CN110949201A - Non-continuous angle adjuster mounting structure with backrest travel stop point for automobile seat - Google Patents

Non-continuous angle adjuster mounting structure with backrest travel stop point for automobile seat Download PDF

Info

Publication number
CN110949201A
CN110949201A CN201911416101.6A CN201911416101A CN110949201A CN 110949201 A CN110949201 A CN 110949201A CN 201911416101 A CN201911416101 A CN 201911416101A CN 110949201 A CN110949201 A CN 110949201A
Authority
CN
China
Prior art keywords
coil spring
cam
driving shaft
backrest
stop point
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.)
Granted
Application number
CN201911416101.6A
Other languages
Chinese (zh)
Other versions
CN110949201B (en
Inventor
丁浩
刁冬红
顾道生
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.)
Jiangsu Borman Transmission Technology Co Ltd
Original Assignee
Jiangsu Borman Transmission Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiangsu Borman Transmission Technology Co Ltd filed Critical Jiangsu Borman Transmission Technology Co Ltd
Priority to CN201911416101.6A priority Critical patent/CN110949201B/en
Publication of CN110949201A publication Critical patent/CN110949201A/en
Application granted granted Critical
Publication of CN110949201B publication Critical patent/CN110949201B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60NSEATS SPECIALLY ADAPTED FOR VEHICLES; VEHICLE PASSENGER ACCOMMODATION NOT OTHERWISE PROVIDED FOR
    • B60N2/00Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles
    • B60N2/02Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles the seat or part thereof being movable, e.g. adjustable
    • B60N2/22Seats specially adapted for vehicles; Arrangement or mounting of seats in vehicles the seat or part thereof being movable, e.g. adjustable the back-rest being adjustable

Landscapes

  • Engineering & Computer Science (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Chairs For Special Purposes, Such As Reclining Chairs (AREA)
  • Seats For Vehicles (AREA)

Abstract

The invention relates to a discontinuous angle adjuster mounting structure with a backrest travel stop point for an automobile seat, which comprises an angle adjuster, wherein the angle adjuster comprises a fixed disc and a movable disc, the fixed disc is fixedly mounted on a lower connecting plate, the movable disc is fixedly connected with an upper connecting plate, a movable baffle table is arranged on the movable disc, and two sides of the movable baffle table are provided with flanges which are positioned on the lower connecting plate. The invention has relatively simple structure, can be conveniently and quickly matched with the upper and lower mounting plates of various automobile seat angle adjusters, reduces sheet metal parts arranged outside the backrest through the discontinuous angle adjuster with the backrest stroke stop point, reduces the development cost of the backrest or reduces the manufacturing cost of the existing framework, and can also reduce the weight of the backrest, thereby achieving multiple purposes.

Description

Non-continuous angle adjuster mounting structure with backrest travel stop point for automobile seat
Technical Field
The invention belongs to the technical field of automobile seat equipment, and relates to a non-continuous angle adjuster mounting structure with a backrest travel stop point for an automobile seat.
Background
The existing automobile seat adjusting mechanisms are divided into two major categories according to the latest automobile industry standard (QC) in China, and one is an adjusting mechanism for adjusting the angle of a seat back according to fixed pitch (namely angle), which is called as a discontinuous seat back angle adjuster; the other is an adjusting mechanism capable of randomly adjusting the angle of the seat back, which is called as a continuous seat back angle adjuster, the former is used for manually adjusting the angle of the seat back, and the mechanism has the advantages of relatively simple structure, convenient use, strong universality, low cost and the like, so the mechanism is widely applied; the latter is mostly used for the electric adjustment of the angle of the backrest of the seat, and is mostly used for medium and high grade automobile seats due to the relatively complex structure and higher production cost.
The discontinuous seat backrest angle adjuster with the backrest travel stop point can reduce sheet metal parts which are required to be provided with the stop point on the backrest, so that the development cost of the backrest is reduced.
Disclosure of Invention
The invention aims to provide a non-continuous angle adjuster mounting structure of an automobile seat with a backrest travel stop point, which has the advantages that the non-continuous angle adjuster mounting structure is provided with the backrest travel stop point, and a sheet metal part of the backrest framework external travel stop point can be directly cancelled, so that the development cost of the backrest is reduced or the cost of the existing backrest framework is reduced.
According to the technical scheme provided by the invention: the non-continuous angle adjuster mounting structure comprises an angle adjuster, wherein the angle adjuster comprises a fixed disc and a movable disc, the fixed disc is fixedly mounted on a lower connecting plate, the movable disc is fixedly connected with an upper connecting plate, a movable baffle table is arranged on the movable disc, flanges are arranged on two sides of the movable baffle table, and the flanges are located on the lower connecting plate.
As a further improvement of the invention, a driving shaft is arranged in the fixed disc, and a self-locking assembly is arranged between the driving shaft and the fixed disc; the self-locking assembly comprises a cam and a coil spring, the cam is installed on a driving shaft, a gap exists between the cam and the driving shaft, a tooth block is arranged between the cam and the fixed disc, the coil spring comprises a cam pre-tightening coil spring and a driving shaft pre-tightening coil spring, the cam pre-tightening coil spring is arranged between the cam and the fixed disc, a driving shaft pre-tightening coil spring is arranged between the driving shaft and the fixed disc, and a movable disc is arranged on the periphery of the fixed disc.
As a further improvement of the present invention, a driving shaft installation groove is formed in the fixed disk, one side of the driving shaft installation groove is communicated with the driving shaft through hole, a coil spring installation groove is formed in the periphery of the driving shaft installation groove, the coil spring installation groove is divided into a cam coil spring installation groove and a driving shaft coil spring installation groove, a coil spring positioning block is arranged in the coil spring installation groove, one side of the driving shaft installation groove is provided with tooth block spacing blocks, and tooth block sliding grooves are formed between the tooth block spacing blocks.
As a further improvement of the invention, the middle part of the driving shaft is provided with a driving shaft mounting ring, one side of the driving shaft mounting ring is provided with a cam mounting shaft end, the periphery of the cam mounting shaft end is provided with a driving shaft coil spring convex block, the side surface of the driving shaft coil spring convex block is provided with a driving shaft coil spring acting surface, the top surface of the driving shaft coil spring convex block is provided with a cam limiting surface, and one side of the driving shaft coil spring convex block is provided with a cam positioning.
As a further improvement of the invention, a gear mounting hole is formed in the cam, a gear positioning groove is formed in the gear mounting hole, a cam coil spring convex block is arranged on the cam, and the periphery of the cam is a cam gradual-change surface.
As a further improvement of the invention, the middle part of the coil spring is provided with a coil spring positioning groove, and the end part of the coil spring is an elastic pre-tightening end; the coil spring is divided into the cam pre-tightening coil spring and the driving shaft pre-tightening coil spring.
In a further improvement of the present invention, the outer periphery of the tooth block is an outer tooth portion, and the inner periphery of the tooth block is a tooth block tapered surface.
As a further improvement of the invention, the inner periphery of the movable disk is provided with an inner gear ring meshed with the outer gear part on the outer periphery of the gear block.
As a further improvement of the invention, the coil spring positioning groove and the coil spring positioning block are semicircular.
As a further improvement of the present invention, the cam gradually-changing surface includes a first cam gradually-changing surface and a second cam gradually-changing surface.
Compared with the prior art, the invention has the following advantages:
1. the invention has relatively simple structure and can be conveniently and quickly matched with the upper and lower mounting plates of various automobile seat angle adjusters.
2. The invention reduces sheet metal parts arranged outside the backrest by the discontinuous angle adjuster with the backrest travel stop point, reduces the development cost of the backrest or reduces the manufacturing cost of the existing framework, and can also reduce the weight of the backrest, thereby achieving multiple purposes.
Drawings
Fig. 1 is a schematic structural diagram of the angle adjuster of the present invention.
Fig. 2 is a sectional view a-a of fig. 1.
FIG. 3 is a schematic structural view of the fixing plate of the present invention.
Fig. 4 is a schematic view of the cam and tooth block matching structure of the invention.
Fig. 5 is a schematic structural view of the cam of the present invention.
Fig. 6 is a schematic structural view of the tooth block of the present invention.
Fig. 7 is a schematic view showing the structure of the coil spring of the present invention.
Fig. 8 is a schematic view showing the structure of the installation of the coil spring of the present invention.
Fig. 9 is a schematic view of the construction of the drive shaft of the present invention.
Fig. 10 is a schematic structural diagram of the present invention at the time of locking.
Fig. 11 is a schematic structural diagram of the present invention at the start of unlocking.
Fig. 12 is a schematic structural diagram of the present invention.
Detailed Description
The following further describes embodiments of the present invention with reference to the drawings.
In the figures 1-12, the device comprises a fixed disc 1, a left side 1-1, a right side 1-2, a driving shaft installation groove 1-3, a driving shaft through hole 1-4, a coil spring installation groove 1-5, a coil spring positioning block 1-6, a tooth block spacing block 1-7, a tooth block sliding groove 1-8, a movable disc 2, a movable baffle table 2-1, a self-locking component 3, a cam 3-1, a gear installation hole 3-11, a gear positioning groove 3-12, a cam left side 3-13, a cam right side 3-14, a cam coil spring convex block 3-15, a cam gradual change surface 3-16, a first cam gradual change surface 3-161, a second cam gradual change surface 3-162, a tooth block 3-2, an external tooth part 3-21, a tooth block gradual change surface 3-22, a first tooth block gradual change surface 3-221, The device comprises a second gear block gradual-change face 3-222, a coil spring 3-3, a coil spring positioning groove 3-31, an elastic pre-tightening end 3-32, a cladding 4, a driving shaft 5, a driving shaft mounting ring 5-1, a driving shaft coil spring lug 5-2, a driving shaft coil spring action face 5-21, a cam limiting face 5-22, a cam positioning block 5-3, a cam mounting shaft end 5-4, a gap 6, a lower connecting plate 7, a flange 7-1, an upper connecting plate 8 and the like.
As shown in figure 12, the invention relates to a discontinuous angle adjuster mounting structure with a backrest travel stop point for an automobile seat, which comprises an angle adjuster, wherein the angle adjuster comprises a fixed disc 1 and a movable disc 2, the fixed disc 1 is fixedly mounted on a lower connecting plate 7, the movable disc 2 is fixedly connected with an upper connecting plate 8, the upper connecting plate 8 is connected with the seat, a movable baffle table 2-1 is arranged on the movable disc 2, two sides of the movable baffle table 2-1 are provided with flanges 7-1, and the flanges 7-1 are positioned on the lower connecting plate 7.
As shown in fig. 1-2, is a recliner of the present invention. The angle adjuster comprises a fixed disc 1, as shown in fig. 3, the fixed disc 1 comprises a left surface 1-1, the reverse surface of the left surface 1-1 is a right surface 1-2, a driving shaft installation groove 1-3 is formed in the fixed disc 1, one side of the driving shaft installation groove 1-3 is communicated with a driving shaft through hole 1-4, a coil spring installation groove 1-5 is formed in the periphery of the driving shaft installation groove 1-3, the coil spring installation groove 1-5 is divided into a cam coil spring installation groove and a driving shaft coil spring installation groove, the cam coil spring installation groove and the driving shaft coil spring installation groove are arranged at intervals, and coil spring positioning blocks 1. Tooth block spacing blocks 1-7 are arranged on one side of the driving shaft mounting groove 1-3 in six equal parts, and tooth block sliding grooves 1-8 are formed between the tooth block spacing blocks 1-7.
A driving shaft 5 is arranged in the fixed disc 1, as shown in fig. 9, a driving shaft mounting ring 5-1 is arranged in the middle of the driving shaft 5, a cam mounting shaft end 5-4 is arranged on one side of the driving shaft mounting ring 5-1, driving shaft coil spring convex blocks 5-2 are evenly arranged on the periphery 3 of the cam mounting shaft end 5-4 in an equal division mode, the side face of each driving shaft coil spring convex block 5-2 is a driving shaft coil spring action face 5-21, and the top face of each driving shaft coil spring convex block is a cam limiting. One side of the drive shaft coil spring lug 5-2 is provided with a cam positioning block 5-3. The drive shaft coil spring projection 5-2 and the cam positioning block 5-3 are located on the same axis. The driving shaft mounting ring 5-1 is positioned in the driving shaft mounting groove 1-3, and the cam mounting shaft end 5-4 is positioned in the left surface 1-1 of the fixed disc 1.
As shown in fig. 2, a self-locking assembly 3 is disposed between the driving shaft 5 and the fixed disk 1 to ensure that the driving shaft 5 and the fixed disk 1 cannot move in a normal state.
The self-locking assembly 3 comprises a cam 3-1, a tooth block 3-2 and a coil spring 3-3, as shown in fig. 4-5, the cam 3-1 comprises a cam left side 3-13, the reverse side of the cam left side 3-13 is a cam right side 3-14, a gear mounting hole 3-11 is formed in the cam 3-1, the gear mounting hole 3-11 is matched with a cam mounting shaft end 5-4, gear positioning grooves 3-12 are uniformly formed in 3 equal parts of the gear mounting hole 3-11, and the gear positioning grooves 3-12 are matched with cam positioning blocks 5-3. Cam 3-1 has cam coil spring lugs 3-15 evenly distributed on right side 3-14 of the cam 3-3. The cam coil spring protrusions 3-15 and the gear positioning grooves 3-12 are staggered from each other in the axial direction, and the cam coil spring protrusions 3-15 are located in the middle of the gear positioning grooves 3-12 in this embodiment. The cam 3-1 is installed on the driving shaft 5, the cam installation shaft end 5-4 is located in the gear installation hole 3-11, the cam positioning block 5-3 is embedded into the gear positioning groove 3-12, the width of the cam positioning block 5-3 is smaller than that of the gear positioning groove 3-12, a gap 6 exists between the cam positioning block 5-3 and the gear positioning groove 3-12, the peripheral size of the driving shaft coil spring bump 5-2 is larger than that of the cam positioning block 5-3, and the cam limiting surface 5-22 abuts against the end face, located on the right side 3-14 of the cam, of the cam 3-1 to complete radial one-way limiting of the cam 3-1 and the driving shaft 5. The cam coil spring projection 3-15 and the drive shaft coil spring projection 5-2 are located in the same chamber and are spaced apart.
As shown in FIG. 7, coil spring positioning grooves 3-31 are formed in the middle of coil springs 3-3, the coil spring positioning grooves 3-31 are matched with coil spring positioning blocks 1-6, and elastic pre-tightening ends 3-32 are arranged at the end portions of the coil springs 3-3. As shown in fig. 8, the coil spring 3-3 is located in the coil spring mounting groove 1-5, the coil spring positioning block 1-6 is embedded into the coil spring positioning groove 3-31, the coil spring 3-3 and the fixed disk 1 are fixed, the coil spring 3-3 is divided into a cam pre-tightening coil spring and a driving shaft pre-tightening coil spring, the elastic pre-tightening end 3-32 of the cam pre-tightening coil spring abuts against the side surface of the cam coil spring convex block 3-15, the elastic pre-tightening end 3-32 of the driving shaft pre-tightening coil spring abuts against the driving shaft coil spring action surface 5-21 on the side surface of the driving shaft coil spring convex block 5-2, and the driving shaft.
The tooth block 3-2 is arranged in the tooth block sliding groove 1-8 in a sliding mode, as shown in figure 6, the outer periphery of the tooth block 3-2 is provided with an outer tooth part 3-21, and the inner periphery of the tooth block 3-2 is abutted to the outer periphery of the cam 3-1. The outer periphery of the cam 3-1 is a cam gradual change surface 3-16, and the inner periphery of the tooth block 3-2 is a tooth block gradual change surface 3-22. When cam 3-1 rotates clockwise, the contact point of cam tapered surface 3-16 and tooth block tapered surface 3-22 expands outward. In the embodiment, the cam gradually-changing surfaces 3-16 comprise first cam gradually-changing surfaces 3-161 and second cam gradually-changing surfaces 3-162, the gear block gradually-changing surfaces 3-22 comprise first gear block gradually-changing surfaces 3-221 and second gear block gradually-changing surfaces 3-222, the first cam gradually-changing surfaces 3-161 are abutted against the first gear block gradually-changing surfaces 3-221, the second cam gradually-changing surfaces 3-162 are abutted against the second gear block gradually-changing surfaces 3-222, and the strength applied to the angle adjuster in the use process or the experiment process of the angle adjuster by the seat framework is borne in a sharing mode, so that the strength before and after locking of the single angle adjuster is improved.
The periphery of the fixed disc 1 is provided with a movable disc 2, and the inner periphery of the movable disc 2 is provided with an inner gear ring meshed with the outer gear part 3-21 on the periphery of the gear block 3-2.
The working process of the invention is as follows:
the angle adjusters are symmetrically arranged on two sides of the seat, and driving shafts 5 of the angle adjusters on the two sides are connected through a synchronizing rod. When locking is to be performed, the synchronous rod drives the driving shaft 5 to rotate clockwise, the cam positioning block 5-3 drives the cam 3-1 to rotate clockwise, the contact point of the first cam gradually-changing surface 3-161 and the first gear block gradually-changing surface 3-221 and the contact point of the second cam gradually-changing surface 3-162 and the second gear block gradually-changing surface 3-222 are expanded outwards, the gear block 3-2 moves outwards along the gear block sliding groove 1-8 in the radial direction until the outer gear part 3-21 is meshed with the inner gear ring of the inner periphery of the movable disc 2, and the structure is shown in fig. 10. The movable disc 2 is locked, and the tooth blocks 3-2 and the driving shaft 5 cannot rotate clockwise. The elastic pre-tightening end 3-32 of the cam pre-tightening coil spring abuts against the driving shaft coil spring action surface 5-21 on the side surface of the driving shaft coil spring convex block 5-2, and the elastic pre-tightening end 3-32 of the driving shaft pre-tightening coil spring abuts against the side surface of the cam coil spring convex block 3-15, so that the driving shaft 5 and the cam 3-1 are prevented from rotating anticlockwise (in an unlocking direction).
When the locking is completed, the synchronous rod can generate certain angle error due to uneven stress in the rotating process. At this time, the gap 6 between the cam positioning block 5-3 and the gear positioning slot 3-12 is located on the right side of the cam positioning block 5-3, when unlocking is needed (anticlockwise rotation), the synchronous rod drives the driving wheel 5 to anticlockwise rotate, the driving wheel 5 overcomes the elastic force of the driving shaft pre-tightening coil spring to anticlockwise rotate until the gap 6 between the cam positioning block 5-3 and the gear positioning slot 3-12 is located on the left side of the cam positioning block 5-3, and as shown in fig. 11, the driving wheel 5 starts to drive the cam 3-1 to anticlockwise rotate to start unlocking. In the process, the angle error of the synchronizing rod is released (the elastic force of the pre-tightening coil spring of the driving shaft is far smaller than the force of the synchronizing rod causing the angle error in the locking process), and the unlocking synchronization of the two sides is ensured.
After the movable disc 2 rotates to a certain angle, the movable baffle table 2-1 is contacted with the baffle edge 7-1 to limit the movement of the upper connecting plate 8.

Claims (10)

1. The utility model provides a car seat is from discontinuous formula angle modulation ware mounting structure who takes back stroke fender point which characterized in that: the structure comprises an angle adjuster, wherein the angle adjuster comprises a fixed disc (1) and a movable disc (2), the fixed disc (1) is fixedly installed on a lower connecting plate (7), the movable disc (2) is fixedly connected with an upper connecting plate (8), a movable baffle table (2-1) is arranged on the movable disc (2), flanges (7-1) are arranged on two sides of the movable baffle table (2-1), and the flanges (7-1) are located on the lower connecting plate (7).
2. The non-continuous recliner mounting structure of an automobile seat with a backrest travel stop point as claimed in claim 1, wherein: a driving shaft (5) is installed in the fixed disc (1), and a self-locking assembly (3) is arranged between the driving shaft (5) and the fixed disc (1); the self-locking assembly (3) comprises a cam (3-1) and a coil spring (3-3), the cam (3-1) is installed on a driving shaft (5), a gap (6) exists between the cam (3-1) and the driving shaft (5), a tooth block (3-2) is arranged between the cam (3-1) and the fixed disk (1), the coil spring (3-3) comprises a cam pre-tightening coil spring and a driving shaft pre-tightening coil spring, the cam (3-1) and the fixed disk (1) are provided with the cam pre-tightening coil spring, the driving shaft (5) and the fixed disk (1) are provided with the driving shaft pre-tightening coil spring, and the periphery of the fixed disk (1) is provided with the movable disk (2).
3. The discontinuous recliner mounting structure of an automobile seat with a backrest travel stop point as claimed in claim 2, wherein: drive shaft mounting grooves (1-3) are formed in the fixed disc (1), one sides of the drive shaft mounting grooves (1-3) are communicated with drive shaft through holes (1-4), coil spring mounting grooves (1-5) are formed in the peripheries of the drive shaft mounting grooves (1-3), the coil spring mounting grooves (1-5) are divided into cam coil spring mounting grooves and drive shaft coil spring mounting grooves, coil spring positioning blocks (1-6) are arranged in the coil spring mounting grooves (1-5), tooth block spacing blocks (1-7) are arranged on one sides of the drive shaft mounting grooves (1-3), and tooth block sliding grooves (1-8) are formed between the tooth block spacing blocks (1-7).
4. The discontinuous recliner mounting structure of an automobile seat with a backrest travel stop point as claimed in claim 2, wherein: the middle of the driving shaft (5) is provided with a driving shaft mounting ring (5-1), one side of the driving shaft mounting ring (5-1) is provided with a cam mounting shaft end (5-4), the periphery of the cam mounting shaft end (5-4) is provided with a driving shaft coil spring lug (5-2), the side face of the driving shaft coil spring lug (5-2) is provided with a driving shaft coil spring acting face (5-21), the top face of the driving shaft coil spring lug (5-2) is provided with a cam limiting face (5-22), and one side of the driving shaft coil spring lug (5-2) is provided with a cam positioning block (5-3).
5. The discontinuous recliner mounting structure of an automobile seat with a backrest travel stop point as claimed in claim 2, wherein: the cam (3-1) is provided with gear mounting holes (3-11), the gear mounting holes (3-11) are provided with gear positioning grooves (3-12), the cam (3-1) is provided with cam coil spring convex blocks (3-15), and the periphery of the cam (3-1) is provided with cam gradual change surfaces (3-16).
6. The discontinuous recliner mounting structure of an automobile seat with a backrest travel stop point as claimed in claim 2, wherein: the middle part of the coil spring (3-3) is provided with a coil spring positioning groove (3-31), and the end part of the coil spring (3-3) is an elastic pre-tightening end (3-32); the coil spring (3-3) is divided into the cam pre-tightening coil spring and the driving shaft pre-tightening coil spring.
7. The discontinuous recliner mounting structure of an automobile seat with a backrest travel stop point as claimed in claim 2, wherein: the outer periphery of the tooth block (3-2) is provided with an outer tooth part (3-21), and the inner periphery of the tooth block (3-2) is provided with a tooth block gradual change surface (3-22).
8. The non-continuous recliner mounting structure of an automobile seat with a backrest travel stop point as claimed in claim 7, wherein: and an inner gear ring meshed with the outer gear part (3-21) on the periphery of the gear block (3-2) is arranged on the inner periphery of the movable disc (2).
9. The non-continuous recliner mounting structure of an automobile seat with a backrest travel stop point as claimed in claim 6, wherein: the coil spring positioning grooves (3-31) and the coil spring positioning blocks (1-6) are semicircular.
10. The discontinuous recliner mounting structure of an automobile seat with a backrest travel stop point according to claim 5 or 7, wherein: the cam gradual change surface (3-16) comprises a first cam gradual change surface (3-161) and a second cam gradual change surface (3-162).
CN201911416101.6A 2020-02-18 2020-02-18 Discontinuous angle adjuster mounting structure with backrest travel stop point for automobile seat Active CN110949201B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201911416101.6A CN110949201B (en) 2020-02-18 2020-02-18 Discontinuous angle adjuster mounting structure with backrest travel stop point for automobile seat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201911416101.6A CN110949201B (en) 2020-02-18 2020-02-18 Discontinuous angle adjuster mounting structure with backrest travel stop point for automobile seat

Publications (2)

Publication Number Publication Date
CN110949201A true CN110949201A (en) 2020-04-03
CN110949201B CN110949201B (en) 2024-04-16

Family

ID=69985441

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201911416101.6A Active CN110949201B (en) 2020-02-18 2020-02-18 Discontinuous angle adjuster mounting structure with backrest travel stop point for automobile seat

Country Status (1)

Country Link
CN (1) CN110949201B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111546959A (en) * 2020-06-02 2020-08-18 延锋安道拓座椅有限公司 Electric backrest folding mechanism

Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020000746A1 (en) * 2000-06-29 2002-01-03 Hiroshi Matsuura Reclining device
CN102126450A (en) * 2011-01-04 2011-07-20 宁波双林汽车部件股份有限公司 Manual car seat adjuster capable of automatically balancing stress on lock cylinder
KR101326967B1 (en) * 2012-11-29 2013-11-13 주식회사다스 Recliner of vehicle seet
US20140239693A1 (en) * 2011-10-06 2014-08-28 Lear Corporation Seat recliner with easy entry release and method of manufacturing same
CN105034867A (en) * 2015-06-30 2015-11-11 浙江龙生汽车部件股份有限公司 Small-sized angle regulator for front row car seats
CN208498307U (en) * 2018-06-22 2019-02-15 佛吉亚(无锡)座椅部件有限公司 A kind of automobile-used noncontinuity backrest angle adjustor
CN208498305U (en) * 2018-06-22 2019-02-15 佛吉亚(无锡)座椅部件有限公司 A kind of car seat back catch point
CN109398171A (en) * 2018-12-07 2019-03-01 湖北航嘉麦格纳座椅系统有限公司 A kind of automotive seat and seat angle adjustor core members
DE102018205477A1 (en) * 2018-04-11 2019-10-17 Brose Fahrzeugteile Gmbh & Co. Kommanditgesellschaft, Coburg Lock fitting for a vehicle seat
CN110356295A (en) * 2018-04-10 2019-10-22 佛吉亚(无锡)座椅部件有限公司 A kind of automobile-used noncontinuity backrest angle adjustor
CN211592312U (en) * 2020-02-18 2020-09-29 江苏博尔曼传动科技有限公司 Non-continuous angle adjuster mounting structure with backrest travel stop point for automobile seat

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020000746A1 (en) * 2000-06-29 2002-01-03 Hiroshi Matsuura Reclining device
CN102126450A (en) * 2011-01-04 2011-07-20 宁波双林汽车部件股份有限公司 Manual car seat adjuster capable of automatically balancing stress on lock cylinder
US20140239693A1 (en) * 2011-10-06 2014-08-28 Lear Corporation Seat recliner with easy entry release and method of manufacturing same
KR101326967B1 (en) * 2012-11-29 2013-11-13 주식회사다스 Recliner of vehicle seet
CN105034867A (en) * 2015-06-30 2015-11-11 浙江龙生汽车部件股份有限公司 Small-sized angle regulator for front row car seats
CN110356295A (en) * 2018-04-10 2019-10-22 佛吉亚(无锡)座椅部件有限公司 A kind of automobile-used noncontinuity backrest angle adjustor
DE102018205477A1 (en) * 2018-04-11 2019-10-17 Brose Fahrzeugteile Gmbh & Co. Kommanditgesellschaft, Coburg Lock fitting for a vehicle seat
CN208498307U (en) * 2018-06-22 2019-02-15 佛吉亚(无锡)座椅部件有限公司 A kind of automobile-used noncontinuity backrest angle adjustor
CN208498305U (en) * 2018-06-22 2019-02-15 佛吉亚(无锡)座椅部件有限公司 A kind of car seat back catch point
CN109398171A (en) * 2018-12-07 2019-03-01 湖北航嘉麦格纳座椅系统有限公司 A kind of automotive seat and seat angle adjustor core members
CN211592312U (en) * 2020-02-18 2020-09-29 江苏博尔曼传动科技有限公司 Non-continuous angle adjuster mounting structure with backrest travel stop point for automobile seat

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111546959A (en) * 2020-06-02 2020-08-18 延锋安道拓座椅有限公司 Electric backrest folding mechanism
CN111546959B (en) * 2020-06-02 2021-05-18 延锋安道拓座椅有限公司 Electric backrest folding mechanism

Also Published As

Publication number Publication date
CN110949201B (en) 2024-04-16

Similar Documents

Publication Publication Date Title
JP2005502438A (en) Vehicle seat fittings
CN110949202A (en) Self-locking structure of high-strength multi-point contact type angle adjuster of automobile seat
CN102180111B (en) Disc type gapless angle adjuster
CN211592312U (en) Non-continuous angle adjuster mounting structure with backrest travel stop point for automobile seat
CN110949201A (en) Non-continuous angle adjuster mounting structure with backrest travel stop point for automobile seat
CN106627269B (en) Seat angle adjuster and seat with same
JP2017524108A (en) Disc brake adjusting device and disc brake equipped with such an adjusting device
CN115320460B (en) Continuous seat wedge eccentric structure angle adjuster
CN102991379A (en) High-strength angle adjuster
CN101875321B (en) Car seat angle adjuster with improved structure
CN211442044U (en) Self-locking structure of high-strength multi-point contact type angle adjuster of automobile seat
CN211918442U (en) High-synchronism non-continuous angle adjuster self-locking structure of automobile seat
CN211918441U (en) High-synchronism non-continuous angle adjuster driving shaft of automobile seat
EP3825170B1 (en) Vehicle seat and angle adjustment device thereof
CN101858300A (en) Innercurve multiple-action radial plunger type hydraulic motor
CN111591181A (en) Continuous angle adjuster device for automobile seat
CN203601058U (en) Core device for seat angle adjusting device
CN101915296A (en) Driven gear assembly of engine
CN201212541Y (en) Assembling structure between clutch hub and driven gear
CN211252299U (en) Concentric adjustment seat angle adjuster
CN201520234U (en) Car seat angle adjuster with improved structure
CN211252300U (en) Angle modulation ware clearance elimination mechanism
CN112026601B (en) Backrest inclination angle adjusting device
CN204253674U (en) Non-friction type break
CN112060987A (en) Electric angle adjuster for automobile seat

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
CB02 Change of applicant information

Address after: 214000 No. 1999, Dongsheng Road, Xishan Economic and Technological Development Zone, Wuxi City, Jiangsu Province

Applicant after: Jiangsu Borman Mechatronics Co.,Ltd.

Address before: 214101 room 1026, Wuzhou industrial city, Youyi Road, Xishan Economic and Technological Development Zone, Wuxi City, Jiangsu Province

Applicant before: Jiangsu Borman Transmission Technology Co.,Ltd.

CB02 Change of applicant information
GR01 Patent grant
GR01 Patent grant