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    • 2. 发明授权
    • Stratified insole for the internal ventilation and control of the microclimate of a shoe
    • 分层鞋垫,用于内部通风和控制鞋的微气候
    • US07024803B2
    • 2006-04-11
    • US10799584
    • 2004-03-15
    • Angelo Basso
    • Angelo Basso
    • A43B7/06A43B7/08A43B13/20
    • A43B13/386A43B7/08
    • A stratified insole for the internal ventilation and the control of the microclimate of a shoe of the type including a sole, if necessary provided with holes intercommunicating with the inside of the shoe, in correspondence with the internal side of which a ventilated stratified insole is joined. The insole is composed of at least one layer of thermoplastic material whose upper interface is shaped with a plurality of channels and is positioned above the upper part of a layer of transpiring material for the support of the sole of the foot. The insole is peripherally shaped according to the shape of the sole of the foot and is obtained by connecting a first layer made from transpiring rigid or semi-rigid material, a second layer made from insulating material, a third layer made from insulating material, and a fourth layer made from transpiring material.
    • 用于内部通风的分层鞋底和对包括鞋底的鞋类的微气候的控制,如果必要,则设置有与鞋内部相通的孔,对应于内部通风的分层鞋垫的内侧 。 鞋垫由至少一层热塑性材料组成,其上部界面形成有多个通道,并且位于一层蒸发材料的上部上方,用于支撑脚底。 鞋垫根据鞋底的形状外围成形,通过连接由蒸发的刚性或半刚性材料制成的第一层,由绝缘材料制成的第二层,由绝缘材料制成的第三层和 由蒸发材料制成的第四层。
    • 3. 发明申请
    • Stratified insole for the internal ventilation and control of the microclimate of a shoe
    • 分层鞋垫,用于内部通风和控制鞋的微气候
    • US20050198859A1
    • 2005-09-15
    • US10799584
    • 2004-03-15
    • Angelo Basso
    • Angelo Basso
    • A43B5/00
    • A43B13/386A43B7/08
    • A stratified insole for the internal ventilation and the control of the microclimate of a shoe of the type including a sole, if necessary provided with holes intercommunicating with the inside of the shoe, in correspondence with the internal side of which a ventilated stratified insole is joined. The insole is composed of at least one layer of thermoplastic material whose upper interface is shaped with a plurality of channels and is positioned above the upper part of a layer of transpiring material for the support of the sole of the foot. The insole is peripherally shaped according to the shape of the sole of the foot and is obtained by connecting a first layer made from transpiring rigid or semi-rigid material, a second layer made from insulating material, a third layer made from insulating material, and a fourth layer made from transpiring material.
    • 一种用于内部通风的分层鞋内底,并且包括鞋底的鞋类的微气候的控制(如果需要的话)设置有与鞋的内部相通的孔,对应于通风的分层鞋内底的内侧 。 鞋垫由至少一层热塑性材料组成,其上部界面形成有多个通道,并且位于一层蒸发材料的上部上方,用于支撑脚底。 鞋垫根据鞋底的形状外围成形,通过连接由蒸发的刚性或半刚性材料制成的第一层,由绝缘材料制成的第二层,由绝缘材料制成的第三层和 由蒸发材料制成的第四层。
    • 5. 发明授权
    • Flow-adjusting device for a liquid, in particular a painting product
    • 用于液体的流量调节装置,特别是喷漆产品
    • US06899125B2
    • 2005-05-31
    • US10319465
    • 2002-12-16
    • Dario ElleroGianmarco VercellisAngelo Basso
    • Dario ElleroGianmarco VercellisAngelo Basso
    • G05D16/06G05D16/02
    • G05D16/0663Y10T137/7826Y10T137/8085
    • The flow-adjusting device comprises: a housing (2) having an inlet channel (4) and an outlet channel (5) to be connected with respective pipes (6) through which a liquid is caused to flow, a closure assembly (7) arranged in the housing (2) between the inlet and outlet channels (4, 5) for drivingly adjusting the flow of the liquid, and a deformable diaphragm (3), deformation of which takes place in proportion to the liquid pressure in the outlet channel (5) and which is active on the closure assembly (7). The device also comprises a hollow body (15) internally bounding a storage chamber (16) disposed between the inlet and the outlet channels (4, 5), the storage chamber (16) having a lower portion (16a) to be engaged by the liquid and an upper portion (16b) defining an air-tight region wherein air under pressure is stored under the effect of increasing pressure of the liquid and causes recirculation of the liquid on decreasing of the liquid pressure.
    • 流量调节装置包括:壳体(2),具有入口通道(4)和出口通道(5),所述出口通道(5)与相应的管道(6)连通,液体通过所述管道流动;封闭组件(7) 布置在入口和出口通道(4,5)之间的壳体(2)中,用于驱动地调节液体的流动;以及可变形隔膜(3),其变形与出口通道中的液体压力成比例地发生 (5)并且其在所述闭合组件(7)上是活动的。 该装置还包括内部限定设置在入口和出口通道(4,5)之间的储存室(16)的中空本体(15),储存室(16)具有下部(16a) 液体和限定气密区域的上部部分(16b),其中在压力下的空气在液体压力增加的作用下储存,并且在液体压力降低时导致液体的再循环。
    • 6. 发明授权
    • Pumping device
    • 抽水装置
    • US08313313B2
    • 2012-11-20
    • US12319829
    • 2009-01-13
    • Karsten JüterbockDaniele FoffanoAngelo BassoDavide Galvani
    • Karsten JüterbockDaniele FoffanoAngelo BassoDavide Galvani
    • F04B45/00F04B17/00
    • F04B43/0736F04B43/009
    • A pumping device (1) by which fluids held in a reservoir tank (9) can be pumped to a spray gun (11) in a metered manner, with a piston rod (5) mounted in a housing (2) in axially movable fashion, with a reciprocating piston (25) attached thereto, with a piston (7, 8) connected to the piston rod (5) and moved between a first and a second housing sections (3, 4), first and second pressure spaces (21,21′, 22, 22′) enclosed with the two housing sections (3,4), two pressure lines (17, 17′) in each of the housing sections (3, 4) such that emerge into one of the pressure spaces (21, 21′ or 22,22′), a working medium (19) pressed through pressure lines (17, 17′) alternately into a pressure space, by means of which the piston (7, 8) is driven, with a diaphragm a central area (14) connected to the piston rod (5), and its outer area (15) connected to the housing (2), and a flexible ring area (16) between the central and outer areas (14, 15), and a pumping space (20) enclosed by the diaphragm (12, 13) and the housing (2), into which the fluid is alternately sucked in or pressed out towards the spray gun (11) by the axial movement of the piston (25), to determine the sealing status of the diaphragm (12, 13) so as to prevent contamination passing between the fluid (10) and hydraulic oil (19), a control space (31) formed between a housing section (3) and a diaphragm (12,13), and can be monitored.
    • 泵送装置(1)通过其将保存在储存罐(9)中的流体以计量方式泵送到喷枪(11)中,其中活塞杆(5)以轴向可移动的方式安装在壳体(2) 具有连接到其上的往复活塞(25),具有连接到活塞杆(5)并在第一和第二壳体部分(3,4),第一和第二压力空间(21)之间移动的活塞(7,8) ,21',22,22'),两个壳体部分(3,4),每个壳体部分(3,4)中的两个压力线(17,17'),以便出现在一个压力空间 (21,21'或22,22'),工作介质(19)通过压力管线(17,17')交替地压入压力空间中,通过该压力空间驱动活塞(7,8),其中 连接到活塞杆(5)的中心区域(14)和连接到壳体(2)的外部区域(15)以及在中心区域和外部区域(14,15)之间的柔性环区域(16) ,以及由直径包围的泵送空间(20) (12,13)和壳体(2),流体被活塞(25)的轴向运动交替地吸入或挤出到喷枪(11)中,以确定隔膜的密封状态 (12,13),以防止流体(10)和液压油(19)之间的污染通过,形成在壳体部分(3)和隔膜(12,13)之间的控制空间(31),并且可以是 监控。
    • 8. 发明授权
    • Diaphragm pump
    • 隔膜泵
    • US08123500B2
    • 2012-02-28
    • US11400581
    • 2006-04-07
    • Karsten JüterbockAngelo Basso
    • Karsten JüterbockAngelo Basso
    • F04B45/053F04B43/06
    • F04B43/0736F04B9/113
    • In a diaphragm pump with two diaphragms disposed in a pump housing and actuated by an adjusting piston which can be acted on alternately and which is arranged in between the diaphragms, the diaphragms are fixed with curvatures facing one another, or a curvature facing away from one another, and two reaction spaces are formed between the diaphragms and a cylinder, the reaction spaces accommodating the adjusting piston and being filled with a hydraulic medium and connected together in a constrained arrangement by means of hydraulic linkage lines. Both diaphragms remain in position and do not fold over during a transition from a suction stroke to a pressure stroke, because the diaphragms are continuously in contact with the hydraulic lines and are thereby fixed in place, so that the diaphragms are not subjected to alternating loadings.
    • 在具有两个隔膜的隔膜泵中,两个隔膜设置在泵壳体中并且由调节活塞致动,调节活塞可以交替地作用并且布置在隔膜之间,隔膜固定有彼此面对的曲率或者相对于一个 在隔膜和气缸之间形成另外两个反应空间,反应空间容纳调节活塞并充满液压介质,并通过液压联动线以受约束的方式连接在一起。 由于隔膜与液压管线连续接触,因此两个隔膜保持在适当的位置,并且在从吸入行程到压力冲程的过渡期间不折叠,从而固定在适当位置,使得隔膜不经受交替负载 。
    • 9. 发明申请
    • Pumping device
    • US20090196771A1
    • 2009-08-06
    • US12319829
    • 2009-01-13
    • Karsten JuterbockDaniele FoffanoAngelo BassoDavide Galvani
    • Karsten JuterbockDaniele FoffanoAngelo BassoDavide Galvani
    • F04B17/00
    • F04B43/0736F04B43/009
    • In a pumping device (1) by means of which fluids (10) or pourable media held in a reservoir tank (9) can be pumped to a spray gun (11) in a metered manner, with a piston rod (5) mounted in a housing (2) in an axially movable fashion, with a reciprocating piston (25) attached to its free end, with a piston (7, 8) firmly connected to the piston rod (5) that can be moved between a first and a second housing section (3, 4), and by means of which a first and a second pressure space (21, 21′, 22, 22′) is each enclosed together with the two housing sections (3, 4), with two pressure lines (17, 17′) worked into one each of the two housing sections (3, 4) in such a way that they emerge into one of the two pressure spaces (21, 21′ or 22, 22′), with a working medium (19) pressed through the pressure lines (17, 17′) alternately into the particular pressure space (21, 21′, 22, 22′), by means of which the piston (7, 8) can be driven, with a diaphragm (12, 13) with a central area (14) firmly connected to the piston rod (5) and its outer area (15) firmly connected to the housing (2), and with its flexible ring area (16) provided between the central and the outer areas (14, 15) configured as a compensation and sealing element, and with a pumping space (20) enclosed by the diaphragm (12, 13) and the housing (2), into which the fluid (10) or material is alternately sucked in or pressed out towards the spray gun (11) by the axial movement of the reciprocating piston (25), it should be possible reliably to determine the sealing status of the diaphragm (12, 13) inserted in the pumping device (1) permanently or at least from time to time, in order to be able to shut off the pumping device (1) if necessary if the diaphragm (12, 13) is damaged, so as to prevent contamination or impurities passing between the fluid (10) or material and the hydraulic oil (19).This is achieved in that a control space (31) is formed between the second housing section (3) and the diaphragm (12, 13) in which a negative pressure prevails, and that the negative pressure status of the control space (31) can be monitored from the outside.
    • 10. 发明申请
    • Diaphragm pump
    • 隔膜泵
    • US20060257271A1
    • 2006-11-16
    • US11400581
    • 2006-04-07
    • Karsten JuterbockAngelo Basso
    • Karsten JuterbockAngelo Basso
    • F04B43/06
    • F04B43/0736F04B9/113
    • In a diaphragm pump with two diaphragms inserted in a pump housing which can be actuated by means of an adjusting piston which can be acted on alternately and which is arranged in between the diaphragms, the diaphragms are clamped with a curvature facing one another or a curvature facing away from one another, and the two reaction spaces formed between the diaphragms and a cylinder accommodating the adjusting piston are filled with a hydraulic medium and connected together in a constrained arrangement by means of a hydraulic linkage. This embodiment means that both diaphragms always remain in the specified installation position and do not fold over during the transition from a suction stroke to a pressure stroke. This is because the diaphragms are always in contact with the hydraulic linkage and are thereby fixed in place, so that the diaphragms are not subjected to alternating loadings.
    • 在具有插入泵壳体中的两个隔膜的隔膜泵中,该隔膜泵可以通过可以交替地作用并且布置在隔膜之间的调节活塞来致动,所述隔膜以彼此面对的曲率或曲率 并且形成在隔膜和容纳调节活塞的气缸之间的两个反应空间填充有液压介质,并且通过液压连杆以受约束的方式连接在一起。 该实施例意味着两个膜片总是保持在指定的安装位置,并且在从吸入行程到压力冲程的过渡期间不折叠。 这是因为隔膜总是与液压联动接触,从而固定就位,使得隔膜不经受交替负载。