecting elements group are set with in described first sliding axle and described second sliding axle, and the center section of described connecting elements group is set in described middle slip axle group.
5. flexible apparatus according to claim 4, is characterized in that, described connecting elements group comprises:
First connecting elements, described first connecting elements has five suit holes along the first rectilinear direction distribution, and wherein, middle suit hole is the first suit hole, and 4 suit holes of both sides are respectively the second suit hole; Described first suit hole can make first be set with sliding axle that hole coordinates around own axis with this, and this direction vertical with described first rectilinear direction, sliding axle edge can be made to slide; Described second suit hole can make second to be set with sliding axle that hole coordinates around own axis with this;
Second connecting elements, described second connecting elements has five suit holes along the second rectilinear direction distribution, and wherein, middle suit Kong Wei tri-is set with hole, two that are set with that hole is close to the 3rd are set with hole and are respectively the 4th and are set with hole, and two the suit holes being positioned at two ends are respectively the 5th suit hole; Described 3rd suit hole enough makes be set with the 3rd sliding axle that hole coordinates around own axis, and this direction vertical with described second rectilinear direction, sliding axle edge can be made to slide; Described 4th suit hole enough makes to be set with the 4th sliding axle that hole coordinates around own axis, and this sliding axle can be made to slide along the bearing of trend of described second straight line; Described 5th suit hole can make to be set with the 5th sliding axle that hole coordinates around own axis;
Wherein, described first connecting elements along the orientation head and the tail connection successively of described middle slip axle group, and forms the first connecting elements group; Described second connecting elements along the orientation head and the tail connection successively of described middle slip axle group, and forms the second connecting elements group; Described first suit hole and described 5th suit borehole jack are loaded on same sliding axle.
6. flexible apparatus according to claim 5, it is characterized in that, described in described first connecting elements group, the number of the first connecting elements is at least 5, and described in described second connecting elements group, the number of the second connecting elements is at least 4.
7. flexible apparatus according to claim 5, is characterized in that, described flexible apparatus only can along curving; The one end in described first suit hole protrudes from the side of described first straight line, and the end that described first other end and described second being set with hole is set with hole is concordant; The one end in described 3rd suit hole protrudes from the side of described second straight line, and the other end and the described 4th in described 3rd suit hole is set with hole and the described 5th, and to be set with the end in hole concordant; Described first suit hole and the described 3rd is set with the homonymy of jag towards described flexible apparatus in hole.
8. flexible apparatus according to claim 5, is characterized in that, described flexible apparatus can along two lateral bends; The two ends in described first suit hole protrude from the both sides of described first straight line respectively; The two ends in described 3rd suit hole protrude from the both sides of described second straight line respectively.
9. the flexible apparatus according to claim 1-8 any one, is characterized in that, described flexible apparatus can remain on any bending state.
10. flexible apparatus according to claim 9, is characterized in that, described connecting elements group has the 3rd connecting elements and the 4th connecting elements; Wherein, structure and the arrangement mode of the 3rd connecting elements and the first connecting elements of described connecting elements group are identical, and both are sleeved on identical sliding axle; Structure and the arrangement mode of the 4th connecting elements and the second connecting elements of described connecting elements group are identical, and both are sleeved on identical sliding axle; The sliding axle that two the second suit holes being positioned at two ends in described 3rd connecting elements can be respectively corresponding with it provides rotation damping; 5th suit hole of described 4th connecting elements can provide rotation damping for sliding axle corresponding with it.
11. flexible apparatus according to claim 10, is characterized in that, described flexible apparatus also comprises fill block; Described fill block is sleeved on described sliding axle, and in the connecting elements group that is connected to form of same connecting elements head and the tail between two spaced connecting elements.
12. flexible apparatus according to claim 9, is characterized in that, in described connecting elements group, on the first connecting elements, the second suit hole at two ends place can provide rotary damping for the sliding axle coordinated with it; In described connecting elements group, the 5th suit hole of the second connecting elements can provide rotary damping for the sliding axle coordinated with it.
13. flexible apparatus according to claim 1, is characterized in that, when described flexible apparatus flattens, side is smooth.
14. 1 kinds of electronic equipments, is characterized in that, comprise flexible screen and the flexible apparatus for supporting above-mentioned flexible screen, and described flexible apparatus is the flexible apparatus described in claim 1-13 any one.
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CN201520772714.4U CN205193657U (en) | 2015-09-30 | 2015-09-30 | Electronic equipment and flexible device |
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CN201520772714.4U CN205193657U (en) | 2015-09-30 | 2015-09-30 | Electronic equipment and flexible device |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106557118A (en) * | 2015-09-30 | 2017-04-05 | 联想(北京)有限公司 | Electronic equipment and flexible apparatus |
CN108167316A (en) * | 2017-12-22 | 2018-06-15 | 联想(北京)有限公司 | Shaft, shell and electronic equipment |
-
2015
- 2015-09-30 CN CN201520772714.4U patent/CN205193657U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106557118A (en) * | 2015-09-30 | 2017-04-05 | 联想(北京)有限公司 | Electronic equipment and flexible apparatus |
CN106557118B (en) * | 2015-09-30 | 2024-07-23 | 联想(北京)有限公司 | Electronic device and flexible device |
CN108167316A (en) * | 2017-12-22 | 2018-06-15 | 联想(北京)有限公司 | Shaft, shell and electronic equipment |
CN108167316B (en) * | 2017-12-22 | 2020-11-20 | 联想(北京)有限公司 | Rotating shaft, shell and electronic equipment |
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