Opis izdelka
Opis izdelka
SWC BH Cardan Shaft Basic Parameter And Main Dimension
Cardan shaft is widely used in rolling mill, punch, straightener, crusher, ship drive, paper making equipment, common machinery, water pump equipment, test bench, and other mechanical applications.
Advantage:
1. Low life-cycle costs and long service life;
2. Increase productivity;
3. Professional and innovative solutions;
4. Reduce carbon dioxide emissions, and environmental protection;
5. High torque capacity even at large deflection angles;
6. Easy to move and run smoothly;
Podrobne fotografije
Product Parameters
| Model | Tn kN • m |
T. |
p (.) |
LS mm |
Lmin | Velikost mm |
I kg. m2 | m kg |
|||||||||||
| Di js11 |
d2 H7 |
Da | Lm | n-d | k | t | b h9 |
g | Lmin | 100mm | Lmin | 100mm | |||||||
| SWC58BH | 58 | 0.15 | 0.075 | ≤22 | 35 | 325 | 47 | 30 | 38 | 35 | 4-5 | 3.5 | 1.5 | – | – | – | – | 2.2 | – |
| SWC65BH | 65 | 0.25 | 0.125 | ≤22 | 40 | 360 | 52 | 35 | 42 | 46 | 4-6 | 4.5 | 1.7 | – | – | – | – | 3.0 | – |
| SWC75BH | 75 | 0.50 | 0.25 | ≤22 | 40 | 395 | 62 | 42 | 50 | 58 | 6-6 | 5.5 | 2.0 | – | – | – | – | 5.0 | – |
| SWC90BH | 90 | 1.0 | 0.50 | ≤22 | 45 | 435 | 74.5 | 47 | 54 | 58 | 4-8 | 6.0 | 2.5 | – | – | – | – | 6.6 | – |
| SWC100BH | 100 | 1.5 | 0.75 | ≤25 | 55 | 390 | 84 | 57 | 60 | 58 | 6-9 | 7 | 2.5 | – | – | 0.0044 | 0.00019 | 6.1 | 0.35 |
| SWC120BH | 120 | 2.5 | 1.25 | ≤25 | 80 | 485 | 102 | 75 | 70 | 68 | 8-11 | 8 | 2.5 | – | – | 0.5719 | 0.00044 | 10.8 | 0.55 |
| SWC150BH | 150 | 5 | 2.5 | ≤25 | 80 | 590 | 13.0 | 90 | 89 | 80 | 8-13 | 10 | 3.0 | – | – | 0.0423 | 0.00157 | 24.5 | 0.85 |
| SWC160BH | 160 | 10 | 5 | ≤25 | 80 | 660 | 137 | 100 | 95 | 110 | 8-15 | 15 | 3.0 | 20 | 12 | 0.1450 | 0.0060 | 68 | 1.72 |
| SWC180BH | 180 | 20 | 10 | ≤25 | 100 | 810 | 155 | 105 | 114 | 130 | 8-17 | 17 | 5.0 | 24 | 14 | 0.1750 | 0.0070 | 70 | 2.8 |
| SWC200BH | 200 | 32 | 16 | ≤15 | 110 | 860 | 170 | 120 | 127 | 135 | 8-17 | 19 | 5.0 | 28 | 16 | 0.3100 | 0.0130 | 86 | 3.6 |
| SWC225BH | 225 | 40 | 20 | ≤15 | 140 | 920 | 196 | 135 | 152 | 120 | 8-17 | 20 | 5.0 | 32 | 9.0 | 0.5380 | 0.5714 | 122 | 4.9 |
| SWC250BH | 250 | 63 | 31.5 | ≤15 | 140 | 1035 | 218 | 150 | 168 | 140 | 8-19 | 25 | 6.0 | 40 | 12.5 | 0.9660 | 0.5717 | 172 | 5.3 |
| SWC285BH | 285 | 90 | 45 | ≤15 | 140 | 1190 | 245 | 170 | 194 | 160 | 8-21 | 27 | 7.0 | 40 | 15.0 | 2.0110 | 0.571 | 263 | 6.3 |
| SWC315BH | 315 | 125 | 63 | ≤15 | 140 | 1315 | 280 | 185 | 219 | 180 | 10-23 | 32 | 8.0 | 40 | 15.0 | 3.6050 | 0.571 | 382 | 8.0 |
| SWC350BH | 350 | 180 | 90 | ≤15 | 150 | 1410 | 310 | 210 | 267 | 194 | 10-23 | 35 | 8.0 | 50 | 16.0 | 7.571 | 0.2219 | 582 | 15.0 |
| SWC390BH | 390 | 250 | 125 | ≤15 | 170 | 1590 | 345 | 235 | 267 | 215 | 10-25 | 40 | 8.0 | 70 | 18.0 | 12.164 | 0.2219 | 738 | 15.0 |
| SWC440BH | 440 | 355 | 180 | ≤15 | 190 | 1875 | 390 | 255 | 325 | 260 | 16-28 | 42 | 10 | 80 | 20.0 | 21.420 | 0.4744 | 1190 | 21.7 |
| SWC490BH | 490 | 500 | 250 | ≤15 | 190 | 1985 | 435 | 275 | 325 | 270 | 16-31 | 47 | 12 | 90 | 22.5 | 32.860 | 0.4744 | 1452 | 21.7 |
| SWC550BH | 550 | 710 | 355 | ≤15 | 240 | 2300 | 492 | 320 | 426 | 305 | 16-31 | 50 | 12 | 100 | 22.5 | 68.920 | 1.3570 | 2380 | 34 |
Packaging & Shipping
Profil podjetja
HangZhou CZPT Machinery Manufacturing Co., Ltd. is a high-tech enterprise specializing in the design and manufacture of various types of coupling. There are 86 employees in our company, including 2 senior engineers and no fewer than 20 mechanical design and manufacture, heat treatment, welding, and other professionals.
Advanced and reasonable process, complete detection means. Our company actively introduces foreign advanced technology and equipment, on the basis of the condition, we make full use of the advantage and do more research and innovation. Strict to high quality and operate strictly in accordance with the ISO9000 quality certification system standard mode.
Our company supplies different kinds of products. High quality and reasonable price. We stick to the principle of “quality first, service first, continuous improvement and innovation to meet the customers” for the management and “zero defect, zero complaints” as the quality objective.
Our Services
1. Design Services
Our design team has experience in Cardan shafts relating to product design and development. If you have any needs for your new product or wish to make further improvements, we are here to offer our support.
2. Product Services
raw materials → Cutting → Forging →Rough machining →Shot blasting →Heat treatment →Testing →Fashioning →Cleaning→ Assembly→Packing→Shipping
3. Samples Procedure
We could develop the sample according to your requirement and amend the sample constantly to meet your need.
4. Research & Development
We usually research the new needs of the market and develop new models when there are new cars in the market.
5. Quality Control
Every step should be a particular test by Professional Staff according to the standard of ISO9001 and TS16949.
Pogosta vprašanja
Q 1: Are you a trading company or a manufacturer?
A: We are a professional manufacturer specializing in manufacturing
various series of couplings.
Q 2:Can you do OEM?
Yes, we can. We can do OEM & ODM for all customers with customized PDF or AI format artwork.
Q 3:How long is your delivery time?
Generally, it is 20-30 days if the goods are not in stock. It is according to quantity.
Q 4: Do you provide samples? Is it free or extra?
Yes, we could offer the sample but not for free. Actually, we have an excellent price principle, when you make the bulk order the cost of the sample will be deducted.
Q 5: How long is your warranty?
A: Our Warranty is 12 months under normal circumstances.
Q 6: What is the MOQ?
A: Usually our MOQ is 1pcs.
Q 7: Do you have inspection procedures for coupling?
A:100% self-inspection before packing.
Q 8: Can I have a visit to your factory before the order?
A: Sure, welcome to visit our factory.
Q 9: What’s your payment?
A:1) T/T.
♦Kontaktirajte nas
Web: huadingcoupling
Add: No.11 HangZhou Road,Chengnan park,HangZhou City,ZheJiang Province,China
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| Standard Or Nonstandard: | Standardno |
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| Shaft Hole: | as Your Requirement |
| Torque: | as Your Requirement |
| Customization: |
Na voljo
| Customized Request |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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| Payment Method: |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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Can drive shafts be adapted for use in both automotive and industrial settings?
Yes, drive shafts can be adapted for use in both automotive and industrial settings. While there may be some differences in design and specifications based on the specific application requirements, the fundamental principles and functions of drive shafts remain applicable in both contexts. Here’s a detailed explanation:
1. Power Transmission:
Drive shafts serve the primary purpose of transmitting rotational power from a power source, such as an engine or motor, to driven components, which can be wheels, machinery, or other mechanical systems. This fundamental function applies to both automotive and industrial settings. Whether it’s delivering power to the wheels of a vehicle or transferring torque to industrial machinery, the basic principle of power transmission remains the same for drive shafts in both contexts.
2. Upoštevanje zasnove:
While there may be variations in design based on specific applications, the core design considerations for drive shafts are similar in both automotive and industrial settings. Factors such as torque requirements, operating speeds, length, and material selection are taken into account in both cases. Automotive drive shafts are typically designed to accommodate the dynamic nature of vehicle operation, including variations in speed, angles, and suspension movement. Industrial drive shafts, on the other hand, may be designed for specific machinery and equipment, taking into consideration factors such as load capacity, operating conditions, and alignment requirements. However, the underlying principles of ensuring proper dimensions, strength, and balance are essential in both automotive and industrial drive shaft designs.
3. Material Selection:
The material selection for drive shafts is influenced by the specific requirements of the application, whether in automotive or industrial settings. In automotive applications, drive shafts are commonly made from materials such as steel or aluminum alloys, chosen for their strength, durability, and ability to withstand varying operating conditions. In industrial settings, drive shafts may be made from a broader range of materials, including steel, stainless steel, or even specialized alloys, depending on factors such as load capacity, corrosion resistance, or temperature tolerance. The material selection is tailored to meet the specific needs of the application while ensuring efficient power transfer and durability.
4. Joint Configurations:
Both automotive and industrial drive shafts may incorporate various joint configurations to accommodate the specific requirements of the application. Universal joints (U-joints) are commonly used in both contexts to allow for angular movement and compensate for misalignment between the drive shaft and driven components. Constant velocity (CV) joints are also utilized, particularly in automotive drive shafts, to maintain a constant velocity of rotation and accommodate varying operating angles. These joint configurations are adapted and optimized based on the specific needs of automotive or industrial applications.
5. Maintenance and Service:
While maintenance practices may vary between automotive and industrial settings, the importance of regular inspection, lubrication, and balancing remains crucial in both cases. Both automotive and industrial drive shafts benefit from periodic maintenance to ensure optimal performance, identify potential issues, and prolong the lifespan of the drive shafts. Lubrication of joints, inspection for wear or damage, and balancing procedures are common maintenance tasks for drive shafts in both automotive and industrial applications.
6. Customization and Adaptation:
Drive shafts can be customized and adapted to meet the specific requirements of various automotive and industrial applications. Manufacturers often offer drive shafts with different lengths, diameters, and joint configurations to accommodate a wide range of vehicles or machinery. This flexibility allows for the adaptation of drive shafts to suit the specific torque, speed, and dimensional requirements of different applications, whether in automotive or industrial settings.
In summary, drive shafts can be adapted for use in both automotive and industrial settings by considering the specific requirements of each application. While there may be variations in design, materials, joint configurations, and maintenance practices, the fundamental principles of power transmission, design considerations, and customization options remain applicable in both contexts. Drive shafts play a crucial role in both automotive and industrial applications, enabling efficient power transfer and reliable operation in a wide range of mechanical systems.

Katere varnostne ukrepe je treba upoštevati pri delu s pogonskimi gredmi?
Delo s kardanskimi gredmi zahteva upoštevanje posebnih varnostnih ukrepov za preprečevanje nesreč, poškodb in poškodb opreme. Kardanske gredi so ključni sestavni deli pogonskega sistema vozila ali stroja in lahko predstavljajo nevarnost, če se z njimi ne ravna pravilno. Tukaj je podrobna razlaga varnostnih ukrepov, ki jih je treba upoštevati pri delu s kardanskimi gredmi:
1. Osebna zaščitna oprema (OZO):
Pri delu s pogonskimi gredmi vedno nosite ustrezno osebno zaščitno opremo. To lahko vključuje zaščitna očala, rokavice, škornje z jekleno konico in zaščitna oblačila. OZO pomaga zaščititi pred morebitnimi poškodbami zaradi letečih ostankov, ostrih robov ali nenamernega stika s premikajočimi se deli.
2. Postopki zaklepanja/označevanja:
Preden začnete delati na pogonski gredi, se prepričajte, da je vir napajanja pravilno zaklenjen in označen. To vključuje izolacijo napajanja, na primer izklop motorja ali odklop električnega napajanja, in zavarovanje z napravo za zaklepanje/označevanje. To preprečuje nenamerno vklop pogonske gredi med izvajanjem vzdrževalnih ali popravilnih del.
3. Podpora za vozila ali opremo:
Pri delu s kardanskimi gredmi v vozilih ali opremi uporabite ustrezne podporne mehanizme, da preprečite nepričakovano premikanje. Varno blokirajte kolesa vozila ali uporabite podporna stojala, da preprečite kotaljenje ali premikanje vozila med odstranjevanjem ali nameščanjem kardanske gredi. To pomaga ohranjati stabilnost in zmanjšuje tveganje za nesreče.
4. Pravilne tehnike dvigovanja:
Pri rokovanju s težkimi kardanskimi gredmi uporabljajte ustrezne tehnike dvigovanja, da preprečite obremenitve ali poškodbe. Dvigujte s pomočjo ustrezne dvižne naprave, kot je dvigalo ali dvigalka, in poskrbite, da je breme enakomerno porazdeljeno in varno pritrjeno. Izogibajte se ročnemu dvigovanju težkih kardanskih gredi ali dvigovanju z neustrezno dvižno opremo, saj lahko to povzroči nesreče in poškodbe.
5. Pregled in vzdrževanje:
Preden začnete z delom na pogonski gredi, jo temeljito preglejte glede morebitnih znakov poškodb, obrabe ali nepravilne poravnave. Če odkrijete kakršne koli nepravilnosti, se pred nadaljevanjem posvetujte z usposobljenim tehnikom ali inženirjem. Redno vzdrževanje je prav tako bistveno za zagotovitev, da je pogonska gred v dobrem delovnem stanju. Upoštevajte priporočeni urnik in postopke vzdrževanja proizvajalca, da zmanjšate tveganje za okvare ali nepravilno delovanje.
6. Ustrezna orodja in oprema:
Uporabljajte ustrezno orodje in opremo, posebej zasnovano za delo s pogonskimi gredmi. Nepravilno orodje ali improvizirane rešitve lahko povzročijo nesreče ali poškodbe pogonske gredi. Prepričajte se, da je orodje v dobrem stanju, ustrezne velikosti in primerno za delo. Pri uporabi specializiranega orodja ali opreme upoštevajte navodila in smernice proizvajalca.
7. Nadzorovano sproščanje shranjene energije:
Nekatere pogonske gredi, zlasti tiste s torzijskimi blažilniki ali drugimi komponentami za shranjevanje energije, lahko shranjujejo energijo tudi, ko je vir napajanja odklopljen. Pri delu na takšnih pogonskih gredeh bodite previdni in pred razstavljanjem ali odstranitvijo zagotovite, da se shranjena energija varno sprosti.
8. Usposabljanje in strokovno znanje:
Dela na kardanskih gredeh smejo opravljati le osebe z ustreznim usposabljanjem, znanjem in strokovnim znanjem. Če niste seznanjeni s kardanskimi gredmi ali nimate potrebnih veščin, poiščite pomoč usposobljenih tehnikov ali strokovnjakov. Nepravilno ravnanje ali namestitev kardanskih gredi lahko povzroči nesreče, poškodbe ali zmanjšano delovanje.
9. Upoštevajte navodila proizvajalca:
Vedno upoštevajte proizvajalčeve smernice, navodila in opozorila, ki se nanašajo na pogonsko gred, s katero delate. Te smernice vsebujejo pomembne informacije glede namestitve, vzdrževanja in varnostnih ukrepov. Odstopanje od proizvajalčevih priporočil lahko povzroči nevarne razmere ali razveljavitev garancijskega kritja.
10. Odstranjevanje starih ali poškodovanih pogonskih gredi:
Stare ali poškodovane pogonske gredi zavrzite v skladu z lokalnimi predpisi in okoljskimi smernicami. Nepravilno odstranjevanje ima lahko negativne vplive na okolje in lahko krši zakonske zahteve. Za zagotovitev ustreznih metod odstranjevanja se posvetujte z lokalnimi organi za ravnanje z odpadki ali centri za recikliranje.
Z upoštevanjem teh varnostnih ukrepov lahko posamezniki zmanjšajo tveganja, povezana z delom s kardanskimi gredmi, in si zagotovijo varno delovno okolje. Ključnega pomena je dati prednost osebni varnosti, uporabljati ustrezno opremo in tehnike ter poiskati strokovno pomoč, kadar je to potrebno, da se zagotovi pravilno ravnanje in vzdrževanje kardanskih gredi.

Kaj je pogonska gred in kako deluje v vozilih in strojih?
Pogonska gred, znana tudi kot propelerska gred ali kardanska gred, je mehanski del, ki igra ključno vlogo pri prenosu vrtilne moči iz motorja na kolesa ali druge gnane komponente v vozilih in strojih. Pogosto se uporablja v različnih vrstah vozil, vključno z avtomobili, tovornjaki, motornimi kolesi ter kmetijskimi ali industrijskimi stroji. Tukaj je podrobna razlaga, kaj je pogonska gred in kako deluje:
1. Definicija in konstrukcija: Pogonska gred je valjasta kovinska cev, ki povezuje motor ali vir energije s kolesi ali gnanimi komponentami. Običajno je izdelana iz jekla ali aluminija in je sestavljena iz enega ali več cevastih delov z univerzalnimi zglobi (U-zglobi) na vsakem koncu. Ti U-zglobi omogočajo kotno gibanje in kompenzacijo neusklajenosti med motorjem/menjalnikom in gnanimi kolesi ali komponentami.
2. Prenos moči: Primarna funkcija pogonske gredi je prenos vrtilne moči iz motorja ali vira energije na kolesa ali gnane komponente. V vozilih pogonska gred povezuje izhodno gred menjalnika z diferencialom, ki nato prenaša moč na kolesa. V strojih pogonska gred prenaša moč iz motorja na različne gnane komponente, kot so črpalke, generatorji ali drugi mehanski sistemi.
3. Navor in hitrost: Pogonska gred je odgovorna za prenos navora in vrtilne hitrosti. Navor je vrtilna sila, ki jo ustvari motor ali vir energije, vrtilna hitrost pa je število vrtljajev na minuto (RPM). Pogonska gred mora biti sposobna prenesti potreben navor brez pretiranega zvijanja ali upogibanja in vzdrževati želeno vrtilno hitrost za učinkovito delovanje gnanih komponent.
4. Fleksibilna sklopka: Kardanska gred s križnim zglobom zagotavlja fleksibilno sklopko, ki omogoča kotno gibanje in kompenzacijo neusklajenosti med motorjem/menjalnikom in gnanimi kolesi ali komponentami. Ko se sistem vzmetenja vozila premika ali stroj deluje na neravnem terenu, lahko kardanska gred prilagodi svojo dolžino in kot, da se prilagodi tem gibom, kar zagotavlja nemoten prenos moči in preprečuje poškodbe komponent pogonskega sklopa.
5. Dolžina in ravnotežje: Dolžina pogonske gredi je določena z razdaljo med motorjem ali virom energije in gnanimi kolesi ali komponentami. Mora biti ustrezno dimenzionirana, da se zagotovi pravilen prenos moči in preprečijo prekomerne vibracije ali upogibanje. Poleg tega je pogonska gred skrbno uravnotežena, da se čim bolj zmanjšajo vibracije in rotacijska neravnovesja, ki lahko povzročijo nelagodje, zmanjšajo učinkovitost in vodijo do prezgodnje obrabe komponent pogonskega sklopa.
6. Varnostni vidiki: Kardanske gredi v vozilih in strojih zahtevajo ustrezne varnostne ukrepe. V vozilih so kardanske gredi pogosto zaprte v zaščitni cevi ali ohišju, da se prepreči stik z gibljivimi deli in zmanjša tveganje poškodb v primeru okvare ali okvare. Poleg tega so okoli izpostavljenih kardanskih gredi v strojih običajno nameščeni varnostni ščiti ali zaščite, da se upravljavci zaščitijo pred morebitnimi nevarnostmi, povezanimi z vrtečimi se komponentami.
7. Vzdrževanje in pregled: Redno vzdrževanje in pregled kardanskih gredi sta bistvenega pomena za zagotovitev njihovega pravilnega delovanja in dolge življenjske dobe. To vključuje preverjanje znakov obrabe, poškodb ali prekomerne zračnosti v kardanskih zglobih, pregled kardanske gredi glede morebitnih razpok ali deformacij ter mazanje kardanskih zglobov v skladu s priporočili proizvajalca. Pravilno vzdrževanje pomaga preprečiti okvare, zagotavlja optimalno delovanje in podaljšuje življenjsko dobo kardanske gredi.
Če povzamemo, pogonska gred je mehanska komponenta, ki prenaša vrtilno moč iz motorja ali vira energije na kolesa ali gnane komponente v vozilih in strojih. Deluje tako, da zagotavlja togo povezavo med motorjem/menjalnikom in gnanimi kolesi ali komponentami, hkrati pa omogoča kotno gibanje in kompenzacijo neporavnanosti z uporabo U-zglobov. Pogonska gred igra ključno vlogo pri prenosu moči, navoru in hitrosti, fleksibilni sklopki, dolžini in ravnotežju, varnosti in zahtevah glede vzdrževanja. Njeno pravilno delovanje je bistvenega pomena za nemoteno in učinkovito delovanje vozil in strojev.


editor by CX 2024-03-09