ANCA (company)

Last updated

ANCA
Company type Private
Industry CNC grinding machines
Founded1974
Headquarters Melbourne, Victoria, Australia
Area served
Australia
Germany
Italy
Taiwan
UK
United States
Brazil
Thailand
China
Japan
India
Key people
Pat Boland, Founder
Pat McCluskey, Founder
Grant Anderson, CEO
Website www.anca.com

ANCA Pty Ltd (formerly Australian Numerical Control and Automation Pty Ltd) is an Australian company which designs and manufactures computer numerical controlled grinding machines. The company was founded in 1974 by Pat Boland and Pat McCluskey in Melbourne, Australia.

Contents

ANCA has its headquarters and main manufacturing plant in Melbourne where it employs about 400 people (2012). Since 2006 two additional plants have been opened in Thailand and Taiwan. [1] The company is export-oriented and has expanded its operations by opening sales offices in nine other countries (2006 data) throughout America, Europe and Asia.[ citation needed ] In 2006 it won three Governor of Victoria Export Awards, and was reported to be a leader in its field of high-end precision grinders that are used in many industries including aeronautics and automotive production. [2]

The company produces a range of computer numerical control (CNC) tool and cutter grinders to meet large-scale manufacturing and entry-level production requirements. [1] The company also produces medical and dental drills.

ANCA has exported approximately 4000 machines, and was named Australian Exporter of the Year in 1999. The company is also the world's leading manufacturer of CNC Tool and Cutter Grinders. Its new subsidiary, ANCA Motion, is supplying computer controls to other Australian manufacturers and exporting to China and Taiwan. [3]

ANCA designs and manufactures its own machines. Machines produced include: [4]

Applications

ANCA CNC machines are commonly used for the following applications: [4]

Awards

ANCA has won over 25 industry awards, [1] including Australian Exporter of the Year in 1999 [3] and the Institution of Engineers Australia - Engineering Excellence Award in 2001. [5]

Related Research Articles

<span class="mw-page-title-main">Machine tool</span> Machine for handling or machining metal or other rigid materials

A machine tool is a machine for handling or machining metal or other rigid materials, usually by cutting, boring, grinding, shearing, or other forms of deformations. Machine tools employ some sort of tool that does the cutting or shaping. All machine tools have some means of constraining the workpiece and provide a guided movement of the parts of the machine. Thus, the relative movement between the workpiece and the cutting tool is controlled or constrained by the machine to at least some extent, rather than being entirely "offhand" or "freehand". It is a power-driven metal cutting machine which assists in managing the needed relative motion between cutting tool and the job that changes the size and shape of the job material.

<span class="mw-page-title-main">Metalworking</span> Process of making items from metal

Metalworking is the process of shaping and reshaping metals to create useful objects, parts, assemblies, and large scale structures. As a term it covers a wide and diverse range of processes, skills, and tools for producing objects on every scale: from huge ships, buildings, and bridges down to precise engine parts and delicate jewelry.

<span class="mw-page-title-main">Machinist</span> Technician

A machinist is a tradesperson or trained professional who operates machine tools, and has the ability to set up tools such as milling machines, grinders, lathes, and drilling machines.

<span class="mw-page-title-main">Machining</span> Material-removal process; manufacturing process

Machining is a manufacturing process whereby a desired shape or part is achieved by the controlled removal of material from a larger piece of raw material by cutting; it is most often performed with metal material. These processes are collectively called subtractive manufacturing, which utilizes machine tools, in contrast to additive manufacturing, which uses controlled addition of material.

<span class="mw-page-title-main">Numerical control</span> Computer control of machine tools

In machining, numerical control, also called computer numerical control (CNC), is the automated control of tools by means of a computer. It is used to operate tools such as drills, lathes, mills, grinders, routers and 3D printers. CNC transforms a piece of material into a specified shape by following coded programmed instructions and without a manual operator directly controlling the machining operation.

<span class="mw-page-title-main">Grinding machine</span> Machine tool used for grinding

A grinding machine, often shortened to grinder, is a power tool used for grinding. It is a type of machining using an abrasive wheel as the cutting tool. Each grain of abrasive on the wheel's surface cuts a small chip from the workpiece via shear deformation.

<span class="mw-page-title-main">Plasma cutting</span> Process

Plasma cutting is a process that cuts through electrically conductive materials by means of an accelerated jet of hot plasma. Typical materials cut with a plasma torch include steel, stainless steel, aluminum, brass and copper, although other conductive metals may be cut as well. Plasma cutting is often used in fabrication shops, automotive repair and restoration, industrial construction, and salvage and scrapping operations. Due to the high speed and precision cuts combined with low cost, plasma cutting sees widespread use from large-scale industrial computer numerical control (CNC) applications down to small hobbyist shops.

<span class="mw-page-title-main">Speeds and feeds</span> Two separate velocities in machine tool practice, cutting speed and feed rate

The phrase speeds and feeds or feeds and speeds refers to two separate velocities in machine tool practice, cutting speed and feed rate. They are often considered as a pair because of their combined effect on the cutting process. Each, however, can also be considered and analyzed in its own right.

A grinding dresser or wheel dresser is a tool to dress the surface of a grinding wheel. Grinding dressers are used to return a wheel to its original round shape, to expose fresh grains for renewed cutting action, or to make a different profile on the wheel's edge. Utilizing pre-determined dressing parameters will allow the wheel to be conditioned for optimum grinding performance while truing and restoring the form simultaneously.

<span class="mw-page-title-main">Tool and cutter grinder</span>

A Tool and Cutter Grinder is used to sharpen milling cutters and tool bits along with a host of other cutting tools.

<span class="mw-page-title-main">Burr (cutter)</span> Small cutting tool

Burrs or burs are small cutting tools; not to be confused with small pieces of metal formed from cutting metal, used in die grinders, rotary tools, or dental drills. The name may be considered appropriate when their small-sized head is compared to a bur or their teeth are compared to a metal burr.

<span class="mw-page-title-main">End mill</span> Milling cutter designed to cut axially

An end mill is a type of milling cutter, a cutting tool used in industrial milling applications. It is distinguished from the drill bit in its application, geometry, and manufacture. While a drill bit can only cut in the axial direction, most milling bits can cut in the radial direction. Not all mills can cut axially; those designed to cut axially are known as end mills.

Bryant is a brand of machine tools headquartered in Springfield, Vermont. Acquired by Fives in 2015, the Bryant product line specializes in the grinding field, building grinding machines with computer numerical control (CNC).

Gear cutting is any machining process for creating a gear. The most common gear-cutting processes include hobbing, broaching, milling, grinding, and skiving. Such cutting operations may occur either after or instead of forming processes such as forging, extruding, investment casting, or sand casting.

<span class="mw-page-title-main">Rotary tool</span> Handheld power tool used for grinding, drilling, machining, etc.

A die grinder or rotary tool is a handheld power tool and multitool used for grinding, sanding, honing, polishing, or machining material. All such tools are conceptually similar, with no bright dividing line between die grinders and rotary tools, although the die grinder name tends to be used for pneumatically driven heavy-duty versions whereas the rotary tool name tends to be used for electric lighter-duty versions. Flexible shaft drive versions also exist.

<span class="mw-page-title-main">Cylindrical grinder</span> Grinding machine

The cylindrical grinder is a type of grinding machine used to shape the outside of an object. The cylindrical grinder can work on a variety of shapes, however the object must have a central axis of rotation. This includes but is not limited to such shapes as a cylinder, an ellipse, a cam, or a crankshaft.

In manufacturing, threading is the process of creating a screw thread. More screw threads are produced each year than any other machine element. There are many methods of generating threads, including subtractive methods ; deformative or transformative methods ; additive methods ; or combinations thereof.

<span class="mw-page-title-main">CNC router</span> Computer-controlled cutting machine

A computer numerical control (CNC) router is a computer-controlled cutting machine which typically mounts a hand-held router as a spindle which is used for cutting various materials, such as wood, composites, metals, plastics, glass, and foams. CNC routers can perform the tasks of many carpentry shop machines such as the panel saw, the spindle moulder, and the boring machine. They can also cut joinery such as mortises and tenons.

<span class="mw-page-title-main">Multiaxis machining</span> Manufacturing processes using tools that can move in 4 or more directions

Multiaxis machining is a manufacturing process that involves tools that move in 4 or more directions and are used to manufacture parts out of metal or other materials by milling away excess material, by water jet cutting or by laser cutting. This type of machining was originally performed mechanically on large complex machines. These machines operated on 4, 5, 6, and even 12 axes which were controlled individually via levers that rested on cam plates. The cam plates offered the ability to control the tooling device, the table in which the part is secured, as well as rotating the tooling or part within the machine. Due to the machines size and complexity it took extensive amounts of time to set them up for production. Once computer numerically controlled machining was introduced it provided a faster, more efficient method for machining complex parts.

<span class="mw-page-title-main">Milling (machining)</span> Removal of material from a workpiece using rotating tools

Milling is the process of machining using rotary cutters to remove material by advancing a cutter into a workpiece. This may be done by varying directions on one or several axes, cutter head speed, and pressure. Milling covers a wide variety of different operations and machines, on scales from small individual parts to large, heavy-duty gang milling operations. It is one of the most commonly used processes for machining custom parts to precise tolerances.

References

  1. 1 2 3 Company profile Archived 6 July 2011 at the Wayback Machine
  2. Rennie R (22 December 2006). "Daily grind pays off for Melbourne company". The Age. Retrieved 8 June 2010.
  3. 1 2 "Powercor AGSE Entrepreneur Hall of Fame and Annual Richard Pratt Entrepreneur Oration". The Australian Graduate School of Entrepreneurship, Swinbourne University of Technology. 2009. Archived from the original on 9 March 2011. Retrieved 24 June 2010.
  4. 1 2 "ANCA website". ANCA. Archived from the original on 20 August 2008. Retrieved 23 June 2010./
  5. VIC Business. "ANCA Pty Ltd". VIC Government. Retrieved 21 June 2010.{{cite web}}: |author= has generic name (help)[ permanent dead link ]