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    • 2. 发明专利
    • DE69516112D1
    • 2000-05-11
    • DE69516112
    • 1995-01-10
    • ANDERSSON LARSANDERSSON STEFAN
    • ANDERSSON STEFAN
    • A63B69/00A63B24/00A63B69/32A63B69/34G01L5/00
    • PCT No. PCT/SE95/00013 Sec. 371 Date Jul. 5, 1996 Sec. 102(e) Date Jul. 5, 1996 PCT Filed Jan. 10, 1995 PCT Pub. No. WO95/18655 PCT Pub. Date Jul. 13, 1995A dummy which is constructed to register blows inflicted thereon, wherein the dummy includes one or more sensors at the location or those locations on the dummy where a blow or blows delivered thereto shall be registered, and wherein the sensor or sensors is/are adapted to deliver an electric signal to a computer. The sensor (3, 13, 14) includes a pressure sensor (5) which is adapted to deliver an electric signal which corresponds to the pressure generated in the pressure sensor in response to a blow landing on said sensor; and in that the surface of the sensor (3, 13, 14) parallel with the dummy surface on which the sensor is attached is divided into two or more sections (4), where each section (4) is adapted to deliver an electric signal when the blow lands on the section concerned.
    • 3. 发明专利
    • AT191356T
    • 2000-04-15
    • AT95906579
    • 1995-01-10
    • ANDERSSON LARSANDERSSON STEFAN
    • ANDERSSON STEFAN
    • A63B69/00A63B24/00A63B69/32A63B69/34G01L5/00
    • PCT No. PCT/SE95/00013 Sec. 371 Date Jul. 5, 1996 Sec. 102(e) Date Jul. 5, 1996 PCT Filed Jan. 10, 1995 PCT Pub. No. WO95/18655 PCT Pub. Date Jul. 13, 1995A dummy which is constructed to register blows inflicted thereon, wherein the dummy includes one or more sensors at the location or those locations on the dummy where a blow or blows delivered thereto shall be registered, and wherein the sensor or sensors is/are adapted to deliver an electric signal to a computer. The sensor (3, 13, 14) includes a pressure sensor (5) which is adapted to deliver an electric signal which corresponds to the pressure generated in the pressure sensor in response to a blow landing on said sensor; and in that the surface of the sensor (3, 13, 14) parallel with the dummy surface on which the sensor is attached is divided into two or more sections (4), where each section (4) is adapted to deliver an electric signal when the blow lands on the section concerned.
    • 6. 发明专利
    • SE9400047L
    • 1995-07-12
    • SE9400047
    • 1994-01-11
    • ANDERSSON STEFANLARS ANDERSSON
    • ANDERSSON STEFAN
    • A63B24/00A63B69/00A63B69/32A63B69/34G01L5/00
    • PCT No. PCT/SE95/00013 Sec. 371 Date Jul. 5, 1996 Sec. 102(e) Date Jul. 5, 1996 PCT Filed Jan. 10, 1995 PCT Pub. No. WO95/18655 PCT Pub. Date Jul. 13, 1995A dummy which is constructed to register blows inflicted thereon, wherein the dummy includes one or more sensors at the location or those locations on the dummy where a blow or blows delivered thereto shall be registered, and wherein the sensor or sensors is/are adapted to deliver an electric signal to a computer. The sensor (3, 13, 14) includes a pressure sensor (5) which is adapted to deliver an electric signal which corresponds to the pressure generated in the pressure sensor in response to a blow landing on said sensor; and in that the surface of the sensor (3, 13, 14) parallel with the dummy surface on which the sensor is attached is divided into two or more sections (4), where each section (4) is adapted to deliver an electric signal when the blow lands on the section concerned.
    • 9. 发明专利
    • FOUNDATION SPACER
    • IN2825DEN2015A
    • 2015-09-11
    • IN2825DEN2015
    • 2015-04-06
    • ANDERSSON STEFAN
    • ANDERSSON STEFAN
    • E04C5/16E04C5/20
    • Stackable foundation spacer adapted for automated distribution using a feeder device and adapted to support a reinforcement grid , where the foundation spacer comprises a lower bearing surface adapted to be placed on a foundation support surface for the concrete , a first support surface adapted to support the reinforcement grid in a plurality of support points , and an outer circumferential side wall connecting the lower bearing surface with the first support surface , where the outer circumferential side wall is inclined outwards from the lower bearing surface to the first support surface with an angle a, and where the shape of the first support surface is larger than a mesh in the reinforcement grid that is to be supported. The advantage of the invention is that the distribution of foundation spacers can be automated by using a hand -held or automatic feeder device for the distribution. Further , a reinforcement grid can be supported by a foundation spacer regardless of the position of the spacer. A further advantage is that the spacer is stackable.