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Cette page vous permet d’examiner les variables générées par le filtre anti-abus pour une modification individuelle et de les tester avec les filtres.

Variables générées pour cette modification

VariableValeur
Nom du compte de l’utilisateur (user_name)
'EarlTurriff7861'
ID de la page (page_id)
0
Espace de noms de la page (page_namespace)
0
Titre de la page (sans l’espace de noms) (page_title)
'Skateboard Hardware: Essential Components Engineering Performance Guide'
Titre complet de la page (page_prefixedtitle)
'Skateboard Hardware: Essential Components Engineering Performance Guide'
Action (action)
'edit'
Résumé/motif de la modification (summary)
''
Ancien modèle de contenu (old_content_model)
''
Nouveau modèle de contenu (new_content_model)
'wikitext'
Texte wiki de l’ancienne page, avant la modification (old_wikitext)
''
Texte wiki de la nouvelle page, après la modification (new_wikitext)
'<br>Skateboarding, a popular action sport and cultural phenomenon, encompasses a wide variety of tricks, styles, and techniques. At the heart of this activity lies skateboard hardware, the collection of components that collectively form a functioning skateboard. Understanding the science and engineering behind skateboard hardware is essential for both skaters and manufacturers, as the performance, durability, and safety of gear directly affect the experience of riding.<br><br>A standard skateboard is composed of several key components: the deck, trucks, wheels, bearings, and hardware (i.e., nuts, bolts, and spacers). Each of these parts plays a crucial role in the overall performance and usability of the skateboard.<br><br>Decks<br><br>The deck forms the base of the skateboard and is typically constructed from layers of wood, often maple, or composite materials like fiberglass and carbon fiber. The engineering behind decks involves considerations of weight, flexibility, and strength. The concave shape of the deck, which allows for better foot control and trick performance, is also a product of specific design metrics. The materials used can greatly impact the skateboard's responsiveness and how it handles impacts during tricks.<br><br>Trucks<br><br>The trucks are metal axles that connect the deck to the wheels. Made largely of aluminum or a combination of steel and other lightweight materials, trucks require precision engineering to balance strength, weight, and maneuverability. They comprise several moving parts, including the baseplate, hanger, axle, and bushings. The bushings determine how much resistance a skateboard will have when turning; different durometers (hardness levels) are chosen based on a skater’s style and preference, allowing customization for better grip or speed.<br><br>Wheels<br><br>Skateboard wheels are typically made from urethane, a polymer that provides excellent shock absorption and grip. The durometer of wheels—usually ranging from 78A (soft) to 101A (hard)—affects the skateboard's grip and speed on various surfaces. Softer wheels are more suitable for rough terrains, while harder wheels are preferred for smooth surfaces and tricks. Engineers consider factors such as diameter and shape when designing wheels, as they significantly influence how a skateboard performs.<br><br>Bearings<br><br>Bearings facilitate the rotation of the wheels and are usually constructed from steel, ceramic, or other composite materials. Their performance is often rated according to the ABEC scale, which indicates precision levels in the manufacturing process; however, high ABEC ratings do not necessarily equate to better performance for all skating styles. Skateboard bearings need to balance speed, durability, and resistance to dirt and moisture, which affects their longevity and performance.<br><br>Hardware<br><br>The term "hardware" in skateboarding refers to the nuts and bolts that secure the trucks to the deck and attach other components. Generally made from steel or titanium for strength, the sizing and threading of hardware need to ensure proper fitting and stability. Choosing the right hardware can prevent issues like stripped screws or loose mounts, which can compromise safety while riding.<br><br>In conclusion, skateboard hardware is a complex interplay of materials science and engineering principles that directly impact performance, safety, and the overall skateboarding experience. As skateboarding continues to evolve, so too does the technology behind its hardware, enabling skaters to push the boundaries of tricks and styles. By understanding these elements, skaters are better equipped to select and maintain their equipment, enhancing both safety and performance on the board.<br><br><br>For more in regards to [https://WWW.Seasidesurfshop.com/products/thunder-polished-skateboard-trucks-147/ Surfboards at Seaside Surf] check out our page.'
Horodatage Unix de la modification (timestamp)
1744920124