CN103466281A - Rubber wheel structure for conveying glass - Google Patents

Rubber wheel structure for conveying glass Download PDF

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Publication number
CN103466281A
CN103466281A CN2013104038287A CN201310403828A CN103466281A CN 103466281 A CN103466281 A CN 103466281A CN 2013104038287 A CN2013104038287 A CN 2013104038287A CN 201310403828 A CN201310403828 A CN 201310403828A CN 103466281 A CN103466281 A CN 103466281A
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CN
China
Prior art keywords
glass
mandrel
inner core
rubber wheel
core
Prior art date
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CN2013104038287A
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Chinese (zh)
Inventor
章寅
彭寿
张仰平
张超群
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中国建材国际工程集团有限公司
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Application filed by 中国建材国际工程集团有限公司 filed Critical 中国建材国际工程集团有限公司
Priority to CN2013104038287A priority Critical patent/CN103466281A/en
Publication of CN103466281A publication Critical patent/CN103466281A/en

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Abstract

The invention relates to the technical field of glass production and glass deep processing, in particular to a rubber wheel structure for conveying glass. The rubber wheel structure for conveying the glass consists of an inner core and an external O-shaped ring, wherein the inner core is in interference fit with a mandrel to form a whole, and the mandrel is in linkage with the rubber wheel structure. The rubber wheel structure for conveying the glass is characterized in that the hole diameter of the inner core is smaller than the diameter of the mandrel, a cross section of the inner core is trapezoid, and the contact length between the inner core and the mandrel is larger than the width of the trapezoid cross section. Compared with the prior art, the rubber wheel structure for conveying the glass has the advantages that the inner core is of a trapezoid structure, so that the strength of a rubber wheel is enhanced, meanwhile materials are also saved, the cost is low, and the performance cost ratio is high; the inner core is in interference connection with the mandrel, so that enough friction force and the large contact face are formed between the mandrel and the inner core; the inner core and the external O-shaped ring are separated, so that different materials can be adopted, and only the external O-shaped ring is required to be replaced after being abraded; only the external O-shaped ring of the whole rubber wheel is in contact with the glass, glass scratching is decreased, and the quality of conveyed glass is ensured.

Description

一种用于输送玻璃的胶轮结构 Tire structure for transporting glass

[技术领域] [Technical Field]

[0001 ] 本发明涉及玻璃生产以及玻璃深加工技术领域,具体来说是一种用于输送玻璃的胶轮结构。 [0001] Technical Field The present invention relates to the production of glass and glass processing, specifically the structure of a tire for conveying glass.

[背景技术] [Background technique]

[0002] 随着超薄玻璃和各种镀膜技术的不断提高,超薄玻璃在电子行业得到广泛应用,各种镀膜玻璃也应用于各个行业。 [0002] With the development of ultra-thin glass and a variety of coating technology, ultra-thin glass has been widely used in the electronics industry, a variety of coated glass is also used in various industries. 超薄玻璃和镀膜玻璃对玻璃表面的质量要求很高,也就要求在超薄玻璃和各种镀膜玻璃的生产和加工过程中不能有任何的擦伤和划痕,而在玻璃生产和玻璃深加工过程中主要靠胶轮输送,有些场合玻璃的温度较高,因此也就对输送玻璃的胶轮要求较高,要求胶轮不能擦伤玻璃,有时还要求胶轮能承受较高的温度。 Thin glass and glass coated glass surface quality requirements are high, it requires not have any abrasions and scratches of various ultra-thin glass and coated glass production and processing, and further processing in the production of glass and glass process depends mainly on tire delivery, higher temperatures on some occasions the glass and, therefore, the requirements for rubber tire delivery of high glass, rubber tire requirements can not scratch glass, sometimes also called rubber tire can withstand high temperatures.

[发明内容] [SUMMARY]

[0003] 本发明的目的就是为了解决玻璃生产运输过程中胶轮会对玻璃造成擦伤和划痕的技术问题,提供一种有效解决上述问题的用于输送玻璃的胶轮结构。 [0003] The object of the present invention is to solve the glass during the glass production and transportation tire will cause abrasions and scratches technical problems, to provide an efficient tire structure solving the above problems for conveying glass.

[0004] 为了实现上述目的,发明一种用于输送玻璃的胶轮结构,由内芯I和外部O型圈2组成,内芯I与芯轴3的过盈配合使内芯I和芯轴3成为一体,芯轴2与胶轮结构联动,其特征在于所述的内芯孔径小于芯轴直径,内芯截面为梯形,内芯I与芯轴3接触长度大于梯形截面览度。 [0004] To achieve the above object, the glass INVENTION A tire for a delivery configuration, the core I and an outer O-ring consisting of 2, the core I and the inner mandrel 3 of the interference fit of the core I and the inner mandrel 3 is integral, the mandrel 2 with interlocking rubber tire structure, wherein the core diameter is smaller than said mandrel diameter, the inner core has a trapezoidal cross-section, the core I and the inner mandrel 3 is greater than the contact length of trapezoidal cross-section view.

[0005] 所述的内芯I截面呈梯形,从芯轴3上母线向外逐渐变窄。 I-section of the core [0005] The trapezoidal shape, tapering outwardly from the mandrel 3 the bus.

[0006] 所述的内芯I外部加工有环形沟槽,靠外部O型圈2的弹性将外部O型圈2胀紧在沟槽内。 I processed outside the inner core of the [0006] with an annular groove, against the resilient O-ring 2 outside the outer O-ring 2 is swelling within the trench.

[0007] 所述的内芯I选用塑料、聚胺脂或橡胶材质制成。 Said inner core [0007] I use plastic, made of polyurethane or rubber.

[0008] 所述的外部O型圈2与玻璃接触处为面与弧面接触。 [0008] The outer O-ring 2 is in contact with the glass surface at the contact arc.

[0009] 所述的外部O型圈2采用橡胶或者耐热橡胶材质制成。 [0009] The outer O-ring 2 is made of rubber or a heat-resistant rubber material.

[0010] 本发明同现有技术相比,其优点在于: [0010] Compared with the prior art the present invention is advantageous in that:

[0011] 1.内芯与芯轴之间采用过盈连接,内芯与芯轴之间接触长度大于梯形截面的宽度,使芯轴和内芯之间有足够大的摩擦力和接触面,保证了胶轮和芯轴同步运转。 [0011] The core and the inner mandrel between 1. interference connection, the contact length is greater than the width of the trapezoidal cross-section between the inner core and the mandrel, so that there is sufficient frictional force between the contact surface and the mandrel and the inner core, ensure the rubber tire and spindle synchronous operation.

[0012] 2.内芯采用梯形结构,既增强了胶轮的强度同时也节省了材料,成本低,性价比闻。 [0012] 2. The core trapezoidal configuration, not only enhances the strength of the rubber tire also saves materials, low cost, cost smell.

[0013] 3.内芯采用硬度较高的橡胶或塑料材质增加了整个胶轮的强度。 [0013] 3. The inner core with a higher hardness of rubber or plastic material increases the strength of the whole tire.

[0014] 4.内芯和外部O型圈采用分离式,可以使内芯和外部O型圈采用不同的材质,同时外部O型圈摩损后,只须更换外部O型圈。 [0014] 4. The inner core and outer O-rings using separate, the inner core may be an O-ring and an outer using different materials, while the outer O-ring wear, simply changing the external O-ring. 外部O型圈采用硬度低,摩擦系数小的橡胶时用于减少玻璃擦伤的场合,外部O型圈采用硬度低的耐热橡胶时用于玻璃温度较高的场合。 External O-rings with low hardness, for reducing abrasion of glass where the low coefficient of friction when the rubber, the external O-ring for use where high temperature of the glass at low hardness heat-resistant rubber. 整个胶轮只有O型圈外部与玻璃接触,减小了对玻璃的擦伤,保证了输送的玻璃的质量。 Only whole tire outer O-ring in contact with the glass, reducing the abrasion of the glass to ensure that the glass mass transport.

[附图说明][0015] 图1为本发明的剖视图; [BRIEF DESCRIPTION] is a sectional view of the present disclosure [0015] FIG 1;

[0016] 图2为图1的A向视图; [0016] FIG. 2 is a view on arrow A of Figure 1;

[0017] 如图所示,图中:1.内芯2.外部O型圈3.芯轴4.玻璃; [0017] As shown, in FIG: an outer core 2. The O-ring 3. glass 4. mandrel;.

[0018] 指定图1作为本发明的摘要附图。 [0018] FIG. 1 as specified in the summary of the invention the accompanying drawings.

[具体实施方式] [Detailed ways]

[0019] 下面结合附图对本发明型作进一步说明,这种装置的结构和原理对本专业的人来说是非常清楚的。 [0019] DRAWINGS type of the present invention will be further described, such a device structure and principle of the present professional people is very clear. 应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。 It should be understood that the specific embodiments described herein are only intended to illustrate the present invention and are not intended to limit the present invention.

[0020] 实施例1 [0020] Example 1

[0021] 如图1、图2所示,本发明用于玻璃生产或玻璃深加工设备上,通过内芯I与芯轴3的过盈配合使内芯I和芯轴3成为一体,当芯轴2转动时带动胶轮一起转动,从而起到输送玻璃的作用。 [0021] As shown in FIG 1, FIG. 2, the present invention is used in the production of glass or glass processing equipment, with the inner core through the core I and the mandrel with the mandrel interference I 3 3 integrally when the mandrel 2 together with the rotational drive tire, which play a role in the transport of glass.

[0022] 胶轮由内芯I和外部胶圈两部分组成,内芯I内孔小于轴径,保证了与芯轴3过盈配合,内孔与芯轴3的接触长度比内芯I的截面宽,使内芯I与芯轴之间有足够的接触面,从而保证内芯I与芯轴2之间有足够强的摩擦力。 [0022] I tire by the inner core and an outer rubber ring composed of two parts, the shaft diameter is smaller than the inner bore of the core I to ensure an interference fit with the mandrel 3, the length of the contact hole 3 and the mandrel section than the inner core I wide, so that there is sufficient contact area between the inner core and I mandrel, so as to ensure a sufficiently strong frictional force between the inner core and I core shaft 2.

[0023] 外部O型圈2与内芯I分开加工,可使二者选用不同的材质,内芯I选用选用硬度和强度较高的塑料、聚胺脂或橡胶材质制成,由于其较高的硬度和强度保证了整个胶轮在承载玻璃4时不变形。 [0023] External O-ring 2 and the inner core I processed separately, allows both the choice of different materials, the choice of the hardness of the inner core and I selected high strength plastic, or rubber material made of polyurethane, due to its higher hardness and strength ensures that the entire rubber tire does not deform when carrying glass 4. 内芯I截面做成梯形结构,从芯轴3上母线向外逐渐变窄,既节省了材料又保证了良好的力学性能;内芯I外部加工有环形沟槽,靠外部O型圈2的弹性将外部O型圈2胀紧在沟槽内。 Core I made of trapezoid cross-section, tapers outwardly from the mandrel 3 the bus, saving material and ensure the good mechanical properties; I core has an external annular groove processing, by an external O-ring 2 the elastic O-ring 2 outside swelling within the trench.

[0024] 外部O型圈与玻璃4接触处为面与弧面接触,减小了磨损,保护了玻璃4,外部O型圈2采用硬度低、摩擦系数小的橡胶或者硬度低耐热橡胶等材质制成,采用硬度低、摩擦系数小的橡胶材质时保证了玻璃4与外部O型圈之间有足够的弹性和较小的摩擦力,保护了玻璃4表面不会被擦伤,采用硬度低的耐热橡胶时适应于玻璃4温度较高的场合。 [0024] The outer O-ring 4 in contact with the glass at the surface is in contact with the arc, reduced wear, the protective glass 4, the external O-ring 2 with low hardness, low coefficient of friction rubber or rubber hardness of the low heat made of a material, when a low hardness, low coefficient of friction rubber material guarantees a sufficient elasticity and a small frictional force between the glass 4 and an external O-ring, protects the surface of the glass 4 is not scratched, a hardness 4 adapted to a higher temperature where the glass of the low heat-resistant rubber.

Claims (6)

1.一种用于输送玻璃的胶轮结构,由内芯(I)和外部O型圈(2)组成,内芯(I)与芯轴(3)的过盈配合使内芯(I)和芯轴(3)成为一体,芯轴(2)与胶轮结构联动,其特征在于所述的内芯孔径小于芯轴直径,内芯截面为梯形,内芯(I)与芯轴(3)接触长度大于梯形截面览度。 A tire structure for transporting the glass, by the inner core (I) and an outer O-ring (2), with the core (I) with the mandrel (3) is an interference fit of the inner core (I) and the mandrel (3) is integral, the mandrel (2) in conjunction with rubber tire structure, wherein the core diameter is smaller than said mandrel diameter, the inner core has a trapezoidal cross-section, the core (I) with the mandrel (3 ) is greater than the contact length of trapezoidal cross-section view.
2.如权利要求1所述的一种用于输送玻璃的胶轮结构,其特征在于所述的内芯(I)截面呈梯形,从芯轴(3)上母线向外逐渐变窄。 2. one of the claim 1 for conveying glass tire structure, wherein said core (I) a trapezoidal cross section, (3) tapers outwardly from the mandrel bus.
3.如权利要求1所述的一种用于输送玻璃的胶轮结构,其特征在于所述的内芯(I)外部加工有环形沟槽,靠外部O型圈(2)的弹性将外部O型圈(2)胀紧在沟槽内。 3. one of the claim 1 for conveying glass tire structure, wherein said core (I) has an external annular groove processing, by an external O-ring (2) of the external elastic O-ring (2) swelling within the trench.
4.如权利要求1所述的一种用于输送玻璃的胶轮结构,其特征在于所述的内芯(I)选用塑料、聚胺脂或橡胶材质制成。 4. one of the claim 1 for conveying glass tire structure, wherein said core (I) use plastic, made of polyurethane or rubber.
5.如权利要求1所述的一种用于输送玻璃的胶轮结构,其特征在于所述的外部O型圈(2)与玻璃接触处为面与弧面接触。 5. one of the claim 1 for conveying glass tire structure, wherein said outer O-ring (2) at the contact with the glass surface is in contact with the arc.
6.如权利要求1所述的一种用于输送玻璃的胶轮结构,其特征在于所述的外部O型圈(2)采用橡胶或者耐热橡胶材质制成。 1 one of said tire as claimed in claim for conveying the glass structure, wherein said outer O-ring (2) made of rubber or a heat-resistant rubber material.
CN2013104038287A 2013-09-06 2013-09-06 Rubber wheel structure for conveying glass CN103466281A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104015551A (en) * 2014-05-27 2014-09-03 上海迪诺克新材料科技有限公司 Composite rim structure and forming technology thereof

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EP0005012A1 (en) * 1978-04-14 1979-10-31 Pilkington Brothers P.L.C. A roll for use under high or low temperature conditions
PL157366B1 (en) * 1988-07-29 1992-05-29 Retaining ring for conveyor belt supporting rollers
JPH0826454A (en) * 1994-07-15 1996-01-30 Asahi Denzai Kk Board conveying wheel
CN102015210A (en) * 2008-04-23 2011-04-13 新东工业株式会社 Conveyance system and blasting machine
CN202400582U (en) * 2011-12-15 2012-08-29 佛山市中南罗森玻璃有限公司 Novel glass transmission roller
CN202429665U (en) * 2011-12-30 2012-09-12 特新电路材料(东莞)有限公司 Conveying wheel with protective jacket
CN102689779A (en) * 2012-05-31 2012-09-26 深圳市华星光电技术有限公司 Idler wheel for conveying glass substrates
CN102785884A (en) * 2012-07-31 2012-11-21 芜湖耀华玻璃园艺有限公司 Irregular glass transmission device
CN203581886U (en) * 2013-09-06 2014-05-07 中国建材国际工程集团有限公司 Rubber wheel structure for conveying glass

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0005012A1 (en) * 1978-04-14 1979-10-31 Pilkington Brothers P.L.C. A roll for use under high or low temperature conditions
PL157366B1 (en) * 1988-07-29 1992-05-29 Retaining ring for conveyor belt supporting rollers
JPH0826454A (en) * 1994-07-15 1996-01-30 Asahi Denzai Kk Board conveying wheel
CN102015210A (en) * 2008-04-23 2011-04-13 新东工业株式会社 Conveyance system and blasting machine
CN202400582U (en) * 2011-12-15 2012-08-29 佛山市中南罗森玻璃有限公司 Novel glass transmission roller
CN202429665U (en) * 2011-12-30 2012-09-12 特新电路材料(东莞)有限公司 Conveying wheel with protective jacket
CN102689779A (en) * 2012-05-31 2012-09-26 深圳市华星光电技术有限公司 Idler wheel for conveying glass substrates
CN102785884A (en) * 2012-07-31 2012-11-21 芜湖耀华玻璃园艺有限公司 Irregular glass transmission device
CN203581886U (en) * 2013-09-06 2014-05-07 中国建材国际工程集团有限公司 Rubber wheel structure for conveying glass

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104015551A (en) * 2014-05-27 2014-09-03 上海迪诺克新材料科技有限公司 Composite rim structure and forming technology thereof

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