Five Directions To Tell You What Is The Radial Drilling Machine?
Knowledge

Five Directions To Tell You What Is The Radial Drilling Machine?

It is a metal cutting processing equipment. The rocker arm can be rotated and lifted around the column. The spindle box is a horizontally-moving drilling machine on the rocker arm.
Published: May 26, 2020
Five Directions To Tell You What Is The Radial Drilling Machine?

Basic introduction of radial drilling machine

The machine headstock can move on the rocker arm, and the rocker rotates with the rocker arm around the column. The rocker arm can also move up and down along the column to adapt to workpieces of different heights. Smaller workpieces can be installed on the workbench, and larger workpieces can be placed directly on the machine tool base or on the ground. Radial drilling machines are widely used in single-piece and small and medium batch production to processing holes for large and heavy workpieces. The main variants of the rocker drilling machine are the sliding seat type and the universal type. Slide type rocker drilling machine is formed by changing the base of the base type rocker drilling machine into a slide. The slide can move along the guide rail of the bed body to expand the processing range. In addition to the vertical and rotary movements, the rocker arm of the universal rocker drilling machine can also be moved horizontally. The spindle box can be adjusted on the rocker arm to suit the processing of various parts of the workpiece. In addition, there are car types, wall type, and digital control rocker drilling machines.

A drilling machine is a kind of hole processing equipment, which can be used for drilling, reaming, reaming, tapping and scraping the end face and other forms of processing. According to usage and structure, drilling machines can be divided into vertical drilling machines, bench drilling machines, porous drilling machines, radial drilling machines, and other special drilling machines. Among all kinds of drilling machines, the rocker drilling machine is easy and flexible to operate, has a wide range of applications, and is typical. It is especially suitable for single-piece or batch production of holes with large porous parts. It is a common machine tool in general machining workshops.

The Main Structure

The rocker drilling machine is mainly composed of a base, an inner column, an outer column, a rocker arm, a spindle box and a workbench.

The inner column is fixed at one end of the base, and an outer column is sleeved on the outside of the base. The outer column can rotate 360 degrees around the inner column. One end of the rocker arm is a sleeve, which is sleeved on the outer column to move up and down. Since the screw rod is connected with the outer column and the lifting nut is fixed on the rocker arm, the rocker arm cannot rotate around the outer column, and can only rotate with the outer column around the inner column. The spindle box is a composite component, which is composed of the main drive motor, the spindle, and the spindle drive mechanism, the feed and speed change mechanism, and the operating mechanism of the machine tool. The spindle box is installed on the horizontal rail of the rocker arm and can be operated by the handwheel to move it along the rocker arm on the horizontal rail.

Structural Analysis
  1. The structure of the protection control device
  2. In order to ensure the sensitivity of the system, the device uses a photoelectric sensor and control module factory and is equipped with a relay and a protective switch to form an independent and complete safety protection device. Use this device with the electrical part of the original equipment. When the human body enters the danger zone, the safety device quickly cuts off the power and stops the equipment. The photoelectric sensor box is equipped with a transfer switch, with two blocks of automatic (input protection work) and manual (stop protection work). In order to ensure the reliable operation of the system, the components of the German Schneider company are used, and the two-way protector is used. It is used to protect the safety module, and one is used to protect the control loop. The control reverberation speed can reach 10 ~ 30μs, and the effective working distance of the photoelectric sensor can be determined according to the needs (adjusted with the precision potentiometer on the photoelectric sensor) to meet the needs of different processing. The effective width of the photoelectric sensor is determined by the number of infrared probes. In general, the number of infrared probes should not be less than three.

  3. Working principle and method of use
  4. After the system power is turned on, the photoelectric sensor emits an infrared signal. At this time, if a foreign object appears within the hazardous area, the returned infrared signal quickly sends a signal to the safety control module through the photoelectric sensor. The safety control module sends instructions to the actuator relay to quickly cut off the power supply and stop the spindle of the drilling machine, thereby ensuring personal safety.
    The photoelectric sensor is generally installed under the operating handle, and the safety control module, relay, and protection switch are installed in the tool electromechanical control box.

  5. Matters Needing Attention
  6. Before each operation, first use a test board to reach into the dangerous area, and the equipment should be powered off immediately, otherwise, the safety system is faulty and should be repaired immediately.
    The safety device is sensitive and reliable after being used on rocker drilling machines of different specifications, and the operator's personal safety is effectively guaranteed.

Main functions of radial drilling machine

  1. Suitable for drilling, reaming, reaming, reaming, surface drilling, and threading on medium and large metal parts. The operation of the handles and buttons of the hydraulic rocker drill's main functions is not concentrated on the spindle box.
  2. Rocker arm lifting and clamping: Rocker arm lifting is dragged by the motor on the top of the column and driven by the screw nut to achieve rocker arm lifting. The lifting nut is equipped with a safety nut to ensure that the rocker arm cannot be suddenly dropped; the rocker arm clamping is achieved by hydraulically driven diamond-shaped blocks. After clamping, the diamond-shaped blocks are locked automatically; The rocker arm is automatically clamped and controlled by an electrical switch mounted on the cylinder.
  3. Spindle box: realize the rotation, feed, and operation of the spindle at all levels. The spindle speed range is 25-2000r / min, with a total of 16 levels, which can be realized by rotating the centralized operation handwheel (spindle speed preselection button); There are 16 levels in 0.04-3.2mm / r, which can be achieved by rotating the centralized operation handwheel (pre-selection button for spindle feed).
  4. Clamping of the spindle box and the vertical column: the tightening of the spindle box and the vertical column is driven by hydraulic pressure, and the diamond block is clamped. The two actions can be performed simultaneously or separately. The selection button is a knob on the headstock panel, where the middle position is clamping, the left is a separate loose clamp for the column, and the right is a separate loose clamp for the spindle housing. The action realization buttons are the spindle box column release button and the spindle box column clamping button.
Form of Exercise

When processing, the spindle box is fastened to the rocker rail by a special tightening device, and the outer column is fastened to the inner column, the rocker is fastened to the outer column, and then drilling is performed. During the drilling process, the drill bit performs rotary cutting while performing longitudinal feed, and its movement form is:

  1. The main motion of the rocker drilling machine is the rotary motion of the main shaft
  2. The feed motion is the longitudinal feed of the spindle
  3. The auxiliary movements include: the rocker arm moves vertically along the outer column, the headstock moves along the length of the rocker arm, and the rocker arm and the outer column rotate around the inner column
Published by May 26, 2020 Source :itsfun

Further reading

You might also be interested in ...

Headline
Knowledge
Essential for Precision Machining: A Complete Guide to Tungsten Carbide Center Drills
In modern manufacturing, precision is the core standard by which product quality and performance are measured. From aerospace components to medical devices, even a minor deviation can lead to serious consequences. When it comes to precision drilling, a critical challenge is ensuring that a drill bit can be accurately positioned at the start of a cut while maintaining stability during high-intensity operations. The tungsten carbide center drill is the professional tool engineered specifically to solve this problem.
Headline
Knowledge
From Cavitation Effect to Industrial Applications: The Secrets of Ultrasonic Cleaning
When your glasses, tableware, or electronic components are stained with stubborn dirt, what can you do? Traditional methods often require vigorous scrubbing or even harsh chemical solvents, which are not environmentally friendly and may scratch the item. At this moment, ultrasonic cleaning acts like an “invisible little helper”, reaching deep into grooves and gaps to gently yet effectively remove contaminants.
Headline
Knowledge
The “Spark Magician” of Metalworking
Electrical Discharge Machining (EDM) is a non-traditional machining process that removes metal through electrical sparks. Unlike conventional methods, it is not limited by material hardness and can precisely create deep cavities, micro-holes, and complex structures in hardened steel, tungsten carbide, or superalloys. The three main types of EDM include wire cutting, die-sinking, and hole drilling, which are widely applied in mold making, aerospace, automotive, and medical industries. Although EDM has a slower processing speed, works only with conductive materials, and requires consideration of electrode wear and surface treatment, its advantages in high precision, zero cutting force, and superior surface finish make it an indispensable technology in precision manufacturing. Moreover, it continues to evolve in line with the trend toward smart manufacturing.
Headline
Knowledge
Press Brake vs Shearing Machine: Functional and Technical Comparison of Industrial Processing Equipment
Press Brake and Shearing Machine are two essential types of equipment in the field of machine tools, widely used in the processing of metal, wood, and other materials. They play critical roles in manufacturing, enabling efficient and precise material forming and cutting. This article introduces the definitions, functions, technical features, and applications of folding and cutting machines, offering neutral and practical knowledge sharing.
Headline
Knowledge
Master Chuck Types & Selection: The Essential Guide for Machinists
In the world of precision manufacturing, every minute detail can determine the quality of the final product. The chuck is a critical yet often overlooked component—it's not just a tool for holding a workpiece, but the very heart of ensuring machining accuracy, efficiency, and safety. This article will take you on a deep dive into the diverse universe of chucks, covering their operating principles, design philosophies, common types, and how to select the right jaws and chucks for different needs. Whether you're new to the industry or a seasoned engineer, this guide will unlock the intricate secrets of chucks, helping you master every detail on your path to manufacturing success.
Headline
Knowledge
An Overview of Electrical Discharge Machining (EDM)
Electrical Discharge Machining (EDM) is a non-traditional manufacturing process that utilizes electrical sparks to remove material from a workpiece. Unlike conventional machining methods such as milling or turning, which rely on physical contact between a tool and the material, EDM operates without direct contact, making it ideal for processing hard or brittle materials that are difficult to machine otherwise. The process involves generating a series of rapid electrical discharges between an electrode and the workpiece, submerged in a dielectric fluid, which erodes the material through thermal energy. This technique has revolutionized precision manufacturing by enabling the creation of complex geometries with high accuracy.
Headline
Knowledge
Applications of Machine Tools in the Aerospace Industry
The aerospace industry is a highly specialized and technology-driven sector, encompassing the design, manufacturing, and maintenance of aircraft, spacecraft, satellites, and related equipment. Machine tools play a critical role in this field, enabling the precision machining of complex metal and composite material components. These tools enhance production efficiency while ensuring the accuracy and reliability required to meet the stringent safety and performance standards of aerospace. This document outlines the key applications, technologies, benefits, and future trends of machine tools in the aerospace industry.
Headline
Knowledge
Smart Healthcare Uncovered:How AI Is Transforming Clinical Practice?
With the rapid rise of artificial intelligence (AI), the healthcare industry is undergoing a disruptive transformation. AI is significantly improving diagnostic accuracy and treatment efficiency while profoundly redefining healthcare professionals’ roles and patient experiences. A comprehensive understanding of the core technologies and clinical applications behind this transformation is essential for grasping the future trends and strategic directions of smart healthcare.
Headline
Knowledge
Principle and Applications of Laser Cutting Machines
As the global manufacturing industry advances toward higher precision and efficiency, laser cutting technology has become a key enabler of industrial upgrading. Compared with traditional shearing, stamping, and mechanical cutting, laser cutting offers non-contact processing, higher accuracy, and greater flexibility. It significantly improves productivity while reducing secondary finishing. Today, it is widely adopted in metalworking and increasingly applied in electronics, aerospace, medical, and architectural design industries.
Headline
Knowledge
Why Are High-Quality Cutting Fluids Critical for Machining Quality?
In CNC and metalworking, cutting fluid is no longer just a coolant—it plays a critical role by providing lubrication, chip removal, and corrosion protection. With the right formulation and concentration, it can reduce cutting heat, minimize friction, extend tool life, and maintain workpiece accuracy. High-pressure cooling further enhances efficiency in deep-hole and high-speed machining. The pairing of tool material with the proper cutting fluid is equally crucial; correct selection and maintenance ensure process stability, prolong equipment life, and improve the overall work environment. Cutting fluid has become an indispensable investment in modern precision manufacturing.
Headline
Knowledge
Introduction to Emerging Printing Technologies: Opening New Horizons for the Future of Printing
With rapid technological progress and increasingly diverse market demands, traditional printing techniques are no longer sufficient to meet modern industry’s requirements for precision, efficiency, and sustainability. As a result, emerging technologies such as UV printing, 3D printing, and Nanoimprint Lithography (NIL) have risen to prominence, offering solutions with higher precision, broader applications, and lower production costs. These innovations have already demonstrated value across packaging, advertising, healthcare, semiconductors, and construction. In the following sections, we will explore their technical features and real-world applications, highlighting the advantages and future potential of these cutting-edge printing technologies.
Headline
Knowledge
The Core Standard for Life-Critical Systems: A Complete Guide to IPC Classification
In high-risk fields such as medical, aerospace, and automotive, IPC classifications determine PCB reliability and safety. Class 3 represents the highest standard, requiring zero tolerance for defects, complete via filling, adequate copper annular rings, and rigorous inspections to ensure operation under extreme conditions, while Class 2 suits long-term use in non-critical equipment with minor cosmetic flaws allowed. Class 3’s strict criteria cover component placement, soldering, plating thickness, and environmental testing—adding cost and production time, but far outweighing the risks of failure in life- or safety-critical systems. Thus, defining high-risk equipment as Class 3 during design is essential, making IPC classification a core safeguard rather than an option.
Agree