会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Air supply and exhaust facility
    • 空气供应和排气设施
    • JP2014173820A
    • 2014-09-22
    • JP2013049502
    • 2013-03-12
    • Taikisha Ltd株式会社大気社
    • YAGI HIDEYUKIHASHIGAMI KANJUNOJIRI AKIYAIKEDA YASUHIROKOBUKI NAOYA
    • F24F7/007F24F7/06
    • PROBLEM TO BE SOLVED: To prevent a room to be adjusted from being changed into a negative pressure state when an air supply and exhaust operation is started.SOLUTION: This invention provides control means 18 that is operated in such a way that when a starting instruction for air supply and exhaust operation is accepted, an air supply fan Fs is energized prior to opening of air supply opening or closing dampers D1, Ds, Dss and exhaust opening or closing dampers D2, Dr, Drr, thereafter when detected pressures of pressure sensors 14, 11 for detecting pressures (ps) in air supply passages 3, 3a or pressure (pa) in an object room 5 to be adjusted is increased up to a set safety pressure higher than atmospheric pressure or when an elapsing time ranging from an air supply fan starting operation counted by a timer reaches to a set safety time,the air supply opening or closing dampers D1, Ds, Dss and the exhaust opening or closing dampers D2, Dr, Drr are opened.
    • 要解决的问题:为了防止在开始供气和排气操作时将房间调整为负压状态。解决方案:本发明提供控制装置18,其以这样的方式操作,即当起动指令 为了进行供气和排气操作,在打开供气开启或关闭阻尼器D1,Ds,Dss和排气开启或关闭阻尼器D2,Dr,Drr之前,供气风扇Fs通电,此后当压力传感器检测到压力 用于检测空气供应通道3,3a中的压力(ps)或待调节的对象室5中的压力(pa)的压力(ps)增加到高于大气压的设定的安全压力或当从空气流过的时间 通过定时器计数的供风机启动运行达到设定的安全时间,供气打开或关闭风门D1,Ds,Dss以及排气打开或关闭风门D2,Dr,Drr打开。
    • 2. 发明专利
    • Operational method for low dew point air conditioning installation and low dew point air conditioning installation
    • 低露点空调安装和低露点空调安装的操作方法
    • JP2014085032A
    • 2014-05-12
    • JP2012232227
    • 2012-10-19
    • Taikisha Ltd株式会社大気社
    • NAGAHIRO AKIHISAIMAWAKA NAOMASA
    • F24F11/02B01D53/26H01L51/50H05B33/04H05B33/10
    • PROBLEM TO BE SOLVED: To perform a more positive holding of an indoor low dew point environment.SOLUTION: A transient mode operation is caused to be present during transit from a door closed mode operation accompanying with an increasing of air-supply amount q3 to a door opened mode operation. Under this transient mode operation, while a circulation bypass passage 32 is opened to cause low dew point air ΔSA of the same air amount as a set increased air amount Δq3 of the low dew point air SA fed out of a dehumidifier 5 to be circulated through the circulation bypass passage 32, original air MA of the same basic feeding air amount q2 as that of the closed door mode operation is fed through a feeding passage 12, mixed air of the original air MA and the circulating low dew point air ΔSA is dehumidified with the dehumidifier 5 and in the dehumidification processing state, the low dew point air SA of the same basic air feeding amount as that of the closed door mode operation is fed to a low dew point chamber 1 or an arranging area 26 of an inter-room opening 3.
    • 要解决的问题:更积极地保持室内低露点环境。解决方案:伴随着供气量q3增加到门关闭模式操作的过渡期间,存在暂时模式操作 门打开模式操作。 在这种瞬时模式操作下,当循环旁路通道32打开以产生相同空气量的低露点空气和Dgr; SA时,增加从除湿器5送出的低露点空气SA的空气量&Dgr; q3 通过循环旁路通路32循环,通过供给通路12供给与关闭的门模式运转相同的基本供给空气量q2的原始空气MA,原始空气MA的混合空气和循环低露点 空气&Dgr; SA用除湿器5除湿,并且在除湿处理状态下,与闭式模式操作相同的基本空气供给量的低露点空气SA被供给到低露点室1或排列 室间开口3的区域26。
    • 3. 发明专利
    • Operating method for heat storage type gas treatment device, and heat storage type gas treatment device
    • 储热式气体处理装置的操作方法和储热式气体处理装置
    • JP2013200101A
    • 2013-10-03
    • JP2012069929
    • 2012-03-26
    • Taikisha Ltd株式会社大気社
    • TAKEUCHI SEIJIHAYASHI KEIICHIMIWA TOMOTAKA
    • F23G7/06
    • PROBLEM TO BE SOLVED: To increase opening widths of an air inlet and an exhaust outlet in a rotary valve body of a heat storage type gas treatment device.SOLUTION: In a state where each of two wind shielding plates parts 20a, 20b is opposed to one distribution port 22a, one distribution port of two distribution ports 22a adjacent to the opposed distribution port 22a is fully opened to an air inlet 23a, and other distribution port is fully opened to an exhaust outlet 24a, in an arrangement relationship. In gas treatment operation, a rotary valve body and a distributor are intermittently and relatively rotated by a juxtaposed pitch p of the distribution port 22a. In baking operation, a baking first half process is performed while two wind shielding plate parts 20a, 20b are respectively astride two adjacent distribution ports 22b, and thereafter, a baking last half process is performed while the rotary valve body and the distributor are relatively rotated by 180 degrees from a rotation stop position in the baking first half process.
    • 要解决的问题:增加蓄热式气体处理装置的旋转阀体中的进气口和排气出口的开口宽度。解决方案:在两个挡风板部分20a,20b中的每一个与 一个分配口22a,与相对的分配口22a相邻的两个分配口22a的一个分配口完全打开到进气口23a,并且其他分配口以布置关系完全打开到排气出口24a。 在气体处理操作中,旋转阀体和分配器通过分配端口22a的并置间距p间歇地并相对旋转。 在烘烤操作中,进行烘烤前半部分处理,同时两个挡风板部分20a,20b分别横跨两个相邻的分配端口22b,然后在旋转阀体和分配器相对旋转的同时执行烘烤后半部分处理 在烘烤前半部处理中与旋转停止位置成180度。
    • 4. 发明专利
    • Low-humidity treatment equipment
    • 低湿度处理设备
    • JP2013076536A
    • 2013-04-25
    • JP2011217714
    • 2011-09-30
    • Taikisha Ltd株式会社大気社
    • NAGAHIRO AKIHISA
    • F24F3/14F24F13/062
    • PROBLEM TO BE SOLVED: To stably maintain a workpiece treatment space at a low humidity required for workpiece treatment.SOLUTION: The low-humidity treatment equipment includes dehumidifying air supply means 8, 19a for dehumidifying the workpiece treatment space 3 so as to maintain the workpiece treatment space at a low humidity by surrounding the workpiece treatment space 3 with a partition wall 2 with communication ports 4, 5 to an ambient space and supplying dehumidified air SA1 to the workpiece treatment space 3. The communication ports 4, 5 have a bell mouth structure 29 so that expansion-side openings open to the workpiece treatment space 3.
    • 要解决的问题:为了在工件处理所需的低湿度下稳定地保持工件处理空间。 解决方案:低湿度处理设备包括除湿空气供应装置8,19a,用于对工件处理空间3进行除湿,以便通过用分隔壁2围绕工件处理空间3将工件处理空间保持在低湿度 将通信端口4,5连接到环境空间,并且将除湿空气SA1供给到工件处理空间3.连通端口4,5具有喇叭口结构29,使得膨胀侧开口向工件处理空间3开口。

      版权所有(C)2013,JPO&INPIT

    • 5. 发明专利
    • Heat source system
    • 热源系统
    • JP2012189262A
    • 2012-10-04
    • JP2011053320
    • 2011-03-10
    • Taikisha Ltd株式会社大気社
    • NISHIYAMA MITSURUYAMASHITA SHUICHI
    • F24F11/02F24F5/00
    • PROBLEM TO BE SOLVED: To provide a heat source system which is more excellent in energy saving and reduction in operation cost.SOLUTION: In the operation of jointly using primary and secondary pumps, the reflux amount of heat medium C from the secondary side outward header H2 to the primary side outward header H1 through a pump bypass path 5 is adjusted by adjusting the opening of a pump bypass valve 5v, thereby, a heat medium supply pressure pm for load equipment U is adjusted to a set supply pressure. In the operation of singly using the primary pump, the pump bypass valve 5v is opened to the full to feed the supply heat medium C by means of the primary pump P1 from the primary side outward header H1 to the secondary side header H2 through the pump bypass path 5.
    • 要解决的问题:提供一种节能更加优异,运行成本降低的热源系统。 解决方案:在共同使用一级和二级泵的操作中,通过泵旁路5从第二侧向外集管H2到初级侧向外集管H1的热介质C的回流量通过调节 泵旁通阀5v,由此将负载设备U的热介质供给压力pm调整到设定的供给压力。 在单次使用主泵的操作中,泵旁通阀5v全部打开,通过主泵P1从初级侧向外集管H1到次级侧集管H2经由泵将供给热介质C供给到泵 旁路路径5.版权所有(C)2013,JPO&INPIT
    • 6. 发明专利
    • Operation method of heat exchanger for cooling, and outside air adjustment system used in implementing the same
    • 用于冷却的热交换器的操作方法和用于实施其的外部空气调节系统
    • JP2012154543A
    • 2012-08-16
    • JP2011013146
    • 2011-01-25
    • Taikisha Ltd株式会社大気社
    • ARANAGA HIDEOMI
    • F24F3/044F24F11/02
    • PROBLEM TO BE SOLVED: To effectively save energy and reduce operation costs while effectively preventing freezing of internal water in a heat exchanger for cooling in winter.SOLUTION: In an outside air cooling operation for cooling the outside air OA by heat exchange with cold water W, an air passing/water passing system of the heat exchanger 6 for cooling is switched to a countercurrent system, and in an antifreezing operation for preventing freezing by allowing the antifreezing water W to pass, the air passing/water passing system of the heat exchanger 6 for cooling is switched to a parallel current system. By adjusting a water passing amount of the antifreezing water W, a temperature to of the outside air OA at an outlet of a ventilation pathway of the heat exchanger 6 for cooling or a temperature of the antifreezing water W at the outlet of the water pathway of the heat exchanger 6 for cooling is adjusted to a set antifreezing temperature tox.
    • 要解决的问题:有效节约能源,降低运行成本,同时有效防止冬季用于冷却换热器内部水的冻结。 解决方案:在用于通过与冷水W进行热交换来冷却外部空气OA的外部空气冷却操作中,用于冷却的热交换器6的通风/水通过系统被切换到逆流系统,并且在防冻 用于通过使防冻水W通过来防止冻结的操作,用于冷却的热交换器6的通风/通水系统被切换到并联电流系统。 通过调节防冻水W的水通过量,在用于冷却的热交换器6的通风路径的出口处的外部空气OA的温度或在水路径出口处的防冻水W的温度 将用于冷却的热交换器6调节到设定的防冻温度tox。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • System for control of heat source equipment
    • 热源设备控制系统
    • JP2012026674A
    • 2012-02-09
    • JP2010167027
    • 2010-07-26
    • Taikisha Ltd株式会社大気社
    • HASHIGAMI KANJUOTA RYO
    • F24F11/02
    • PROBLEM TO BE SOLVED: To correct and optimize the timing of increase and decrease steps of refrigerators.SOLUTION: A system is provided with a controller for executing an increase of the number of operation units by executing a moved-up correction ΔQ1 of an operation unit increasing load calorie Qz from a standard load calorie Qs to an evaluation boundary load calorie Qa, wherein the evaluation boundary load calorie Qa is a load calorie determined by an evaluation degree, which becomes higher when processing a current load calorie Q using the refrigerators R operated after the increase of the number of operation units.
    • 要解决的问题:纠正和优化冰箱升降步骤的时间。 解决方案:系统具有控制器,用于通过执行将负载卡路里Qs从标准负载卡路里Qs增加到评估边界负载卡路里的操作单元的上移校正ΔQ1来执行增加操作单元数量 Qa,其中评估边界载荷卡路里Qa是通过评估程度确定的负荷卡路里,其在使用在操作单元数量增加之后操作的冰箱R处理当前负载卡路里Q时变得更高。 版权所有(C)2012,JPO&INPIT
    • 8. 发明专利
    • Coating gun and coating method using the same
    • 涂料枪和涂料方法
    • JP2011230075A
    • 2011-11-17
    • JP2010103927
    • 2010-04-28
    • Taikisha Ltd株式会社大気社
    • NONOMURA HIROMI
    • B05B1/16B05B12/00B05D1/02
    • PROBLEM TO BE SOLVED: To provide a coating gun and a coating method without requiring masking treatment.SOLUTION: A gun tip 1a is connected to a gun base 1b so that a drive rotation operation about a rotation axial center Q is allowed. Paint nozzles 2a to 2d spraying the paint toward a coating object are attached to the gun tip 1a at positions decentered from the rotation axial center Q. When coating a periphery region of a coating-forbidden part in the coating object, the gun tip 1a positioned at a position in which the rotation axial center Q is orthogonal to the center of the coating-forbidden part, and the gun tip 1a is rotated about the rotation axial center Q at that position so that the paint nozzles 2a to 2d in the paint spraying state are rotated and moved in a circular arc shape about the rotation axial center Q.
    • 要解决的问题:提供涂料枪和涂布方法而不需要掩蔽处理。 解决方案:枪头1a连接到枪座1b,从而允许围绕旋转轴心Q的驱动旋转操作。 将涂料喷涂到喷涂物体上的涂料喷嘴2a至2d在旋转轴心Q偏心的位置处附着在喷枪尖端1a上。当涂覆被涂物中的涂层禁止部分的周边区域时,枪尖1a位于 在旋转轴心Q与被禁止部的中心正交的位置,并且喷枪头1a围绕该位置处的旋转轴心Q旋转,使得涂料喷嘴2a〜2d在喷漆 状态围绕旋转轴心Q旋转并移动成圆弧形。版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Method and device of evaluating performance of heat source system and air-conditioning system
    • 评估热源系统和空调系统性能的方法与装置
    • JP2011012839A
    • 2011-01-20
    • JP2009154956
    • 2009-06-30
    • Taikisha Ltd株式会社大気社
    • HASHIGAMI KANJUOTA RYOYOSHITOME YASUHIRO
    • F24F11/02
    • PROBLEM TO BE SOLVED: To provide a performance evaluating method and a performance evaluating device adequately evaluating the performance of the heat source system and the air-conditioning system in many fields.SOLUTION: In an initial setting operation period L, the performance is evaluated (E:Es) on the basis of a performance evaluation value Es obtained in virtually operating an object system on the basis of characteristic information of a constitutive device under operating conditions same as the operating conditions Q, tow of an actual operation, and the performance evaluation value E similar to that obtained in the actual operation, and operation data dd in which the operating conditions Q, tow and the performance evaluation value E in the actual operation are recorded, are accumulated. After the lapse of the setting operation period L, the corresponding operation data dd having the recorded operating conditions agreed with the operating conditions in the actual operation is searched, and the performance is evaluated (E:Em) on the basis of the performance evaluation value Em recorded in the corresponding operation data dd, and the performance evaluation value E similar to that obtained in the actual operation.
    • 要解决的问题:提供一种在许多领域中充分评估热源系统和空调系统的性能的性能评估方法和性能评估装置。解决方案:在初始设置操作时段L中,评估性能( E:Es),基于与操作条件Q,实际操作的拖曳和实际操作相同的操作条件下的本构装置的特征信息,在虚拟操作对象系统中获得的性能评估值Es的基础上, 与实际操作中获得的值类似的值E和记录实际操作中的操作条件Q,拖曳和性能评估值E的操作数据dd被累积。 在经过设定操作期间L之后,搜索具有与实际操作中的操作条件一致的所记录操作条件的对应操作数据dd,并且基于性能评估值来评估性能(E:Em) Em记录在相应的操作数据dd中,性能评估值E类似于实际操作中获得的。
    • 10. 发明专利
    • Coating booth equipment
    • 涂装设备
    • JP2010188258A
    • 2010-09-02
    • JP2009034098
    • 2009-02-17
    • Taikisha Ltd株式会社大気社
    • HORISAWA SATOSHI
    • B05B15/12B05B5/08
    • PROBLEM TO BE SOLVED: To provide coating booth equipment with higher superiority and advantages to a wet cleaning system. SOLUTION: A cylindrical filter unit 6 whose cylinder peripheral surface part is formed of a filter medium is equipped inside a filter chamber 4 communicating with a coating work chamber 1 through an inter-chamber opening 11, and a structure of keeping the inside of the cylindrical filter unit 6 in a negative pressure state by suction exhaust through a suction exhaust path 21 while allowing the rotation is attained. The coating booth equipment is provided with a coating layer formation means T for forming an air permeable coating layer S for filtration comprising a powder coating agent on the outer surface of the filter medium in the cylindrical filter unit 6, and recovery means 29 and 32 for exfoliating the coating layer S where a coating material is accumulated by collection of floating coating material mist m from the filter medium of the cylindrical filter unit 6 and recovering it. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为湿洗系统提供具有更高优势和优势的涂装机设备。 解决方案:将圆筒形周面部分由过滤介质形成的圆柱形过滤器单元6设置在通过室间开口11与涂覆工作室1连通的过滤室4的内部,以及保持内部的结构 通过抽吸排气通道21抽吸排气,同时允许旋转,使得圆筒形过滤器单元6处于负压状态。 涂布室设备设置有用于形成用于过滤的透气性涂层S的涂层形成装置T,包括在筒状过滤器单元6中的过滤介质的外表面上的粉末涂布剂,以及用于 通过从圆筒形过滤器单元6的过滤介质收集漂浮涂层材料m而回收涂层材料,从而使涂层积聚。 版权所有(C)2010,JPO&INPIT