[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"site-settings":3,"header-product-categories":40,"blog-sandwich-panel-pabrik-baterai-ev-dry-room-2026--":199,"footer-product-categories":242,"blog-recent":280},{"data":4},{"business_hours":5,"canonical_url":6,"catalog_full_url":7,"catalog_price_url":7,"catalog_technical_url":7,"contact_address":8,"contact_email":9,"contact_factory_address":10,"contact_factory_map_url":11,"contact_office_address":7,"contact_phone":12,"contact_whatsapp":13,"custom_body_scripts":7,"custom_head_scripts":14,"ga_measurement_id":15,"google_ads_id":16,"gtm_id":17,"homepage_meta_description_en":18,"homepage_meta_description_id":19,"homepage_meta_description_zh":20,"homepage_meta_title_en":21,"homepage_meta_title_id":22,"homepage_meta_title_zh":23,"maintenance_message":7,"maintenance_mode":24,"meta_description_default":25,"meta_title_default":26,"og_image_default":27,"recaptcha_site_key":7,"robots_txt":28,"schema_org_founded":29,"schema_org_type":30,"seo_noindex":24,"site_email":9,"site_favicon_url":31,"site_logo_url":32,"site_name":33,"site_stats":34,"site_tagline":35,"social_facebook":36,"social_instagram":37,"social_linkedin":7,"social_youtube":38,"whatsapp_message":39,"whatsapp_number":12},"Senin-Sabtu 08:00-17:00 WIB","https://sandwichpanels.id","","Jakarta, Indonesia","marketing@sandwichpanels.id","Kawasan Industri Lippo Cikarang Delta Silicon, Jl. Albasia Utara 1, Cikarang Selatan, Jawa Barat, Indonesia, 17550","https://maps.google.com/?q=-6.3666492909764205, 107.12342048001176","+628119898835","628119898835","\u003Cmeta name=\"google-site-verification\" content=\"tjwEbF9G67SnEcroXL7PBzxRcLoD0NaRxKXRgRvOV6o\" />","G-DPYQT7JZ2D","G-ETSSTN3J3T","GTM-5XRVSZWC","SandwichPanels.id supplies EPS, PU, PIR, and rockwool sandwich panels for factories, cold rooms, cleanrooms, and industrial buildings in Indonesia.","SandwichPanels.id menyediakan sandwich panel EPS, PU, PIR, dan rockwool untuk pabrik, cold storage, cleanroom, dan bangunan industri di Indonesia.","SandwichPanels.id 为印度尼西亚工厂、冷库、洁净室与工业建筑提供 EPS、PU、PIR 和岩棉夹芯板解决方案。","Sandwich Panels Indonesia for Cold Rooms and Factories","Sandwich Panel Indonesia untuk Pabrik, Cold Room, Cleanroom","印度尼西亚工厂、冷库与洁净室夹芯板","false","Supplier sandwich panel EPS, PU, PIR, dan rockwool untuk pabrik, cold storage, cleanroom, dan bangunan industri di Indonesia.","Sandwich Panel Indonesia untuk Pabrik & 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Aplikasi","行业与应用","industri",{"en":208,"id":209,"zh":210},"\u003Cp>Indonesia's electric vehicle (EV) battery industry has entered a new phase. The battery plant of PT CATL Amperex Technology Indonesia Battery (CATIB), a joint venture between Contemporary Amperex Technology Co. Limited (CATL) through its subsidiary CBL and Indonesia Battery Corporation (IBC), began operating in Karawang, West Java in late July 2026 with a production capacity of 15 GWh per year—6.9 GWh in phase one and 8.1 GWh in phase two. The integrated project represents an investment of roughly Rp96 trillion, involving CATL, PT Aneka Tambang Tbk (Antam), and IBC.\u003C/p>\n\n\u003Cp>A facility of this scale opens significant opportunities for the factory construction supply chain, including building materials capable of meeting extremely strict technical requirements: dry rooms with extreme humidity control, fire resistance, and fast construction speed. This article explains why PIR sandwich panels have become a preferred envelope material for EV battery plants and dry rooms, along with the technical specifications project teams need to consider.\u003C/p>\n\n\u003Ch2>Why EV Battery Plants Need Dry Rooms\u003C/h2>\n\u003Cp>Lithium-ion cell production processes—particularly electrode coating, cell assembly, and electrolyte filling—are highly sensitive to moisture. Water vapor reacting with electrolyte or lithium materials can trigger chemical degradation, hazardous gas generation, and production defects that shorten battery lifespan. This is why the core production area must be built as a dry room: an enclosed space where relative humidity is kept far below normal atmospheric conditions.\u003C/p>\n\n\u003Cp>Unlike pharmaceutical cleanrooms that focus on particle count, battery dry rooms focus on dew point—a parameter that is far harder to achieve and maintain. Failing to control dew point translates into large-scale production losses, making the building envelope design (walls, roof, joints) a critical engineering element rather than a mere weather barrier.\u003C/p>\n\n\u003Ch2>Dew Point and Humidity Control Specifications for Dry Rooms\u003C/h2>\n\u003Cp>Lithium-ion battery industry standards generally require a room dew point around -40°C (equivalent to relative humidity below 1%), although certain processes and next-generation cell chemistries demand -50°C to -65°C. Advanced dry rooms for next-generation battery chemistries even target dew points below -75°C. Supply air from the HVAC/dehumidification system is typically designed even drier than the room target—for example -50°C when the room target is -40°C—to offset internal moisture loads from worker respiration and equipment.\u003C/p>\n\n\u003Cp>Achieving conditions this strict is virtually impossible with conventional porous walls full of joint gaps. The building envelope must:\u003C/p>\n\u003Cul>\n\u003Cli>Have the lowest possible vapor permeability on wall and roof panels\u003C/li>\n\u003Cli>Use hairline joint systems with continuous sealant, not simple overlapping seams\u003C/li>\n\u003Cli>Avoid thermal bridging in the structural frame that can trigger localized condensation\u003C/li>\n\u003Cli>Support HVAC ducting and filter integration without compromising room airtightness\u003C/li>\n\u003C/ul>\n\n\u003Ch2>Why PIR Sandwich Panels Suit Dry Rooms and Fire Rating Needs in Battery Plants\u003C/h2>\n\u003Cp>Sandwich panels with a polyisocyanurate (PIR) core are a popular choice for dry room envelopes because of their low thermal conductivity, around 0.020-0.024 W/(m·K), significantly better than EPS at the same thickness. The metal facing on both panel surfaces also functions as an integrated vapor barrier, reducing the risk of weak points compared to plastered brick walls fitted with a separate membrane.\u003C/p>\n\n\u003Cp>EV battery facilities also carry real fire risk—from flammable electrolyte filling processes to thermal runaway risk in finished cells. Selecting panels with EI60 to EI120 fire resistance ratings for critical zones (electrolyte rooms, cell filling areas, finished-cell warehouses) is therefore part of risk mitigation, not just regulatory compliance. Read our full guide on \u003Ca href=\"https://sandwichpanels.id/en/blog/standar-fire-rating-sandwich-panel-ei60-ei120-panduan\">EI60-EI120 sandwich panel fire ratings\u003C/a> to understand the performance differences between each fire resistance class.\u003C/p>\n\n\u003Cp>For the dry room area itself, wall material selection largely borrows principles from pharmaceutical cleanrooms—smooth, non-porous surfaces that are easy to clean and minimize gaps where microbes or dust can accumulate. Our team covers this topic in more depth in the \u003Ca href=\"https://sandwichpanels.id/en/blog/bahan-dinding-cleanroom-panduan-pemilihan-sandwich-panel-2026\">cleanroom wall material selection guide\u003C/a>, whose vapor-barrier and hairline joint principles are equally relevant to battery dry rooms.\u003C/p>\n\n\u003Cimg src=\"https://assets.sandwichpanels.id/blog/1786393070543-sandwich-panel-pabrik-baterai-ev-dry-room-cover-01.png\" alt=\"EV battery plant dry room interior with white sandwich panel walls\" />\n\n\u003Ch2>Design and Installation Considerations on Site\u003C/h2>\n\u003Cp>Battery plant projects typically run on extremely tight construction schedules due to investment pressure and production targets. Sandwich panels offer faster installation than conventional wet-wall methods, but several points need coordination from the design stage:\u003C/p>\n\u003Cul>\n\u003Cli>Panel thickness should match the target dew point per zone—core production zones need higher thickness and insulation performance than warehouse or support office areas\u003C/li>\n\u003Cli>Corner details, ducting penetrations, and wall-floor junctions require special design to maintain vapor barrier continuity\u003C/li>\n\u003Cli>Core material choice between PIR and rock wool should match the zone: PIR excels in thermal insulation and vapor control, rock wool excels in fire resistance for high-risk zones\u003C/li>\n\u003Cli>Humidity and air-tightness commissioning tests should be performed before production equipment installation, not after\u003C/li>\n\u003C/ul>\n\n\u003Cp>As EV battery industry investment continues to grow in Karawang and surrounding industrial areas, demand for contractors and panel suppliers who understand dry room technical specifications—not just standard warehouse-grade sandwich panels—is expected to keep rising in the coming years.\u003C/p>\n\n\u003Ch2>FAQ\u003C/h2>\n\n\u003Ch3>What is the difference between an EV battery dry room and a pharmaceutical cleanroom?\u003C/h3>\n\u003Cp>Pharmaceutical cleanrooms control the count and size of airborne particles according to ISO 14644 classes, while EV battery dry rooms focus on dew point to keep air humidity as low as possible, typically in the -40°C to -65°C range. Both require an airtight, smooth building envelope, but the critical parameters and supporting HVAC systems differ.\u003C/p>\n\n\u003Ch3>What sandwich panel thickness is ideal for a battery plant dry room?\u003C/h3>\n\u003Cp>There is no single figure because it depends on target dew point, local climate, and internal moisture load. As a general guide, core production zones with extreme dew point targets (-50°C and below) typically use thicker PIR panels with hairline joint systems and additional sealant, compared to support areas that can use standard warehouse-grade wall panel specifications. Consult your panel supplier's technical team for project-specific requirements.\u003C/p>\n\n\u003Ch3>Are sandwich panels fire-resistant enough for electrolyte filling areas?\u003C/h3>\n\u003Cp>Sandwich panels with PIR or rock wool cores are available in fire resistance ratings from EI30 to EI120 depending on thickness and configuration. For high-risk zones such as electrolyte rooms and finished-cell areas, EI60 or higher ratings with rock wool cores are recommended, as rock wool maintains structural integrity longer than PIR under high temperatures.\u003C/p>","\u003Cp>Industri baterai kendaraan listrik (EV) Indonesia memasuki babak baru. Pabrik baterai PT CATL Amperex Technology Indonesia Battery (CATIB), hasil kerja sama Contemporary Amperex Technology Co. Limited (CATL) melalui anak usahanya CBL dengan Indonesia Battery Corporation (IBC), mulai beroperasi di Karawang, Jawa Barat pada akhir Juli 2026 dengan kapasitas produksi 15 GWh per tahun—6,9 GWh pada fase pertama dan 8,1 GWh pada fase kedua. Nilai investasi proyek terintegrasi ini mencapai sekitar Rp96 triliun, melibatkan CATL, PT Aneka Tambang Tbk (Antam), dan IBC.\u003C/p>\n\n\u003Cp>Beroperasinya fasilitas sekelas ini membuka peluang besar bagi rantai pasok konstruksi pabrik, termasuk material bangunan yang mampu memenuhi persyaratan teknis sangat ketat: ruang kering (dry room) dengan kontrol kelembapan ekstrem, ketahanan api, dan kecepatan pembangunan. Artikel ini membahas mengapa sandwich panel PIR menjadi pilihan material envelope untuk pabrik baterai EV dan dry room, lengkap dengan spesifikasi teknis yang perlu diperhatikan tim proyek.\u003C/p>\n\n\u003Ch2>Mengapa Pabrik Baterai EV Membutuhkan Dry Room\u003C/h2>\n\u003Cp>Proses produksi sel baterai lithium-ion—terutama pelapisan elektroda, perakitan sel, dan pengisian elektrolit—sangat sensitif terhadap kelembapan. Uap air yang bereaksi dengan elektrolit atau material litium dapat memicu degradasi kimia, gas berbahaya, hingga cacat produksi yang menurunkan usia pakai baterai. Karena itu, area produksi inti harus dibangun sebagai dry room: ruang tertutup dengan kelembapan relatif yang dijaga jauh di bawah kondisi atmosfer normal.\u003C/p>\n\n\u003Cp>Berbeda dari cleanroom farmasi yang berfokus pada jumlah partikel, dry room baterai berfokus pada titik embun (dew point)—parameter yang jauh lebih sulit dicapai dan dipertahankan. Kegagalan mengontrol titik embun berarti kerugian produksi dalam skala besar, sehingga desain envelope bangunan (dinding, atap, sambungan) menjadi elemen kritis, bukan sekadar pelindung cuaca.\u003C/p>\n\n\u003Ch2>Spesifikasi Titik Embun dan Kontrol Kelembapan Dry Room\u003C/h2>\n\u003Cp>Standar industri baterai lithium-ion umumnya mensyaratkan titik embun ruang di kisaran -40°C (setara kelembapan relatif di bawah 1%), meski proses tertentu dan kimia sel generasi baru menuntut -50°C hingga -65°C. Dry room tingkat lanjut untuk kimia baterai next-generation bahkan menargetkan titik embun di bawah -75°C. Udara suplai dari sistem HVAC/dehumidifikasi biasanya dirancang lebih kering lagi dari titik embun ruang—misalnya -50°C saat target ruang -40°C—untuk mengimbangi beban kelembapan internal dari napas pekerja dan peralatan.\u003C/p>\n\n\u003Cp>Mencapai kondisi seketat ini mustahil dilakukan dengan dinding bangunan konvensional yang berpori dan penuh celah sambungan. Envelope bangunan harus:\u003C/p>\n\u003Cul>\n\u003Cli>Memiliki nilai transmisi uap air (vapor permeability) serendah mungkin pada panel dinding dan atap\u003C/li>\n\u003Cli>Menggunakan sistem sambungan hairline joint dengan sealant kontinu, bukan sekadar tumpang tindih biasa\u003C/li>\n\u003Cli>Menghindari jembatan termal (thermal bridging) pada rangka struktur yang bisa memicu kondensasi lokal\u003C/li>\n\u003Cli>Mendukung integrasi ducting HVAC dan filter tanpa merusak kekedapan ruang\u003C/li>\n\u003C/ul>\n\n\u003Ch2>Kenapa Sandwich Panel PIR Cocok untuk Dry Room dan Fire Rating Pabrik Baterai\u003C/h2>\n\u003Cp>Sandwich panel dengan core polyisocyanurate (PIR) menjadi pilihan populer untuk envelope dry room karena konduktivitas termalnya rendah, sekitar 0,020-0,024 W/(m·K), jauh lebih baik dibanding EPS pada ketebalan yang sama. Permukaan metal facing pada kedua sisi panel juga berfungsi sebagai lapisan penghambat uap (vapor barrier) yang menyatu dengan struktur, mengurangi risiko titik lemah dibanding dinding bata-plester yang dilapis membran terpisah.\u003C/p>\n\n\u003Cp>Fasilitas baterai EV juga menyimpan risiko kebakaran yang nyata—dari proses pengisian elektrolit yang mudah terbakar hingga risiko thermal runaway pada sel yang sudah jadi. Untuk itu, pemilihan panel dengan rating tahan api EI60 hingga EI120 pada zona-zona kritis (ruang elektrolit, area pengisian sel, gudang sel jadi) menjadi bagian dari mitigasi risiko, bukan sekadar kepatuhan regulasi. Baca panduan lengkap kami soal \u003Ca href=\"https://sandwichpanels.id/id/blog/standar-fire-rating-sandwich-panel-ei60-ei120-panduan\">standar fire rating sandwich panel EI60-EI120\u003C/a> untuk memahami perbedaan performa tiap kelas ketahanan api.\u003C/p>\n\n\u003Cp>Untuk area dry room itu sendiri, pendekatan pemilihan bahan dinding banyak mengadopsi prinsip yang sama dengan cleanroom farmasi—permukaan halus tanpa pori, mudah dibersihkan, dan minim celah pertumbuhan mikroba maupun akumulasi debu. Tim kami membahas topik ini lebih dalam di \u003Ca href=\"https://sandwichpanels.id/id/blog/bahan-dinding-cleanroom-panduan-pemilihan-sandwich-panel-2026\">panduan pemilihan bahan dinding cleanroom\u003C/a>, yang prinsip vapor-barrier dan hairline joint-nya juga relevan untuk dry room baterai.\u003C/p>\n\n\u003Cimg src=\"https://assets.sandwichpanels.id/blog/1786393070543-sandwich-panel-pabrik-baterai-ev-dry-room-cover-01.png\" alt=\"Interior dry room pabrik baterai EV dengan dinding sandwich panel putih\" />\n\n\u003Ch2>Pertimbangan Desain dan Instalasi di Lapangan\u003C/h2>\n\u003Cp>Proyek pabrik baterai umumnya berjalan dengan jadwal konstruksi yang sangat ketat karena tekanan investasi dan target produksi. Sandwich panel memberi keunggulan kecepatan pemasangan dibanding metode dinding basah konvensional, namun beberapa hal berikut perlu dikoordinasikan sejak tahap desain:\u003C/p>\n\u003Cul>\n\u003Cli>Ketebalan panel disesuaikan dengan target dew point per zona—zona produksi inti butuh ketebalan dan performa insulasi lebih tinggi dibanding area gudang atau kantor pendukung\u003C/li>\n\u003Cli>Detail sambungan di sudut, penetrasi ducting, dan pertemuan dinding-lantai harus dirancang khusus untuk menjaga kontinuitas vapor barrier\u003C/li>\n\u003Cli>Pemilihan core PIR vs rockwool disesuaikan zona: PIR unggul di insulasi termal dan kontrol uap, rockwool unggul di ketahanan api pada zona berisiko tinggi\u003C/li>\n\u003Cli>Uji komisioning kelembapan dan kebocoran udara (air tightness test) sebaiknya dilakukan sebelum instalasi peralatan produksi, bukan setelahnya\u003C/li>\n\u003C/ul>\n\n\u003Cp>Dengan skala investasi industri baterai EV yang terus tumbuh di Karawang dan kawasan industri sekitarnya, permintaan terhadap kontraktor dan pemasok panel yang memahami spesifikasi teknis dry room—bukan sekadar sandwich panel standar gudang—akan terus meningkat dalam beberapa tahun ke depan. Tren serupa juga terlihat pada sektor cold storage dan cleanroom farmasi, di mana kebutuhan panel dengan spesifikasi kelembapan ketat terus naik seiring pertumbuhan investasi industri berteknologi tinggi di Indonesia.\u003C/p>\n\n\u003Ch2>FAQ\u003C/h2>\n\n\u003Ch3>Apa perbedaan dry room baterai EV dengan cleanroom farmasi?\u003C/h3>\n\u003Cp>Cleanroom farmasi mengontrol jumlah dan ukuran partikel di udara sesuai kelas ISO 14644, sedangkan dry room baterai EV berfokus pada titik embun (dew point) untuk menjaga kelembapan udara serendah mungkin, biasanya di kisaran -40°C hingga -65°C. Keduanya sama-sama butuh envelope bangunan kedap dan halus, tapi parameter kritis serta sistem HVAC pendukungnya berbeda.\u003C/p>\n\n\u003Ch3>Ketebalan sandwich panel berapa yang ideal untuk dry room pabrik baterai?\u003C/h3>\n\u003Cp>Tidak ada angka tunggal karena tergantung target dew point, iklim lokasi, dan beban kelembapan internal ruang. Sebagai gambaran umum, zona produksi inti dengan target dew point ekstrem (-50°C ke bawah) biasanya memakai panel PIR lebih tebal dengan sistem sambungan hairline joint dan sealant tambahan, dibanding area pendukung yang cukup memakai spesifikasi panel dinding gudang standar. Konsultasikan kebutuhan spesifik proyek dengan tim teknis pemasok panel.\u003C/p>\n\n\u003Ch3>Apakah sandwich panel tahan terhadap risiko kebakaran di area pengisian elektrolit?\u003C/h3>\n\u003Cp>Sandwich panel dengan core PIR atau rockwool tersedia dalam rating tahan api EI30 hingga EI120 tergantung ketebalan dan konfigurasi. Untuk zona berisiko tinggi seperti ruang elektrolit dan area sel jadi, disarankan memilih rating EI60 ke atas dan core rockwool yang mempertahankan integritas struktur lebih lama dibanding PIR pada suhu tinggi.\u003C/p>","\u003Cp>印度尼西亚电动汽车（EV）电池产业迈入新阶段。由宁德时代（CATL）子公司CBL与印尼电池公司（IBC）合资的PT CATL Amperex Technology Indonesia Battery（CATIB）电池工厂已于2026年7月底在西爪哇卡拉旺（Karawang）投产，年产能达15吉瓦时（GWh），一期6.9吉瓦时，二期8.1吉瓦时。该一体化项目投资额约合960万亿印尼盾，参与方包括CATL、安塔姆矿业（Antam）与IBC。\u003C/p>\n\n\u003Cp>如此规模的工厂投产，为工厂建设供应链带来巨大机遇，尤其是能满足极严格技术要求的建筑材料：干燥室（dry room）需要极端湿度控制、防火性能与快速施工能力。本文说明为何PIR夹芯板成为EV电池工厂与干燥室围护结构的首选材料，并介绍项目团队需关注的技术规格。\u003C/p>\n\n\u003Ch2>为什么电池工厂需要干燥室\u003C/h2>\n\u003Cp>锂电池生产工艺——尤其是电极涂布、电芯组装与注液——对湿度极为敏感。水汽与电解液或锂材料反应可能引发化学降解、有害气体产生，以及缩短电池寿命的生产缺陷。因此核心生产区域必须建成干燥室：一个相对湿度远低于正常大气条件的封闭空间。\u003C/p>\n\n\u003Cp>与关注颗粒计数的制药洁净室不同，电池干燥室关注露点（dew point）——一个更难达到与维持的参数。露点控制失败意味着大规模生产损失，因此建筑围护结构（墙体、屋顶、接缝）的设计成为关键工程要素，而非单纯的防风避雨屏障。\u003C/p>\n\n\u003Ch2>干燥室的露点与湿度控制规格\u003C/h2>\n\u003Cp>锂电池行业标准通常要求室内露点约-40°C（相当于相对湿度低于1%），部分工艺与新一代电芯化学体系甚至要求-50°C至-65°C。面向下一代电池化学体系的先进干燥室，露点目标甚至低于-75°C。HVAC除湿系统的送风露点通常设计得比室内目标更低——例如室内目标为-40°C时，送风露点约为-50°C，以抵消人员呼吸与设备产生的内部湿负荷。\u003C/p>\n\n\u003Cp>要达到如此严格的条件，传统多孔且接缝众多的墙体几乎不可能实现。建筑围护结构须做到：\u003C/p>\n\u003Cul>\n\u003Cli>墙体与屋顶板材的水汽渗透率尽可能低\u003C/li>\n\u003Cli>采用连续密封胶的发丝缝（hairline joint）系统，而非简单搭接\u003C/li>\n\u003Cli>避免结构框架产生热桥，防止局部结露\u003C/li>\n\u003Cli>在不破坏气密性的前提下支持HVAC风管与过滤器集成\u003C/li>\n\u003C/ul>\n\n\u003Ch2>为何PIR夹芯板适合干燥室与电池工厂防火需求\u003C/h2>\n\u003Cp>聚异氰脲酸酯（PIR）芯材夹芯板因导热系数低（约0.020-0.024 W/(m·K)），在相同厚度下性能明显优于EPS，成为干燥室围护结构的热门选择。板材两面的金属面板同时构成一体化水汽阻隔层，比砖墙加贴防潮膜的方式风险点更少。\u003C/p>\n\n\u003Cp>EV电池工厂同样存在真实的火灾风险——从易燃电解液注液工艺到成品电芯的热失控风险。为关键区域（电解液间、注液区、成品电芯仓库）选用EI60至EI120防火等级的板材，是风险控制的一部分，而非仅为满足法规。详见我们关于\u003Ca href=\"https://sandwichpanels.id/zh/blog/standar-fire-rating-sandwich-panel-ei60-ei120-panduan\">EI60-EI120夹芯板防火等级指南\u003C/a>的完整说明，了解各防火等级的性能差异。\u003C/p>\n\n\u003Cp>干燥室本身的墙体材料选择，很大程度上借鉴了制药洁净室的原则——表面光滑无孔隙、易清洁、接缝少，减少微生物或粉尘积聚风险。我们在\u003Ca href=\"https://sandwichpanels.id/zh/blog/bahan-dinding-cleanroom-panduan-pemilihan-sandwich-panel-2026\">洁净室墙面材料选型指南\u003C/a>中对此有更深入介绍，其水汽阻隔与发丝缝原则同样适用于电池干燥室。\u003C/p>\n\n\u003Cimg src=\"https://assets.sandwichpanels.id/blog/1786393070543-sandwich-panel-pabrik-baterai-ev-dry-room-cover-01.png\" alt=\"EV电池工厂干燥室内部，白色夹芯板墙面\" />\n\n\u003Ch2>现场设计与施工注意事项\u003C/h2>\n\u003Cp>电池工厂项目通常因投资压力与产能目标而工期极紧。相比传统湿作业墙体，夹芯板施工速度更快，但以下几点需在设计阶段就协调好：\u003C/p>\n\u003Cul>\n\u003Cli>板材厚度应按各区域露点目标匹配——核心生产区所需厚度与保温性能高于仓库或办公支持区\u003C/li>\n\u003Cli>墙角、风管穿墙与墙地交接处细节须专门设计，以保持水汽阻隔层连续\u003C/li>\n\u003Cli>PIR与岩棉芯材按区域选择：PIR在保温与水汽控制上更优，岩棉在高风险区域的防火性能更优\u003C/li>\n\u003Cli>湿度与气密性调试测试应在生产设备安装前完成，而非安装后\u003C/li>\n\u003C/ul>\n\n\u003Cp>随着卡拉旺及周边工业区电池产业投资持续增长，未来几年对了解干燥室技术规格（而非仅标准仓库级夹芯板）的承包商与板材供应商的需求将持续上升。\u003C/p>\n\n\u003Ch2>FAQ\u003C/h2>\n\n\u003Ch3>EV电池干燥室与制药洁净室有何区别？\u003C/h3>\n\u003Cp>制药洁净室按ISO 14644等级控制空气中颗粒物的数量与大小，而EV电池干燥室关注露点，尽可能降低空气湿度，通常在-40°C至-65°C之间。两者都需要气密、光滑的建筑围护结构，但关键参数与配套HVAC系统不同。\u003C/p>\n\n\u003Ch3>电池工厂干燥室适合多厚的夹芯板？\u003C/h3>\n\u003Cp>没有统一数值，需视露点目标、当地气候与室内湿负荷而定。一般而言，露点目标极端（-50°C以下）的核心生产区通常采用更厚的PIR板材，配合发丝缝系统与额外密封胶；支持区域则可采用标准仓库级墙板规格。建议与板材供应商技术团队按项目具体需求确认。\u003C/p>\n\n\u003Ch3>夹芯板能否满足注液区的防火要求？\u003C/h3>\n\u003Cp>PIR或岩棉芯材夹芯板可提供EI30至EI120防火等级，视厚度与配置而定。对于电解液间、成品电芯区等高风险区域，建议选用EI60以上等级并采用岩棉芯材，因其在高温下比PIR能更长时间保持结构完整性。\u003C/p>","https://assets.sandwichpanels.id/blog/1786393070543-sandwich-panel-pabrik-baterai-ev-dry-room-cover-01.png","2026-08-10T20:21:34.205599Z",{"en":214,"id":215,"zh":216},"Indonesia's electric vehicle (EV) battery industry has entered a new phase. The battery plant of PT CATL Amperex Technology Indonesia Battery (CATIB), a joint venture between Contemporary Amperex Tech...","Industri baterai kendaraan listrik (EV) Indonesia memasuki babak baru. Pabrik baterai PT CATL Amperex Technology Indonesia Battery (CATIB), hasil kerja sama Contemporary Amperex Technology Co. Limited...","印度尼西亚电动汽车（EV）电池产业迈入新阶段。由宁德时代（CATL）子公司CBL与印尼电池公司（IBC）合资的PT CATL Amperex Technology Indonesia Battery（CATIB）电�...","460950c8-6e0f-44af-8b1f-707d02338c6d",true,"2026-08-11T02:16:05.725517Z",{"title":221,"description":225},{"en":222,"id":223,"zh":224},"Sandwich Panels for EV Battery Plants & Dry Rooms: 2026 Guide","Sandwich Panel Pabrik Baterai EV & Dry Room: Panduan 2026","EV电池工厂干燥室夹芯板规格指南2026",{"en":226,"id":227,"zh":228},"PIR sandwich panel specifications for EV battery plants and dry rooms: dew point standards, EI60-EI120 fire ratings, and envelope design tips for 2026.","Panduan spesifikasi sandwich panel PIR untuk pabrik baterai EV dan dry room: standar titik embun, fire rating EI60-EI120, dan tips desain envelope bangunan 2026.","EV电池工厂与干燥室夹芯板规格指南：露点标准、EI60-EI120防火等级与围护结构设计要点，2026年最新版。","sandwich-panel-pabrik-baterai-ev-dry-room-2026",[231,232,233,234,235,236,237],"sandwich panel pabrik baterai ev","dry room baterai","PIR sandwich panel","fire rating EI60 EI120","cleanroom industri","CATL Karawang","konstruksi pabrik baterai",{"en":239,"id":240,"zh":241},"Sandwich Panels for EV Battery Plants & Dry Rooms 2026","Sandwich Panel Pabrik Baterai EV & Dry Room 2026","EV电池工厂与干燥室夹芯板建造指南2026",{"data":243},[244,246,248,250,252,254,256,258,260,262,264,266,268,270,272,274,276,278],{"id":43,"image_url":44,"name":245,"position":49,"slug":50,"type":51},{"en":46,"id":47,"zh":48},{"id":53,"image_url":54,"name":247,"position":59,"slug":60,"type":51},{"en":56,"id":57,"zh":58},{"id":62,"image_url":63,"name":249,"position":68,"slug":69,"type":51},{"en":65,"id":66,"zh":67},{"id":71,"image_url":72,"name":251,"position":77,"slug":78,"type":51},{"en":74,"id":75,"zh":76},{"id":80,"image_url":81,"name":253,"position":85,"slug":86,"type":51},{"en":83,"id":83,"zh":84},{"id":88,"image_url":89,"name":255,"position":94,"slug":95,"type":51},{"en":91,"id":92,"zh":93},{"id":97,"image_url":7,"name":257,"position":102,"slug":103,"type":51},{"en":99,"id":100,"zh":101},{"id":105,"image_url":106,"name":259,"position":111,"slug":112,"type":51},{"en":108,"id":109,"zh":110},{"id":114,"image_url":115,"name":261,"position":120,"slug":121,"type":51},{"en":117,"id":118,"zh":119},{"id":123,"image_url":115,"name":263,"position":127,"slug":128,"type":51},{"en":125,"id":125,"zh":126},{"id":130,"image_url":131,"name":265,"position":136,"slug":137,"type":51},{"en":133,"id":134,"zh":135},{"id":139,"image_url":7,"name":267,"position":144,"slug":145,"type":51},{"en":141,"id":142,"zh":143},{"id":147,"image_url":148,"name":269,"position":153,"slug":154,"type":51},{"en":150,"id":151,"zh":152},{"id":156,"image_url":157,"name":271,"position":162,"slug":163,"type":51},{"en":159,"id":160,"zh":161},{"id":165,"image_url":166,"name":273,"position":171,"slug":172,"type":51},{"en":168,"id":169,"zh":170},{"id":174,"image_url":175,"name":275,"position":180,"slug":181,"type":51},{"en":177,"id":178,"zh":179},{"id":183,"image_url":184,"name":277,"position":188,"slug":189,"type":51},{"en":186,"id":186,"zh":187},{"id":191,"image_url":192,"name":279,"position":197,"slug":198,"type":51},{"en":194,"id":195,"zh":196},{"data":281,"total":392},[282,306,330,336,364],{"author_name":200,"category":283,"cover_image":285,"created_at":286,"excerpt":287,"id":291,"published_at":292,"slug":293,"tags":294,"title":302,"updated_at":292},{"name":284,"slug":206},{"en":203,"id":204,"zh":205},"https://assets.sandwichpanels.id/blog/1786587400007-sandwich-panel-data-center-konstruksi-modular-cover-01.png","2026-08-12T20:28:58.745519Z",{"en":288,"id":289,"zh":290},"Installed data center capacity in Indonesia reached roughly 520 MW by June 2026. IDPRO chairman Hendra Suryakusuma expects the national figure to approach 600 MW by year end, driven by projects now en...","Kapasitas fasilitas data center di Indonesia menyentuh sekitar 520 MW sampai Juni 2026. Ketua Umum IDPRO Hendra Suryakusuma memperkirakan angka itu bisa mendekati 600 MW di penghujung tahun, ditopang ...","截至2026年6月，印尼已建成的数据中心容量约为520兆瓦。印尼数据中心产业协会（IDPRO）主席Hendra Suryakusuma预计，随着多个项目进入施工、通电与调试阶�...","80e08120-6448-4e7e-a60a-585a70c450b2","2026-08-13T02:18:40.179129Z","sandwich-panel-data-center-konstruksi-modular-2026",[295,296,297,298,299,300,301],"sandwich panel data center","konstruksi data center indonesia","NFPA 75","TIA-942","ASHRAE TC 9.9","panel rockwool tahan api","modular data center",{"en":303,"id":304,"zh":305},"Sandwich Panels for Data Centers: Fire-Rated Build 2026","Sandwich Panel Data Center: Konstruksi Modular Tahan Api 2026","数据中心夹芯板：模块化防火建造指南2026",{"author_name":200,"category":307,"cover_image":309,"created_at":310,"excerpt":311,"id":315,"published_at":316,"slug":317,"tags":318,"title":326,"updated_at":316},{"name":308,"slug":206},{"en":203,"id":204,"zh":205},"https://assets.sandwichpanels.id/blog/1786479336522-sandwich-panel-cold-storage-container-mobile-cold-room-cover-01.png","2026-08-11T20:21:41.478687Z",{"en":312,"id":313,"zh":314},"Fishermen along Java's northern coast routinely hold their catch for hours before a collector's truck arrives. Horticulture growers face the same squeeze. Permanent cold storage sits too far from the ...","Nelayan di pantai utara Jawa sering menahan hasil tangkapan berjam-jam sebelum truk pengepul datang. Petani hortikultura menghadapi persoalan serupa. Cold storage permanen terlalu jauh dari titik pane...","爪哇北岸的渔民常常要等上几个小时，收购车才会抵达码头。园艺种植户面临同样的困境：固定式冷库离产地太远、容量过大、投资回报算不过来。集��...","8c116a8f-bd98-415c-96e2-1b00d7a7240b","2026-08-12T03:05:12.276049Z","sandwich-panel-cold-storage-container-mobile-cold-room-2026",[319,320,321,322,323,324,325],"cold storage container","mobile cold room","cold room portable","sandwich panel PIR","ketebalan panel cold storage","rantai dingin perikanan","reefer container",{"en":327,"id":328,"zh":329},"Container Cold Storage & Mobile Cold Rooms Guide 2026","Cold Storage Container & Mobile Cold Room Panel 2026","集装箱冷库与移动冷藏室：夹芯板选型指南2026",{"author_name":200,"category":331,"cover_image":211,"created_at":212,"excerpt":333,"id":217,"published_at":219,"slug":229,"tags":334,"title":335,"updated_at":219},{"name":332,"slug":206},{"en":203,"id":204,"zh":205},{"en":214,"id":215,"zh":216},[231,232,233,234,235,236,237],{"en":239,"id":240,"zh":241},{"author_name":200,"category":337,"cover_image":343,"created_at":344,"excerpt":345,"id":349,"published_at":350,"slug":351,"tags":352,"title":360,"updated_at":350},{"name":338,"slug":342},{"en":339,"id":340,"zh":341},"Product Comparisons","Perbandingan Produk","产品比较","perbandingan","https://assets.sandwichpanels.id/blog/1786306267791-sandwich-panel-vs-acp-aluminium-composite-panel-cover-01.png","2026-08-09T20:15:18.683434Z",{"en":346,"id":347,"zh":348},"Many buyers assume ACP (Aluminium Composite Panel) and sandwich panel are the same product because both get installed as an exterior wall layer. In reality they are fundamentally different: ACP is a d...","Banyak calon pembeli mengira ACP (Aluminium Composite Panel) dan sandwich panel adalah produk yang sama karena sama-sama dipasang sebagai lapisan dinding luar bangunan. Padahal keduanya berbeda secara...","很多客户以为ACP铝塑板和夹芯板是同一种材料，因为两者都安装在建筑外墙表面。实际上二者本质完全不同：ACP是一种纯装饰性幕墙材料，不具备结构��...","0736e4bc-30e8-4003-a07c-c6be28c7a400","2026-08-10T02:16:32.442421Z","sandwich-panel-vs-acp-perbedaan-dan-cara-memilih-2026",[353,354,355,356,357,358,359],"sandwich panel vs acp","aluminium composite panel","perbandingan material fasad","EN 14509","SNI 1741","fire rating panel","material dinding pabrik",{"en":361,"id":362,"zh":363},"Sandwich Panel vs ACP: Key Differences & How to Choose 2026","Sandwich Panel vs ACP: Perbedaan dan Cara Memilih 2026","夹芯板与ACP铝塑板：区别与选购指南2026",{"author_name":200,"category":365,"cover_image":371,"created_at":372,"excerpt":373,"id":377,"published_at":378,"slug":379,"tags":380,"title":388,"updated_at":378},{"name":366,"slug":370},{"en":367,"id":368,"zh":369},"Guides & Tutorials","Panduan & Tutorial","指南与教程","panduan","https://assets.sandwichpanels.id/blog/1786219846540-bahan-dinding-cleanroom-panduan-pemilihan-sandwich-panel-2026-cover-01.png","2026-08-08T20:16:05.976199Z",{"en":374,"id":375,"zh":376},"Choosing the wrong cleanroom wall material is never just a cosmetic mistake. A panel with the wrong specification can trigger excess particle shedding, become hard to clean, or fail a GMP/CPOB audit o...","Kesalahan memilih bahan dinding cleanroom bukan sekadar soal estetika. Panel yang salah spesifikasi bisa memicu partikulasi berlebih, sulit dibersihkan, atau bahkan gagal audit CPOB/GMP saat inspeksi ...","洁净室墙面材料选错绝不只是外观问题。规格不当的夹芯板会导致颗粒物脱落超标、难以清洁,甚至在BPOM的CPOB审计中直接不合格。本文从技术角度讲解��...","611ca269-0aec-4a7a-843f-3e0d93d6a6c4","2026-08-09T02:16:22.637543Z","bahan-dinding-cleanroom-panduan-pemilihan-sandwich-panel-2026",[381,382,383,384,385,386,387],"bahan dinding cleanroom","kualifikasi cleanroom","sandwich panel cleanroom","ISO 14644","CPOB BPOM","core PU PIR rockwool","hairline joint cleanroom",{"en":389,"id":390,"zh":391},"Cleanroom Wall Materials: Sandwich Panel Selection Guide 2026","Bahan Dinding Cleanroom: Panduan Pemilihan Sandwich Panel 2026","洁净室墙面材料：夹芯板选型指南2026",175]