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US1249654A - Electromagnetic blower. - Google Patents

Electromagnetic blower. Download PDF

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Publication number
US1249654A
US1249654A US16220017A US16220017A US1249654A US 1249654 A US1249654 A US 1249654A US 16220017 A US16220017 A US 16220017A US 16220017 A US16220017 A US 16220017A US 1249654 A US1249654 A US 1249654A
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Prior art keywords
piston
cylinder
air
current
blower
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US16220017A
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Eugen Konrad Mueller
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B35/00Piston pumps specially adapted for elastic fluids and characterised by the driving means to their working members, or by combination with, or adaptation to, specific driving engines or motors, not otherwise provided for
    • F04B35/04Piston pumps specially adapted for elastic fluids and characterised by the driving means to their working members, or by combination with, or adaptation to, specific driving engines or motors, not otherwise provided for the means being electric
    • F04B35/045Piston pumps specially adapted for elastic fluids and characterised by the driving means to their working members, or by combination with, or adaptation to, specific driving engines or motors, not otherwise provided for the means being electric using solenoids

Definitions

  • This invention relates to an electromagnetic blower for the production of a pulsating air current.
  • the blower according to this invention comprises a piston moving in a magnetic field of varying strength, said piston being either attracted or repelled by the electromagnetic influence.
  • This piston is suspe11ded in a resilient manner and it works in a cylinder open at one end and provided at the opposite end with an outlet opening for the air.
  • Figure 1 is a side view of a first embodiment Fig. :2 is a front view or a detail of this embodiment.
  • Fi e. 3 to 10 show partly in section modifications of details of this embodiment.
  • Fig. 12 shows a further embodiment in which the cylinder as well as the piston are arranged in a movable manner and Fig. 18 is a section onthe line XIII-Jilin of Fig. 12. a
  • Tn carrying the invention into effect as shown in Figs. 1 and 2 ll provide a magnet coil 1 connected to a source of current 2, which generates a waving current of varying intensity.
  • This current may be either alternating current or continuous current.
  • FIG. 3 denotes a laminated core surrounded by the magnet coil 1 and made oi a paramag netic material.
  • a cylinder 4 disposed in front of coil 1 is arranged coaxially to the latter. The distance between cylinder at and coil 1 remains constant and this cylinder is secured to a stationary part 8 by means of three adjusting screws 9.
  • the rear side oi the cylinder d is provided with a recess 6 for the piston 5 while an aperture or open ing 7 for the outlet of the air is arranged in the middle of the front sideot this cylinder.
  • the piston 5 is disk-shaped and it consists of a magnetic material, so that it may be either attracted or repelled by the mag netic influence generated by the coil 1.
  • the connection of this piston to the part 8 is such, that said piston is capable of carrying out an oscillating movement.
  • T connect the ends of three springs 10, each two of which inclose an angle of 120, which )rojcctbeyond the piston 5 to the adjusting bolts 9, while the other ends of said springs are connected to the middle of the rear side of piston
  • the diameter of piston 5 is only a little smaller thanthe diameter oi the recess 6, so that only a small play is provided between the rim of the piston and the periphery of recess 6.
  • the piston is mounted in such a manner, that only a small portion of it comes to lie outside cylinder l.
  • the end face oi this piston 5 lying in the cylinder t is provided with an annular groove 11.
  • the current generated by the source 2 is, for instance, an alternating current of 100periods
  • the piston 5 is forced to move in accordance with these periods, so that it carries out a corresponding number of strokes in the cylinder
  • the magnetic field air is sucked into the recess 6 of cylinder 41', said air being again expelled through the opening 7 upon the return movement of the piston.
  • the produced air impulses succeed one another in such a rapid manner that a continuous pulsating air current is obtained.
  • the effectof the blower may be varied in a convenient manner by changing by means of'the springs, the natural number of oscillations of the-piston 5 andthe number of oscillations of the magnetic field is so com bined with the number of oscillations of the piston, suspended at three points in a resilient manner, that a maximum of efiicicncy is jobtained.
  • the aperture 7 forms the inlet as well as the outlet for the air sucked into the cylinder 4.
  • An automatic heating of the air may be prevented when the piston made of a diamagnetic metal is subdivided in a suitable manner.
  • Any desired temperature may be given to the air in the cylinder a by arranging in the latter heating coils 12 (Fig.
  • I may also provide on the piston a wire coil 14, which may be connected-to the same or to another source of current. Inthis case it is then possible to obtain' a movement of the piston, due to an attraction or a repelling of the latter by means of a suitable arrangement of the parts.
  • the holes 15 of this piston may be filled with a material, which is not influenced by the magnetism but which is permeable to magnetism, in order to obtain in front of the piston a partial simultaneous spreading out of the magnetic field, of which I may make use.
  • the piston 5 may also be formed of a plurality of concentric rings (Figs. 8 and 9), which consist alternately of a material adapted to be influenced by mag netism and of a material which cannot be energized by magnetism but which is permeable to the latter.
  • I may provide in thepiston 5 at least one opening 16 (Fig. 10) adapted to be field and the piston of a metal attracted by said field.
  • a double effect is attained when use is made of both end-faces of the electromagnet and when a blower, according to this invention, is arranged'opposite each of said faces.
  • a blower according to this invention, is arranged'opposite each of said faces.
  • Such a'construction is shown in Fig. 11;
  • I may use the effect of each blower, separately or the effect of both pumps or blowers may be combined, for instance, in such a manner, that on one side a-cold and on the other side a arm pulsating air-current is obtained. These currents may then be guided in suitable conduits to the place where use of these currents has to be made.
  • the cylinder ' may also be made of a material, which is varying strength, a cylinder open at one end and provided with an opening, a piston em ite adapted to be influenced by said magnetic field and working in said cylinder, a stationary member and means for resiliently suspending said piston on the latter,
  • An electromagnetic blower adapted to generate a pulsating air-current, comprising means for generating a magnetic field of varying strength, a cylinder open at one end and provided with an opening, a piston adapted to be influenced by said magnetic field and Working in said cylinder, a stationary member, means for resiliently suspending said piston on the latter and means adapted to heat the air before it is forced out of the cylinder.
  • An electromagnetic blower adapted to generate a pulsating air-current, comprising means for generating a magnetic iield oi varying strength, a cylinder open at one end and provided with an opening, a piston adapted to be influenced by said magnetic field and working in said cylinder, said piston being made of a metal adapted to be heated in consequence of: hysteresis, a stationary member, and means for suspending said piston on the latter.
  • An electromagneticblower adapted to generate a pulsating air-current, comprising means for generating a magnetic held of varying strength, a cylinder provided with tit a recess and an opening in the trout wall oi the cylinder communicating with said recess, a piston adapted to be influenced by said magnetic held and working in said recess, a stationary member and springs connected at one end to the piston and at the other end to said member, the piston be ing thus suspended. in a resilient manner on said member.
  • An electromagnetic blower adapted to generate a pulsating air-current, comprising means for generating a magnetic held of varying strength, a cylinder provided with a recess and an opening in the front wall. of the cylinder communicating with. said recess, a piston adapted to he influenced by said magnetic held and working in said recess, an opening in the piston adapted to connnnnicate with the recess in the cylinder, a member adapted to cover the last mentinned opening and made of a diamagnetic material, the piston consisting ot a paras magnetic material, so that said member may be actuated automatically by the electro magnetic influence, a stationary member, and means for resiliently suspending said piston on the latter.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Reciprocating, Oscillating Or Vibrating Motors (AREA)

Description

E K. MULLER. ELECTROMAGNETIC BLOWER. APPLICATION FILED APR. 34. 19!? Patented Dec. 11, 1917.
2 SHEETS-SHEET I- .1 I m W; .04 ,nn EB Um U M KM. n00 E n mm m IL W A Patented Dec. 11,1917.
AV//%A\ @7 nnennr nonnnn MfiLLElt, or irrncnenns, swrranntann.
ELECTROMAGNETIC BLOWER.
Specification of Letters Patent.
Patented en. 11, 1am,
.lltppfication filed. April It, 1915?. serial lilo. 162,200.
To all whom it may concern:
residing at Kilchberg, Canton of Zurich,
Switzerland, have invented certain new and useful Improvements in Electromagnetic Blowers; and T do hereby declare the following to be a "full, clear, and exact dcscrlptlon of the invention, such as will enable others skilled in the art to which it appertains to make and use the same, reference being had to the accompanying drawings, and to letters or figures of reference marked thereon, which form a part of this specification.
This invention relates to an electromagnetic blower for the production of a pulsating air current.
The blower according to this invention comprises a piston moving in a magnetic field of varying strength, said piston being either attracted or repelled by the electromagnetic influence. This piston is suspe11ded in a resilient manner and it works in a cylinder open at one end and provided at the opposite end with an outlet opening for the air. EXPQIlBllCGllitS shown, that 1t 1s advantageous to regulate the vibrations of the magnetic held to the number of natural oscillations of the resiliently suspended piston in such a manner, that their combination gives the highest efliciency with regard to the produced air current.
This invention will now be more particularly described with reference to the accompanying drawings, which illustrate several constructional examples of the invention.
lln these drawings:
Figure 1 is a side view of a first embodiment Fig. :2 is a front view or a detail of this embodiment.
Fi e. 3 to 10 show partly in section modifications of details of this embodiment.
lBig. it shows an embodiment for the pro duction of a double effect, p
Fig. 12 shows a further embodiment in which the cylinder as well as the piston are arranged in a movable manner and Fig. 18 is a section onthe line XIII-Jilin of Fig. 12. a
Tn carrying the invention into effect as shown in Figs. 1 and 2 ll provide a magnet coil 1 connected to a source of current 2, which generates a waving current of varying intensity. This current may be either alternating current or continuous current.
3 denotes a laminated core surrounded by the magnet coil 1 and made oi a paramag netic material. A cylinder 4 disposed in front of coil 1 is arranged coaxially to the latter. The distance between cylinder at and coil 1 remains constant and this cylinder is secured to a stationary part 8 by means of three adjusting screws 9. I prefer to choose for this cylinder i a material, which is not influenced by the magnetism. finch a material is, for instance, marble. The rear side oi the cylinder d is provided with a recess 6 for the piston 5 while an aperture or open ing 7 for the outlet of the air is arranged in the middle of the front sideot this cylinder. The piston 5 is disk-shaped and it consists of a magnetic material, so that it may be either attracted or repelled by the mag netic influence generated by the coil 1. The connection of this piston to the part 8 is such, that said piston is capable of carrying out an oscillating movement. For this purpose T connect the ends of three springs 10, each two of which inclose an angle of 120, which )rojcctbeyond the piston 5 to the adjusting bolts 9, while the other ends of said springs are connected to the middle of the rear side of piston The diameter of piston 5 is only a little smaller thanthe diameter oi the recess 6, so that only a small play is provided between the rim of the piston and the periphery of recess 6. The piston is mounted in such a manner, that only a small portion of it comes to lie outside cylinder l. The end face oi this piston 5 lying in the cylinder t is provided with an annular groove 11.
As soon as a current o f varying strength and oil a wavy character flows through coil 1, a waving magnetic field is generated, the
strength of which varies in the same manner as the strength of the current. The core 3 of paramagnetm materlal, which isnot absolutely necessary for the working of the the magnetic field the piston 5 original position. WVhen the change of the magnetic field is effected in a quick manner the oscillation carried out by the piston 5 ensues in a corresponding quick manner and even a springing in the opposite direction.
then takes place. Then the current generated by the source 2 is, for instance, an alternating current of 100periods, the piston 5 is forced to move in accordance with these periods, so that it carries out a corresponding number of strokes in the cylinder Upon'an attraction of the piston bythe magnetic field air is sucked into the recess 6 of cylinder 41', said air being again expelled through the opening 7 upon the return movement of the piston. Owing to the great numberof strokes carried out in the unit of time, the produced air impulses succeed one another in such a rapid manner that a continuous pulsating air current is obtained. The effectof the blower may be varied in a convenient manner by changing by means of'the springs, the natural number of oscillations of the-piston 5 andthe number of oscillations of the magnetic field is so com bined with the number of oscillations of the piston, suspended at three points in a resilient manner, that a maximum of efiicicncy is jobtained. In the embodiment shown in Figs. 1 and 2 the aperture 7 forms the inlet as well as the outlet for the air sucked into the cylinder 4.
' In consequence of the wavy character of shown will be heated owing to the hysteresis which takes place, and it transmits this heat to the air in the'cylinder 4, so that the pulsating currentflowing out through the opening 4 is warm.' d
An automatic heating of the air may be prevented when the piston made of a diamagnetic metal is subdivided in a suitable manner.
Any desired temperature may be given to the air in the cylinder a by arranging in the latter heating coils 12 (Fig.
' 3) or cooling pipes 13 (Fig. 4).
Whenlthe' piston is made of aparamagnetic material, for instance iron, the movement of the piston is efiected owing to an attraction of'it, while when'said piston is 'made of aluminium, copper or a similar non magnetic material it is repelled by the elec- 'tromagnetl In both cases, a pumping action is, however, brought about, so that the air isforced-out off the cylinder.
As shown in Fig. 5, I may also provide on the piston a wire coil 14, which may be connected-to the same or to another source of current. Inthis case it is then possible to obtain' a movement of the piston, due to an attraction or a repelling of the latter by means of a suitable arrangement of the parts.
' According to the. embodiment shown 1n Fig. 6 and 1n Fig. i, which latter 1s a crosssection of'Fig. 6, the blower-piston 5 is'persame time through both these parts.
forated. The holes 15 of this piston may be filled with a material, which is not influenced by the magnetism but which is permeable to magnetism, in order to obtain in front of the piston a partial simultaneous spreading out of the magnetic field, of which I may make use. Instead of having such perforations 15 the piston 5 may also be formed of a plurality of concentric rings (Figs. 8 and 9), which consist alternately of a material adapted to be influenced by mag netism and of a material which cannot be energized by magnetism but which is permeable to the latter.
It is not necessary to suck the air in from the front side through the opening 7; it may as well be sucked in from the rear side through the oscillating piston, or at the To this end I may provide in thepiston 5 at least one opening 16 (Fig. 10) adapted to be field and the piston of a metal attracted by said field.
A double effect is attained when use is made of both end-faces of the electromagnet and when a blower, according to this invention, is arranged'opposite each of said faces. Such a'construction is shown in Fig. 11; In this case I may use the effect of each blower, separately or the effect of both pumps or blowers may be combined, for instance, in such a manner, that on one side a-cold and on the other side a arm pulsating air-current is obtained. These currents may then be guided in suitable conduits to the place where use of these currents has to be made.
It has also to be noted, that the cylinder 'may also be made of a material, which is varying strength, a cylinder open at one end and provided with an opening, a piston em ite adapted to be influenced by said magnetic field and working in said cylinder, a stationary member and means for resiliently suspending said piston on the latter,
2. An electromagnetic blower adapted to generate a pulsating air-current, comprising means for generating a magnetic field of varying strength, a cylinder open at one end and provided with an opening, a piston adapted to be influenced by said magnetic field and Working in said cylinder, a stationary member, means for resiliently suspending said piston on the latter and means adapted to heat the air before it is forced out of the cylinder.
3. An electromagnetic blower adapted to generate a pulsating air-current, comprising means for generating a magnetic iield oi varying strength, a cylinder open at one end and provided with an opening, a piston adapted to be influenced by said magnetic field and working in said cylinder, said piston being made of a metal adapted to be heated in consequence of: hysteresis, a stationary member, and means for suspending said piston on the latter.
l. An electromagneticblower adapted to generate a pulsating air-current, comprising means for generating a magnetic held of varying strength, a cylinder provided with tit a recess and an opening in the trout wall oi the cylinder communicating with said recess, a piston adapted to be influenced by said magnetic held and working in said recess, a stationary member and springs connected at one end to the piston and at the other end to said member, the piston be ing thus suspended. in a resilient manner on said member.
An electromagnetic blower adapted to generate a pulsating air-current, comprising means for generating a magnetic held of varying strength, a cylinder provided with a recess and an opening in the front wall. of the cylinder communicating with. said recess, a piston adapted to he influenced by said magnetic held and working in said recess, an opening in the piston adapted to connnnnicate with the recess in the cylinder, a member adapted to cover the last mentinned opening and made of a diamagnetic material, the piston consisting ot a paras magnetic material, so that said member may be actuated automatically by the electro magnetic influence, a stationary member, and means for resiliently suspending said piston on the latter.
lln testimony that I claim the foregoing as my invention, l have signed my name.
Elltlrlthl l lUliltrtll MULLER.
@epies of this patent may be obtained for five cents each, by addressing the flemmissioner of Patents, Washington, ll, 0.
US16220017A 1917-04-14 1917-04-14 Electromagnetic blower. Expired - Lifetime US1249654A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2678202A (en) * 1949-08-03 1954-05-11 Brake Leslie Harold Improvements in and relating to apparatus for generating gas
US2722180A (en) * 1950-05-12 1955-11-01 Oran T Mcilvaine Fuel burners
US2791394A (en) * 1952-08-18 1957-05-07 Milwaukee Gas Specialty Co Control device for fluid fuel burning apparatus and the like
DE971137C (en) * 1951-08-03 1958-12-18 Alfred Zeh Dipl Ing Method for operating an electromagnetic vibration compressor

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2678202A (en) * 1949-08-03 1954-05-11 Brake Leslie Harold Improvements in and relating to apparatus for generating gas
US2722180A (en) * 1950-05-12 1955-11-01 Oran T Mcilvaine Fuel burners
DE971137C (en) * 1951-08-03 1958-12-18 Alfred Zeh Dipl Ing Method for operating an electromagnetic vibration compressor
US2791394A (en) * 1952-08-18 1957-05-07 Milwaukee Gas Specialty Co Control device for fluid fuel burning apparatus and the like

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