Tailored heat transfer layered heater system
    42.
    发明申请
    Tailored heat transfer layered heater system 有权
    定制传热分层加热器系统

    公开(公告)号:US20070000913A1

    公开(公告)日:2007-01-04

    申请号:US11517401

    申请日:2006-09-07

    IPC分类号: H05B3/58

    摘要: Methods of assembling a high heat transfer and tailored heat transfer layered heater systems are provided. One method includes a step of pressing one of a target part and a layered heater into the other one of the target part and the layered heater to create an interference fit between the layered heater and the target part. When the target part is disposed within the layered heater, the layered heater includes a substrate defining an inner periphery less than or equal to an outer periphery of the target part. When the layered heater is disposed within the target part, the layered heater includes a substrate defining an outer periphery larger than or equal to an inner periphery of the target.

    摘要翻译: 提供组装高热传递和定制的传热分层加热器系统的方法。 一种方法包括将目标部件和层状加热器中的一个按压到目标部件和层状加热器中的另一个中以在层状加热器和目标部件之间形成干涉配合的步骤。 当目标部件设置在分层加热器内时,分层加热器包括限定内周小于或等于目标部分的外周的基板。 当层状加热器设置在目标部分内时,层状加热器包括限定大于或等于靶的内周的外周的基板。

    Variable watt density layered heater
    43.
    发明申请
    Variable watt density layered heater 有权
    可变瓦特密度层状加热器

    公开(公告)号:US20050199610A1

    公开(公告)日:2005-09-15

    申请号:US10797259

    申请日:2004-03-10

    摘要: A layered heater is provided with a resistive layer having a resistive circuit pattern, the resistive circuit pattern defining a length and a thickness, wherein the thickness varies along the length of the resistive circuit pattern for a variable watt density. The present invention also provides layered heaters having a resistive circuit pattern with a variable thickness along with a variable width and/or spacing of the resistive circuit pattern in order to produce a variable watt density. Methods are also provided wherein the variable thickness is achieved by varying a dispensing rate of a conductive ink used to form the resistive circuit pattern, varying the feed rate of a target surface relative to the dispensing of the ink, and overwriting a volume of conductive ink on top of a previously formed trace of the resistive circuit pattern.

    摘要翻译: 层状加热器设置有具有电阻电路图案的电阻层,电阻电路图形限定长度和厚度,其中厚度随着电阻电路图案的长度变化,用于可变瓦特密度。 本发明还提供了具有可变厚度的电阻电路图案以及电阻电路图案的可变宽度和/或间隔以便产生可变瓦特密度的分层加热器。 还提供了方法,其中可变厚度通过改变用于形成电阻电路图案的导电油墨的分配速率来实现,改变目标表面相对于油墨分配的进给速率,并且覆盖一定体积的导电油墨 在先前形成的电阻电路图案的迹线之上。

    Tailored heat transfer layered heater system
    44.
    发明申请
    Tailored heat transfer layered heater system 有权
    定制传热分层加热器系统

    公开(公告)号:US20050145616A1

    公开(公告)日:2005-07-07

    申请号:US10752358

    申请日:2004-01-06

    摘要: A tailored heat transfer layered heater system is provided that comprises a target part defining a room temperature periphery and a layered heater disposed around or within the target part, the layered heater comprising a substrate having a room temperature periphery that is sized such that an interference fit is formed between the layered heater and the target part either through mechanical or thermal methods. The layered heater in one form is disposed around the target part and in another form is disposed inside the target part. Additionally, heat transfer is tailored along the layered heater using other devices such as thermal spacers, insulative pads, and a transfer substrate in other forms of the present invention.

    摘要翻译: 提供了一种定制的传热分层加热器系统,其包括限定室温周边的目标部分和设置在目标部分周围或内部的分层加热器,所述分层加热器包括具有室温周边的基板,该基板的尺寸使得过盈配合 通过机械或热方法在层状加热器和目标部件之间形成。 一种形式的层状加热器设置在目标部分周围,另一形式设置在目标部分内。 此外,使用其它装置例如热间隔物,绝缘衬垫和转移衬底在本发明的其他形式中,沿层状加热器调整热传递。

    Heater assembly method
    45.
    发明授权
    Heater assembly method 失效
    加热器组装方法

    公开(公告)号:US5864941A

    公开(公告)日:1999-02-02

    申请号:US651359

    申请日:1996-05-22

    IPC分类号: H05B3/48 H05B3/00 H01R43/00

    摘要: Various methods are described for assembling and/or coupling heater sections together for assemblage of heaters. The heater sections may be hot or cold heater sections having various geometries, dimensions, and specific electrical resistances. In one method, a cold heater section is assembled onto a pre-fabricated hot heater section with an oversized tube and pre-fabricated insulating cores. In another method, a pre-fabricated cold section is spliced onto a pre-fabricated hot section utilizing pre-fabricated semi-annular insulating cores and an oversized sleeve. In a further method, a first pre-fabricated hot section is spliced onto a second pre-fabricated hot section via an electrically conductive core and an oversized sleeve. These methods allow for the manufacture of stock lengths of hot and cold heater sections, that are then cut to length and coupled together. According to one aspect, the methods reduce tolerance errors in heater length. Various combinations of single or multiple coiled hot heater sections may be coupled together or to cold heater sections with single or multiple power pins. The hot heater sections may have the same specific resistance along its entire length or may be variable.

    摘要翻译: 描述了用于将加热器部分组装和/或耦合在一起用于组装加热器的各种方法。 加热器部分可以是具有各种几何形状,尺寸和特定电阻的热或冷加热器部分。 在一种方法中,将冷加热器部分组装到具有过大管和预制绝缘芯的预制热加热器部分上。 在另一种方法中,使用预制的半环形绝缘芯和超大的套筒,将预制的冷部分拼接到预制的热部分上。 在另一种方法中,第一预制热段通过导电芯和尺寸过大的套管接合到第二预制热段上。 这些方法允许制造热和冷加热器部分的库存长度,然后将其切割成长度并耦合在一起。 根据一个方面,该方法减少加热器长度中的公差误差。 单个或多个卷绕的热加热器部分的各种组合可以联接在一起或者连接到具有单个或多个电源销的冷加热器部分。 热加热器部分沿其整个长度可以具有相同的电阻率,或者可以是可变的。