CN204507976U - The modified node method of integral type belt conveyer - Google Patents

The modified node method of integral type belt conveyer Download PDF

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Publication number
CN204507976U
CN204507976U CN201520011409.3U CN201520011409U CN204507976U CN 204507976 U CN204507976 U CN 204507976U CN 201520011409 U CN201520011409 U CN 201520011409U CN 204507976 U CN204507976 U CN 204507976U
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China
Prior art keywords
supporting leg
group
longeron
idler machining
transfer device
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CN201520011409.3U
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Chinese (zh)
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廖政宗
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Xiamen Huicai Investment Consulting Co.,Ltd.
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Individual
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Abstract

The utility model discloses the modified node method of integral type belt conveyer, comprise multiple idler machining, load-transfer device, multiple supporting leg group, dust boot.Load-transfer device is laid on multiple idler machining in the mode of solderless wrapped connection, dust boot covers the top of load-transfer device, respectively a longeron is installed along its length in the both sides on multiple supporting leg group top, the two ends of multiple advance idler machining are separately fixed on longeron, and the two ends of multiple return idler group are separately fixed in multiple supporting leg group.Because the utility model installs a longeron along its length respectively in the both sides on truss top, the two ends of multiple advance idler machining are separately fixed on longeron, and longeron adopts the materials such as slim steel, lighter in weight, cost is also lower, is more suitable for the long distance load-transfer device in some fields.

Description

The modified node method of integral type belt conveyer
Technical field
The utility model relates to a kind of load transfer device, particularly relates to a kind of modified node method of integral type belt conveyer.
Background technology
Band conveyor is the conveying of most important bulk material and handling equipment, can be widely used in the industrial circles such as mine, metallurgy, building materials, chemical industry, electric power, food processing, in colliery, metallic ore, iron and steel enterprise, harbour, the ground such as cement mill can see the extensive application of band conveyor.As shown in Figure 1, traditional band conveyor is primarily of compositions such as supporting leg 1 ', advance idler machining 2 ', load-transfer device 3 ', dust boot 4 ', bracing frame 5 ', return idler groups 6 '; Advance idler machining 2 ' is arranged on crossbeam 7 ', and the upper surface of bracing frame 5 ' leans crossbeam 7 ', the whole advance idler machining 2 ' on supporting traverse.Return idler group 6 ' is arranged on supporting leg 1 ', and load-transfer device 3 ' solderless wrapped connection is on advance idler machining 2 ', and dust boot 4 ' covers on load-transfer device 3 '.
The advance idler machining 2 ' of conventional belt conveyer needs to be fixed on crossbeam 7 ', and in order to support the weight of advance idler machining 2 ', general needs sets up bracing frame 5 ' at crossbeam 7 '.Adopt the material that the rigidity such as channel-section steel are stronger because of bracing frame 5 ', therefore overall weight is heavier, and cost is also high more.Relative to some for the long distance delivery in field band conveyor for, its manufacturing cost is then higher.
Summary of the invention
The purpose of this utility model is the modified node method providing a kind of lower-cost integral type belt conveyer.
For achieving the above object, technical solution of the present utility model is:
The utility model is the modified node method of integral type belt conveyer, comprises multiple idler machining, load-transfer device, multiple supporting leg group, dust boot; Described multiple two-layer intervals of carrying roller component are arranged in multiple supporting leg group, multiple idler machining on upper strata form multiple advance idler machining, multiple idler machining of lower floor form multiple return idler group, load-transfer device is laid in multiple advance idler machining and multiple return idler group in the mode of solderless wrapped connection, and dust boot covers the top being positioned at advance idler machining load-transfer device; A longeron is installed along its length respectively in the both sides on described multiple supporting leg group tops, and the two ends of multiple advance idler machining are separately fixed on longeron, and the two ends of multiple return idler group are separately fixed in multiple supporting leg group.
Described longeron is slim steel, and the thickness of shaped steel is 2-4.5 millimeter.
Described supporting leg group comprises supporting leg, crossbeam; Connected by crossbeam between described supporting leg, the upper end of supporting leg is connected with dust boot.
Described supporting leg group also comprises four angles and supports; Four described angles support and are divided into two groups, often organize two angles and support, and the lower end of two angle supports is fixed in the bottom of a feet, and the upper end of two angle support beams is oblique to be stretched upwards and is connected with dust boot.
After adopting such scheme, because the utility model installs a longeron along its length respectively in the both sides on truss top, the two ends of multiple advance idler machining are separately fixed on longeron instead of are arranged on supporting leg, supporting leg is without the need to matching with advance idler machining, thus decrease the quantity of supporting leg, reduce productive costs.In addition, longeron also can strengthen the structural strength of conveyer, makes the utility model have better structural strength.
Below in conjunction with the drawings and specific embodiments, the utility model is further described.
Accompanying drawing explanation
Fig. 1 is the cross sectional view of the band conveyor commonly used;
Fig. 2 is axonometric drawing of the present utility model;
Fig. 3 is the utility model view in transverse section;
Fig. 4 is lateral plan of the present utility model;
Fig. 5 is the axonometric drawing after the utility model removes difference dust boot.
Detailed description of the invention
As Figure 2-Figure 5, the utility model is the modified node method of integral type belt conveyer, comprises multiple idler machining 1, load-transfer device 2, multiple supporting leg group 3, dust boot 4, longeron 5.
Described multiple idler machining 1 point of two-layer interval is arranged in multiple supporting leg group 3, multiple idler machining 1 on upper strata form multiple advance idler machining 11, multiple idler machining 1 of lower floor form multiple return idler group 12, load-transfer device 2 is laid in multiple advance idler machining 11 and multiple return idler group 12 in the mode of solderless wrapped connection, and dust boot 4 covers the top being positioned at advance idler machining 11 load-transfer device.
A longeron 5 is installed along its length respectively in the both sides on described multiple supporting leg group 3 tops, the two ends of multiple advance idler machining 11 are separately fixed on longeron 5, the two ends of multiple return idler group 12 are separately fixed in multiple supporting leg group 3, multiple return idler group 12 can be on same cross-sectional plane with multiple advance idler machining 11, also can be on different cross-sectional planes.
Described supporting leg group 3 is made up of two supporting legs 31, four angles supports 32, crossbeams 33.Connected by crossbeam 33 between two described supporting legs 31, form the space that is placed load-transfer device 2, four angles support 32 and are divided into two groups, often organize two angles and support 32, the lower end of two angle supports 32 is fixed in the bottom of a supporting leg 31, the upper end of two angle supports 32 is oblique to be stretched upwards and is connected with dust boot 4, as the bracing frame of dust boot 4.
In the present embodiment, the spacing of two supporting leg groups is 2-6 rice.
Described longeron 5 adopts the slim steel of clod wash, and the thickness of slim steel is 2-4.5 millimeter.
The idler machining 11 that advances after adopting this programme directly locks on longeron 5, and longeron 5 adopts the materials such as slim steel, thinner thickness, and overall weight is less, and cost is also lower.
Emphasis of the present utility model is just: a support longeron, and this longeron is slim steel.
The above, be only the utility model preferred embodiment, the spacing of supporting leg group can be determined according to needs, therefore the scope of the utility model enforcement can not be limited with this, namely the equivalence change done according to the utility model claim and description with modify, all should still belong in scope that the utility model patent contains.

Claims (4)

1. the modified node method of integral type belt conveyer, comprises multiple idler machining, load-transfer device, multiple supporting leg group, dust boot; Described multiple two-layer intervals of carrying roller component are arranged in multiple supporting leg group, multiple idler machining on upper strata form multiple advance idler machining, multiple idler machining of lower floor form multiple return idler group, load-transfer device is laid in multiple advance idler machining and multiple return idler group in the mode of solderless wrapped connection, and dust boot covers the top being positioned at advance idler machining load-transfer device; It is characterized in that: a longeron is installed along its length respectively in the both sides on described multiple supporting leg group tops, and the two ends of multiple advance idler machining are separately fixed on longeron, and the two ends of multiple return idler group are separately fixed in multiple supporting leg group.
2. the modified node method of integral type belt conveyer according to claim 1, is characterized in that: described longeron is slim steel, and the thickness of slim steel is 2-4.5 millimeter.
3. the modified node method of integral type belt conveyer according to claim 1, is characterized in that: described supporting leg group comprises supporting leg, crossbeam; Connected by crossbeam between described supporting leg, the upper end of supporting leg is connected with dust boot.
4. the modified node method of integral type belt conveyer according to claim 3, is characterized in that: described supporting leg group also comprises four angles and supports; Four described angles support and are divided into two groups, often organize two angles and support, and the lower end of two angle supports is fixed in the bottom of a feet, and the upper end of two angle support beams is oblique to be stretched upwards and is connected with dust boot.
CN201520011409.3U 2015-01-08 2015-01-08 The modified node method of integral type belt conveyer Active CN204507976U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520011409.3U CN204507976U (en) 2015-01-08 2015-01-08 The modified node method of integral type belt conveyer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520011409.3U CN204507976U (en) 2015-01-08 2015-01-08 The modified node method of integral type belt conveyer

Publications (1)

Publication Number Publication Date
CN204507976U true CN204507976U (en) 2015-07-29

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520011409.3U Active CN204507976U (en) 2015-01-08 2015-01-08 The modified node method of integral type belt conveyer

Country Status (1)

Country Link
CN (1) CN204507976U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: POTENT MACHINERY INDUSTRIAL (XIAMEN) CO., LTD.

Free format text: FORMER OWNER: LIAO ZHENGZONG

Effective date: 20150717

C41 Transfer of patent application or patent right or utility model
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Effective date of registration: 20150717

Address after: TA Pu Siming District Xiamen road 361000 Fujian province No. 168 building 1303 unit 13

Patentee after: POTENT MECHANICAL & INDUSTRIAL (XIAMEN) Co.,Ltd.

Address before: TA Pu Siming East Road Xiamen city Fujian province No. 168 building 1303 unit 13

Patentee before: Liao Zhengzong

TR01 Transfer of patent right

Effective date of registration: 20230830

Address after: Room 1406, No. 30 Pingshan Nanli, Haicang District, Xiamen City, Fujian Province, 361026

Patentee after: Xiamen Huicai Investment Consulting Co.,Ltd.

Address before: Unit 1303, 13th floor, 168 Tapu East Road, Siming District, Xiamen City, Fujian Province 361000

Patentee before: POTENT MECHANICAL & INDUSTRIAL (XIAMEN) Co.,Ltd.

TR01 Transfer of patent right