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  • Angiography Guidewire

    Angiography guidewires manufactured by Demax are meticulously crafted from high-grade materials such as stainless steel or nitinol. These materials offer excellent mechanical properties, including flexibility, durability, and kink resistance, essential for navigating through tortuous vessels and performing intricate vascular procedures with precision. Additionally, some guidewires feature hydrophilic coatings to enhance lubricity and minimize friction during navigation, further improving procedural success rates and patient comfort. With their advanced composition and precision engineering, Demax angiography guidewires set the standard for excellence in vascular intervention tools, empowering healthcare professionals to deliver superior care to their patients.

  • Core wire Grinding

    The core wire itself is typically made from high-grade stainless steel for strength and corrosion resistance, or Nitinol, a shape-memory alloy offering superelasticity crucial for flexible and kink-resistant guidewires and stents. Depending on the specific device needs, other specialty alloys like platinum, tantalum, and cobalt-chromium might be used for their unique properties. Additionally, the grinding process can be tailored to achieve specific surface finishes and the core wire might receive further coatings to enhance its properties and functionality within the final medical device.

  • Disposable Guidewire For Digestive Tract And Airway

    The Demax Disposable Guidewire for Digestive Tract and Airway is a state-of-the-art medical device engineered to aid healthcare professionals in navigating endoscopic instruments through complex anatomical structures with precision and ease. Crafted with meticulous attention to detail and utilizing cutting-edge materials, this disposable guidewire ensures exceptional performance and patient safety.

  • Disposable Urinary Guidewire

    The Disposable Urinary Guidewire by Demax is constructed using high-quality materials to ensure optimal performance and patient comfort. It features a core structure made of Nitinol alloy, providing excellent flexibility and durability for navigating through the urinary tract. The guidewire is coated with a hydrophilic layer, ensuring smooth passage through the urethra and urinary system. Additionally, radiopaque markers are strategically placed along the length of the guidewire for enhanced visibility under fluoroscopy, aiding in accurate positioning during procedures.

  • Disposable Urinary Zebra Guidewire

    The Disposable Urinary Zebra Guidewire by Demax is meticulously crafted using top-quality materials to ensure optimal performance and patient safety. It comprises a core structure made of high-strength Nitinol alloy, providing exceptional flexibility and durability for navigating through the urinary tract with precision. This core is coated with a hydrophilic layer, ensuring smooth passage through the urethra and urinary system. The guidewire also features radiopaque markers strategically placed along its length, enhancing visibility under fluoroscopy for accurate positioning during procedures.

  • Guide Wire for Puncture

    Guide Wire for Puncture is composed of a stainless steel core wire and a stainless steel winding wire. The core wire provides stiffness and support for navigating through anatomical pathways, while the winding wire enhances flexibility and maneuverability. This composition ensures the guide wire’s durability and reliability during minimally invasive procedures, allowing healthcare professionals to navigate with precision and achieve successful outcomes for their patients.

  • Guide Wire Welding

    The composition of guide wire assemblies produced by Demax is meticulously crafted to ensure superior performance and reliability. These assemblies typically consist of high-quality materials such as stainless steel, nitinol, or specialty alloys, chosen for their mechanical strength, corrosion resistance, and biocompatibility where applicable, particularly in medical applications. Additionally, advanced welding techniques, including plasma welding, laser welding, and PTCA wire brazing, are employed to securely fuse the components together.

  • Hard Guide Wire

    The Demax Hard Guide Wire is meticulously crafted from high-quality materials to ensure exceptional performance and reliability. Composed of a PTFE-coated stainless steel core wire and a PTFE-coated spring, this guide wire offers optimal strength, flexibility, and maneuverability for navigating through challenging anatomical structures with ease. Additionally, some models feature a radiopaque spring, enhancing visibility under fluoroscopy for precise positioning within the target area. This advanced composition guarantees superior durability, biocompatibility, and performance, making the Demax Hard Guide Wire an indispensable tool for healthcare professionals in various medical procedures.

  • Hydrophilic Guidewire

    The composition of Hydrophilic Coated Guidewires typically consists of a core material, such as stainless steel or nitinol, surrounded by a hydrophilic polymer coating. Stainless steel provides the necessary rigidity and structural integrity to the guidewire, enabling it to withstand the forces encountered during navigation through the body. On the other hand, nitinol, a shape-memory alloy, offers flexibility and elasticity, allowing the guidewire to adapt to the contours of anatomical structures without sacrificing durability.

    The hydrophilic coating, usually composed of PTFE or a similar material, serves as a lubricious layer that reduces friction and enhances the guidewire’s ability to glide smoothly through the vasculature or other bodily passages. This coating undergoes a specialized manufacturing process to ensure uniformity and durability, enabling the guidewire to maintain its hydrophilic properties throughout the duration of the procedure.

  • Movable-Core Wire Guide

    The movable-core wire guide is composed of a flexible outer wire and a movable core, both typically made of materials such as stainless steel or nitinol. The outer wire provides support and flexibility for navigating through blood vessels, while the movable core allows for independent movement within the outer wire, providing precise control and maneuverability during procedures. Some wire guides may feature a hydrophilic coating to facilitate smooth advancement through the vasculature and reduce the risk of vessel trauma. Additionally, radiopaque markers on the wire guide enhance visibility under fluoroscopy, aiding in the accurate placement of catheters and other medical devices.

  • Nasogastric Tube Guidewire

    The guidewire is coated with a super-lubricious hydrophilic coating, facilitating smooth advancement through the nasal passages, esophagus, and into the stomach. This coating reduces friction and minimizes the risk of tissue trauma during insertion. The guidewire features a soft and tapered tip design, making it easier to navigate through the nasal passages, esophagus, and into the stomach. This design ensures minimal patient discomfort and tissue trauma during the procedure.

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