Specialized in manufacturing compensators, expansion joints, baffle doors
A comprehensive scientific and technological enterprise integrating design and development, production, product sales, installation and debugging
Specialized in the production of metal compensator, non-metal compensator, baffle door equipment for 18 years
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Metal rectangular expansion joint
Product introduction of metal rectangular expansion jointProduct Structure and C...
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Universal corrugated expansion joint
The universal corrugated expansion joint is a kind of flexible compensation elem...
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Single axial expansion joint
I. Structural compositionThe single axial expansion joint is mainly composed of ...
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About Us
Nantong Chuangxin Machinery Co., Ltd. is located in the plain of central Suzhou, close to Nantong and Ningjingyan Expressway with convenient transportation, and less than 2 hours drive from Shanghai, Suzhou, Wuxi, Nanjing and other large and medium-sized cities.
The company is a comprehensive scientific and technological enterprise integrating design and development, production, product sales, installation and debugging. The company has successively communicated and cooperated with the National Cement Research Institute and the general contractor!
The company's main products are metal compensator (expansion joint), non-metal compensator (expansion joint), baffle door and other series products, providing excellent and cheap complete sets of equipment for the majority of users at home and abroad.
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金属膨胀节轴向膨胀量表:选型时绕不开的那张表
一、轴向膨胀量表到底在说什么?——别只看数字,先搞懂定义搞管道设计的人,手上多半有过一张金属膨胀节轴向膨胀量表。可说实话,不少人是直接拿着表...
金属膨胀节膨胀缝处理,这5个细节才是安装成败的关键
膨胀缝不是留个缝那么简单——它到底在消化什么?很多人以为膨胀缝就是管道中间切一刀,留出几毫米间隙完事。真这么干,不出仨月保准出问题。金属膨胀...
金属伸缩节膨胀节选型实战:避开这4个坑,管道系统稳如泰山
金属伸缩节和膨胀节到底是不是一回事?聊选型之前,先把概念理清楚。很多人问过我:金属伸缩节和膨胀节是不是两种东西?你翻开产品目录,会发现有的叫...
DLD标准金属膨胀节,到底是什么?选型和安装的一次性讲清楚
先说清楚:DLD标准金属膨胀节是个啥?不是所有波纹管都叫DLD标准很多客户拿着图纸来问,上来就是一句“我要DLD标准的金属膨胀节”。但DLD...
金属膨胀节知识:从原理到选型,搞懂这几点就够了
金属膨胀节到底能解决什么问题?先搞懂它的核心作用做管道设计的都知道,热胀冷缩是绕不开的硬骨头。蒸汽管道一升温,几十米的管子能顶出好几厘米的位...
低温工况下金属膨胀节怎么选?别让低温脆性毁了你的管道系统
一、低温到底有多可怕?——从材料脆性说起你在北方冬天掰过树枝吗?一掰就断,干脆利落。低温下的金属膨胀节也一个德性——本来韧性不错的304不锈...
Frequently asked questions
Answers to your frequently asked questions about compensators and baffle doors
去年夏天,某沿海电厂脱硫烟道停机检修,原因让人哭笑不得——法兰垫片老化,加上螺栓预紧力不均,烟气从缝隙里窜出来,整条线被迫降负荷。负责检修的老王跟我说:“波纹管材质花了大价钱,结果栽在连接方式上。” 确实,非金属膨胀节(织物纤维膨胀节、橡胶补偿器、矩型非金属膨胀节)在烟风道、脱硫系统里扛热胀冷缩是一把好手,但连接方式选不对,漏风、跑冒、停机,一个都跑不掉。
1. 法兰连接:最普遍的坑,往往最深
法兰连接是非金属膨胀节最常用的方式,没有之一。无论本站的 非金属膨胀节(织物纤维膨胀节) 还是 矩形非金属膨胀节,出厂时都会配好配对法兰。但现场安装时,三个细节容易翻车。
法兰面平整度——我见过现场管道法兰焊完翘起3毫米,工人拿石棉垫片硬塞平,结果投运一周就漏了。正确做法:配对法兰平面度误差≤1mm/m,否则要用密封胶或机加工找平。
螺栓预紧力——很多人觉得“拧得越紧越不漏”,对金属管可能对,但对非金属膨胀节是灾难。圈带(织物纤维层)被螺栓压得太紧,边缘应力集中,几个月就撕裂。本站的 矩形非金属膨胀节 在安装手册里明确标注力矩值,比如M16螺栓预紧力控制在80-100N·m,别凭手感。
垫片选择——烟气温度高、含硫,普通橡胶垫片扛不住。 橡胶四氟补偿器 常用整体法兰+四氟垫片,耐腐蚀又贴合。但注意:垫片不能太厚,否则螺栓压不实;也不能太薄,否则补偿节振动时容易移位。按JB/T 12235-2015标准,垫片压缩率控制在25%-30%最稳。
某水泥厂用 非金属膨胀节(织物纤维膨胀节) 连接旋风筒出口,工人图省事把法兰螺栓全拧到最大扭矩,结果圈带沿螺栓孔撕开一道口,烟气带着粉尘喷了半小时。后来换了预紧力扳手,再没出过事。
2. 卡箍与扣边连接:省钱?耐温先过关
低压大口径管道,很多人喜欢用卡箍或扣边连接,觉得便宜拆装方便。但这里有个悖论:你以为卡箍省钱省事?错了,耐温等级和紧固件材质不匹配,几个月就松脱。
圆形管道用卡箍居多,比如烟气挡板门后的烟道段。但卡箍的螺栓、弹簧片在高温下会蠕变——温度超过200℃,普通碳钢卡扣的弹性模量下降30%。某脱硫项目用了不锈钢304卡箍,半年后因热循环导致螺栓松动,接口处冒酸雾。后来换成310S材质的卡箍,才稳住。
本站的 矩型非金属膨胀节 则多用扣边+压条结构:膨胀节圈带的边缘翻边,嵌入法兰槽内,外面用一整条压条固定。这种设计对矩形管道的四个角特别友好,不会出现卡箍压不紧R角的情况。但压条材质选不好同样翻车——普通镀锌压条在湿脱硫环境下三个月锈穿。建议用316L或玻璃钢复合材料压条。
你项目上用过卡箍失败的案例吗?评论区聊聊。
3. 热硫化粘接与整体成型:别迷信一个“粘”字
橡胶类非金属膨胀节,比如本站的 橡胶补偿器 和 橡胶四氟补偿器,连接方式常用粘接或整体硫化成型。但很多采购被销售话术带偏:“我们用的是进口胶水,粘得牢!”——粘接强度不够?那是你没按标准来。
高温烟气段(>120℃)必须用热硫化工艺。硫化的本质是橡胶分子与补强材料发生交联,形成化学键,剥离强度可以到50N/mm以上。而常温段(≤80℃)可以用冷粘,配合专用底涂,剥离强度也能达到JB/T 12235-2015要求的≥25N/mm。
我碰到过一个客户,把冷粘的橡胶补偿器用在电厂热风道(180℃),两周后粘接面就脱胶了。维修时才发现,冷粘胶水在高温下软化,根本扛不住。所以,不是所有非金属膨胀节都能用粘接——选型时一定要问清楚:介质温度多少?是不是频繁启停?
整体成型则是把橡胶或四氟直接模压成带法兰的补偿器,比如本站的 聚四氟乙烯补偿器,法兰和波纹体一次成型,没有粘接界面,可靠性更高。但成本也高,而且不适合超大尺寸(如5米以上的矩形截面)。
4. 特殊结构:穿管焊接与复合密封
有些工况,标准连接方式根本不够用。比如双密封结构——借鉴本站 圆形挡板门(双密封) 的理念,非金属膨胀节也可以做成内外两层密封。内层用织物纤维蒙皮吸收位移,外层用金属导流板+耐温密封条做二次防护。这种结构常见于需要零泄漏的高温风机进出口。
比如 高温轴向型膨胀节 的非金属替代方案——用不锈钢穿管焊接在管道上,外面包覆多层蒙皮(硅胶布+陶瓷纤维+不锈钢丝网),分层搭接的设计逻辑很简单:每一层负责一个功能——最内层隔热,中间层承压,外层防腐蚀。焊缝位置必须错开,避免热应力集中。有个项目这样做之后,从每季度检修一次延长到两年一次。
另外,空冷岛真空管道双铰链膨胀节 虽然多用于金属管,但它的铰链补偿理念也可以移植到非金属上:用万向节结构允许三个方向的位移,连接法兰处加复合密封垫,效果很稳。
总结一句——连接方式没有最好,只有最合适。介质温度低于150℃、微正压,法兰连接就够了;大口径低压用扣边压条;高温用硫化或整体成型;要求零泄漏就上双密封。本站的 非金属膨胀节 涵盖织物纤维、橡胶、四氟等多种材质,连接方式从法兰、卡箍到硫化粘接都能定制,关键是按参数选型——温度、压力、位移量报清楚,我们帮你匹配不跑冒的方案。
金属膨胀节到底是怎么膨胀的?从波纹管形变到位移吸收的物理过程
很多人第一次接触金属膨胀节,都会盯着那圈波纹管发呆:这玩意儿看着跟洗衣机的排水管似的,怎么就能吞掉管道几十毫米的热胀冷缩?其实核心原理特简单——靠波纹管自身的弹性变形来“吃掉”位移。你把它想象成一个可以伸缩的弹簧管就行,只不过这个弹簧是用不锈钢或合金做的,波纹的形状经过专门计算,能在承受内压和温度的同时反复弯折而不疲劳断裂。
波纹管每圈波纹(也叫波峰和波谷)受力时会发生弯曲和拉伸,多个波纹累加在一起,补偿量就出来了。拿咱们常说的通用型波纹膨胀节举例,单波补偿量通常在2到8毫米之间,具体取决于波高和壁厚。一套十几波的膨胀节轻松搞定几十毫米的轴向伸缩。说白了,这就是把微小的形变累积成宏观位移——跟叠罗汉一个道理,一个人踮脚没多少高度,十几个人叠起来就够得着房顶了,是不是这个理?
管道里的位移方向可不只有轴向一种。蒸汽管道升温,管子沿长度方向伸长,这是轴向。可有时候管道因为支架变形或者转弯,还会产生横向的错位或者角向的偏转。这时候光靠轴向膨胀节就不好使了,硬装上去等于让波纹管扭着干活,没几个循环就得裂。
怎么办?工程师在波纹管外面加了拉杆、铰链或者万向环,强行限制波纹管的变形方向。比如复式铰链横向型膨胀节,用两组波纹管配合铰链结构专门吸收横向位移;曲管压力平衡型膨胀节则通过两侧波纹管的内压自平衡,吸收角位移的同时不让压力推力传到固定支架上。你看,同样是波纹管,配上不同的约束件,就能变出十几种功能——咱们网站上列出的产品,像直管压力平衡型、复式直管旁通压力平衡型、外压单式轴向型膨胀节,都是基于这个思路衍化出来的。
金属的弹性极限就那么点,反复弯折不会裂吗?好问题。这里就得讲讲膨胀节的疲劳寿命设计了。波纹管出厂前会做预应变处理,而且波谷处的壁厚通常比波峰厚一点点,为的就是把应力集中区转移到波峰位置。再加上导流筒这个配件——导流筒套在波纹管内壁,既能引导介质流动不冲刷波纹,又能减少湍流引起的振动(具体作用可以参考咱们站内问答)。
膨胀节的使用寿命一般在设计时就按1000次到10000次全循环来算,实际工况下(比如电厂管道每年启停几次),用个二三十年没问题。前两天有个客户问燃气波纹管几年换一次,那其实说的是民用燃气软管,跟工业金属膨胀节不是一回事——民用燃气软管有年限要求,工业上用的按标准JB/T 12235进行型式试验,只要不超过设计位移和压力,定期检查就行,不用拍脑袋换。
安装膨胀节的时候,那根箭头方向和拉杆螺母到底是干嘛的?箭头方向指的是介质流动方向,主要作用是防止导流筒装反导致介质直接冲击波纹。而拉杆螺母在运输和安装阶段是锁死的,目的是把膨胀节预压缩或者预拉伸到中间位置,避免现场管道对不上口;等管道全部连接好、固定支架焊牢之后,再把螺母松开到规定位置(通常产品说明会给出两个螺母之间的间距),否则膨胀节等于被锁死,根本没空间膨胀。你说冤不冤?
说白了,金属膨胀节膨胀的原理并不玄乎,难的是根据管道系统里到底是轴向、横向还是角向位移,选对型号并正确安装。像电站行业用的电站行业用波纹膨胀节、水泥行业的水泥行业金属波纹膨胀节,工况温度高、粉尘大,还会配上隔热层和耐磨衬里——但归根结底,波纹管那圈波纹还在老老实实地弯折,替管道扛下所有热应力。所以,下次再看到管道上那段鼓起来的波纹管,你就知道它可不是摆着好看的装饰品,而是实打实在用身体扛位移的硬核零件。
Why do you have to have regular inspections? — Don't wait until you miss it to regret it
Two days ago, I met a brother from a power plant. Their desulfurization tower was exportedNon-metallic expansion joints (fabric fiber expansion joints)Suddenly it was torn, and the hot smoke was wrapped in slurry and directly leaked out. After the production line was stopped for 3 days, the light loss was a small million. You say it was wrong or not? In fact, this kind of accident can be completely avoided-as long as it is checked regularly, it will only take a few hours to replace one if the signs of aging of the fabric layer and corrosion of the metal frame are found in advance.
Non-metallic compensators (also called non-metallic expansion joints and fabric fiber expansion joints) are widely used in smoke and air ducts, desulfurization systems and cement production lines, because they are resistant to high temperatures, corrosion resistance and can absorb large displacements. However, its soft belt is tossed by high temperature, dust, acid and alkali gases all the year round, and its aging rate is much faster than that of metal parts. When you see air leakage, smoke leakage and abnormal noise before dealing with it, the internal structure is often hurt. SoHow to check a non-metallic compensator?This problem is actually one of the core lessons of pipeline maintenance.
Appearance inspection: Seeing, touching and listening, three steps to find out the big fault
Look-scan details with your eyes
Standing on the side of the compensator, first look at the surface of the fabric for bulging, scratches, fluffing, and whitening. Bulging usually means debonding between layers, and scratches deep may have damaged the inner PTFE or rubber film. Pay special attention to the corners of rectangular non-metallic expansion joints-that position has the most stress concentration and is most likely to crack first. Look at whether the metal flange is corroded and the weld is cracked.
Touch-to feel with your hands
Put on the gloves and touch the circle along the surface of the circle band. If it feels hard and sticky locally, it means that the material has degraded. Rubber compensator or rubber PTFE compensator is especially afraid of this-it will be brittle and cracked when it is hard, and it will be corroded by the medium when it is sticky. The normal feel should be uniform elasticity and smooth surface.
Listen-Find abnormalities with your ear
When the equipment is running, get closer and listen to whether there is a hissing air leak or a puff bulge. Experienced masters know where they leak as soon as they hear it-the hissing sound is mostly due to the fabric needle eye being enlarged, and the puff sound may be the displacement of the internal cushion.
After these three steps are completed, 70% to 80% of the surface problems can be found out. However, some internal injuries have to rely on these methods.
Dimension and displacement compensation ability check-measure to know whether there is failure
Nonmetallic compensators are not only soft connections, they absorb the thermal expansion and mechanical displacement of the pipe. Think about it, the pipe can stretch tens of millimeters when it is hot, and it all depends on this soft guy's deformation to digest it. If it loses its elasticity due to aging, or does not leave enough margin during installation, the consequence will be pipe stress hard top, flange crack, or even equipment.
How to check? Simple: Measure the actual length and width of the compensator under shutdown, and compare with the factory design dimensions. If the amount of compression has exceeded 80% of the design maximum, or the amount of stretch is almost to the end, then you have to consider replacing it. Common standards, such as JB/T 12235-2015 "Non-metallic Expansion Joints", specify the displacement limit and fatigue life.
In addition, don't forget to look at the guide tube (if any) -the specific function of the expansion joint guide tube is to protect the fabric from being washed by high-speed airflow. If it corrodes and collapses, the compensator life is directly discounted in half.
Sealability and airtightness test-a dozen pressures, all leaks appear
The front ones are all visual and feel, and the real tough battle is the airtightness test. Especially in the desulfurization flue gas baffle door, air-cooled island system and other occasions with high sealing requirements, the high air leakage rate not only increases the energy consumption, but also may lead to scaling and corrosion of peripheral equipment.
Close the valves on both sides of the non-metallic compensator, seal one end with a blind plate, and give 0.05~0.1MPa compressed air to the other end (don't overpressure, the fabric can't bear to rush), and then coat each seam, flange surface and bolt hole with soapy water. Where bubbles are the leakage spots.
Before the test, confirm that the compensator has no obvious bulge or tear, otherwise it will collapse directly when the wind takes a dozen, which will be dangerous. The pressure holding time should be at least 5 minutes, and the pressure should not drop before it is qualified. If there are not many leaks, you can try to plug them with special repair glue; But if the fabric leaks in a large area, or several leaks are strung together, don't toss it, just replace it with a new one.
Judgment and treatment of common faults-which can be repaired by themselves and which must be replaced
Come on, go straight to the dry goods:
- Small scratches and slight fluffing on the fabric surface: Apply a layer with silicone rubber or fluororubber repair agent, and it can top for a while when it dries. However, the premise is that the covering layer is not damaged, and the medium temperature does not exceed the temperature resistance range of the repair agent.
- Air leakage due to loose flange bolts: This can be tightened by itself, and the torque value is tightened 2~3 times in diagonal order. Don't screw to death at once, it will easily deform the flange.
- Local bulging and delamination of circular zone: It indicates that the fabric and inner layer have been detached. Don't fix it, just change it. Because the bulge will get bigger and bigger and break sooner or later.
- Metal frame corrosion perforation: Look at the corroded area. If it is only a small piece, you can apply anticorrosive paint after repair welding and polishing; If a large area is thinned, the whole frame has to be replaced.
- Fabric distortion due to displacement exceeding limit: First check whether the pipe support is displaced or the original selection is too small. If it is a bracket problem, adjust the bracket; If it is a type selection problem, the expansion joint with a larger compensation amount must be replaced.
At the end of the day,How to check a non-metallic compensator?Not going through the motions, but turning "examination" into "diagnosis". Each inspection records the appearance status, size data, and leakage, and compares the historical trend. For example, the compression amount in the last quarter was only 40%, and this time it reached 60%, which means that the aging has accelerated-the spare parts replacement plan can be arranged six months in advance.
Don't wait for the smoke to panic. Follow this list, and your non-metallic compensator (whether it is a rectangular non-metallic expansion joint, rubber compensator, or PTFE compensator) will last three or five more years, and it will be perfectly fine.
First, find out what "too long" is all about-common cause investigation
Many people ask as soon as they come up, "What should I do if the metal expansion joint is too long?", but we have to first see whether this "too long" is not calculated correctly by design, or it is forced in during installation. There are three common reasons: First, the thermal elongation of the pipeline is considered large during design and selection, or the cold tightness is not considered at all; Second, there is a deviation between the actual center distance of the on-site pipeline and the drawing, such as support settlement and flange misalignment; Third, the factory length of the expansion joint itself is too large-for example, you ordered a general-purpose corrugated expansion joint, but the supplier delivered it according to the standard length, and did not customize and shorten it. Two days ago, a customer of a power plant took an external pressure single axial expansion joint. The actual installation space was only 300mm, but the one he bought was 400mm long. Do you think this can be installed?
Second, don't hurry to cut, try "adjust the installation position" and "change the bracket" first
The expansion joint is too long, and it is not the only way to cut. In many cases, adjusting the pipe bracket or adding a bias can solve the problem. For example, if your pipe has installation allowance, you can retract the fixing bracket a little, so that the connectors at both ends of the expansion joint extend more into the pipe. Alternatively, if the expansion joint has a tie rod nut (like a large tie rod expansion joint), try loosening the nut to allow the bellows to compress-be careful not to exceed the allowable amount of compression. Don't forget what the expansion joint guide does: it both protects the bellows and limits excessive compression. If you use a double hinge transverse expansion joint, it itself can absorb angular displacement through the hinge, and a slight adjustment of the angle can "eat" part of the length. If it doesn't work, you can add a short section to the pipe to fill up the space.
3. Wrong selection? Then switch to an expansion joint construction-recommended alternative
If the installation and adjustment can't be done, the problem is probably in the selection. At this time, it is necessary to change a more suitable model according to the pipeline displacement, pressure, temperature and other parameters. For example: you originally used a general-purpose corrugated expansion joint, but thought it was too long, so you can replace it with a straight tube pressure balanced expansion joint or a double straight tube bypass pressure balanced expansion joint, which is more compact in structure and has a shorter axial length. If it is a high-temperature steam pipeline, consider the high-temperature axial expansion joint, which has less corrugations, large stiffness and shorter length under the same compensation amount. There is also an extreme practice: instead of the axial expansion joint, the rotary compensator is a sleeve-type structure with a fixed length and is not affected by bellows compensation. Note, however, that rotary compensators are not suitable for high-pressure applications. Here is a reminder that you must check the pipeline thrust before changing the model, otherwise it is easy to pull the bracket.
4. The last way: Cut or return to the factory-but the risks must be clear
Some old masters say, "Saw off a piece of isn't it over?" Don't do this! Each wave of the bellows of the metal expansion joint is calculated according to the design pressure, and cutting will destroy the end structure and stress distribution, which directly leads to the instability or leakage of the bellows. Only a few circumstances are possible: if the manufacturer reserves a cut allowance and you have accurate welding process documentation on hand, you can short-circuit it-for example, large-diameter thick-walled expansion joints sometimes leave a straight edge section on the end tube, allowing you to cut off the excess and re-weld the joint. However, in most cases, it is recommended to contact the manufacturer directly to return to the factory for modification, or change to a customized length. For example, the directly buried (fully buried) expansion joint of this station is made according to the measured length of the construction site after leaving the factory, so there is no problem of being too long at all. Remember: cutting the bellows is equal to scrapping, and cutting the end pipe should also ensure the welding quality. Don't save small money and suffer big losses.
5. How to avoid "too long" from the beginning-3 key points in the design selection stage
Instead of remediating afterwards, it is better to get stuck in the front. First, when calculating the thermal elongation of the pipeline, it should be calculated according to the difference between the actual working temperature and the installation temperature, and don't leave too much margin; Second, preference is given to the type of expansion joint with compact structure-for example, in the pipe gallery with limited space, the double hinge transverse expansion joint or the curved pipe pressure balance expansion joint is much shorter than the single axial type; Third, before ordering, let the manufacturer produce according to the measured size on the spot, or mark the cold tightness on the installation drawing. For example, the corrugated expansion joints for power station industry and metal corrugated expansion joints for cement industry in this station all support non-standard customized length according to working conditions. In addition, don't ignore the non-metallic expansion joint (fabric fiber expansion joint), which occupies little space and is light in weight, and can replace the metal expansion joint under some working conditions.
How to pick the expansion joint manufacturer? A 10-Year Selection Consultant's Guide to Avoiding Pitfalls
Two days ago, I met a customer. As soon as he came up, he threw me a drawing and asked, "How much is this expansion joint?" I said, don't worry. Is your working condition steam pipe or flue gas pipe? What's the temperature? He was stunned for a moment and said, "Oh, it's just ordinary pipes. Can't you use your general-purpose corrugated expansion energy-saving type?"-I can run into this kind of conversation dozens of times a year. If you choose an expansion joint manufacturer, if you only stare at the price, you will probably roll over. Today, I'll talk to you about the pits I've stepped on and the thunder I've seen in these 10 years of selection.
1. Don't just look at price: product line breadth is the first sieve
Many purchases ask, "How much is your expansion joint per meter"-as soon as I hear this, I know that I am either a novice or just want to be cheap. What is the "universal price" of expansion joints? The same caliber,High temperature axial expansion jointAndThe materials and processes of general-purpose corrugated expansion joints are completely different, and the price difference is three or five times too normal.
How to judge whether a manufacturer is reliable? Look at his product catalogue first. If evenMetal rectangular expansion joint、Non-metallic expansion joint (fabric fiber expansion joint)、rubber compensatorThese basic categories are not all together, and most of them are small factories. For truly powerful manufacturers, the product line will cover:Corrugated expansion joint for power station industry、Metal Corrugated Expansion Joints in Cement Industry、Desulfurization flue gas baffle door、Special hose for vacuum、Direct buried (fully buried) type expansion joint…or even likeDouble hinge expansion joint for air-cooled island vacuum pipelineThis kind of niche thing can also be done.
Why is a wide product line important? Because different industries have different requirements for expansion joints. Power plant main steam pipeline needsExternal pressure single axial expansion jointTo cope with high pressure and high temperature, kiln tail flue gas in cement industryRectangular non-metallic expansion jointMore suitable, chemical plant corrosive media have to be usedPTFE-lined hoseOrPTFE compensator。
2. Customization ability is the real skill-how to choose high temperature, corrosion and vacuum conditions?
Half of the expansion joint failures on the market are because you bought the wrong model, not because the thing itself is broken. For example, in high temperature conditions (over 1000℃), you still use ordinaryUniversal corrugated expansion joint? That's not saving money, it's giving away heads. Must get on at this timeHigh temperature axial expansion jointIncoloy 825 or higher must be used as the bellows material, and thermal fatigue life must also be calculated.
Corrosion conditions are more headache. In strong acid and strong alkali medium, ordinary metals will be wasted in a few minutes. Either withPTFE-lined hoseEither withPTFE compensator。 However, note that the process of lining PTFE is very particular-the thickness of PTFE layer, flanging treatment and negative pressure resistance almost leaked. There was a chemical plant project before, and it was used on siteRubber PTFE compensatorAs a result, it cracked within half a year. Why? Because the manufacturer did not do the bonding process of rubber and PTFE thoroughly.
What about vacuum conditions? Don't think that expansion joints are safe under negative pressure. Under vacuum, bellows will become unstable, and cases of deflation abound. At this time, you must useSpecial hose for vacuumOrExternal pressure single axial expansion jointAnd a reinforcing ring should be installed.
Therefore, to judge the technical strength of the manufacturer, it depends on whether he can open his mouth to complex working conditions: what material to choose for high temperature? What liner to choose for corrosion?
3. Installation and after-sales: Should the tie rod be disassembled? What if the deflector is in the wrong direction?
Buying back the expansion joint is only the first step, and buying it for nothing is equivalent to buying it for nothing. Too many people have asked me:Do you need to remove the screw of the expansion joint? The answer is simple: Before installation, the tie rod and screw for transportation must be removed, otherwise the expansion joint will not work properly. But some manufacturersLarge tie rod expansion jointOrCompound hinge transverse expansion jointThe tie rod is designed to withstand internal pressure thrust, and this cannot be disassembled.
Specific Function of Expansion Joint Guide TubeIs to protect the bellows from medium scour and reduce the flow resistance. When installing, the direction of the arrow of the deflector must coincide with the direction of the media flow. Once the on-site construction teamStraight pipe pressure balanced expansion jointThe guide tube was installed backwards, which caused violent vibration and the pipeline almost fell apart. The manufacturer sent technicians to dismantle them and reinstall them, which delayed the construction period for three days.
What about after-sales? Don't just listen to verbal promises. Ask clearly: Is it broken to send it back for repair or door-to-door service? How long is the response time? Are there any spare parts in stock? Some small manufacturers, when you call, he directly says, "This model is no longer produced, you can find another place"-this kind of after-sales is equal to nothing.
4. Low-price trap: Beware of "general-purpose" that cuts corners into "general-purpose waste"
The longer I work in this business, the more I understand a truth: cheap goods are not good, especially in the field of expansion joints. Some people bought the so-called "universal corrugated expansion joint" cheaply, and as a result, it was used on steam pipelines. The wall thickness of the corrugated pipe was only 0.3mm, and the Q235 used for the flange was not 16Mn, which cracked and leaked after half a year's operation. Is this called a universal type? It's called generic scrap.
- Reducing the wall thickness of corrugated pipe— — Originally, 1.0mm gave you 0.5mm, and the fatigue life was directly discounted in half.
- Omitting guide tube— — Without the guide tube, the medium directly washes the bellows, and the wear is accelerated.
- Replace stainless steel with ordinary carbon steel— For exampleSleeve type pipe expansion jointThe sleeve material, the national standard requires 304, and he uses 201, which will rust out in a few years.
- Reduce the number of corrugations— — Originally, 12 waves were designed, but he made 8 waves for you. The compensation amount was not enough, and the pipeline stress exploded.
userubber compensatorimpersonateMetal hoseBecause rubber is cheap, but temperature and pressure resistance are completely different things. If you put rubber on a hot pipe, it will melt in less than three months.
How to prevent it? First, manufacturers are required to provideMetal hose pressure standard、Model and size of expansion jointCheck the technical parameters, drawings, etc. item by item.
In the final analysis, choosing an expansion joint manufacturer is not to buy food, but to find a technical partner. Price, delivery date, quality and after-sales are indispensable.
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