GB2365615A - Hand plate musical instrument - Google Patents
Hand plate musical instrument Download PDFInfo
- Publication number
- GB2365615A GB2365615A GB0017428A GB0017428A GB2365615A GB 2365615 A GB2365615 A GB 2365615A GB 0017428 A GB0017428 A GB 0017428A GB 0017428 A GB0017428 A GB 0017428A GB 2365615 A GB2365615 A GB 2365615A
- Authority
- GB
- United Kingdom
- Prior art keywords
- plate
- clapper
- acoustic
- head
- musical instrument
- 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- Withdrawn
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Classifications
-
- G—PHYSICS
- G10—MUSICAL INSTRUMENTS; ACOUSTICS
- G10K—SOUND-PRODUCING DEVICES; METHODS OR DEVICES FOR PROTECTING AGAINST, OR FOR DAMPING, NOISE OR OTHER ACOUSTIC WAVES IN GENERAL; ACOUSTICS NOT OTHERWISE PROVIDED FOR
- G10K1/00—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs
- G10K1/06—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs the resonating devices having the shape of a bell, plate, rod, or tube
- G10K1/062—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs the resonating devices having the shape of a bell, plate, rod, or tube electrically operated
- G10K1/066—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs the resonating devices having the shape of a bell, plate, rod, or tube electrically operated the sounding member being a tube, plate or rod
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- G—PHYSICS
- G10—MUSICAL INSTRUMENTS; ACOUSTICS
- G10D—STRINGED MUSICAL INSTRUMENTS; WIND MUSICAL INSTRUMENTS; ACCORDIONS OR CONCERTINAS; PERCUSSION MUSICAL INSTRUMENTS; AEOLIAN HARPS; SINGING-FLAME MUSICAL INSTRUMENTS; MUSICAL INSTRUMENTS NOT OTHERWISE PROVIDED FOR
- G10D13/00—Percussion musical instruments; Details or accessories therefor
- G10D13/01—General design of percussion musical instruments
- G10D13/06—Castanets, cymbals, triangles, tambourines without drumheads or other single-toned percussion musical instruments
-
- G—PHYSICS
- G10—MUSICAL INSTRUMENTS; ACOUSTICS
- G10D—STRINGED MUSICAL INSTRUMENTS; WIND MUSICAL INSTRUMENTS; ACCORDIONS OR CONCERTINAS; PERCUSSION MUSICAL INSTRUMENTS; AEOLIAN HARPS; SINGING-FLAME MUSICAL INSTRUMENTS; MUSICAL INSTRUMENTS NOT OTHERWISE PROVIDED FOR
- G10D13/00—Percussion musical instruments; Details or accessories therefor
- G10D13/10—Details of, or accessories for, percussion musical instruments
-
- G—PHYSICS
- G10—MUSICAL INSTRUMENTS; ACOUSTICS
- G10K—SOUND-PRODUCING DEVICES; METHODS OR DEVICES FOR PROTECTING AGAINST, OR FOR DAMPING, NOISE OR OTHER ACOUSTIC WAVES IN GENERAL; ACOUSTICS NOT OTHERWISE PROVIDED FOR
- G10K1/00—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs
- G10K1/06—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs the resonating devices having the shape of a bell, plate, rod, or tube
- G10K1/062—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs the resonating devices having the shape of a bell, plate, rod, or tube electrically operated
- G10K1/066—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs the resonating devices having the shape of a bell, plate, rod, or tube electrically operated the sounding member being a tube, plate or rod
- G10K1/067—Operating or striking mechanisms therefor
-
- G—PHYSICS
- G10—MUSICAL INSTRUMENTS; ACOUSTICS
- G10K—SOUND-PRODUCING DEVICES; METHODS OR DEVICES FOR PROTECTING AGAINST, OR FOR DAMPING, NOISE OR OTHER ACOUSTIC WAVES IN GENERAL; ACOUSTICS NOT OTHERWISE PROVIDED FOR
- G10K1/00—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs
- G10K1/06—Devices in which sound is produced by striking a resonating body, e.g. bells, chimes or gongs the resonating devices having the shape of a bell, plate, rod, or tube
- G10K1/08—Details or accessories of general applicability
- G10K1/10—Sounding members; Mounting thereof; Clappers or other strikers
Landscapes
- Physics & Mathematics (AREA)
- Engineering & Computer Science (AREA)
- Acoustics & Sound (AREA)
- Multimedia (AREA)
- Stringed Musical Instruments (AREA)
Abstract
An acoustic device forming a musical hand plate instrument comprises a plate 1, a handle 2, and a clapper mechanism 3. The plate 1 is made from a sheet of aluminium alloy by a computer program controlled profiling machine. The shape of the plate 1 and its operation as a musical instrument is substantially as described in U.K. Patent 2,238420. The handle 2 is a bifurcated block of plastics material into which the plate 1 is secured by means of two recessed bolts 4. The clapper mechanism 3 is mounted on the handle 2 by means of a pivot block 5 containing screw means 17 for adjusting the rotational friction of the clapper mechanism 3. The clapper mechanism 3 consists of the pivot block 5, a clapper shaft 6 formed from a metal rod, and a clapper head 7. The clapper head 7 may be of multi-layered construction.
Description
<Desc/Clms Page number 1>
TITLE Improvements in or relating to acoustic devices THE INVENTION The invention relates to an acoustic device. More particularly, the invention relates to flat plate musical instruments of the type invented in 1989 by Maudce P. Davies, now sold under the trade mark Belleplates. This type of musical instrument is known generically as a hand plate. The term hand plate was coined by Guy Ratcliffe in his book The Handbell Handbook, published by Mayola Music (ISBN 0-946477-02-7). As used in this specification the term hand plate defines the range of musical instruments now known by the expression. BACKGROUND TO THE INVENTION Hand-held musical bells were known in China over 5,000 years ago. The development of handbells has been slow. It was not until the 16th century that handbells were introduced into England. Since then their popularity has grown and they are now universally rung by groups of handbell ringers. Handbell ringers now have a choice of three types of musical instruments. The traditional bell form of handbell becomes excessive heavy when the range of notes is extended into lower octaves. This problem has been overcome in part by casting such bells from an aluminium alloy instead of the more traditional alloy of tin and copper.
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Hand bells are often rung with more than one bell in each hand. This is facilitated by the open loop handles. However, the loop handle becomes impracticable as the size of the bell becomes too cumbersome or heavy to permit more than one instrument to be held in each hand. Bell ringers also use a recently developed form of handbell known as hand chimes. These chimes consist of a tube, one end of which is bifurcated and struck externally by a clapper to cause the column of air to resonate between the bifurcated mouth of the tube and either an optional stop plate within the tube or the other open end of the tube. These instruments also suffer from size and weight problems in the lower registers. The tubes become less manageable the lower the note, and such chimes have to be supported on rests whilst the clapper is caused to strike the tube. PRIOR ART The Belleplates overcome the manageable weight and size problems of traditional bells and hand chimes. This is achieved using a light aluminiurn alloy, and particularly because the size of the plate between any given note and the corresponding lower octave note increases proportionally to the reciprocal of root two, that is to say, the lower note hand plate is only 1.414 times the size of the plate one octave up. As the size of hand plates increases the traditional loop handles may be replaced by a solid handle that is more durable and easily grasped for playing. Hand plates may be played with a full five octaves (61 bells) or more. The shape of hand plates produces a further advantage as they may be stored and carried in a smaller space than the traditional hand bells or hand chimes.
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However, hand plates need to be accurately formed to a predetermined size or subsequently modified and tuned to produce the desired note. It has also been found that the structure of the clapper mechanism used on known instruments has some drawbacks and may be modified to improve the sound produced, especially when the instrument is played in the so- called plucking mode. NOVEL ASPECTS OF THE PRESENT INVENTION The present invention permits hand plates to be very accurately and reproducibly formed from a relatively light aluminium alloy that may be anodised or otherwise surface treated with a protective surface material. The hand plates may be finely tuned by the addition or subtraction of metal during the construction process to produce a full range of accurately tuned notes. The invention also provides a clapper mechanism with a multi-layered striker ball or clapper head and an adjustable bob weight on the clapper rod to achieve a variable weight effect. The offset distance between the plate and the clapper ball of the clapper mechanism may also be varied, preferably by a resilient material that assists in the return of the clapper to its standing position. The pivot arrangement of the clapper mechanism may be modified to provide an adjustable resistance to movement. STATEMENT OF INVENTION According to the present invention there is provided a method of producing an acoustic device comprising forming the desired shape and size of plate for a hand plate musical instrument from metal sheet using a forming machine controlled by a programmed computer.
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Preferably the forming machine is a computerised numerically controlled (CNC) milling machine, or a laser cutter. The computer program enables substantially identical plates to be reproduced within prescribed tolerances to provide instruments with the desired resonance and frequency. The computer program may include a spreadsheet of data required to produce the range of sizes and/or shapes for the desired range of instruments. The sheet metal material of the hand plate is preferably an aluminiurn alloy that may be surface treated by mechanical abrasion, such as by wire brushing, or by chemical or electrolytic etching. The surface treatment of the plates may be used to fine tune the hand plates by adding or removing material. Alternatively, the mass of the plate of a hand plate may be modified by welding on additional metal or by removing metal by milling, drilling, or the like. The thickness of sheet metal used to produce the plates may be selected to provide the desired tone, resonance and persistence of each note. The sheets are generally selected from 2 to 5 millimetres (mm) material. Hand plates produced by the above method may include a clapper mechanism consisting of a pivot means, a clapper head and a rod rigidly connecting the head to the pivot means, wherein the pivot means includes friction means for adjusting the rotational friction of a pivot axle. The friction means may be one or more screw means acting on one or both ends of the pivot axle. The adjustment provided by screw means is set to achieve the desired response for an individual ringer. The pivot axle may be rigidly connected to the rod by means of a connecting block of rigid material, such as brass or plastics. The pivot axle passes through the connecting block and may be secured to it by glue or a transverse grub screw engaging with the longitudinal side of the axle, or by an interference fit.
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The clapper head may consist of a core of brass or similar hard metal material securely mounted on the end of the rod, and covered with a ball of elastomeric material that is coated with a soft felt material. The density of the soft felt material may be varied around the striking circumference of the clapper head so that, by rotation of the head on the rod a desired strike effect may be produced on the plate. A layer of woven material may replace the felt, or may be provided as an additional layer of material surrounding elastomeric ball. The ball may be spherical, cylindrical or other suitable shape for striking the plate. An additional bob weight may be demountably mounted on the rod. The weight of the bob and the distance of the bob weight from the clapper head may also be selected and set to provide a desired effective mass of the clapper head to suit individual ringers. At the pivot axle end of the rod a profiled and adjustable resilient cam means may be provided to bear on the plate at its acoustic node. The cam may be rotated to increase or decrease the distance of the clapper head from the plate in a standing condition. The resilience of the material of the cam may be selected to obtain the desired reaction to movement of the clapper mechanism. In the preferred form, the method according to the present invention is applied to the production of acoustic devices as described and claimed in U.K. Patent 2,238,420 (U.S. Patent 5,177,310) and as shown in U.K. Registered Design 2,009,983 (U.S. Reg. Des. 339,602). The aluminiurn sheet metal for the plate may be produced by a rolling, extrusion, protrusion or pultrusion process permitting dies to produce the desired shapes suitable for cutting to the desired sizes of musical instruments.
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DESCRIPTION OF THE DRAWINGS The invention will now be described, by way of example, with reference to the accompanying drawings in which:- Figure 1 shows a hand plate acoustic device; Figure 2 elements of a pivot block for the device of Figure 1; Figure 3 shows frictional adjustment means for the pivot block of Figure 2; and, Figure 4 shows a form of adjustable bob weight. SPECIFIC DESCRIPTION Referring now to the drawing, Figure 1 shows a hand plate comprising a plate 1, a handle 2, and a clapper mechanism 3. The plate 1 is made from a sheet of aluminiurn alloy, between 2 to 5 millimetres (mm) thick, by a method to be described below. The shape of the plate 1 and its operation as a musical instrument is substantially as descdbed in U.K. Patent 2,238420. The handle 2 is a bifurcated block of plastics material into which the plate 1 is secured by means of two recessed bolts 4. The clapper mechanism 3 is mounted on the handle 2 by means of a pivot block 5 which is shown in more detail in Figure 3. The clapper mechanism 3 consists of the pivot block 5, a clapper shaft 6 formed from a metal rod, and a clapper head 7. The head 7 is shown in the form of a spherical ball, however the head may be a cylindrical disc of elastomeric material such as rubber or Neoprene. An eccentric ring or cam 8 is mounted at the pivot block end of the shaft 6 so that it bears on the plate 1 at a nodal point. A guard flange 9 projects from the handle 2 so that when it is placed on a flat surface the handle is lifted from the surface enabling it to be readily grasped in a suitable position for ringing.
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Ringers prefer to tailor the ringing charactedstics, of their instrument to suit their personal requirements. The hand plate shown in Figure 1 has a number of personalising adjustments, one of which is illustrated and will now be described with reference to Figure 2. Figure 2a shows a plan view of a pivot axle 10 mounted in a block 11 of plastics material, such as brass or Nylon. The axle 10 is held against rotation in the block 11 by means of a grub screw 12. Alternatively, the axle 10 may be a tight force fit or glued against rotation in the block 11. Figure 2b is a cross sectional elevation view of Figure 2a showing how the grub screw 12 bears against the axle 10. Figure 2c shows the mounting of the shaft 6 in the block 11. The eccentdc cam 8 of elastomeric material is mounted on the shaft 6 close to the block 10. Figure 2d shows the mounting arrangement for the axle 10 in a housing 13 held in place on the handle 2 (not shown in Figure 2). Ends 14 and 15 of the axle 10 are cylindrical so that they may rotate within cylindrical bearing surfaces in the housing 13. Grub screws 16 and 17 set into the sides of the housing 13 so as to bear against the shaped conical shaped ends of the axle 10. This action is illustrated more particularly in Figure 2e which shows the axle 10 held in the block 11 and mounted in a bearing surface in the housing 13. It will be seen how the grub screw 17 engages with the shaped end 18 of the axle 10. By adjusting the axial force exerted by the grub screws 16 and 17 on the axle 10 the rotational freedom of movement of the axle may be adjusted. If required one end of the axle 10 may be mounted in a blind hole in the housing 13 so that a single grub screw may provide the necessary force to damp the rotation of the pivot axle 10.
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Figure 3 shows the assembled pivot mechanism on the hand plate handle. Initially, the plate 1 is placed in the bifurcated end of the handle 2 and secured by screws 4. One side of the bifurcated end of the handle 2 forms the housing 13. The other side of the bifurcated end of the handle 13 is formed with a flange 19 for lifting the handle 2 a convenient distance from a flat surface on which the hand plate is laid. The pivot block 5 is assembled by passing the axle 10 through one side bearing in the housing 13, through the pivot block 11, and into the bearing surface on the other side of the housing 13. The axle 10 is firmly secured to the pivot block 11 by the grub screw 12, and the rotation adjusting grub screws 16 and 17 are screwed into the open ends of the bearing holes in the housing 13 and tightened as required to control the freedom of rotation of the axle 10. The specific note for each hand plate may be inscribed or otherwise applied to a plate 20 mounted by means of screws 21 on the upper surface of the handle 2. Alternatively, the bifurcated end of the housing 13 may be extended to form the plate 20. The clapper head 7 as shown in Figure 1 consists of a spherical or cylindrical brass core secured to the end of the shaft 6. The core is sheathed with an elastomeric material which is covered by layer of cloth and/or felt material. The composition of the various layers of material may be selected to produce the desired attack characteristics for the clapper mechanism. Alternatively, the circumferential composition of one or more of the materials may be varied so that a ringer may rotate the head 7 on the shaft 6 to produce a desired effect. For hand plates producing the higher notes, the core weight may be reduced or even omitted.
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The shape of the plate 1 is not limited to that shown but may be square or any other shape within those described and claimed in UX Patent 2,238,420. In the method according to the present invention the aluminium sheet is profiled to the desired shape by means of a CNC milling machine, or a computer controlled laser shaping machine. The program accurately reproduces substantially identical plates and it can be scaled to create the desired range of plate to form at least a five octave range of Belleplate hand plates. The profiled plate may be subjected to a surface treatment by mechanical, chemical or electrolytic means. This treatment may be used to finely tune the plate to the desired note. The surface may be protected by an applied material, such as paint, or left in the surface treated state. The anodising treatment may produce a coloured surface as is well known in the art. By wire brushing the surface an attractive grained effect may be produced. If significant tuning is required, the plate may be milled, drilled or heavily abraded to remove significant mass. Alternatively, mass may be added by using a welding material such as that known as Lumiweld (trade mark). Referring to Figure 4 which shows a bob weight 21 consisting of a horseshoe shaped block of metal that clips onto the clapper shaft 6 and can be held in position be one or more screws 22. Hand bells can produce sounds in a number of ways, one such method includes resting the handbell on a foam covered flat surface and striking the bell metal with either a mallet or by using the clapper internal to the handbell.
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It has been found that in use the performance of the hand plate, particularly the lower notes, may be improved in the plucking mode of ringing if the broad edge of the plate is supported at its two nodal points for its fundamental frequency so as to lift the plate from the supporting surface without inhibiting the natural resonance of the device. It will be appreciated that if necessary other known mechanical equivalents may replace the components described with reference to the drawings.
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Claims (1)
- CLAIMS 1. A method of producing an acoustic device comprising forming the desired shape and size of plate for a hand plate musical instrument from metal sheet using a forming machine controlled by a programmed computer. 2. A method as claimed in claim 1 in which the forming machine is a computerised numerically controlled (CNC) milling machine. 3. A method as claimed in claim 1 in which the forming machine is a computer controlled laser cutter. 4. A method as claimed in any preceding claim in which the computer program enables substantially identical plates to be reproduced within prescribed tolerances to provide musical instruments of predetermined resonance and frequency. 5. A method as claimed in any preceding claim in which the computer program include a spreadsheet of data to produce the range of sizes of musical instruments. 6. A method as claimed in any preceding claim in which the computer program include a spreadsheet of data to produce the range of shapes of musical instruments.<Desc/Clms Page number 12>7. A method as claimed in any preceding claim in which the sheet metal material of the hand plate is an aluminium alloy 8. A method as claimed in any preceding claim in which the plate is surface treated by mechanical abrasion. 9. A method as claimed in any of claims 1 to 7 in which the plate is chemically treated. 10. A method as claimed in any of claims 1 to 7 in which the plate is treated by electrolytic etching. 11. A method as claimed in any of claims 8 to 10 in which the surface treatment of the plate is used to fine tune the note produced by the plate. 12. A method as claimed in any of claims 1 to 7 in which material is added to modify the note produced. 13. A method as claimed in claim 12 in which the material is added by a welding process, 14. A method as claimed in any preceding claim in which material is removed from the plate by milling. 15. A method as claimed in any of claims 1 to 12 in which the material is removed by a drilling process. 16. A method as claimed in any preceding claim in which material is of the plate has a thickness within the range 2mm to 5mm.<Desc/Clms Page number 13>17. An acoustic device consisting of a hand plates produced by a method as claimed in any of the preceding claims. 18. An acoustic device forming a hand plate musical instrument including a clapper mechanism consisting of a pivot means, a clapper head and a rod rigidly connecting the head to the pivot means, characterised in that the pivot means includes friction means for adjusting the rotational friction of a pivot axle. 19, An acoustic device as claimed in claim 18 in which the friction means is screw means acting on one or both ends of the pivot axle. 20. An acoustic device as claimed in claim 18 or 19 in which the pivot axle is rigidly connected to the rod by means of a connecting block of rigid material. 21. An acoustic device as claimed in any of claims 18 to 20 in which the pivot axle passes through the connecting block and is secured thereto by a transverse grub screw engaging with a longitudinal side of the axle. 22. An acoustic device as claimed in any of claims 18 to 21 in which the clapper head consists of a metallic core securely mounted on the end of the clapper rod, and covered with a ball of elastomeric material that is coated with a soft material. 23. An acoustic device as claimed in claim 22 in which the density of the soft material is varied around the striking circumference of the clapper head so that, by rotation of the head on the clapper rod a desired strike effect is produced on the plate.<Desc/Clms Page number 14>24. An acoustic device as claimed in any of claims 18 to 23 in which a bob weight is demountably mounted on the rod. 25. An acoustic device as claimed in claim 24 in which the weight of the bob and the distance of the bob weight from the clapper head is selected and set to provide a desired effective mass of the clapper head to suit individual ringers. 26. An acoustic device as claimed in any of claims 18 to 25 in which a profiled cam is provided at the pivot axle end of the clapper rod and profiled to bear on the plate at an acoustic node. 27. An acoustic device as claimed in claim 26 in which the cam may be rotated to increase or decrease the distance of the clapper head from the plate in a standing condition. 28. An acoustic device as claimed in claim 26 or claim 27 in which the resilience of the material of the cam is selected to obtain the desired reaction to movement of the clapper mechanism. 29. A multi-layer clapper head for an acoustic device for ringing a range of musical notes. 30. A clapper head as claimed in claim 29 in which the ball is spherical. 31. A clapper head as claimed in claim 29 in which the ball is cylindrical. 32. A method for producing hand plate acoustic devices substantially as hereiribefore described with reference to the accompanying drawings.<Desc/Clms Page number 15>33. An acoustic device substantially as hereinbefore described with reference to the accompanying drawings.<Desc/Clms Page number 16>Amendments to the claims have been filed as follows CLAIMS I A method for producing a predetermined pitch acoustic musical instrument device in the form of a hand plate comprising forming the desired shape of the hand plate from a metal sheet of known thickness and material composition by using a forming machine controlled by a programmed computer. 2. A method as claimed in claim 1 in which the forming machine is a computerised numerically controlled (CNC) milling machine. 3. A method as claimed in claim 1 in which the forming machine is a computer controlled laser cutter. 4. A method as claimed in claim 1 in which the computer program enables substantially identical plates to be reproduced within prescribed tolerances to provide musical instruments of predetermined frequency and compatible sustain characteristics. 5. A method as claimed in claim 4 in which the computer program includes a spreadsheet of data to produce the required range of parameters of musical instruments. 6. A method as claimed in claim 5 in which the computer program includes a scaling factor, derived for each given thickness of sheet and derived for each given composition of sheet material, so as to produce a spreadsheet of data to produce a predetermined range of pitches of musical instruments.<Desc/Clms Page number 17>7. A method as claimed in claim 1 in which the sheet metal material of the hand plate is an aluminium alloy. 8. A method as claimed in claim 7 in which the plate is surface treated by mechanical abrasion. 9. A method as claimed in claim 7 in which the plate is chemically treated. 10. A method as claimed in claim 7 in which the plate is treated by electrolytic etching. 11. A method as claimed in any of claim 7 in which the surface treatment of the plate is used to fine tune the note produced by the plate. 12. A method as claimed in claim 11 in which material is added to the plate to modify the note produced. 13. A method as claimed in claim 12 in which the material is added by a welding process. 14. A method as claimed in claim 11 in which material is removed from the plate by milling. 15. A method as claimed in claim 11 in which the material is removed by a drilling process. 16. A method as claimed in claim 1 in which material is of the plate has a thickness within the range 2mm to 5mm.<Desc/Clms Page number 18>17. A method as claimed in claim 1 for producing a predetermined pitch acoustic musical instrument device comprising a metal plate having a first location and a configuration expanding outwardly from the first location in a direction on opposite sides of a first axis extending through the first location, the configuration providing two diverging rectilinear edges of substantially equal length, each said length being a first dimension, and two substantially parallel rectilinear edges of substantially equal length remote from the first location, the substantially parallel edges being spaced one from another at a distance, being a second dimension, along a second axis at right angles to the first axis and crossing the first axis at a second location spaced a distance, being a third dimension, from the first location wherein the first and third dimensions are within a ratio of 0.75 : 1 and 1.25 : 1 and the first and second dimensions are within a ratio of 0.75 : 1 and 2.5 : I such that, when the plate is supported at least as far from the second location as the first location and is subjected to a stimulus, the plate resonates. 18. A method for producing a predetermined pitch acoustic musical instrument device as claimed in claim 17, said device including a clapper mechanism consisting of a pivot means, a clapper head and a rod rigidly connecting the head to the pivot means, characterised in that the pivot means includes friction means for adjusting the rotational friction of a pivot axle. 19. A method for producing a predetermined pitch acoustic musical instrument device as claimed in claim 18 in which the friction means is screw means acting on one or both ends of the pivot axle. 20. A method for producing a predetermined pitch acoustic musical instrument device as claimed in claim 19 in which the pivot axle is rigidly connected to the rod by means of a connecting block of rigid material.<Desc/Clms Page number 19>21. A method for producing a predetermined pitch acoustic musical instrument device as claimed in claim 20 in which the pivot axle passes through the connecting block and is secured thereto by a transverse grub screw engaging with a longitudinal side of the axle. 22. A method for producing a predetermined pitch acoustic musical instrument device as claimed in claim 18 in which the clapper head consists of a metallic core securely mounted on the end of the clapper rod, and covered with a ball of elastomeric material that is coated with a soft material. 23. A method for producing a predetermined pitch acoustic musical instrument device as claimed in claim 22 in which the density of the soft material is varied around the striking circumference of the clapper head so that, by rotation of the head on the clapper rod a desired strike effect is produced on the plate. 24. A method as claimed in claim 18 for producing a predetermined pitch acoustic musical instrume nt device in which a bob weight is demountably mounted on the rod. 25. A method as claimed in claim 24 for producing a predetermined pitch acoustic musical instrument device in which the weight of the bob and the distance of the bob weight from the clapper head is selected and set to provide a desired effective mass of the clapper head to suit individual ringers. 26. A method as claimed in claim 18 in which a profiled cam is provided at the pivot axle end of the clapper rod and profiled to bear on the plate at an acoustic node.<Desc/Clms Page number 20>27. A method as claimed in claim 26 in which the cam may be rotated to vary the distance of the clapper head from the plate in a standing condition. 28. A method as claimed in claim 26 in which the resilience of the material of the cam is selected to obtain the desired reaction to movement of the clapper mechanism. 29. A method as claimed in claim 18 for producing a predetermined pitch acoustic musical instrument device having a multi-layer clapper head. 30. A method as claimed in claim 29 for producing a predetermined pitch acoustic musical instrument device having a multi-layer spherical clapper head. 31. A method as claimed in claim 29 for producing a predetermined pitch acoustic musical instrument device having a multi-layer cylindrical clapper head. 32. A method for producing a predetermined pitch acoustic musical instrument device in the form of a hand plate substantially as herein described with reference to the accompanying drawings. 33. An acoustic musical instrument device in the form of a hand plate made by a method as claimed in any preceding claim.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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GB0017428A GB2365615A (en) | 2000-07-14 | 2000-07-14 | Hand plate musical instrument |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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GB0017428A GB2365615A (en) | 2000-07-14 | 2000-07-14 | Hand plate musical instrument |
Publications (2)
Publication Number | Publication Date |
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GB0017428D0 GB0017428D0 (en) | 2000-08-30 |
GB2365615A true GB2365615A (en) | 2002-02-20 |
Family
ID=9895739
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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GB0017428A Withdrawn GB2365615A (en) | 2000-07-14 | 2000-07-14 | Hand plate musical instrument |
Country Status (1)
Country | Link |
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GB (1) | GB2365615A (en) |
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---|---|---|---|---|
GB2123579A (en) * | 1982-04-30 | 1984-02-01 | Murata Machinery Ltd | A cutting system for sheet material |
US4466069A (en) * | 1981-07-24 | 1984-08-14 | C-R-O, Inc. | Flame cutting machine with lost cut re-establishment |
GB2238420A (en) * | 1989-11-09 | 1991-05-29 | Maurice Peter Davies | Acoustic device |
EP0451479A2 (en) * | 1990-04-12 | 1991-10-16 | Hans Heid Ag Holzbearbeitungs-Maschinen | Machining centre for flat, platelike workpieces |
US5122964A (en) * | 1989-05-01 | 1992-06-16 | Nusco Co. Ltd. | Rotary shear line |
EP0554523A1 (en) * | 1992-02-03 | 1993-08-11 | Matsushita Electric Industrial Co., Ltd. | Laser beam machining apparatus and method for adjusting the height of its condenser lens |
-
2000
- 2000-07-14 GB GB0017428A patent/GB2365615A/en not_active Withdrawn
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4466069A (en) * | 1981-07-24 | 1984-08-14 | C-R-O, Inc. | Flame cutting machine with lost cut re-establishment |
GB2123579A (en) * | 1982-04-30 | 1984-02-01 | Murata Machinery Ltd | A cutting system for sheet material |
US5122964A (en) * | 1989-05-01 | 1992-06-16 | Nusco Co. Ltd. | Rotary shear line |
GB2238420A (en) * | 1989-11-09 | 1991-05-29 | Maurice Peter Davies | Acoustic device |
EP0451479A2 (en) * | 1990-04-12 | 1991-10-16 | Hans Heid Ag Holzbearbeitungs-Maschinen | Machining centre for flat, platelike workpieces |
EP0554523A1 (en) * | 1992-02-03 | 1993-08-11 | Matsushita Electric Industrial Co., Ltd. | Laser beam machining apparatus and method for adjusting the height of its condenser lens |
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GB0017428D0 (en) | 2000-08-30 |
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