EP0024928A1 - Impact matrix printer having resiliently mounted printing elements driven by striking needles - Google Patents

Impact matrix printer having resiliently mounted printing elements driven by striking needles Download PDF

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Publication number
EP0024928A1
EP0024928A1 EP80302994A EP80302994A EP0024928A1 EP 0024928 A1 EP0024928 A1 EP 0024928A1 EP 80302994 A EP80302994 A EP 80302994A EP 80302994 A EP80302994 A EP 80302994A EP 0024928 A1 EP0024928 A1 EP 0024928A1
Authority
EP
European Patent Office
Prior art keywords
printing
needles
needle
printing head
line
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP80302994A
Other languages
German (de)
French (fr)
Inventor
Stanley Gordon Scott
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Monotype Corp Ltd
Original Assignee
Monotype Corp Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Monotype Corp Ltd filed Critical Monotype Corp Ltd
Publication of EP0024928A1 publication Critical patent/EP0024928A1/en
Withdrawn legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J2/00Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
    • B41J2/22Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of impact or pressure on a printing material or impression-transfer material
    • B41J2/23Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by selective application of impact or pressure on a printing material or impression-transfer material using print wires
    • B41J2/235Print head assemblies
    • B41J2/25Print wires
    • B41J2/255Arrangement of the print ends of the wires

Definitions

  • This invention relates to a matrix printer, that is to say a machine which prints characters by means of an array including at least one line of striker needles or similar impact members which can be selectively displaced to print on a sheet or other target surface dots or other elementary printing marks in patterns which constitute printed characters.
  • the needles are normally contained in a printing head. In use, the printing head moves relative to the sheet of paper or other printing surface in a direction which is transverse the line or lines of needles in the array. The movement of the printing head is usually stepwise and when the printing head is stationary the printing needles are actuated in accordance with a predetermined programme to strike the sheet or surface through an ink tape or ribbon.
  • the pattern of dots thus printed after a complete traversal of the printing head across the sheet usually constitutes a line of characters of which the maximum height corresponds to the length of the array of printing needles.
  • the quality of characters printed by an impact matrix printer is determined by the size of the impact area of the printing needles. Moreover, the needles are subject to considerable wear and the quality of the characters may be degraded as the striking ends of the needles become worn.
  • One purpose of the present invention is to alleviate at least one of these disadvantages.
  • the invention particularly relates to a matrix printer which comprises a printing head which has an array of striker needles disposed in at least one line, means defining a target surface and means for causing relative movement between the printing head and the said surface along a line transverse the said line of needles.
  • the improvement according to the present invention comprises the provision of a frame which is carried on or adapted for carriage by the printing head and includes a plurality of resiliently flexible members each positioned for displacement by a respective striker needle and carrying a printing member which has, with respect to the target surface, an impact area substantially different from the striking area of the respective striker needle .
  • Figure 1 is an explanatory diagram which shows the impact area 1 of a printing needle aimed to provide a dot at the end of a notional serif 2 at one side of the foot 3 of a character. It will be observed that the impact area of the printing needle is considerably larger than the area which is required to reproduce the end of the serif accurately. There is, obviously, a limit to the extent to which the diameter of a printing needle can be reduced whilst retaining sufficient strength in the printing needle. It is, having regard to the disadvantage shown by Figure 1, desirable to make the impact area of a printing member either smaller than or of different shape to the impact area of the primary printing or striking needle.
  • impact members which may be oval-shaped yet differently oriented to facilitate the production of serifs.
  • needles at the ends of an array may be associated with impact members which are oval and disposed along a line parallel to the line of characters, so that horizontal serifs may be more easily reproduced and to associate with needles between the ends of a line of needles impact members which are oval-shaped and disposed vertically with respect to the characters so as to facilitate the production of vertical serifs.
  • the impact areas of the printing members associated with the needles are of smaller impact area than the impact area of the striker needles.
  • the reference numeral 5 denotes the end of one of a line array of axially displaceable striker needles which project slightly from the end of a printing head 4.
  • the end of the needle has struck a target sheet 6, an inked ribbon 7 being interposed between the needle and the sheet 6. It has been proposed to reduce the impact area of the needle by appropriate shaping of the end but the theoretical benefits of such a proposal are outweighed by the increased wear of the end of the needle and certain difficulties in the manufacture thereof.
  • the assembly shown in Figure 2 includes a resiliently flexible member constituted in this embodiment by a cantilevered leaf spring 8 which carries at or adjacent its free end an anvil 9 on that surface of the leaf spring which faces the respective end of the striker needle.
  • a printing member in the form of a stud 10 which is shaped to present a striking surface of which the area is smaller than or of different shape to the impact area of the needle 5.
  • FIG 3 illustrates schematically the principal parts of a printer.
  • a roller 13 provides support for a sheet of paper 14.
  • Between a supply spool 15 and a take-up spool 16 extends a carbon ribbon 17.
  • the printing head has a body 18 and a front part 19 which carries at its outer end a guide 20 for a line of striker needles which are each axially displaceable by means of drivers within the path 19.
  • the printer is of known form, as shown for example by the earlier-mentioned European patent application.
  • the printer carries a mounting block 21 for a frame in the form of a plate 22 which carries a set of leaf springs and studs.
  • FIG. 4 Within the printing head is, as usual, a row of printing needles 23 (of which only one can be seen in Figure 5.
  • the end of the body 19 of the printing head is circular; from the end of the body there extends the guide 20 which serves to guide the printing needles axially.
  • the needles normally protrude slightly from the end surface 24 of the guide 20.
  • the rectangular mounting block 21 has a central circular aperture which accommodates the guide 20 and is wider at one end so that the mounting block fits over the cylindrical body 19 of the printing head.
  • the block may be fixed to the head by screws or an appropriate cement.
  • a frame for the leaf springs 8 is constituted by the plate 22 of which the central part is of reduced thickness and is formed in the manner of an interdigitated comb comprising side portions 25, and end portions 26, the latter providing a base support for a plurality of cantilevered leaves 8 which extend so that their ends lie on a common line extending across the tops of the needles 23,
  • Each leaf spring 8 is provided with an anvil 9 and a stud 10 as described with reference to Figure 2, the anvil 9 and stud 10 of each leaf spring being aligned with the respective needle 23.
  • the spring plate 22 may be made from nickle- beryllium-copper or pen steel.
  • the anvils and studs may be electrolytically deposited and comprise a suitable hard-wearing material, such as hard nickel.
  • the entire spring plate, studs and anvils may be photo-etched from a single sheet of any of the aforementioned materials, the studs and anvils being plated with a suitable hard-wearing material such as chromium.
  • the sizes and shapes of the studs 10 are selected as required. They may simply be of smaller diameter than the needles 23 but may be shaped as thin bars or lozenges.
  • the leaf spring assembly may be arranged to include leaf springs to provide resilient mounting for two corresponding rows of anvils and studs.
  • the studs of one such row may have striking surfaces in the form of thin bars aligned in one direction whereas the studs in the other row may have striking surfaces in the form of thin bars in another direction, the directions being selected to permit or facilitate the formation of fine horizontal and vertical character strokes or serifs.
  • the frame constituted by the plate 22 may be readily detachable from the block 21 so that it can be changed when the studs become worn or when a different shape of stud is required for the production of different style of character.
  • the plate 22 may be attached by screws to the block 21 but, if easy removal is not required, the plate 22 may be fixed to the block by a suitable cement.

Landscapes

  • Impact Printers (AREA)

Abstract

A matrix printer which has a printing head including a line of printing needles. A plate (22) is disposed overthe end of the printing head (4) and is formed to constitute a plurality of leaf springs (8) each of which carries at one side an anvil (9) aligned with a respective printing needle and at its other side a stud (10) which has an impact area smallerthan or different to the impact area of the respective printing needle. Striking movement of the printing needle deflects the spring to cause the respective stud to mark the printing sheet. The arrangement facilitates the production of different styles of characters, the production of finer detail in characters and provides printing members which are more easily replaceable than printing needles.

Description

    BACKGROUND TO THE INVENTION
  • This invention relates to a matrix printer, that is to say a machine which prints characters by means of an array including at least one line of striker needles or similar impact members which can be selectively displaced to print on a sheet or other target surface dots or other elementary printing marks in patterns which constitute printed characters. The needles are normally contained in a printing head. In use, the printing head moves relative to the sheet of paper or other printing surface in a direction which is transverse the line or lines of needles in the array. The movement of the printing head is usually stepwise and when the printing head is stationary the printing needles are actuated in accordance with a predetermined programme to strike the sheet or surface through an ink tape or ribbon. The pattern of dots thus printed after a complete traversal of the printing head across the sheet usually constitutes a line of characters of which the maximum height corresponds to the length of the array of printing needles.
  • The quality of characters printed by an impact matrix printer is determined by the size of the impact area of the printing needles. Moreover, the needles are subject to considerable wear and the quality of the characters may be degraded as the striking ends of the needles become worn. One purpose of the present invention is to alleviate at least one of these disadvantages.
  • SUMMARY OF THE PRIOR ART
  • Many forms of impact matrix printer are known; two examples are provided by British Patent Specification No. 1539661 in the name of The Singer Company, and the published Specification No. 0001472 of European Patent Application No. 78300109.2 in the name R.C. Sanders Technology Systems Inc.
  • It has been proposed to provide a high performance printer which includes an endless belt carrying resilient fingers on each of which is disposed a printer needle and which can be struck by striker needles of a stationary head. Such an arrangement is described in British Patent Specification No. 1493719 but the arrangement described in that specification is not applicable to matrix printers in which, as for the present invention, the printing head moves relative to the printing surface.
  • SUMMARY OF THE INVENTION
  • The invention particularly relates to a matrix printer which comprises a printing head which has an array of striker needles disposed in at least one line, means defining a target surface and means for causing relative movement between the printing head and the said surface along a line transverse the said line of needles. The improvement according to the present invention comprises the provision of a frame which is carried on or adapted for carriage by the printing head and includes a plurality of resiliently flexible members each positioned for displacement by a respective striker needle and carrying a printing member which has, with respect to the target surface, an impact area substantially different from the striking area of the respective striker needle .
  • DESCRIPTION OF THE DRAWINGS
  • In the accompanying drawings:
    • Figure 1 illustrates a disadvantage in character reproduction using matrix dot printers;
    • Figure 2 illustrates schematically part of an impact assembly in a printing head of a matrix printer according to the present invention;
    • Figure 3 illustrates schematically part of a matrix printer according to the invention;
    • Figure 4 illustrates the front face of a printing head including the improvement provided by the present invention; and
    • Figure 5 is a sectional view along the line X-X shown in Figure 4.
    DESCRIPTION OF THE PREFERRED EMBODIMENT
  • The reader of the present specification will be presumed to be familiar with the general manner of construction and operation of matrix printers, including those described in the specifications hereinbefore mentioned. The following description includes a description by way of example of one embodiment of the invention; it will be apparent that various modifications may be made by those skilled in the art.
  • Figure 1 is an explanatory diagram which shows the impact area 1 of a printing needle aimed to provide a dot at the end of a notional serif 2 at one side of the foot 3 of a character. It will be observed that the impact area of the printing needle is considerably larger than the area which is required to reproduce the end of the serif accurately. There is, obviously, a limit to the extent to which the diameter of a printing needle can be reduced whilst retaining sufficient strength in the printing needle. It is, having regard to the disadvantage shown by Figure 1, desirable to make the impact area of a printing member either smaller than or of different shape to the impact area of the primary printing or striking needle. It is within the scope of the present invention to make the area non-circular, for example oval-shaped and to associate with the various striker needles, as will be described hereinafter, impact members which may be oval-shaped yet differently oriented to facilitate the production of serifs. For example, needles at the ends of an array may be associated with impact members which are oval and disposed along a line parallel to the line of characters, so that horizontal serifs may be more easily reproduced and to associate with needles between the ends of a line of needles impact members which are oval-shaped and disposed vertically with respect to the characters so as to facilitate the production of vertical serifs. However, in the embodiment which is to be described it will be presumed that the impact areas of the printing members associated with the needles are of smaller impact area than the impact area of the striker needles.
  • In Figure 2, the reference numeral 5 denotes the end of one of a line array of axially displaceable striker needles which project slightly from the end of a printing head 4. In earlier practice the end of the needle has struck a target sheet 6, an inked ribbon 7 being interposed between the needle and the sheet 6. It has been proposed to reduce the impact area of the needle by appropriate shaping of the end but the theoretical benefits of such a proposal are outweighed by the increased wear of the end of the needle and certain difficulties in the manufacture thereof.
  • The assembly shown in Figure 2 includes a resiliently flexible member constituted in this embodiment by a cantilevered leaf spring 8 which carries at or adjacent its free end an anvil 9 on that surface of the leaf spring which faces the respective end of the striker needle. On the opposite surface of the leaf spring 8, facing the ribbon 7, is a printing member in the form of a stud 10 which is shaped to present a striking surface of which the area is smaller than or of different shape to the impact area of the needle 5. When the needle 5 advances in the direction of the arrow 11 and strikes the anvil 9, the spring 8 flexes and the stud 10 advances towards the sheet 6. Thereafter, the needle having been withdrawn in the direction of arrow 12, the leaf spring reflexes towards its rest position and the stud 10 is withdrawn from the sheet 6.
  • Figure 3 illustrates schematically the principal parts of a printer. A roller 13 provides support for a sheet of paper 14. Between a supply spool 15 and a take-up spool 16 extends a carbon ribbon 17.' The printing head has a body 18 and a front part 19 which carries at its outer end a guide 20 for a line of striker needles which are each axially displaceable by means of drivers within the path 19. As thus far described the printer is of known form, as shown for example by the earlier-mentioned European patent application. As will be described with reference to Figures 4 and 5, the printer carries a mounting block 21 for a frame in the form of a plate 22 which carries a set of leaf springs and studs.
  • Reference will now be made to Figures 4 and 5. Within the printing head is, as usual, a row of printing needles 23 (of which only one can be seen in Figure 5. The end of the body 19 of the printing head is circular; from the end of the body there extends the guide 20 which serves to guide the printing needles axially. The needles normally protrude slightly from the end surface 24 of the guide 20.
  • The rectangular mounting block 21 has a central circular aperture which accommodates the guide 20 and is wider at one end so that the mounting block fits over the cylindrical body 19 of the printing head. The block may be fixed to the head by screws or an appropriate cement.
  • A frame for the leaf springs 8 is constituted by the plate 22 of which the central part is of reduced thickness and is formed in the manner of an interdigitated comb comprising side portions 25, and end portions 26, the latter providing a base support for a plurality of cantilevered leaves 8 which extend so that their ends lie on a common line extending across the tops of the needles 23, Each leaf spring 8 is provided with an anvil 9 and a stud 10 as described with reference to Figure 2, the anvil 9 and stud 10 of each leaf spring being aligned with the respective needle 23.
  • The spring plate 22 may be made from nickle- beryllium-copper or pen steel. The anvils and studs may be electrolytically deposited and comprise a suitable hard-wearing material, such as hard nickel. Alternatively the entire spring plate, studs and anvils may be photo-etched from a single sheet of any of the aforementioned materials, the studs and anvils being plated with a suitable hard-wearing material such as chromium. As mentioned hereinbefore, the sizes and shapes of the studs 10 are selected as required. They may simply be of smaller diameter than the needles 23 but may be shaped as thin bars or lozenges.
  • If the printing head includes two parallel rows of needles, the leaf spring assembly may be arranged to include leaf springs to provide resilient mounting for two corresponding rows of anvils and studs. The studs of one such row may have striking surfaces in the form of thin bars aligned in one direction whereas the studs in the other row may have striking surfaces in the form of thin bars in another direction, the directions being selected to permit or facilitate the formation of fine horizontal and vertical character strokes or serifs.
  • The frame constituted by the plate 22 may be readily detachable from the block 21 so that it can be changed when the studs become worn or when a different shape of stud is required for the production of different style of character. For the purpose of easy removal, the plate 22 may be attached by screws to the block 21 but, if easy removal is not required, the plate 22 may be fixed to the block by a suitable cement.

Claims (3)

1. In a matrix printer comprising a printing head which has an array of striker needles disposed in at least one line, means defining the target surface and means for causing relative movement between the printing head and the said surfaces along a line transverse to said line of needles, the improvement which comprises a frame disposed on the printing head and including a plurality of resiliently flexible members each positioned for displacement by a respective striker needle and carrying a printing member which has with respect to the target surface an impact area substantially different from the striking area of the respective striker needle.
2. The improvements set forth in claim 1 in which the said members are cantilevered leaf springs disposed interdigitally, the printing members comprising studs each of which is disposed near the end of each spring.
3. The improvements set forth in claim 1 or claim 2 in which the frame and flexible members are constituted by a thin metallic plate.
EP80302994A 1979-08-30 1980-08-29 Impact matrix printer having resiliently mounted printing elements driven by striking needles Withdrawn EP0024928A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB7930013A GB2057359A (en) 1979-08-30 1979-08-30 Matrix printer
GB7930013 1979-08-30

Publications (1)

Publication Number Publication Date
EP0024928A1 true EP0024928A1 (en) 1981-03-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP80302994A Withdrawn EP0024928A1 (en) 1979-08-30 1980-08-29 Impact matrix printer having resiliently mounted printing elements driven by striking needles

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EP (1) EP0024928A1 (en)
JP (1) JPS5664879A (en)
GB (1) GB2057359A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107399085A (en) * 2017-09-15 2017-11-28 贵州大学 3D printer carries wire tray fixed mount

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS583880A (en) * 1981-06-30 1983-01-10 Seikosha Co Ltd Cross hammer type dot printer

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2152187A5 (en) * 1971-09-09 1973-04-20 Anker Werke Ag
US4044668A (en) * 1975-05-16 1977-08-30 Printronix, Inc. Print hammer mechanism
GB1493719A (en) * 1974-07-04 1977-11-30 Siemens Ag Mechanical printers

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2152187A5 (en) * 1971-09-09 1973-04-20 Anker Werke Ag
GB1493719A (en) * 1974-07-04 1977-11-30 Siemens Ag Mechanical printers
US4044668A (en) * 1975-05-16 1977-08-30 Printronix, Inc. Print hammer mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107399085A (en) * 2017-09-15 2017-11-28 贵州大学 3D printer carries wire tray fixed mount

Also Published As

Publication number Publication date
JPS5664879A (en) 1981-06-02
GB2057359A (en) 1981-04-01

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Inventor name: SCOTT, STANLEY GORDON