CN201009677Y - All-steel radial project tire with transition reinforced layer - Google Patents

All-steel radial project tire with transition reinforced layer Download PDF

Info

Publication number
CN201009677Y
CN201009677Y CNU2007200781514U CN200720078151U CN201009677Y CN 201009677 Y CN201009677 Y CN 201009677Y CN U2007200781514 U CNU2007200781514 U CN U2007200781514U CN 200720078151 U CN200720078151 U CN 200720078151U CN 201009677 Y CN201009677 Y CN 201009677Y
Authority
CN
China
Prior art keywords
transitional
reinforced layer
layer
tyre
metal
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.)
Expired - Fee Related
Application number
CNU2007200781514U
Other languages
Chinese (zh)
Inventor
程曲之
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.)
HAOHUA SOUTH CHINA (GUILIN) RUBBER CO Ltd
Original Assignee
HAOHUA SOUTH CHINA (GUILIN) RUBBER 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 HAOHUA SOUTH CHINA (GUILIN) RUBBER CO Ltd filed Critical HAOHUA SOUTH CHINA (GUILIN) RUBBER CO Ltd
Priority to CNU2007200781514U priority Critical patent/CN201009677Y/en
Application granted granted Critical
Publication of CN201009677Y publication Critical patent/CN201009677Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

The utility model relates to a steel radial engineering tyre with a transitional strengthening layer. The sidewall which is on the outer side of the cord fabric layer of the tyre body is provided with at least one transitional strengthening layer for protection of metal or nonmetal wire of the cord fabric layer. The circumferential angle of the wires of the transitional strengthening layer varies from 40 degree to 80 degree, the wires of the neighboring transitional strengthening layers cross each other when the transitional strengthening layer comes to two or three layers. The radial tyre has a small deformation in use and a good bearing capacity; furthermore, the transitional strengthening layer can protect the cord fabric layer from being pierced or cut, which solves the problem of delamination of the tyre body due to rusting of the wires of the cord fabric layer and improves the durability and security of the tyre for a heavy-duty truck.

Description

The all-steel meridian engineered tyre that has transitional reinforced layer
(1) technical field:
The utility model relates to a meridian line tyre, relates in particular to a kind of all-steel meridian engineered tyre that has transitional reinforced layer that is used for the giant-scale engineering automobile.
(2) background technology:
Existing giant-scale engineering automobile all-steel radial tyre is to adopt steel cord to make framework material, because the recovery of elasticity of steel cord is splendid, therefore is fit to the high load capacity load-carrying and runs at high speed.But because this meridian line tyre only has one deck casingply, rely on carcass rubber to connect between the casingply steel cord, therefore, heavier or when running at high speed when the automobile load, because tire carcass is extruded, the stressed generation of rubber between steel cord is extended, spacing between steel cord is broadened, thereby cause the tire modification, owing to only rely between the casingply steel cord rubber to connect, when the rubber that runs between sharp object puncture or the cutting casingply steel cord, very easily rubber is punctured or cuts, cause damaged tyres, the tire running safety multiple is reduced greatly.And sharp object also easily damage be covered in steel cord outer carcass rubber layer and steel cord itself, make outside steel cord is exposed to, easy corrosion causes delamination, thereby has further reduced tyre capacity.
(3) utility model content:
It is strong that the utility model will disclose a kind of load-carrying capacity, the radial tyre that has transitional reinforced layer of anti-puncture and cutting.
For achieving the above object; the utility model has adopted following technical scheme: originally have the all-steel meridian engineered tyre of transitional reinforced layer with existing radial tyre different be; this meridian tire is bent around the district on the sidewall in the casingply outside; be provided with the transitional reinforced layer that is used to protect the casingply steel cord; described transitional reinforced layer is made of metal or non-metal cord; the circumferential angle of the metal of transitional reinforced layer or non-metal cord is between 40~80 °; the preferable selection of the metal of transitional reinforced layer or the circumferential angle of non-metal wire is between 50~70 °; when the circumferential angle of the metal of transition enhancement Layer or non-metal wire was 55~65 °, it is best that its effect reaches.Transitional reinforced layer can be one deck, also can be two-layer or two-layer more than, cross-shaped setting between the metal of adjacent transitional reinforced layer or the non-metal wire; Transitional reinforced layer is generally positioned at the sidewall and bends around the district, it is arranged at the sidewall bends best results when distinguishing near tire shoulder portion.
The utility model makes automobile in motion owing to adopted above technical scheme, and variation and tire side modification degree that steel cord is extruded time interval reduce, and then tire capacity is strengthened; And because transitional reinforced layer can protect casingply can not be damaged because of puncture, cutting etc.; cause the problem of carcass layering thereby solved effectively, improved the durability of tyre of heavy truck and the safety of use because of the casingply steel cord gets rusty.
(4) description of drawings:
Fig. 1 is the structural representation of a kind of embodiment of the present utility model;
Fig. 2 is the structural representation of another kind of embodiment of the present utility model.
Reference numeral: crown district 1; Shoulder area 2; Bend around district 3 on the sidewall; Bead region 4; Transitional reinforced layer 5; Casingply 6; Steel bead wire 7; Cord anti-package part 8.
(5) specific embodiment:
Accompanying drawing of the present utility model is not to draw in proportion, and it only is used to illustrate the utility model.Below in conjunction with accompanying drawing the specific embodiment of the present utility model is made a detailed explanation.
In embodiment shown in Figure 1, the utility model comprises carcass, and carcass is followed successively by crown district 1, shoulder area 2, sidewall from top to bottom and bends around district 3 and bead region 4.Be provided with casingply 6 in the carcass, casingply 6 is outwards walked around steel bead wire 7 bottoms anti-package upwards again from steel bead wire 7 inboards, form cord anti-package part 8, the outside at casingply 6, be provided with the two-layer transitional reinforced layer 5 that is used to protect casingply 6 metals or non-metal cord, the circumferential angle of transitional reinforced layer 5 cords is between 40~80 °; But it is cross-shaped between the two-layer cord of two-layer transitional reinforced layer 5.In the present embodiment, it is in the wrong in district 3 that transitional reinforced layer 5 is arranged at the sidewall.
At embodiment shown in Figure 2, the radial tyre that originally has excessive enhancement Layer is provided with the transitional reinforced layer 5 that one deck is used to protect casingply 6 steel cords in the outside of casingply 6, and the circumferential angle of transitional reinforced layer 5 cords is between 40~80 °.In the present embodiment, transitional reinforced layer 5 is arranged at the sidewall and bends the 3 close tire shoulder portion places around the district.
In the specific embodiment of the present utility model, transitional reinforced layer can be one deck or two-layer as embodiment 1,2 not only, as required, also can be for more than three layers or three layers, the circumferential angle of the metal of transitional reinforced layer or non-metal cord also can be adjusted between 40~80 °, and is cross-shaped between each layer cord when adopting two-layer above transitional reinforced layer.

Claims (5)

1. the all-steel meridian engineered tyre that has transitional reinforced layer; comprise carcass; carcass is divided into crown district (1) from top to bottom successively; shoulder area (2); (3) and bead region (4) around the district are bent in the sidewall; be provided with casingply (6) in the carcass; casingply (6) is outwards walked around steel bead wire (7) bottom anti-package upwards again from steel bead wire (7) inboard; form cord anti-package part (8); it is characterized in that: be provided with one deck at least in the outside of casingply (6) and be used to protect casingply (6); by the transitional reinforced layer (5) that metal or non-metal cord constitute, the circumferential angle of cord is between 40~80 °.
2. the all-steel meridian wheel engineering tire that has transitional reinforced layer according to claim 1, it is characterized in that: the metal of transitional reinforced layer (5) or the circumferential angle of non-metal cord are between 50~70 °.
3. the all-steel meridian engineered tyre that has transitional reinforced layer according to claim 2 is characterized in that: the metal of transitional reinforced layer (5) or the circumferential angle of non-metal cord are between 55~65 °.
4. according to any one described all-steel meridian engineered tyre that has transitional reinforced layer in the claim 1~3, it is characterized in that: described transitional reinforced layer is two-layer or two-layer when above, the metal of adjacent transitional reinforced layer (5) or the cross-shaped setting of non-metal cord.
5. according to any one described all-steel meridian engineered tyre that has excessive enhancement Layer in the claim 1~3, it is characterized in that: transitional reinforced layer (5) is arranged at the sidewall and bends around district (3) near the tire shoulder place.
CNU2007200781514U 2007-01-09 2007-01-09 All-steel radial project tire with transition reinforced layer Expired - Fee Related CN201009677Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2007200781514U CN201009677Y (en) 2007-01-09 2007-01-09 All-steel radial project tire with transition reinforced layer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2007200781514U CN201009677Y (en) 2007-01-09 2007-01-09 All-steel radial project tire with transition reinforced layer

Publications (1)

Publication Number Publication Date
CN201009677Y true CN201009677Y (en) 2008-01-23

Family

ID=39044614

Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2007200781514U Expired - Fee Related CN201009677Y (en) 2007-01-09 2007-01-09 All-steel radial project tire with transition reinforced layer

Country Status (1)

Country Link
CN (1) CN201009677Y (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103660798A (en) * 2013-12-18 2014-03-26 李双龙 All-steel radial tire provided with tire body reinforcing layer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103660798A (en) * 2013-12-18 2014-03-26 李双龙 All-steel radial tire provided with tire body reinforcing layer
CN103660798B (en) * 2013-12-18 2016-09-21 李双龙 A kind of whole steel wire radial tyre with carcass enhancement Layer

Similar Documents

Publication Publication Date Title
CN103167958B (en) Tire
CN103298628A (en) Agricultural tire
CN201009677Y (en) All-steel radial project tire with transition reinforced layer
CN101518956A (en) Annular tire tread with undertread
CN203401883U (en) Tire with improved tire bead structure
CN202319756U (en) Mountain tire
CN204870378U (en) Rim strenghthened type solid tyre
CN107650585B (en) Puncture-proof green tyre
CN201998750U (en) All-steel lightweight radial ply tire
CN203401879U (en) Tire with improved tire bead structure
CN101007493A (en) All-steel meridian engineered tyre with transitional reinforced layer
CN104369623A (en) All-steel truck radical tire
CN102059922A (en) All-steel light radial truck tire
CN204415054U (en) A kind of all-steel radial tyre with bead strengthening structure
CN204415052U (en) A kind of carcass enhancement mode tire
CN203681155U (en) Improved engineering radial tire
CN209159299U (en) Wear-resistant anti-cut aerated rubber tyre
CN105365498A (en) Tire
CN202727889U (en) Puncture-proof truck tire
CN202573661U (en) Radial tire
CN203511176U (en) Motorcycle tyre
CN205326699U (en) Adopt double cam child of meridian casing ply
CN214775217U (en) Motorcycle tyre with full-covered steel wire structure
CN203611657U (en) Whole-steel-wire radial ply tire with carcass reinforcing layer
CN205344383U (en) Low flat tire

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20080123

Termination date: 20140109