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B27088ANC - Adjustable Yoke End 3/4-10 NC Thread And 3/4 Inch Diameter Thru-Hole

B27088ANC - Adjustable Yoke End 3/4-10 NC Thread And 3/4 Inch Diameter Thru-Hole

Regular price $18.43 USD
Regular price Sale price $18.43 USD
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Adjustable Yoke Ends from Buyers Products are machine forged and meet SAE standards. Custom sizes and finishes are available.

Specifications

Inner Arm to Arm (in.) 0.813 "
Base to Hole Center (in.) 6063.000 "
Height of Yoke Arm (in.) 1.250
Center Hole to Neck (in.) 4.563 "
Material Forged Steel
Neck Dia. (in.) 1.250 "
Thread Size (in.) 3/4-16
Width (in.) 1.625 "
Finish Plain
Hole Dia. (in.) 0.750 "
Neck Length (in.) 1.500 "
Clevis Pin Incl. (y/n) No
Type Standard

The Adjustable Yoke End, featuring a 3/4-10 NC Thread and a 3/4 Inch Diameter Thru-Hole, represents a critical component in mechanical linkage systems, designed for precision, durability, and adaptability across a myriad of industrial and commercial applications. Manufactured by Buyers Products, these yoke ends are not merely standard components but products of advanced engineering and meticulous manufacturing processes, ensuring adherence to the most stringent industry standards, particularly SAE specifications. This detailed description aims to elucidate the technical attributes, material science, manufacturing methodologies, application versatility, and performance advantages of this specific adjustable yoke end.

At its core, a yoke end functions as a pivotal connection point, typically found at the termination of a rod or shaft, designed to interface with another component through a pin or bolt. The "adjustable" nomenclature signifies its capacity to accommodate variations in length or alignment within a linkage system, offering flexibility in assembly and operation. This adjustability is often facilitated by a threaded shank, allowing for fine-tuning of the effective length of the connected rod. For this particular model, the integration of a 3/4-10 NC (National Coarse) Thread is a fundamental specification, dictating its compatibility with corresponding threaded rods or shafts. The NC thread series is renowned for its robustness and resistance to stripping, making it suitable for applications where strength and ease of assembly are paramount, even in environments subjected to moderate vibration or dynamic loads. The coarse pitch provides a larger thread root area, contributing to higher tensile strength and reduced susceptibility to damage during installation or in operation.

Complementing the threaded connection is the 3/4-inch diameter thru-hole, which serves as the primary articulation point. This hole is precision-machined to accommodate a 3/4-inch diameter clevis pin, bolt, or similar fastener, establishing a robust pivot. The selection of this specific diameter is critical for ensuring adequate shear strength at the joint, capable of transmitting significant tensile or compressive forces without deformation or failure. The thru-hole design allows for comprehensive engagement with the fastener, distributing loads evenly across the contact surfaces and minimizing localized stress concentrations. The precision of this bore is crucial for smooth articulation and preventing premature wear, which could compromise the integrity of the linkage system over time.

The material composition of this adjustable yoke end is "Forged Steel," a specification that underscores its superior mechanical properties. Forging is a manufacturing process that involves shaping metal using localized compressive forces. Unlike casting or machining from bar stock, forging refines the grain structure of the steel, aligning the grains with the direction of the principal stresses the part will experience in service. This results in enhanced strength, ductility, and fatigue resistance. Forged steel components are inherently tougher and more resilient to impact and shock loads, making them ideal for high-stress applications in heavy machinery, automotive systems, agricultural equipment, and industrial mechanisms. The absence of internal voids or porosity, common in cast parts, further contributes to the overall structural integrity and reliability of the forged yoke end. The specific grade of steel used, while not explicitly detailed beyond "Forged Steel," would typically be a medium carbon steel or an alloy steel, selected for an optimal balance of strength, machinability, and weldability, allowing for custom finishes or further processing if required.

Delving into the dimensional specifications provided, each parameter plays a vital role in defining the yoke end's functionality and compatibility. The "Inner Arm to Arm (in.)" dimension, specified at 0.813 inches, dictates the maximum width of the component or fitting that can be accommodated between the clevis arms. This is a critical clearance dimension, ensuring proper fitment and free movement of the mating part. The "Base to Hole Center (in.)" at 6063.000 inches appears to be an anomalous value, likely a typographical error, as such a dimension would be exceedingly large for this type of component. Assuming a more realistic value, this dimension typically refers to the distance from the base of the threaded neck to the centerline of the clevis pinhole, which is crucial for determining the overall effective length and geometric positioning of the yoke in an assembly. This dimension is vital for engineers performing kinematic analysis and ensuring proper component alignment. The "Height of Yoke Arm (in.)" at 1.250 inches, defines the vertical extent of the clevis arms, influencing the overall structural rigidity and the bearing surface available for the clevis pin. A greater height can imply more robust construction and a larger contact area for load distribution.

The "Center Hole to Neck (in.)" dimension of 4.563 inches specifies the distance from the center of the clevis pinhole to the point where the clevis arms transition into the threaded neck. This parameter, in conjunction with the neck length, is fundamental in determining the component's reach and its interaction with other parts of an assembly. It directly impacts the moment arm for forces acting on the clevis pin, which is a critical consideration in stress analysis. The "Neck Dia. (in.)" at 1.250 inches refers to the diameter of the unthreaded portion of the shank, immediately adjacent to the clevis section. This diameter is important for manufacturing considerations, providing a robust transition section, and potentially for instances where the yoke end needs to pass through an opening or be clamped. The "Thread Size (in.)" is specified as 3/4-16, which contradicts the product title's 3/4-10 NC. This discrepancy is significant as it fundamentally changes the compatibility. Assuming the title is correct (3/4-10 NC), this refers to a 3/4-inch nominal diameter thread with 10 threads per inch, National Coarse series. If the specification table is correct (3/4-16), it would refer to a 3/4-inch nominal diameter with 16 threads per inch, likely a National Fine (NF) series or a specialized fine pitch. For the purpose of this technical description, we will proceed with the title's 3/4-10 NC as the primary reference, noting the potential for clarification required in ordering.

The "Width (in.)" of 1.625 inches refers to the overall maximum width of the yoke end, typically measured across the outer edges of the clevis arms. This dimension is crucial for space allocation within an assembly and for ensuring that the component does not interfere with surrounding structures. The "Finish" is described as "Plain," indicating that the component is supplied without any additional surface coating or treatment, such as plating, painting, or galvanization. A plain finish typically means the natural surface finish of the forged steel, which may show some surface oxidation or scale from the forging process. While functional, a plain finish may require post-processing by the end-user for corrosion protection, depending on the operational environment. However, for certain applications where the component is housed internally or is not exposed to corrosive elements, a plain finish is cost-effective and entirely acceptable. The "Hole Dia. (in.)" of 0.750 inches reiterates the clevis pinhole diameter, confirming its suitability for a 3/4-inch pin. The "Neck Length (in.)" at 1.500 inches specifies the length of the threaded portion of the shank, which dictates the extent of adjustability and the depth of engagement with the mating threaded component. A sufficient neck length ensures secure and stable threading.

Finally, the "Clevis Pin Incl. (y/n)" is "No," indicating that the clevis pin, which would complete the articulated joint, must be sourced separately. This is a common practice, as clevis pins often have specific material, finish, or locking mechanism requirements tailored to the particular application. The "Type" is "Standard," suggesting that this yoke end conforms to commonly recognized designs and dimensions within the industry, offering broad compatibility and interchangeability with other standard components. However, the initial statement also mentions "Custom sizes and finishes are available," indicating that while a standard offering exists, Buyers Products possesses the manufacturing capabilities to produce variations tailored to unique customer requirements, demonstrating flexibility and a commitment to comprehensive customer solutions.

The technical robustness of this Adjustable Yoke End, particularly its forged steel construction and adherence to SAE standards, makes it suitable for demanding applications in various sectors. In the heavy-duty trucking industry, these yoke ends are integral to steering linkages, suspension systems, and braking mechanisms, where high loads and dynamic stresses are commonplace. For agricultural machinery, they are employed in implement linkages, hydraulic cylinder connections, and control mechanisms, requiring components capable of withstanding rugged outdoor conditions and repetitive loading cycles. In industrial automation and manufacturing equipment, they serve as crucial connection points in linear actuators, robotic arms, and material handling systems, where precision and reliability are paramount. The ability to adjust the effective length provides significant advantages during installation, allowing for fine-tuning of mechanical systems to achieve optimal performance and alignment, reducing assembly time and potential for errors. Furthermore, this adjustability can compensate for minor manufacturing tolerances in other parts of the system, simplifying design and assembly processes.

The inherent strength and durability derived from the forging process mean that these yoke ends offer an extended service life, reducing the frequency of replacement and minimizing downtime for maintenance. This translates into lower operational costs and increased productivity over the lifecycle of the equipment. The plain finish, while requiring potential external corrosion protection, allows for greater flexibility in end-user application-specific treatments, from specialized paints to platings, ensuring compatibility with diverse environmental exposures. The engineering considerations for selecting such a component extend beyond mere dimensions. Engineers must evaluate the tensile strength, yield strength, shear strength of the pinhole, fatigue life under cyclic loading, and resistance to environmental factors such as corrosion and temperature variations. The forged steel material, combined with precision machining, ensures that these critical performance parameters are met, providing a reliable and safe component for critical linkages.

In conclusion, the Adjustable Yoke End with 3/4-10 NC Thread and 3/4 Inch Diameter Thru-Hole from Buyers Products is a meticulously engineered component, distinguished by its forged steel construction, adherence to SAE standards, and practical adjustability. Its design facilitates robust and reliable mechanical linkages across a spectrum of demanding applications. The detailed specifications underscore its precision manufacturing, while the availability of custom options highlights the manufacturer's commitment to meeting diverse industrial needs. This product is a testament to the blend of material science, advanced manufacturing, and thoughtful design, providing engineers and product designers with a high-performance solution for their critical mechanical systems.