View
Quotes
View my
tire cart
Menu
Call Us
Find Us
Home
Shop For Tires
Car, Truck & SUV Tires
Tire Brands
MICHELIN®
BFGoodrich®
Uniroyal®
Bridgestone
Continental
Dunlop
Falken
Firestone
Fuzion
General
Goodyear
Sumitomo
Toyo
Yokohama
Trailer and RV Tires
Tire Care Tips
Tire Chains
Wheels
Auto Repair
Our Services
Schedule A Repair
Car Care Tips
Hunter Alignment
Coupons
About
Our Story
News
Synchrony Car Care Card
Reviews
Contact
Find Us
Jobs
Filter By
Tire Catalog
Back to Search Results
Goodyear Conquest
P195/70R14
P205/75R14
P215/65R15
P225/60R16
P225/60R16
Features
The heavy Triple-Warp weave center ply is sandwiched between flexible abuse-resistant outer plies. Conquest belts from Goodyear Engineered Products are strong and provide a better overall value than multi-ply and straight-warp fabric constructions in high abuse applications.
Loading point impact damage can be a major cause of belt failure. Goodyear EP’s design engineers use an enhanced Dynamic Impact Tester to simulate loading impact force and its effects on belting. Conquest provides better impact resistance than plain weave constructions with equivalent PIW rating.
The Triple-Warp fabric design incorporates extremely high transverse tear strength. This minimizes tears that result from material punctures as well as edge tears from misaligned belts.
Scrap metal or debris often get “hung up†in the structure of the conveyor, causing equipment damage and slits or cuts in long sections of belt. The Triple-Warp fabric design helps dislodge and expel foreign objects and contain rips to a small area.
Rigorous dynamic and static testing ensures that Conquest belts will provide superior mechanical fastener retention as compared with multi-ply and straight-warp constructions.
With its superior flexibility around small pulleys, a Conquest belt saves significant investment dollars compared with the large pulleys required for straight-warp belt systems. This translates into a cost-per-pulley savings of up to 80%.
The heavy Triple-Warp weave center ply is sandwiched between flexible abuse-resistant outer plies. Conquest belts from Goodyear Engineered Products are strong and provide a better overall value than multi-ply and straight-warp fabric constructions in high abuse applications.
Loading point impact damage can be a major cause of belt failure. Goodyear EP’s design engineers use an enhanced Dynamic Impact Tester to simulate loading impact force and its effects on belting. Conquest provides better impact resistance than plain weave constructions with equivalent PIW rating.
The Triple-Warp fabric design incorporates extremely high transverse tear strength. This minimizes tears that result from material punctures as well as edge tears from misaligned belts.
Scrap metal or debris often get “hung up†in the structure of the conveyor, causing equipment damage and slits or cuts in long sections of belt. The Triple-Warp fabric design helps dislodge and expel foreign objects and contain rips to a small area.
Rigorous dynamic and static testing ensures that Conquest belts will provide superior mechanical fastener retention as compared with multi-ply and straight-warp constructions.
With its superior flexibility around small pulleys, a Conquest belt saves significant investment dollars compared with the large pulleys required for straight-warp belt systems. This translates into a cost-per-pulley savings of up to 80%.
Contact Fairfield Tire Center, Inc.
Contact Us
Send »
Quick Links
Home
Shop For Tires
Tire Chains
Wheels
Auto Repair
Coupons
About
Contact
Tire Brands
MICHELIN®
BFGoodrich®
Uniroyal®
Bridgestone
Continental
Dunlop
Falken
Firestone
Fuzion
General
Goodyear
Sumitomo
Toyo
Yokohama
Stay Connected
Contact Us
Email:
[email protected]
Phone:
(707) 425-6491
Fax:
(707) 425-9057
Address:
1616 West Texas Street
Fairfield, CA 94533
.
Powered by Net Driven
Login
Fairfield Tire Center, Inc.
1616 West Texas Street,
Fairfield, CA 94533
Phone:
(707) 425-6491
Fax: (707) 425-9057
94533
38.24968,-122.0571
Uh oh!
Page not found!
Sorry the page you are looking for may have been moved or deleted.
Please click anywhere to
continue browsing our site.