Method for manufacturing energetic material composites

    公开(公告)号:US09617193B2

    公开(公告)日:2017-04-11

    申请号:US13035450

    申请日:2011-02-25

    IPC分类号: C06B33/00

    CPC分类号: C06B33/00

    摘要: An energetic material composite comprising fuel particles and a hydrated compound is disclosed. The energetic material composite is formed by dispersing fuel particles, which have a negative standard reduction potential relative to a standard hydrogen electrode, in a solvent containing dissolved hydrate, followed by a removal of solvent. When initiated, the fuel particles react with the water bound in the hydrated compound to release energy and hydrogen gas.

    Laminated Energetic Device
    3.
    发明申请
    Laminated Energetic Device 有权
    层压能量装置

    公开(公告)号:US20100096049A1

    公开(公告)日:2010-04-22

    申请号:US12252462

    申请日:2008-10-16

    申请人: Kurt A. Schroder

    发明人: Kurt A. Schroder

    IPC分类号: C06B45/12

    CPC分类号: C06C5/04 C06B45/14

    摘要: A laminated energetic device is disclosed. The laminated energetic device includes a low-gas generating energetic mixture, a first film on which the low-gas generating energetic mixture is located, and a second film for sealing the low-gas generating energetic mixture between the first and second films.

    摘要翻译: 公开了层压能量装置。 层压能量装置包括低气体发生能量混合物,低气体产生能量混合物所在的第一膜和用于密封第一和第二膜之间的低气体产生能量混合物的第二膜。

    Impact instrument
    4.
    发明授权
    Impact instrument 失效
    冲击仪

    公开(公告)号:US07178428B2

    公开(公告)日:2007-02-20

    申请号:US10983806

    申请日:2004-11-08

    申请人: Kurt A. Schroder

    发明人: Kurt A. Schroder

    IPC分类号: B25D1/00

    摘要: An impact instrument for delivering an impulse to an object. The impact instrument may include an impact surface for contacting the object and an elongated member extending from the impact surface that terminates in an end. The elongated member may include a grasping region in the vicinity of the end. When the instrument is grasped within the grasping region, the center of percussion of the instrument preferably coincides with the impact surface. The instrument may also contain pivoting grasping member disposed on the elongated member. A cavity is preferably formed between the grasping member and the elongated member and may contain compressible material. The grasping member may rigidly contact the elongated member at an ideal pivot point. The grasping member is preferably adapted to pivot with respect to the elongated member at the ideal pivot point. The pivoting of the grasping member preferably increases the amount of impulse delivered to an object, decreases vibration experienced by the user of the instrument, and reduces counter-rotational forces imparted from the instrument to the user. The impact instrument may be a hammer, ax, golf club, tennis racket, or similar device.

    摘要翻译: 用于向物体传递冲击的冲击仪器。 冲击仪器可以包括用于接触物体的冲击表面和从冲击表面延伸的细长构件,其终止于末端。 细长构件可以包括在端部附近的抓握区域。 当在把持区域内抓握仪器时,仪器的敲击中心优选与冲击表面重合。 仪器还可以包括设置在细长构件上的枢转抓握构件。 优选地,在夹持构件和细长构件之间形成空腔,并且可以包含可压缩材料。 抓握构件可以在理想的枢转点处刚性地接触细长构件。 抓持构件优选地适于在理想枢转点处相对于细长构件枢转。 抓持构件的枢转优选地增加输送到物体的冲击量,减少仪器使用者所经历的振动,并减少从仪器向用户施加的反向旋转力。 撞击器械可以是锤子,斧头,高尔夫球杆,网球拍或类似装置。

    METHOD FOR INTEGRATING SEMICONDUCTOR CHIPS ON A SUBSTRATE

    公开(公告)号:US20240213400A1

    公开(公告)日:2024-06-27

    申请号:US18086693

    申请日:2022-12-22

    IPC分类号: H01L33/00

    CPC分类号: H01L33/0093

    摘要: A method for transferring microLEDs from a growth wafer to a display substrate is disclosed. MicroLEDs on the growth wafer are bonded to an adhesive layer on a transparent carrier coated with a light-absorbing layer. After aligning the carrier to a display substrate, the transparent carrier is exposed to light pulses from a flashlamp to heat the light-absorbing layer in order to separate the adhesive layer for the purpose of transferring the microLEDs onto the display substrate. MicroLEDs may be bonded to the display substrate prior to or after transfer to the display substrate. Bonding of the microLEDs to the display substrate, such as soldering, may also be performed with light pulses from the flashlamp by exposing the transparent carrier to heat the light-absorbing layer and the adjacent microLEDs to heat them and bond them to the display substrate.

    METHOD FOR PERFORMING DELAMINATION OF A POLYMER FILM

    公开(公告)号:US20190299496A1

    公开(公告)日:2019-10-03

    申请号:US16307435

    申请日:2016-06-06

    IPC分类号: B29C41/02 B29C41/42

    摘要: A method and apparatus for delaminating a polymer film from a carrier plate is disclosed. The carrier plate is at least partially transparent and has deposited on it a pixelated pattern layer of light-absorptive material, upon which is deposited a layer of light-reflective material. A polymer film, which is to be delaminated, is deposited on the light-reflecting material layer. Next, a pulsed light source is utilized to irradiate through the carrier plate from the side opposite the polymer film to heat the light-absorptive material layer. The heated areas of the light-absorptive material layer, in turn, heat the polymer film through conduction at the interface between the light-absorptive material layer and the polymer film, thereby generating gas from the polymer film by its thermal decomposition, which allows the polymer film to be released from the carrier plate.

    Apparatus for providing transient thermal profile processing on a moving substrate
    8.
    发明授权
    Apparatus for providing transient thermal profile processing on a moving substrate 有权
    用于在移动基板上提供瞬态热分布处理的装置

    公开(公告)号:US08907258B2

    公开(公告)日:2014-12-09

    申请号:US13082469

    申请日:2011-04-08

    IPC分类号: H05B6/10 B29C35/08

    摘要: A method and apparatus for thermally processing material on a low-temperature substrate using pulsed light from a flash lamp is disclosed. Material is conveyed past the flash lamp. The pulses of light are formed by Pulse Width Modulation to tailor the shape of the pulses to generate a thermal gradient in the substrate that enables the material to be heated beyond the maximum working temperature of the substrate without damage. Its shaped pulse rate is synchronized to the conveyance speed of a conveyance system. By using the information from a feedback sensor, the thermal gradient is recalculated to alter the shape of the pulses in real time for optimizing subsequent curings in real time without powering down the curing apparatus. The combined pulse shaping and synchronization allow a temperature profile to be tailored in the sample that is uniformly cured in the conveyance direction.

    摘要翻译: 公开了一种使用来自闪光灯的脉冲光在低温衬底上热处理材料的方法和装置。 材料被传送通过闪光灯。 光的脉冲通过脉冲宽度调制形成以调整脉冲的形状以在衬底中产生热梯度,使得能够将材料加热超过衬底的最大工作温度而不损坏。 其形状的脉冲率与输送系统的输送速度同步。 通过使用来自反馈传感器的信息,重新计算热梯度以实时改变脉冲的形状,以实时优化随后的固化而不关闭固化设备。 组合的脉冲整形和同步允许在传送方向上均匀固化的样品中定制温度分布。