Baile / Táirgí / Méadar Uisce Sciathán Bíseach Cothrománach WPH / LXLC-DN50-DN500 Méadar Uisce Inscortha Cothrománach
LXLC-DN50-DN500 Méadar Uisce Inscortha Cothrománach
  • LXLC-DN50-DN500 Méadar Uisce Inscortha Cothrománach
  • LXLC-DN50-DN500 Méadar Uisce Inscortha Cothrománach
  • LXLC-DN50-DN500 Méadar Uisce Inscortha Cothrománach

LXLC-DN50-DN500 Méadar Uisce Inscortha Cothrománach

Achoimre

1. Taifead an méid iomlán uisce atá ag sreabhadh tríd an bpíblíne uisce sconna. Ní féidir é a úsáid chun séarachas agus leachtanna creimneach a thomhas

2. Is struchtúr inscortha é an méadar seo, agus ní gá an méadar uisce a bhaint as an bpíblíne. Is féidir an ghluaiseacht a tharraingt amach le deisiú nó athsholáthar

3. Tá uilíocht maith ag an meicníocht tomhais, laghdaítear páirteanna breise, laghdaítear caillteanas brú, agus tá saol seirbhíse fada aige.

4. Is féidir leideanna cumarsáide maighnéadacha nó neamh-mhaighnéadacha a chur in áirithe, agus feistí tarchurtha iargúlta éagsúla a chumrú de réir riachtanais éagsúla chun feidhm léamh méadar iargúlta a bhaint amach

  • Paraiméadair Theicniúla
  • Fúinn
  • Glaoigh orainn

Toisí seachtracha agus meáchan

Múnla Calibre
DN

Fada
L

Ard
H

Ard
G

Modh ceangail
D

Meáchan

mm

Trastomhas seachtrach flange
D mm

Trastomhas lárchiorcail poll bolt
D1 mm

Líon na boltaí nasctha

kg

LXLC(Y)-50/50F

50

200

256/245(F)

400

165

125

4xM16

12.0

LXLC(Y)-65/65F

65

200

266/255(F)

400

185

145

4xM16

13.5

LXLC(Y)-80/80F

80

225

276/265(F)

400

200

160

8xM16

14.5

LXLC(Y)-100/100F

100

250

286/275(F)

400

220

180

8xM16

15.5

LXLC(Y)-125/125F

125

250

301/290(F)

400

250

210

8xM16

24.5

LXLC(Y)-150/150F

150

300

345/335(F)

500

285

240

8xM20

32.0

LXLC(Y)-200/200F

200

350

373/365(F)

500

340

295

8xM20

41.0

LXLC(Y)-250/250F

250

450

493/485(F)

710

395

350

12×M20

83.0

LXLC(Y)-300/300F

300

500

516/505(F)

730

445

400

12×M20

99.0

LXLC(Y)-400/400F

400

600

631/620(F)

830

565

515

16×M24

163.0

LXLC(Y)-500/500F

500

800

739/730(F)

930

670

620

20xM24

270.0

LXLC(Y)/R-50

50

200

256

400

165

125

4xM16

12.0

LXLC(Y)/R-65

65

200

266

400

185

145

4xM16

13.5

LXLC(Y)/R-80

80

225

276

400

200

160

8xM16

14.5

LXLC(Y)/R-100

100

250

286

400

220

180

8xM16

15.5

LXLC(Y)/R-125

125

250

301

400

250

210

8xM16

24.5

LXLC(Y)/R-150

150

300

345

500

285

240

8xM20

32.0

LXLC(Y)/R-200

200

350

373

500

340

295

8xM20

41.0

Nóta:

1) Beidh an nasc flange i gcomhréir le sonraíochtaí GB/T172416-2008/XG-2011 PN10 toisí flange iarann teilgthe lárnach, agus molfar sonraíochtaí speisialta nuair a bheidh an t-ordú.

2) Tá an toise G airde riachtanach chun an ghluaiseacht a dhíchóimeáil. Is le haghaidh tagartha amháin na toisí seachtracha agus an meáchan, agus is é an táirge iarbhír a bheidh i réim.

Cuar caillteanas brú / Cuar earráide feidhmíochta

Táscairí teicniúla

1. Paraiméadair sreafa

Calibre
DN

C 3 /C 1

Ráta sreabhadh ró-ualaithe
C 4

Trácht coitianta
C

Sreabhadh teorann
C

Ráta sreafa íosta
C

Léitheoireacht íosta
Min

Uasléamh
Min

m³/u

L/u

50

100

50

40

640.0

400.0

0.001

999999

80

800.0

500.0

50

1280.0

800.0

65

100

78.75

63

1008.0

630.0

80

1260.0

787.5

50

2016.0

1260.0

80

100

78.75

63

1008.0

630.0

80

1260.0

787.5

50

2016.0

1260.0

100

100

125

100

1600.0

1000.0

80

2000.0

1250.0

50

3200.0

2000.0

125

100

200

160

2560.0

1600.0

80

3200.0

2000.0

50

5120.0

3200.0

150

100

312.5

250

4000.0

2500.0

0.01

9999999

80

5000.0

3125.0

50

8000.0

5000.0

200

100

500

400

6400.0

4000.0

80

8000.0

5000.0

50

12800.0

8000.0

250

100

787.5

630

10080.0

6300.0

0.1

99 999999

80

12600.0

7875.0

50

20160.0

12600.0

300

100

1250

16000.0

10000.0

80

1000

20000.0

12500.0

50

32000.0

20000.0

400

100

2000

1600

25600.0

16000.0

80

32000.0

20000.0

50

51200.0

32000.0

500

100

3125

2500

40000.0

25000.0

80

50000.0

31250.0

50

80000.0

50000.0

Earráid uasta incheadaithe:

a) An earráid uasta incheadaithe sa chrios íseal (QisQ

2.Paraiméadar

Ábhar an tionscadail

paraiméadar

Rátáil teochta

T30/90

Rátáil brú

LÉARSCÁIL 16

Leibhéal íogaireachta an réimse sreafa

U0/D0

Leibhéal caillteanas brú

△pl6

Rang cruinnis

leibhéal 2

Nóta: The temperature level of LXLC (Y)/R-50~200 is T30/90.

Scéim tarchurtha cianda




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Eolas Tionscail

Buntáistí Struchtúracha an Mhéadair Uisce Inscortha Cothrománach

Tá an Méadar Uisce Inscortha Cothrománach tá dearadh inscortha ann a ligeann do ghluaiseacht an mhéadair a bhaint as an bpíblíne go neamhspleách ar an tithíocht, rud a laghdóidh go mór cur isteach oibriúcháin. Soláthraíonn an dearadh seo buntáistí soiléire maidir le pleanáil cothabhála agus éifeachtúlacht oibriúcháin. Trí ligean don ghluaiseacht a tharraingt amach gan an méadar iomlán a dhíchóimeáil, is féidir le pearsanra cothabhála rochtain a fháil ar an meicníocht inmheánach chun páirteanna caite a iniúchadh, a chalabrú nó a athsholáthar gan an córas uisce a dhúnadh. Tá sé seo úsáideach go háirithe i bpíblínte ar thrastomhas mór, áit a bhféadfadh stop a chur leis an sreabhadh cur isteach ar phróisis thionsclaíocha nó ar dháileadh uisce cathrach. Dhear Ningbo Water Cube Instrument Technology Co., Ltd an córas inscortha seo chun a chinntiú go ndéantar nósanna imeachta cothabhála a shruthlíniú, a éilíonn níos lú daonchumhachta agus níos lú ama chun gnáthchigireachtaí nó deisiúcháin a chríochnú. Laghdaíonn modúlacht na meicníochta an baol earráidí le linn athchóimeála toisc gur féidir an ghluaiseacht a thástáil go neamhspleách sula gcuirtear isteach arís é, rud a chinntíonn cruinneas oibríochta comhsheasmhach nuair a chuirtear an méadar ar ais chuig seirbhís. Feabhsaíonn an dearadh inscortha sábháilteacht mar is féidir le pearsanra cothabhála oibriú ar an ngluaiseacht scoite gan nochtadh do shreabhadh ardbhrú, ag laghdú an dóchúlacht go dtarlóidh timpistí. Déanann an dearadh bainistíocht ar pháirteanna breise a shimpliú freisin, toisc gur féidir an ghluaiseacht a chaighdeánú thar ilmhéideanna méadair, rud a ligeann do Ningbo Water Cube Instrument Technology Co., Ltd comhpháirteanna athsholáthair comhsheasmhacha a sholáthar do mhéadair DN50-DN500. Go praiticiúil, laghdaíonn an cur chuige seo castacht fardail agus tacaíonn sé le straitéisí cothabhála cost-éifeachtach. Tríd is tríd, léiríonn struchtúr inscortha an Mhéadair Uisce Inscortha Cothrománach comhtháthú na hinnealtóireachta praiticiúla le hiontaofacht oibriúcháin fhadtéarmach, rud a léiríonn tiomantas Ningbo Water Cube Instrument Technology Co., Ltd. do réiteach láidir, éasca le húsáid a sholáthar d’iarratais méadraithe uisce ar thrastomhas mór.

Tá an Horizontal Detachable Water Meter is engineered with a modular construction, ensuring that key components, including the measuring mechanism, impellers, gears, and housing sections, can be independently removed, replaced, or upgraded. This modularity provides considerable operational and logistical advantages, reducing downtime and maintenance complexity. Ningbo Water Cube Instrument Technology Co., Ltd. emphasizes that modular design supports standardization of spare parts, which allows maintenance teams to keep a smaller inventory while addressing multiple meter sizes and configurations. Each component is manufactured to precise specifications, ensuring that parts can be interchanged without custom adaptation, which reduces the likelihood of errors during assembly and facilitates faster repair cycles. The modular architecture also supports scalability and upgrades; for example, advanced measurement modules or digital readout mechanisms can be integrated into existing meters without requiring replacement of the entire unit. This adaptability makes the Horizontal Detachable Water Meter suitable for evolving water management requirements. Furthermore, modular construction contributes to the overall structural integrity of the meter by allowing reinforcement in critical areas, such as bearing housings or flow channels, while keeping the total unit lightweight and manageable. This balance between durability and practicality ensures that installation and service procedures are efficient. Ningbo Water Cube Instrument Technology Co., Ltd. incorporates rigorous quality control in the production of each modular component, ensuring consistent performance and long service life across all DN50–DN500 meter sizes. The modular design not only improves operational reliability but also reduces long-term maintenance costs by simplifying access to individual parts and minimizing the risk of unnecessary replacements, positioning the Horizontal Detachable Water Meter as a practical and efficient solution for large-scale water metering projects.

Tá an Horizontal Detachable Water Meter features a housing constructed from high-quality metals and polymers designed to withstand mechanical stress, water pressure, and long-term exposure to tap water environments. Ningbo Water Cube Instrument Technology Co., Ltd. selects materials based on strength, durability, and resistance to corrosion, ensuring that the meter maintains structural integrity under continuous operation. Stainless steel components and coated alloys are used for load-bearing sections, preventing deformation or leaks in high-pressure pipelines, while specialized polymers and elastomers are applied to moving parts and seals to resist wear and chemical interactions with water minerals. This combination of materials allows the meter to maintain performance over long service periods without frequent replacement of the housing or internal supports. The robust housing also provides mechanical stability during installation and operation, accommodating potential vibrations or pressure fluctuations within the pipeline. Ningbo Water Cube Instrument Technology Co., Ltd. emphasizes that the housing’s durability is paired with precision engineering to minimize any contribution to pressure loss, ensuring accurate measurement even in high-flow conditions. The corrosion-resistant structure supports maintenance efficiency by reducing the frequency of cleaning or surface treatment requirements, allowing the detachable movement to be accessed without concern for damage to the meter body. Long-term field performance of the Horizontal Detachable Water Meter demonstrates that robust housing and corrosion-resistant design contribute significantly to reducing operational disruptions, minimizing maintenance expenses, and extending service life, establishing it as a reliable option for large-diameter water metering in municipal and industrial systems managed by Ningbo Water Cube Instrument Technology Co., Ltd.

Tá an Horizontal Detachable Water Meter is designed with an internal flow path optimized to reduce turbulence, minimize pressure loss, and improve measurement accuracy. The internal channels are carefully engineered to guide water through the meter smoothly, maintaining laminar flow conditions that enhance precision. Ningbo Water Cube Instrument Technology Co., Ltd. has applied computational fluid dynamics (CFD) modeling and extensive testing to ensure the flow path design reduces energy losses while supporting a broad range of flow rates typical in DN50–DN500 pipelines. The meter’s internal structure ensures that the impeller or piston operates consistently, even under variable flow conditions, minimizing error and providing reliable readings across low, medium, and high flow rates. The optimization also contributes to long-term durability because reduced turbulence decreases wear on moving components, such as gears and bearings, and prevents unnecessary stress on seals. By controlling the flow path, the meter also mitigates the effects of air bubbles, sediment, or minor particulates that could interfere with measurement in conventional meters. This level of hydraulic efficiency reduces the load on pumping systems, as minimal energy is lost in the meter, which is particularly advantageous for municipal and industrial networks where energy conservation is a priority. Ningbo Water Cube Instrument Technology Co., Ltd. integrates these design principles into every Horizontal Detachable Water Meter to ensure that us can rely on consistent, accurate readings and maintain system performance with minimal intervention. Overall, the optimized flow path is a structural feature that combines accuracy, energy efficiency, and reliability, reflecting the company’s focus on practical and long-lasting engineering solutions for large-diameter water systems.

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Tá an Horizontal Detachable Water Meter utilizes advanced materials to enhance structural integrity, durability, and resistance to environmental factors. Ningbo Water Cube Instrument Technology Co., Ltd. selects high-performance metals, polymers, and elastomers to construct the housing, internal components, and seals, ensuring the meter withstands pressure, vibration, and chemical interactions typical of tap water pipelines. Metals such as stainless steel or coated alloys are used for load-bearing elements and flanges, providing structural strength and resistance to deformation under high-pressure conditions. High-quality polymers are applied to moving components like impellers, gears, and pistons to reduce friction, minimize wear, and maintain accuracy over extended periods. Seals and gaskets are manufactured from resilient elastomers capable of maintaining their properties under continuous exposure to water, temperature fluctuations, and mechanical movement. The combination of materials also contributes to corrosion resistance, which reduces the frequency of maintenance interventions and ensures long-term stability of the meter. By integrating advanced materials, Ningbo Water Cube Instrument Technology Co., Ltd. ensures that the Horizontal Detachable Water Meter maintains consistent measurement accuracy, low pressure loss, and reliable performance in a variety of operating conditions. This approach also supports environmental sustainability because the materials are chosen for durability, reducing the need for replacements and minimizing waste. Advanced material integration reinforces the meter’s detachable structure, ensuring that both the housing and the removable movement maintain operational integrity during installation, service, or repair. This structural advantage not only increases the service life of the meter but also provides confidence that us can rely on the meter for critical water monitoring in municipal and industrial applications.